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JP2017128860A - Reinforcing construction method and reinforcement structure of concrete structure - Google Patents

Reinforcing construction method and reinforcement structure of concrete structure Download PDF

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JP2017128860A
JP2017128860A JP2016007295A JP2016007295A JP2017128860A JP 2017128860 A JP2017128860 A JP 2017128860A JP 2016007295 A JP2016007295 A JP 2016007295A JP 2016007295 A JP2016007295 A JP 2016007295A JP 2017128860 A JP2017128860 A JP 2017128860A
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anchor
reinforcing
injection
concrete structure
direction portion
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鉄太郎 山下
Tetsutaro Yamashita
鉄太郎 山下
宗 栄一
Eiichi So
栄一 宗
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SUNROAD CO Ltd
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SUNROAD CO Ltd
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Abstract

PROBLEM TO BE SOLVED: To provide a reinforcing construction method and a reinforcement structure of a concrete structure that eliminate the need for a step of forming a groove as a resin introduction passage by using a tool including a sander.SOLUTION: A lattice member 4 for reinforcement in which a first reinforcement 4a and a second reinforcement 4b intersecting the first reinforcement are on the same plane at least on a first surface side is disposed to face the first surface side on the surface of an existing floor slab 1. An anchor 6 for injection with a rod part 6b in which an injection hole 6g for epoxy resin 9 is formed to the tip is fitted to an anchor fitting hole 1b and the anchor fitting hole 1b larger than the outer diameter of the rod part 6b is drilled at a position adjacent to a net-like crossing part of the lattice member 4 for reinforcement in the floor slab 1. The rod part 6b of the anchor 6 for injection is inserted in the anchor fitting hole 1b, and the lattice member 4 for reinforcement is coated with a coating layer 7 and the epoxy resin 9 is injected into the injection hole 6g in the anchor 6 for injection from the outside.SELECTED DRAWING: Figure 8

Description

本発明は、例えば橋梁等のコンクリート構造物の補強に係り、特にひび割れを生じた橋梁床版や壁体の補修のほか既設構造物に対して新たに鉄筋を追加施工して補強する補強施工方法および補強構造に関する。   The present invention relates to reinforcement of concrete structures such as bridges, for example, and in particular to repair bridge floor slabs and wall bodies that have cracked, and to reinforce existing structures by adding new reinforcing bars. And a reinforcing structure.

コンクリート構造によって構築される道路橋では、車両の通過による動荷重を繰り返し受けるため、道路橋の主要部材の中でも橋梁の床版に対する負荷はかなり大きい。そして、橋梁自身が持つ強度に対して、過大な負荷の繰り返しや衝撃荷重が大きかったり、耐用年限を大きく越えたりすると、床版の下面にひび割れが発生し、このひび割れは次第に下面を縦横に走るようにまでなって細網化し、コンクリートの剥落などを招くことになる。   A road bridge constructed with a concrete structure is repeatedly subjected to a dynamic load caused by the passage of vehicles, and therefore the load on the bridge slab is considerably large among the main members of the road bridge. And if the strength of the bridge itself is excessive, the impact load is large, or if the service life is greatly exceeded, a crack will occur on the bottom surface of the slab, and this crack will gradually run vertically and horizontally on the bottom surface. As a result, it becomes finer and the concrete is peeled off.

このようなひび割れの発生は、コンクリート中の鉄筋の腐食や破断の原因となるので、通常の場合はひび割れが発生した初期の段階で床版を補修することが好ましいとされている。従来、この床版の補修施工としては、ひび割れ内にエポキシ樹脂などを注入する樹脂注入法や、床版に発生した空洞部分やコンクリート剥離部分をセメントモルタルで修復する断面修復工法が行われている。ところが、これらの工法のほとんどは破損部位の修復を主な目的とするものであって、鉄筋の腐食の進行等を防ぐことなどには有効であるものの、構造物自体の強度を上げるという施工には対応できない。   The occurrence of such cracks causes corrosion and breakage of the reinforcing bars in the concrete. Therefore, in normal cases, it is preferable to repair the floor slab at the initial stage where the cracks have occurred. Conventionally, as the repair work of this floor slab, a resin injection method in which epoxy resin or the like is injected into the crack, and a cross-section repair method in which a cavity portion or a concrete peeling portion generated in the floor slab is repaired with cement mortar are performed. . However, most of these methods are mainly aimed at repairing damaged parts and are effective in preventing the progress of corrosion of reinforcing bars, etc., but in the construction to increase the strength of the structure itself. Can not respond.

これに対し、例えば特許文献1には、橋梁などを含めて既設のコンクリート構造物に対して新たに鉄筋を追加施工して補強することが可能な補強施工方法が開示されている。この補強施工方法では、図9に示すように、格子状に縦および横の鉄筋104a,104bを予め溶接によって一体化した網鉄筋104をアンカーピン105によって床版101の下面に固定保持し、網鉄筋104の施工後にモルタル樹脂等によって被覆層を施工する。   On the other hand, for example, Patent Document 1 discloses a reinforcement construction method that can reinforce an existing concrete structure including a bridge by newly constructing a reinforcing bar. In this reinforcing construction method, as shown in FIG. 9, a mesh reinforcing bar 104 in which vertical and horizontal reinforcing bars 104 a and 104 b are integrated in advance by welding is fixed and held on the lower surface of the floor slab 101 by an anchor pin 105. A coating layer is constructed with mortar resin or the like after the rebar 104 is constructed.

上記従来の補強施工方法を詳細に説明すると、まず、図10(a)に示すように、床版101の底面に網鉄筋104の鉄筋104a,104bの配列方向およびランダムな方向にサンダー等の工具を用いて溝101aを形成する。次いで、図11に示すように、網鉄筋104を床版101の下面に形成したアンカー穴101bにアンカーピン105を用いて固定した後、アンカーピン105の注入孔105dが開放している部分を取り外し可能なシール材105d−1で封止し、吹き付け装置によって塗布材106aを吹き付けて溝101aを覆う(図10(b)参照。)。   The conventional reinforcement construction method will be described in detail. First, as shown in FIG. 10A, a tool such as a sander is arranged on the bottom surface of the floor slab 101 in the arrangement direction of the rebars 104a and 104b of the rebar 104 and in a random direction. The groove 101a is formed using Next, as shown in FIG. 11, after fixing the rebar 104 to the anchor hole 101b formed on the lower surface of the floor slab 101 using the anchor pin 105, the portion where the injection hole 105d of the anchor pin 105 is opened is removed. It seals with the possible sealing material 105d-1, and sprays the coating material 106a with a spraying apparatus, and covers the groove | channel 101a (refer FIG.10 (b)).

その後、コテを利用して中塗材を塗布し、網鉄筋104を埋設する。このとき、アンカーピン105のヘッド105aは埋没しないようにする。そして、中塗材の塗布後、注入孔105dからシール材105d−1を抜き取り、エポキシ樹脂を外部から注入する。注入されたエポキシ樹脂は、床版101の下面に刻んだ溝101aの中に流れ込んでひび割れに浸透していくほか、塗布材が被覆していない床版101の下面と鉄筋104bとの間の隙間を充填するように流れていき、床版101のほぼ全体の広い領域に分布する。   Thereafter, an intermediate coating material is applied using a trowel, and the rebar 104 is embedded. At this time, the head 105a of the anchor pin 105 is not buried. And after application | coating of an intermediate coating material, the sealing material 105d-1 is extracted from the injection hole 105d, and an epoxy resin is inject | poured from the outside. The injected epoxy resin flows into the groove 101a carved on the lower surface of the floor slab 101 and penetrates into the cracks, and the gap between the lower surface of the floor slab 101 not coated with the coating material and the reinforcing bar 104b. And is distributed over a wide area of almost the entire floor slab 101.

特許第3582971号公報Japanese Patent No. 3582971

ところで、上記従来の補強施工方法で用いられている網鉄筋104は、鉄筋104a,104bを縦横に配列し、その交差部を溶接などにより固着して形成されたものであり、交差部では縦横の鉄筋104a,104bが上下に重なり合った状態である。そのため、網鉄筋104の鉄筋104a,104bのうち、床版104の下面側に配置されている鉄筋104bと床版101の下面との隙間は塗布材の吹き付けによって塞がれず、エポキシ樹脂が流れるための十分な隙間が確保されるが、この鉄筋104bと交差する鉄筋104aと床版101の下面との隙間は塗布材の吹き付けによって塞がれてしまうことになる。そのため、この補強施工方法では、床版101の底面に網鉄筋104の鉄筋104a,104bの配列方向およびランダムな方向にサンダー等の工具を用いて溝101aを形成することで、エポキシ樹脂の導入路を確保することが必要となっている。   By the way, the rebar 104 used in the above-described conventional reinforcement construction method is formed by arranging the reinforcing bars 104a and 104b vertically and horizontally and fixing the intersecting portions by welding or the like. In this state, the reinforcing bars 104a and 104b overlap each other. Therefore, among the reinforcing bars 104a and 104b of the mesh reinforcing bar 104, the gap between the reinforcing bar 104b disposed on the lower surface side of the floor slab 104 and the lower surface of the floor slab 101 is not blocked by the spray of the coating material, and the epoxy resin flows. However, the gap between the reinforcing bar 104a intersecting with the reinforcing bar 104b and the lower surface of the floor slab 101 is blocked by spraying the coating material. Therefore, in this reinforcing construction method, the groove 101a is formed on the bottom surface of the floor slab 101 with a tool such as a sander in the arrangement direction of the rebars 104a and 104b of the mesh reinforcing bar 104 and in a random direction, thereby introducing the epoxy resin introduction path. It is necessary to ensure.

本発明は、サンダー等の工具を用いて樹脂導入路としての溝を形成する工程を不要にしたコンクリート構造物の補強施工方法および補強構造を提供することを目的とする。   An object of this invention is to provide the reinforcement construction method and reinforcement structure of a concrete structure which made the process of forming the groove | channel as a resin introduction path unnecessary using tools, such as a sander.

本発明のコンクリート構造物の補強施工方法は、第1方向部分およびこれに交差する第2方向部分により網状の交差部が形成された補強用格子材であり第1方向部分および第2方向部分が少なくとも第1面側において同一平面上にある補強用格子材を、既設のコンクリート構造物の表面に第1面側を向けて配置すること、合成樹脂の注入孔が先端まで形成されたロッド部を有する注入用アンカーを取り付けるアンカー取付穴であり、ロッド部の外径よりも大きなアンカー取付穴を、コンクリート構造物の補強用格子材の網状の交差部に隣接する位置に穿設すること、注入用アンカーのロッド部をアンカー取付穴に差し込むこと、補強用格子材を被覆層によって被覆すること、注入用アンカーの注入孔に外部から合成樹脂を注入し、この合成樹脂をアンカー取付穴から補強用格子材の第1方向部分および第2方向部分とコンクリート構造物の表面との隙間を通じてコンクリート構造物の表面と被覆層との間の全体に行き渡らせることを含むことを特徴とする。   The method for reinforcing a concrete structure according to the present invention is a reinforcing lattice material in which a net-like intersection is formed by a first direction portion and a second direction portion intersecting with the first direction portion, and the first direction portion and the second direction portion are A reinforcing grid member on the same plane at least on the first surface side is disposed with the first surface side facing the surface of an existing concrete structure, and a rod portion in which a synthetic resin injection hole is formed to the tip is provided. An anchor attachment hole for attaching an injection anchor having an anchor attachment hole larger than the outer diameter of the rod portion at a position adjacent to a mesh-like intersection of a reinforcing lattice material for a concrete structure, for injection Insert the anchor rod into the anchor mounting hole, cover the reinforcing grid with a coating layer, and inject synthetic resin into the injection hole of the injection anchor from the outside. Extending from the anchor mounting hole through the gap between the first direction portion and the second direction portion of the reinforcing grid material and the surface of the concrete structure, and between the surface of the concrete structure and the covering layer. Features.

本発明によれば、補強用格子材の第1方向部分および第2方向部分が、少なくとも既設のコンクリート構造物の表面に向けて配置される第1面側において同一平面上にあるため、注入用アンカーの注入孔に外部から注入される合成樹脂が流入するための補強用格子材の第1方向部分および第2方向部分とコンクリート構造物の表面との隙間が確保される。したがって、本発明によれば、従来のようにコンクリート構造物の表面にサンダー等の工具を用いて樹脂導入路としての溝を形成することなく、注入された合成樹脂をアンカー取付穴から補強用格子材の第1方向部分および第2方向部分とコンクリート構造物の表面との隙間を通じてコンクリート構造物の表面と被覆層との間の全体に行き渡らせることが可能となる。   According to the present invention, the first direction portion and the second direction portion of the reinforcing grid material are on the same plane at least on the first surface side arranged toward the surface of the existing concrete structure. A gap between the first direction portion and the second direction portion of the reinforcing lattice material and the surface of the concrete structure is secured for the synthetic resin injected from the outside into the injection hole of the anchor. Therefore, according to the present invention, the injected synthetic resin can be reinforced from the anchor mounting hole to the reinforcing grid without forming a groove as a resin introduction path using a tool such as a sander on the surface of the concrete structure as in the prior art. Through the gap between the first direction portion and the second direction portion of the material and the surface of the concrete structure, it is possible to spread the entire surface between the surface of the concrete structure and the covering layer.

本発明によれば、コンクリート構造物の表面にサンダー等の工具を用いて樹脂導入路としての溝を形成することなく、補強用格子材を覆う被覆層と、注入用アンカーの注入孔と、アンカー取付穴と、コンクリート構造物の表面と被覆層との間の全体に渡って補強用格子材の第1方向部分および第2方向部分とコンクリート構造物の表面との隙間とに充填された合成樹脂とを含むコンクリート構造物の補強構造が得られる。   According to the present invention, without forming a groove as a resin introduction path using a tool such as a sander on the surface of a concrete structure, the covering layer covering the reinforcing lattice material, the injection hole of the injection anchor, the anchor Synthetic resin filled in the mounting hole and the gap between the first direction portion and the second direction portion of the reinforcing lattice material and the surface of the concrete structure over the entire area between the surface of the concrete structure and the covering layer A reinforcing structure of a concrete structure including

本発明の実施の形態におけるコンクリート構造物の補強施工方法によって橋梁の床版を補強した例を示す概略図である。It is the schematic which shows the example which reinforced the floor slab of the bridge by the reinforcement construction method of the concrete structure in embodiment of this invention. 固定用アンカーおよび注入用アンカーの配置を示す図1のII−II線矢視図である。It is the II-II arrow directional view of FIG. 1 which shows arrangement | positioning of the anchor for fixation and the anchor for injection | pouring. 補強用格子材の斜視図である。It is a perspective view of the grid material for reinforcement. 図3のIV−IV線断面図である。It is the IV-IV sectional view taken on the line of FIG. 固定用アンカーの詳細を示す図であって、(a)は平面図、(b)は一部切欠正面図、(c)は底面図である。It is a figure which shows the detail of the anchor for fixation, Comprising: (a) is a top view, (b) is a partially notched front view, (c) is a bottom view. 注入用アンカーの詳細を示す図であって、(a)は平面図、(b)は一部切欠正面図、(c)は底面図である。It is a figure which shows the detail of the anchor for injection | pouring, Comprising: (a) is a top view, (b) is a partially notched front view, (c) is a bottom view. 固定用アンカーをアンカー取付穴にねじ込んで鉄筋を固定した後に被覆層を形成した状態を示す要部断面図である。It is principal part sectional drawing which shows the state which formed the coating layer, after screwing the anchor for fixation in an anchor attachment hole and fixing a reinforcing bar. アンカー取付穴に取り付けた注入用アンカーの注入孔からエポキシ樹脂を注入したときの樹脂の流れを示す要部断面図である。It is principal part sectional drawing which shows the flow of resin when an epoxy resin is inject | poured from the injection hole of the injection anchor attached to the anchor attachment hole. 従来のコンクリート構造物の補強施工方法におけるアンカーピンの配置を示す床版の底面図である。It is a bottom view of the floor slab which shows arrangement | positioning of the anchor pin in the reinforcement construction method of the conventional concrete structure. 従来のコンクリート構造物の補強施工方法において床版の底面に刻む溝の施工例であって、(a)は床版を斜め下方から見たときの概略図、(b)は溝の形状を示す断面図である。It is the construction example of the groove | channel carved into the bottom face of a floor slab in the reinforcement construction method of the conventional concrete structure, (a) is the schematic when a floor slab is seen from diagonally downward, (b) shows the shape of a groove | channel. It is sectional drawing. 従来のコンクリート構造物の補強施工方法においてアンカーピンにより鉄筋を固定した状態を示す要部断面図である。It is principal part sectional drawing which shows the state which fixed the reinforcing bar with the anchor pin in the reinforcement construction method of the conventional concrete structure.

図1は本発明の実施の形態におけるコンクリート構造物の補強施工方法によって橋梁の床版を補強した例を示す概略図、図2は固定用アンカーおよび注入用アンカーの配置を示す図1のII−II線矢視図、図3は補強用格子材の斜視図、図4は図3のIV−IV線断面図である。   FIG. 1 is a schematic view showing an example in which a bridge floor slab is reinforced by a concrete structure reinforcement construction method according to an embodiment of the present invention, and FIG. 2 is a diagram illustrating the arrangement of fixing anchors and injection anchors in FIG. FIG. 3 is a perspective view of the reinforcing lattice material, and FIG. 4 is a cross-sectional view taken along line IV-IV in FIG.

図1に示すコンクリート構造物は、橋梁の床版1が橋桁3によって支持されたものである。床版1の内部には、鉄筋が格子状に配筋されている。また、床版1の路幅方向の両端には、地覆2がそれぞれ一体に形成されている。床版1は既設のものであり、通過車両Vによる動荷重を繰り返し受けてその下面表面にひび割れが発生しているものとする。本実施形態におけるコンクリート構造物の補強施工方法では、このひび割れが発生した床版1を補強するため、図2に示す補強用格子材4を固定用アンカー5によって固定保持する。固定用アンカー5は、補強用格子材4の交差部4cに隣接するように床版1に形成されたアンカー取付穴1a(図7参照。)にねじ込まれる。   In the concrete structure shown in FIG. 1, a bridge floor slab 1 is supported by a bridge girder 3. Reinforcing bars are arranged in a lattice pattern inside the floor slab 1. Moreover, the ground cover 2 is integrally formed in the both ends of the floor width direction of the floor slab 1, respectively. The floor slab 1 is an existing one, and it is assumed that a crack is generated on the lower surface of the floor slab by repeatedly receiving a dynamic load from the passing vehicle V. In the method for reinforcing a concrete structure according to this embodiment, the reinforcing grid member 4 shown in FIG. 2 is fixedly held by fixing anchors 5 in order to reinforce the cracked slab 1. The fixing anchor 5 is screwed into an anchor mounting hole 1a (see FIG. 7) formed in the floor slab 1 so as to be adjacent to the intersecting portion 4c of the reinforcing lattice material 4.

補強用格子材4は、図3に示すように、第1方向X1に延びる第1方向部分を構成する第1鉄筋4aおよびこれに交差する第2方向X2に延びる第2方向部分を構成する第2鉄筋4bにより網状の交差部4cが形成されたものである。本実施形態においては、補強用格子材4は、複数の第1鉄筋4aとしての異形棒鋼と複数の第2鉄筋4bとしての異形棒鋼とを互いに直交するように配置し、加熱しながらプレス成型することにより一体化したものを使用する。なお、第1鉄筋4aおよび第2鉄筋4bとして丸鋼を使用することもある。また、本実施形態においては、補強用格子材4は溶融亜鉛メッキしたものを用いることで耐久性を向上させている。   As shown in FIG. 3, the reinforcing grid member 4 includes a first reinforcing bar 4 a that forms a first direction portion extending in the first direction X <b> 1 and a second direction portion that extends in a second direction X <b> 2 that intersects the first reinforcing bar 4 a. A net-like intersection 4c is formed by two reinforcing bars 4b. In the present embodiment, the reinforcing lattice member 4 is formed by arranging a deformed steel bar as the plurality of first reinforcing bars 4a and a deformed steel bar as the plurality of second reinforcing bars 4b so as to be orthogonal to each other, and press-molding while heating. Use an integrated one. Note that round steel may be used as the first reinforcing bar 4a and the second reinforcing bar 4b. In the present embodiment, the reinforcing lattice material 4 is made of a hot dip galvanized material to improve durability.

補強用格子材4は、図4に示すように第1鉄筋4aおよび第2鉄筋4bの上面(床版1の下面表面に向けて配置する面。本明細書中において「第1面」と称す。)Z1および下面(第1面と反対側の面。本明細書中において「第2面」と称す。)Z2が同一平面上にある。そのため、交差部4cで第1鉄筋4aおよび第2鉄筋4bが上下に重なり合わず、補強用格子材4全体の厚さを第1鉄筋4aまたは第2鉄筋4bの厚さにすることができる。なお、第1鉄筋4aの厚さと第2鉄筋4bの厚さとは同一である必要はなく、少なくとも第1面Z1側が同一平面上にあれば良い。また、本実施形態においては、第1方向X1と第2方向X2とは直交しているが、直交している必要はない。   As shown in FIG. 4, the reinforcing grid member 4 has upper surfaces of the first reinforcing bars 4 a and the second reinforcing bars 4 b (surfaces arranged toward the lower surface of the floor slab 1. In the present specification, they are referred to as “first surfaces”. .) Z1 and the lower surface (the surface opposite to the first surface, referred to as “second surface” in this specification) Z2 are on the same plane. Therefore, the 1st reinforcing bar 4a and the 2nd reinforcing bar 4b do not overlap up and down in the crossing part 4c, and the thickness of the reinforcement grid | lattice material 4 whole can be made into the thickness of the 1st reinforcing bar 4a or the 2nd reinforcing bar 4b. In addition, the thickness of the 1st reinforcing bar 4a and the thickness of the 2nd reinforcing bar 4b do not need to be the same, and the 1st surface Z1 side should just be on the same plane. In the present embodiment, the first direction X1 and the second direction X2 are orthogonal to each other, but need not be orthogonal.

図5は固定用アンカー5の詳細を示す図であって、(a)は平面図、(b)は一部切欠正面図、(c)は底面図である。固定用アンカー5は、下端にその端面を緩やかな円弧面状としたヘッド部5aが形成され、このヘッド部5aから上端に向けてロッド部5bが形成されたものである。ロッド部5bには、ヘッド部5aとの間を上端側、すなわち、アンカー取付穴1aへのねじ込み進行方向に外形を先細りさせたテーパ部5cが形成されている。また、ヘッド部5a側には、回転工具を嵌めて回転させるための多角形断面穴としての六角穴5dが設けられている。   FIGS. 5A and 5B are diagrams showing details of the anchor 5 for fixation, wherein FIG. 5A is a plan view, FIG. 5B is a partially cutaway front view, and FIG. 5C is a bottom view. The fixing anchor 5 has a lower end formed with a head portion 5a whose end surface is a gentle arcuate surface, and a rod portion 5b formed from the head portion 5a toward the upper end. The rod portion 5b is formed with a taper portion 5c having an outer shape tapered toward the upper end side with respect to the head portion 5a, that is, in the direction of screwing into the anchor attachment hole 1a. Moreover, the hexagonal hole 5d as a polygonal cross-sectional hole for inserting and rotating a rotary tool is provided in the head part 5a side.

また、テーパ部5cよりも先端側のロッド部5bの外周面には、2条のねじ山5e,5fが形成されている。ねじ山5eは、断面形状が三角形になっている三角ねじである。このねじ山5eは、アンカー取付穴1aの内面に切り込む錐として作用するものである(以下、このねじ山5eを「錐ねじ山」と称す。)。ねじ山5fは、ねじ山5eよりも高さが低く形成された台形ねじまたは角ねじである。このねじ山5fは、ねじ込みの際の案内として作用するものである(以下、このねじ山5fを「案内ねじ山」と称す。)。   Further, two threads 5e and 5f are formed on the outer peripheral surface of the rod portion 5b on the tip side of the taper portion 5c. The screw thread 5e is a triangular screw having a triangular cross-sectional shape. The thread 5e acts as a cone cut into the inner surface of the anchor mounting hole 1a (hereinafter, this thread 5e is referred to as a “cone thread”). The screw thread 5f is a trapezoidal screw or a square screw formed with a height lower than that of the screw thread 5e. The thread 5f acts as a guide during screwing (hereinafter, the thread 5f is referred to as “guide thread”).

このような固定用アンカー5がねじ込まれるアンカー取付穴1aは、補強用格子材4の第1鉄筋4aおよび第2鉄筋4bが十字状に交差している角部であって、第1鉄筋4aおよび第2鉄筋4bにロッド部5bの周面が同時に接触するような位置に形成されている。このアンカー取付穴1aに固定用アンカー5をねじ込んでいくと、ロッド部5b部分に変わってテーパ部5cが第1鉄筋4aおよび第2鉄筋4bの周面に当たるようになり、固定用アンカー5の取り付け中心から見るとこのテーパ部5cによってその外径半径が大きくなる。したがって、固定用アンカー5は図2において矢印方向に第1鉄筋4aおよび第2鉄筋4bを押すようになり、これらの交差部4cには引張力が作用する。   The anchor mounting hole 1a into which the fixing anchor 5 is screwed is a corner where the first reinforcing bar 4a and the second reinforcing bar 4b of the reinforcing lattice material 4 intersect in a cross shape, and the first reinforcing bar 4a and It is formed in the position where the peripheral surface of the rod part 5b contacts the 2nd reinforcing bar 4b simultaneously. When the fixing anchor 5 is screwed into the anchor mounting hole 1a, the taper portion 5c comes into contact with the peripheral surfaces of the first reinforcing bar 4a and the second reinforcing bar 4b instead of the rod portion 5b, and the fixing anchor 5 is attached. When viewed from the center, the outer radius of the taper portion 5c increases. Therefore, the anchor 5 for fixation comes to push the 1st reinforcing bar 4a and the 2nd reinforcing bar 4b in the arrow direction in FIG. 2, and tensile force acts on these crossing parts 4c.

このように固定用アンカー5にテーパ部5cを設けることによって、図2に示す補強用格子材4に対して固定用アンカー5の位置を適切にすれば、図中の矢印で示すように補強用格子材4の中心から格子と45°の角度を持つ方向への一様な引張力を作用させることができる。したがって、図1に示すように床版1に対して施工したときには、この床版1が撓み変形しても補強用格子材4がこの撓み変形に追従して、固定用アンカー5と補強用格子材4との間に隙間が発生することが防止される。   In this way, by providing the fixing anchor 5 with the tapered portion 5c, if the position of the fixing anchor 5 is appropriately set with respect to the reinforcing lattice material 4 shown in FIG. 2, the reinforcing anchor 5 as shown by the arrow in the figure. A uniform tensile force can be applied from the center of the lattice material 4 to a direction having an angle of 45 ° with the lattice. Therefore, when the floor slab 1 is constructed as shown in FIG. 1, even if the floor slab 1 is bent and deformed, the reinforcing lattice material 4 follows the bending deformation, and the fixing anchor 5 and the reinforcing lattice It is possible to prevent a gap from being generated with the material 4.

また、本実施形態におけるコンクリート構造物の補強施工方法では、合成樹脂を注入するための注入用アンカー6を、補強用格子材4の交差部4cに隣接するように床版1に形成されたアンカー取付穴1bに取り付ける。アンカー取付穴1bは、固定用アンカー5が取り付けられるアンカー取付穴1aとは異なる位置に設けられている。   Moreover, in the concrete structure reinforcement construction method in this embodiment, the anchor 6 for injecting the synthetic resin is formed on the floor slab 1 so as to be adjacent to the intersecting portion 4c of the reinforcing lattice material 4. It attaches to the attachment hole 1b. The anchor attachment hole 1b is provided at a position different from the anchor attachment hole 1a to which the fixing anchor 5 is attached.

図6は注入用アンカー6の詳細を示す図であって、(a)は平面図、(b)は一部切欠正面図、(c)は底面図である。注入用アンカー6は、可鍛に前述の固定用アンカー5と同様のヘッド部6aが形成され、このヘッド部6aから上端に向けてロッド部6bが形成されたものである。ロッド部6bには、ヘッド部6aとの間を上端側、すなわち、アンカー取付穴1bへ差し込む方向に外形を先細りさせたテーパ部6cが形成されている。   FIG. 6 is a diagram showing details of the injection anchor 6, wherein (a) is a plan view, (b) is a partially cutaway front view, and (c) is a bottom view. The injection anchor 6 is malleably formed with a head portion 6a similar to the above-described fixing anchor 5, and a rod portion 6b is formed from the head portion 6a toward the upper end. The rod portion 6b is formed with a taper portion 6c whose outer shape is tapered in the direction of being inserted into the anchor attachment hole 1b between the head portion 6a and the upper end side.

ヘッド部6a側には、合成樹脂の注入器具8を接続するための注入器具接続部としての雌ねじ部6eが形成されている。また、ロッド部6bの先端側の外周面には、合成樹脂との付着力を高めるための凸凹6fが形成されている。さらに、注入用アンカー6のロッド部6bには、雌ねじ部6eおよびヘッド部6aに連ねて軸線方向に貫通させた一様な内径の注入孔6gが形成されている。そして、ロッド部6bの先端側には、注入孔6gの周壁部分を半径方向に切開したスリット6hが形成されている。   On the head portion 6a side, a female screw portion 6e is formed as an injection device connecting portion for connecting the injection device 8 made of synthetic resin. Further, an uneven surface 6f is formed on the outer peripheral surface on the distal end side of the rod portion 6b for increasing the adhesion force with the synthetic resin. Furthermore, the rod portion 6b of the injection anchor 6 is formed with an injection hole 6g having a uniform inner diameter that penetrates the female screw portion 6e and the head portion 6a in the axial direction. And the slit 6h which cut | disconnected the surrounding wall part of the injection hole 6g in the radial direction is formed in the front end side of the rod part 6b.

このような注入用アンカー6が取り付けられるアンカー取付穴1bは、補強用格子材4の第1鉄筋4aおよび第2鉄筋4bが十字状に交差している角部であって、第1鉄筋4aおよび第2鉄筋4bにロッド部6bの周面が同時に接触するような位置に形成されている。このアンカー取付穴1bに差し込まれた注入用アンカー6は、テーパ部6cが補強用格子材4の第1鉄筋4aおよび第2鉄筋4bとアンカー取付穴1bの内側面との支圧力によりアンカー取付穴1bに保持される。   The anchor mounting hole 1b to which such an injection anchor 6 is mounted is a corner where the first reinforcing bar 4a and the second reinforcing bar 4b of the reinforcing lattice material 4 intersect in a cross shape, and the first reinforcing bar 4a and It is formed in the position where the peripheral surface of the rod part 6b contacts the 2nd reinforcing bar 4b simultaneously. The injection anchor 6 inserted into the anchor mounting hole 1b has an anchor mounting hole in which the taper portion 6c has a support pressure between the first reinforcing bar 4a and the second reinforcing bar 4b of the reinforcing lattice material 4 and the inner surface of the anchor mounting hole 1b. 1b.

次に、本実施形態におけるコンクリート構造物の補強施工方法について説明する。図7は固定用アンカーをアンカー取付穴にねじ込んで鉄筋を固定した後に被覆層を形成した状態を示す要部断面図、図8はアンカー取付穴に取り付けた注入用アンカーの注入孔からエポキシ樹脂を注入したときの樹脂の流れを示す要部断面図である。なお、本実施形態におけるコンクリート構造物の補強施工方法では、従来方法のような溝を刻む施工は行わない。   Next, a concrete construction reinforcement method according to this embodiment will be described. FIG. 7 is a cross-sectional view of a main part showing a state in which a covering layer is formed after fixing a reinforcing bar by screwing a fixing anchor into an anchor mounting hole, and FIG. 8 shows an epoxy resin from an injection hole of the injection anchor attached to the anchor mounting hole. It is principal part sectional drawing which shows the flow of resin when inject | pouring. In addition, in the reinforcement construction method of the concrete structure in this embodiment, the construction which engraves a groove | channel like the conventional method is not performed.

本実施形態におけるコンクリート構造物の補強施工方法では、まず、補強用格子材4を床版1の下面表面に沿わせてその位置を仮決めし、第1鉄筋4aおよび第2鉄筋4bの両方に固定用アンカー5および注入用アンカー6のそれぞれのロッド部5b,6bが接触できる位置を、床版1の下面表面に墨出しする。固定用アンカー5および注入用アンカー6の施工数は補強用格子材4の大きさに応じて適宜選択すれば良い。   In the concrete construction reinforcing method according to the present embodiment, first, the reinforcing grid member 4 is placed along the lower surface of the floor slab 1 to temporarily determine the position thereof, so that both the first reinforcing bar 4a and the second reinforcing bar 4b are used. The positions where the rod portions 5b, 6b of the anchor for anchor 5 and the anchor for injection 6 can contact each other are marked on the lower surface of the floor slab 1. The number of fixing anchors 5 and injection anchors 6 may be appropriately selected according to the size of the reinforcing lattice material 4.

固定用アンカー5および注入用アンカー6の施工位置の墨付け後には、補強用格子材4を床版1から離すかまたは保持具によって仮決めしたままとして、墨付けマークを目印にして下穴としてのアンカー取付穴1a,1bをドリルによって穿孔する。アンカー取付穴1aの内径は、固定用アンカー5のロッド部5bの外形よりも大きく、かつ、錐ねじ山5eよりも小さく、固定用アンカー5をねじ込んだときに錐ねじ山5eがアンカー取付穴1aの内面に切り込む程度とする。一方、アンカー取付穴1bの内径は、注入用アンカー6のロッド部6bの外形よりも大きく、かつ、注入樹脂の詰まりがない程度とする。また、アンカー取付穴1bの深さは、注入用アンカー6を奥まで差し込んだときにその先端に開放している注入孔6gが閉塞しない穿ち長さとする。   After marking the fixing anchor 5 and the injection anchor 6 at the installation position, the reinforcing grid material 4 is separated from the floor slab 1 or is temporarily determined by a holder, and the marking mark is used as a mark as a pilot hole. The anchor mounting holes 1a and 1b are drilled with a drill. The inner diameter of the anchor mounting hole 1a is larger than the outer shape of the rod portion 5b of the fixing anchor 5 and smaller than the conical screw thread 5e, and when the fixing anchor 5 is screwed, the conical thread thread 5e is fixed to the anchor mounting hole 1a. Cut into the inner surface. On the other hand, the inner diameter of the anchor mounting hole 1b is larger than the outer shape of the rod portion 6b of the anchor 6 for injection, and does not clog the injected resin. The depth of the anchor mounting hole 1b is set to a length that does not block the injection hole 6g opened at the tip of the injection anchor 6 when the anchor 6 for injection is fully inserted.

アンカー取付穴1a,1bの穿孔作業を全て終えると、補強用格子材4の位置を再び正確に位置合わせして第1鉄筋4aおよび第2鉄筋4bが交差する交差部4cとアンカー取付穴1aの間の位置関係を調整して、再度床版1の下面表面に沿わせて仮固定する。そして、固定用アンカー5のロッド部5bの先端部をアンカー取付穴1aの入口にあてがい、回転工具を六角穴5dに嵌めて固定用アンカー5を回転させながら床版1にねじ込んでいく。このとき、固定用アンカー5の錐ねじ山5eはアンカー取付穴1aの内面に切り込みながら進行し、案内ねじ山5fがアンカー取付穴1aの内面に当接することによって、固定用アンカー5の姿勢を、その軸線がアンカー取付穴1aの軸線と一致するように保持する。   When all the drilling operations of the anchor mounting holes 1a and 1b are completed, the position of the reinforcing lattice material 4 is accurately aligned again, and the intersection 4c and the anchor mounting hole 1a where the first reinforcing bar 4a and the second reinforcing bar 4b intersect with each other are formed. The positional relationship between them is adjusted, and temporarily fixed along the lower surface of the floor slab 1 again. Then, the distal end portion of the rod portion 5b of the fixing anchor 5 is applied to the entrance of the anchor mounting hole 1a, and a rotary tool is fitted into the hexagonal hole 5d to be screwed into the floor slab 1 while rotating the fixing anchor 5. At this time, the conical thread 5e of the anchor for anchor 5 advances while being cut into the inner surface of the anchor mounting hole 1a, and the guide thread 5f abuts against the inner surface of the anchor mounting hole 1a, so that the posture of the anchor for anchor 5 is The axis is held so as to coincide with the axis of the anchor mounting hole 1a.

このように固定用アンカー5を回転させながら床版1のアンカー取付穴1aにねじ込んでいくと、テーパ部5cが第1鉄筋4aおよび第2鉄筋4bの周面に当たり、図2において矢印方向に第1鉄筋4aおよび第2鉄筋4bを押すようになり、これらの交差部4cに引張力が作用する。すなわち、この交差部4cに作用する引張力が補強用格子材4の中央から外側に向かって広がるように固定用アンカー5を取り付けることで、図7に示すように、ヘッド部5aが第1鉄筋4aおよび第2鉄筋4bに突き当たってねじ込み完了となったときには、全体に緊張力が作用した状態で補強用格子材4が床版1の下面表面に固定される。   When the fixing anchor 5 is rotated and screwed into the anchor mounting hole 1a of the floor slab 1, the taper portion 5c hits the peripheral surfaces of the first reinforcing bar 4a and the second reinforcing bar 4b, and the second direction in the direction of the arrow in FIG. The first reinforcing bar 4a and the second reinforcing bar 4b are pushed, and a tensile force acts on these intersecting portions 4c. That is, by attaching the anchoring anchor 5 so that the tensile force acting on the intersecting portion 4c spreads outward from the center of the reinforcing grid member 4, the head portion 5a becomes the first reinforcing bar as shown in FIG. When the screwing is completed by abutting against the 4a and the second rebar 4b, the reinforcing lattice material 4 is fixed to the lower surface of the floor slab 1 in a state where tension is applied to the whole.

以上の要領で固定用アンカー5をアンカー取付穴1aにねじ込んだ後、注入用アンカー6をアンカー取付穴1bに差し込んで取り付ける。アンカー取付穴1bに差し込まれた注入用アンカー6は、テーパ部6cが補強用格子材4の第1鉄筋4aおよび第2鉄筋4bとアンカー取付穴1bの内側面との支圧力によりアンカー取付穴1bに保持される。   After the fixing anchor 5 is screwed into the anchor mounting hole 1a as described above, the injection anchor 6 is inserted into the anchor mounting hole 1b and attached. The injection anchor 6 inserted into the anchor attachment hole 1b has an anchor attachment hole 1b whose taper portion 6c has a support pressure between the first reinforcing bar 4a and the second reinforcing bar 4b of the reinforcing lattice material 4 and the inner surface of the anchor attachment hole 1b. Retained.

その後、注入用アンカー6の注入孔6gが開放している部分すなわち雌ねじ部6eにボルト等をねじ込むことにより封止する。そして、床版1の下面表面に図1に一点鎖線で示す被覆層7を形成する。被覆層7は、下塗材、中塗材および上塗材からなり、まず、吹き付け装置によって下塗材を吹き付ける。このとき、下塗材は吹き付け装置によって床版1の真下から吹き付けるように作業するため、第1鉄筋4aおよび第2鉄筋4bと床版1の下面との間に下塗材が完全には回り込まず、隙間1cが形成される。   Thereafter, sealing is performed by screwing a bolt or the like into a portion where the injection hole 6g of the injection anchor 6 is open, that is, the female screw portion 6e. And the coating layer 7 shown with a dashed-dotted line in FIG. The coating layer 7 is composed of a primer, an intermediate and a top coat, and first, the primer is sprayed by a spraying device. At this time, since the primer is operated so as to be sprayed from directly under the floor slab 1 by the spraying device, the primer does not completely wrap around between the first reinforcing bar 4a and the second reinforcing bar 4b and the lower surface of the floor slab 1, A gap 1c is formed.

このとき、本実施形態における補強用格子材4の第1鉄筋4aおよび第2鉄筋4bが、少なくとも床版1の下面表面に向けて配置される第1面Z1側において同一平面上にあるため、この補強用格子材4の第1鉄筋4aおよび第2鉄筋4bと床版1の下面表面との間に、後述するように注入用アンカー6の注入孔6gに外部から注入されるエポキシ樹脂9が流入するための隙間1cが形成される。すなわち、本実施形態における補強用格子材4の第1鉄筋4aおよび第2鉄筋4bでは、床版1の下面表面に向けて配置される第1面Z1側において同一平面上にあるため、丸棒である第1鉄筋4aおよび第2鉄筋4bの外周面と床版1との接触部近傍は隙間1cが狭く、下塗材が隅々まで到達できず、必ず隙間1cが形成されることになる。   At this time, since the first reinforcing bar 4a and the second reinforcing bar 4b of the reinforcing lattice material 4 in the present embodiment are on the same plane at least on the first surface Z1 side arranged toward the lower surface of the floor slab 1, Between the first reinforcing bar 4a and the second reinforcing bar 4b of the reinforcing grid member 4 and the lower surface of the floor slab 1, an epoxy resin 9 injected from the outside into the injection hole 6g of the injection anchor 6 as will be described later. A gap 1c for inflow is formed. That is, since the first reinforcing bar 4a and the second reinforcing bar 4b of the reinforcing lattice material 4 in the present embodiment are on the same plane on the first surface Z1 side facing the lower surface of the floor slab 1, The gap 1c is narrow in the vicinity of the contact portion between the outer peripheral surface of the first reinforcing bar 4a and the second reinforcing bar 4b and the floor slab 1, and the undercoat cannot reach every corner, so that the gap 1c is always formed.

この下塗材の塗布後、中塗材を塗布する。中塗材はコテ塗りまたは吹き付け作業によって行う。このとき、中塗材はヘッド部を覆い、所定の厚さを確保する。そして、中塗材の養生後、雌ねじ部6eからボルト等を抜き取り、図8に示すように注入器具8を雌ねじ部6eにねじ込んで、この注入器具8から合成樹脂として例えばエポキシ樹脂9を注入する。このエポキシ樹脂9の充填の後、注入器具8を雌ねじ部6eから取り外し、中塗材の表面に上塗材をローラーによって塗布し、下塗材、中塗材および上塗材によって図1に一点鎖線で示す被覆層7が形成される。   After the application of the undercoat material, the intermediate coat material is applied. The intermediate coating material is applied by troweling or spraying. At this time, the intermediate coating material covers the head portion and ensures a predetermined thickness. Then, after curing the intermediate coating material, a bolt or the like is extracted from the female screw portion 6e, the injection device 8 is screwed into the female screw portion 6e as shown in FIG. 8, and, for example, an epoxy resin 9 is injected from the injection device 8 as a synthetic resin. After filling with the epoxy resin 9, the injection device 8 is removed from the female screw portion 6 e, and the top coat material is applied to the surface of the intermediate coating material with a roller, and the coating layer indicated by the one-dot chain line in FIG. 7 is formed.

なお、注入用アンカー6の注入孔6gに供給されたエポキシ樹脂9は、注入孔6gの上端およびスリット6hから流出してアンカー取付穴1bの中に送り出され、アンカー取付穴1bの中では注入圧力によって隙間1cに速やかに流入していく。そして、アンカー取付穴1bから抜けたエポキシ樹脂9は、第1鉄筋4aおよび第2鉄筋4bとひび割れの交差部から床版1の下面のひび割れに注入されていくほか、床版1の下面表面と補強用格子材4の第1鉄筋4aおよび第2鉄筋4bとの隙間1cを充填するように流れていき、床版1の下面表面と下塗材(被覆層7)との間の全体に行き渡る。   The epoxy resin 9 supplied to the injection hole 6g of the injection anchor 6 flows out from the upper end of the injection hole 6g and the slit 6h and is sent out into the anchor attachment hole 1b. As a result, the air quickly flows into the gap 1c. The epoxy resin 9 that has come out of the anchor mounting hole 1b is poured into the cracks on the lower surface of the floor slab 1 from the intersections of the cracks with the first reinforcing bar 4a and the second reinforcing bar 4b, and the lower surface of the floor slab 1 It flows so as to fill the gap 1c between the first reinforcing bar 4a and the second reinforcing bar 4b of the reinforcing lattice material 4, and reaches the entire area between the lower surface of the floor slab 1 and the primer (covering layer 7).

すなわち、ひび割れは下塗材によって被覆された状態となっているが、補強用格子材4の第1鉄筋4aおよび第2鉄筋4bの隙間1cに充填されるエポキシ樹脂9がその注入圧によって流動してひび割れの中に浸透する。また、第1鉄筋4aおよび第2鉄筋4bが直にひび割れと交差している部分では、隙間1cに沿って供給されてくるエポキシ樹脂9が直接ひび割れの中に入り込んでいく。すなわち、ひび割れの発生の仕方が不定型であっても、従来のように床版1にサンダー等の工具を用いて樹脂導入路としての溝を形成することなく、この隙間1cを利用してエポキシ樹脂9をひび割れに充填することができる。   That is, although the crack is covered with the primer, the epoxy resin 9 filled in the gap 1c between the first reinforcing bar 4a and the second reinforcing bar 4b of the reinforcing lattice material 4 flows due to the injection pressure. It penetrates into the cracks. Further, at the portion where the first reinforcing bar 4a and the second reinforcing bar 4b directly intersect with the crack, the epoxy resin 9 supplied along the gap 1c directly enters the crack. That is, even if cracks are generated indefinitely, an epoxy is used by utilizing this gap 1c without forming a groove as a resin introduction path on the floor slab 1 using a tool such as a sander as in the prior art. Resin 9 can be filled into the cracks.

このように注入用アンカー6の注入孔6gから注入されたエポキシ樹脂9はアンカー取付穴1bの中だけに止まるのではなく、床版1のほぼ全体の広い領域に分布させることができる。したがって、エポキシ樹脂9を適当な量だけ注入した後に養生期間を置くと、エポキシ樹脂9の硬化によって注入用アンカー6のロッド部6bはアンカー取付穴1bの中に強固に固定される。   Thus, the epoxy resin 9 injected from the injection hole 6g of the injection anchor 6 does not stop only in the anchor mounting hole 1b, but can be distributed over a substantially wide area of the floor slab 1. Accordingly, when a curing period is set after injecting an appropriate amount of the epoxy resin 9, the rod portion 6b of the injection anchor 6 is firmly fixed in the anchor mounting hole 1b by the curing of the epoxy resin 9.

また、床版1の下面表面と補強用格子材4との間にも固化したエポキシ樹脂9がそのまま残るので、床版1の下面を強固に被覆でき、増厚部と完全一体化して補修補強効果を発揮する。さらに、ひび割れについてもエポキシ樹脂9が充填されることから、衝撃荷重等を受けてもその成長を抑えることができ、その補修だけでなく、補強強度も十分に高くすることができる。   In addition, since the solidified epoxy resin 9 remains between the lower surface of the floor slab 1 and the reinforcing grid material 4, the lower surface of the floor slab 1 can be firmly covered, and is completely integrated with the thickened portion for repair and reinforcement. Demonstrate the effect. Further, since the epoxy resin 9 is also filled with cracks, the growth can be suppressed even when subjected to an impact load or the like, and not only the repair but also the reinforcing strength can be sufficiently increased.

以上のように、本実施形態におけるコンクリート構造物の補強施工方法では、コンクリート構造物の表面にサンダー等の工具を用いて樹脂導入路としての溝を形成する必要がない。また、補強用格子材4が、交差部4cで第1鉄筋4aおよび第2鉄筋4bが上下に重なり合わず、補強用格子材4全体の厚さが第1鉄筋4aまたは第2鉄筋4bの厚さであるため、これを覆う被覆層7が薄くなり、施工性および経済性が向上する。   As described above, in the method for reinforcing a concrete structure according to this embodiment, it is not necessary to form a groove as a resin introduction path using a tool such as a sander on the surface of the concrete structure. Further, in the reinforcing grid member 4, the first reinforcing bar 4a and the second reinforcing bar 4b do not overlap each other at the intersection 4c, and the total thickness of the reinforcing grid member 4 is the thickness of the first reinforcing bar 4a or the second reinforcing bar 4b. Therefore, the covering layer 7 covering this is thinned, and the workability and economy are improved.

以上の例では橋梁の床版の補強施工としたが、これに代えて各種のコンクリート構造体を施工対象としてもよいことは無論である。   In the above example, the bridge slab is reinforced, but various concrete structures may be used instead.

本発明のコンクリート構造物の補強施工方法および補強構造は、例えば橋梁等のコンクリート構造物の補強、特にひび割れを生じた橋梁床版や壁体の補修の他、既設構造物に対して新たに鉄筋を追加施工して補強するための方法および構造として有用である。   The concrete structure reinforcing method and the reinforcing structure according to the present invention include, for example, reinforcement of a concrete structure such as a bridge, in particular, repair of a cracked bridge floor slab and a wall body, and a new reinforcement for an existing structure. It is useful as a method and a structure for reinforcement by additional construction.

1 床版
1a,1b アンカー取付穴
1c 隙間
2 地覆
3 橋桁
4 補強用格子材
4a 第1鉄筋
4b 第2鉄筋
4c 交差部
5 固定用アンカー
5a ヘッド部
5b ロッド部
5c テーパ部
5d 六角穴
5e 錐ねじ山
5f 案内ねじ山
6 注入用アンカー
6a ヘッド部
6b ロッド部
6c テーパ部
6e 雌ねじ部
6f 凸凹
6g 注入孔
6h スリット
7 被覆層
8 注入器具
9 エポキシ樹脂
DESCRIPTION OF SYMBOLS 1 Floor slab 1a, 1b Anchor attachment hole 1c Crevice 2 Ground cover 3 Bridge girder 4 Reinforcement lattice material 4a 1st reinforcing bar 4b 2nd reinforcing bar 4c Intersection 5 Fixing anchor 5a Head part 5b Rod part 5c Taper part 5d Hexagonal hole 5e Cone Screw thread 5f Guide screw thread 6 Injection anchor 6a Head part 6b Rod part 6c Taper part 6e Female thread part 6f Concavity and convexity 6g Injection hole 6h Slit 7 Covering layer 8 Injection tool 9 Epoxy resin

Claims (3)

第1方向部分およびこれに交差する第2方向部分により網状の交差部が形成された補強用格子材であり前記第1方向部分および前記第2方向部分が少なくとも第1面側において同一平面上にある補強用格子材を、既設のコンクリート構造物の表面に前記第1面側を向けて配置すること、
合成樹脂の注入孔が先端まで形成されたロッド部を有する注入用アンカーを取り付けるアンカー取付穴であり、前記ロッド部の外径よりも大きなアンカー取付穴を、前記コンクリート構造物の前記補強用格子材の網状の交差部に隣接する位置に穿設すること、
前記注入用アンカーのロッド部を前記アンカー取付穴に差し込むこと、
前記補強用格子材を被覆層によって被覆すること、
前記注入用アンカーの注入孔に外部から合成樹脂を注入し、この合成樹脂を前記アンカー取付穴から前記補強用格子材の前記第1方向部分および前記第2方向部分と前記コンクリート構造物の表面との隙間を通じて前記コンクリート構造物の表面と前記被覆層との間の全体に行き渡らせること
を含むコンクリート構造物の補強施工方法。
A reinforcing grid member in which a net-like intersection is formed by a first direction portion and a second direction portion intersecting with the first direction portion, and the first direction portion and the second direction portion are at least on the same plane on the first surface side. Arranging a certain reinforcing grid material with the first surface side facing the surface of an existing concrete structure;
An anchor mounting hole for mounting an injection anchor having a rod portion in which a synthetic resin injection hole is formed up to the tip, and the anchor mounting hole larger than the outer diameter of the rod portion is used as the reinforcing lattice material for the concrete structure Drilling at a position adjacent to the mesh-like intersection of
Inserting the rod portion of the anchor for injection into the anchor mounting hole;
Covering the reinforcing grid material with a coating layer;
Synthetic resin is injected into the injection hole of the injection anchor from the outside, and the synthetic resin is injected from the anchor mounting hole into the first direction portion and the second direction portion of the reinforcing lattice material and the surface of the concrete structure. A method for reinforcing a concrete structure, comprising spreading the entire surface between the surface of the concrete structure and the coating layer through a gap.
前記補強用格子材は、前記第1方向部分を構成する第1鉄筋と前記第2方向部分を構成する第2鉄筋とから構成されたものである請求項1記載のコンクリート構造物の補強施工方法。   The method of reinforcing a concrete structure according to claim 1, wherein the reinforcing lattice material is composed of a first reinforcing bar that constitutes the first direction portion and a second reinforcing bar that constitutes the second direction portion. . 第1方向部分およびこれに交差する第2方向部分により網状の交差部が形成され、前記第1方向部分および前記第2方向部分が少なくとも第1面側において同一平面上にある補強用格子材であり、既設のコンクリート構造物の表面に前記第1面側を向けて配置された補強用格子材と、
合成樹脂の注入孔が先端まで形成されたロッド部を有する注入用アンカーであり、前記コンクリート構造物の前記補強用格子材の網状の交差部に隣接する位置に穿設された前記ロッド部の外径よりも大きなアンカー取付穴に差し込まれた注入用アンカーと、
前記補強用格子材を覆う被覆層と、
前記注入用アンカーの注入孔と、前記アンカー取付穴と、前記コンクリート構造物の表面と前記被覆層との間の全体に渡って前記補強用格子材の前記第1方向部分および前記第2方向部分と前記コンクリート構造物の表面との隙間とに充填された合成樹脂と
を含むコンクリート構造物の補強構造。
A reinforcing grid member in which a net-like intersection is formed by a first direction portion and a second direction portion intersecting with the first direction portion, and the first direction portion and the second direction portion are on the same plane at least on the first surface side. There is a reinforcing lattice material arranged with the first surface side facing the surface of an existing concrete structure,
An injection anchor having a rod portion in which a synthetic resin injection hole is formed up to the tip, outside the rod portion drilled at a position adjacent to the mesh-like intersection of the reinforcing lattice material of the concrete structure An injection anchor inserted into an anchor mounting hole larger than the diameter;
A covering layer covering the reinforcing grid material;
The first direction portion and the second direction portion of the reinforcing grid member over the injection hole of the injection anchor, the anchor mounting hole, and the entire surface between the surface of the concrete structure and the covering layer. And a reinforcing structure of a concrete structure including a synthetic resin filled in a gap between the surface of the concrete structure and the surface of the concrete structure.
JP2016007295A 2016-01-18 2016-01-18 Reinforcing construction method and reinforcement structure of concrete structure Pending JP2017128860A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101912061B1 (en) * 2018-02-09 2018-11-30 송우호 A Through Hole Type Anchor for Filling Upper Slab of Bridge Support and Filling Method for Upper Slab
JP2021055479A (en) * 2019-10-01 2021-04-08 ショーボンド建設株式会社 Low-pressure injection device and method of repairing reinforced concrete structure
CN113481830A (en) * 2021-05-19 2021-10-08 上海建工四建集团有限公司 Positioning device and positioning method of upright post main rib
KR20220054989A (en) * 2020-10-26 2022-05-03 신웅건설 주식회사 Method of bridge structures seismic resistant reinforcement

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101912061B1 (en) * 2018-02-09 2018-11-30 송우호 A Through Hole Type Anchor for Filling Upper Slab of Bridge Support and Filling Method for Upper Slab
JP2021055479A (en) * 2019-10-01 2021-04-08 ショーボンド建設株式会社 Low-pressure injection device and method of repairing reinforced concrete structure
JP7235636B2 (en) 2019-10-01 2023-03-08 ショーボンド建設株式会社 Low-pressure injection device and repair method for reinforced concrete structures
KR20220054989A (en) * 2020-10-26 2022-05-03 신웅건설 주식회사 Method of bridge structures seismic resistant reinforcement
KR102427322B1 (en) * 2020-10-26 2022-07-29 신웅건설 주식회사 Method of bridge structures seismic resistant reinforcement
CN113481830A (en) * 2021-05-19 2021-10-08 上海建工四建集团有限公司 Positioning device and positioning method of upright post main rib

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