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JP2013170663A - Shock absorber - Google Patents

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JP2013170663A
JP2013170663A JP2012036276A JP2012036276A JP2013170663A JP 2013170663 A JP2013170663 A JP 2013170663A JP 2012036276 A JP2012036276 A JP 2012036276A JP 2012036276 A JP2012036276 A JP 2012036276A JP 2013170663 A JP2013170663 A JP 2013170663A
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boss
leaf valve
shock absorber
boss portion
piston
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JP5873353B2 (en
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Kazuyuki Kimijima
和之 君嶋
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KYB Corp
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KYB Corp
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Abstract

PROBLEM TO BE SOLVED: To generate damping force as setting, with respect to a hydraulic shock absorber incorporated into a suspension of a vehicle.SOLUTION: A shock absorber includes a partition wall body 3 for partitioning pressure chambers R1 and R2 and a leaf valve 4 laminated on the partition wall body 3, includes a boss part 12 for fixing an inner peripheral side end part of the leaf valve 4 and a seat part 13 for leaving-seating an outer peripheral side end part of the leaf valve 4, and has a height difference for heightening the seat part 13 more than the boss part 12 between the boss part 12 and the seat part 13. A space between the outside edge of the boss part 12 and the outside edge of the seat part 13 is made to exist on the same curved surface or the same circular arc surface of gradually heightening toward the outside from the inside of the partition wall body 3, and the boss part 12 is made to exist on the curved surface or the circular arc surface or is formed as a horizontal plane.

Description

この発明は、緩衝器に関し、特に、車両のサスペンションに組み込まれる油圧緩衝器の改良に関する。   The present invention relates to a shock absorber, and more particularly to an improvement of a hydraulic shock absorber incorporated in a suspension of a vehicle.

車両のサスペンションに組み込まれる油圧緩衝器にあっては、車両の乗り心地を良くするために、たとえば、四輪各部で発生される減衰力が設定通りに具現化されることが要求される。   In the hydraulic shock absorber incorporated in the suspension of the vehicle, in order to improve the riding comfort of the vehicle, for example, it is required that the damping force generated in each part of the four wheels is embodied as set.

そのため、油圧緩衝器が備える減衰バルブは、たとえば、隔壁体たるピストンと、このピストンに積層されるリーフバルブとを有し、ピストンは、このピストンが区画する圧力室を連通させるポートを有し、リーフバルブは、ピストンの一端に内周側端部固定で外周側端部自由の態勢に設けられて、ポートの下流側端を開放可能に閉塞する。   Therefore, the damping valve provided in the hydraulic shock absorber has, for example, a piston that is a partition wall and a leaf valve that is stacked on the piston, and the piston has a port that communicates with a pressure chamber defined by the piston, The leaf valve is provided at one end of the piston so as to be free from the outer peripheral end by being fixed to the inner peripheral end, and closes the downstream end of the port so as to be openable.

一方、ピストンの一端には、たとえば、特許文献1に開示されているように、リーフバルブの内周側端部を固定的に定着させる内周側のボス部と、リーフバルブの外周側端部を離着座自在に着座させる外周側のシート部とを有してなる。   On the other hand, at one end of the piston, for example, as disclosed in Patent Document 1, an inner peripheral boss portion for fixing and fixing an inner peripheral end of the leaf valve, and an outer peripheral end of the leaf valve And a seat portion on the outer peripheral side for detachably seating.

そして、ボス部とシート部との間に高低差を有するとし、この高低差は、シート部をボス部より高くすることで実現され、具体的には、圧力室に対向するボス部とシート部とが同一円錐面上にあるようにしている。   And, it is assumed that there is a height difference between the boss part and the sheet part, and this height difference is realized by making the sheet part higher than the boss part. Specifically, the boss part and the sheet facing the pressure chamber Are on the same conical surface.

それゆえ、ピストンの一端に積層されるリーフバルブにあっては、ボス部とシート部とに高低差があるため、内周側端部がボス部に定着されて外周側端部がシート部に着座する状態になると、イニシャル荷重が付与されることになる。   Therefore, in the leaf valve laminated on one end of the piston, there is a height difference between the boss part and the seat part, so that the inner peripheral side end part is fixed to the boss part and the outer peripheral side end part becomes the seat part. When in a seated state, an initial load is applied.

したがって、油圧緩衝器にあって、高圧側からの作動流体がリーフバルブの外周側端部を撓ませてシート部との間の隙間を通過して低圧側に流出するときに、リーフバルブがイニシャル荷重を付与されてなるから、このイニシャル荷重が付与されていない場合に比較して、全体的に大きくなる圧力損失があり、高い減衰力の発生を可能にすることになる。   Therefore, in the hydraulic shock absorber, when the working fluid from the high pressure side deflects the outer peripheral side end portion of the leaf valve and passes through the gap between the seat portion and flows out to the low pressure side, the leaf valve is initialized. Since a load is applied, there is a pressure loss that becomes larger as a whole as compared with a case where the initial load is not applied, and a high damping force can be generated.

特開2004−176775号公報JP 2004-176775 A

しかしながら、上記の油圧緩衝器にあっては、リーフバルブで発生される減衰力が設定通りにならず、減衰力の大きさが製品毎にバラツクことが危惧される。   However, in the above-described hydraulic shock absorber, the damping force generated by the leaf valve is not as set, and there is a concern that the magnitude of the damping force varies from product to product.

上記の油圧緩衝器にあっては、図3に示すように、ボス部P1とシート部P2とが有する高低差Hは、ボス部P1と、シート部P2とが同一円錐面上にあるようにすることで具現化されている。   In the hydraulic shock absorber described above, as shown in FIG. 3, the height difference H between the boss part P1 and the sheet part P2 is such that the boss part P1 and the sheet part P2 are on the same conical surface. It is embodied by doing.

このことから、リーフバルブVをピストンPの一端に積層するのにあっては、上下方向からの力で内周側端部をボス部P1に押し付けることになるが、その際に、ボス部P1の外側縁P3が弾性変形することが考えられる。   For this reason, when laminating the leaf valve V on one end of the piston P, the inner peripheral side end is pressed against the boss P1 by a force from the vertical direction. At that time, the boss P1 It is conceivable that the outer edge P3 of the elastic deformation occurs.

そのため、リーフバルブVにあっては、図3中に実線図で示すように、ボス部P1に押し付けられる内周側端部と、ボス部P1の外側縁P3よりピストンPの外側寄りとなる部分V1との繋がり部分V2に局部的な変形が起きることになる。   Therefore, in the leaf valve V, as shown by a solid line in FIG. 3, an inner peripheral side end portion pressed against the boss portion P1 and a portion closer to the outside of the piston P than the outer edge P3 of the boss portion P1. A local deformation occurs in the connection portion V2 with V1.

そして、ボス部P1に内周側端部を定着する力が区々となったり、あるいは、ボス部P1の高さや外径に寸法誤差があったりすると、上記の繋がり部分V2における変形量が区々となり、リーフバルブVの外周側端部に付与されるイニシャル荷重が区々になる。   If the force that fixes the inner peripheral end to the boss part P1 varies, or if there is a dimensional error in the height or outer diameter of the boss part P1, the amount of deformation in the connecting part V2 is different. The initial load applied to the outer peripheral side end of the leaf valve V varies.

その結果、油圧緩衝器において、発生される減衰力が設定通りにならず、また、減衰力の大きさが製品毎にバラツクことになって、車両における乗車フィーリングが異なることになる不具合を招く。   As a result, in the hydraulic shock absorber, the generated damping force is not as set, and the magnitude of the damping force varies from product to product, resulting in different riding feelings in the vehicle. .

この発明は、上記した現状を鑑みて創案されたものであって、減衰力を設定通りに発生することができる緩衝器を提供することを目的とする。   The present invention has been developed in view of the above-described present situation, and an object thereof is to provide a shock absorber capable of generating a damping force as set.

上記した目的を達成するために、この発明の構成を、圧力室を区画する隔壁体と、この隔壁体に積層されるリーフバルブとを有し、このリーフバルブの内周側端部を定着させるボス部と、上記リーフバルブの外周側端部を離着座させるシート部とを有し、上記ボス部と上記シート部との間に上記ボス部より上記シート部を高くする高低差を有してなる緩衝器において、上記ボス部の外側縁から上記シート部の外側縁の間が上記隔壁体の内側から外側に向けて徐々に高くなる同一湾曲面上あるいは同一円弧面上にあるようにし、上記ボス部が上記湾曲面上あるいは上記円弧面上にあるか、または、水平面とされてなるとする。   In order to achieve the above-described object, the configuration of the present invention includes a partition body that partitions the pressure chamber, and a leaf valve that is stacked on the partition body, and fixes the inner peripheral end of the leaf valve. A boss portion and a seat portion for separating and seating the outer peripheral side end portion of the leaf valve, and having a height difference that makes the seat portion higher than the boss portion between the boss portion and the seat portion. In the shock absorber, the space between the outer edge of the boss part and the outer edge of the sheet part is on the same curved surface or the same arc surface gradually increasing from the inner side to the outer side of the partition body, It is assumed that the boss portion is on the curved surface or the arc surface, or is a horizontal plane.

それゆえ、ボス部が水平面からなり、あるいは、隔壁体の内側から外側に向けて徐々に高くなる同一の湾曲面上または同一の円弧面上にあるとされるから、ボス部を水平面、あるいは、ほぼ水平面に近い状態にし得る。   Therefore, the boss portion is formed on a horizontal plane, or on the same curved surface or the same arc surface that gradually increases from the inner side to the outer side of the partition body. It can be in a state close to a horizontal plane.

そして、ボス部の外側縁からシート部の外側縁の間が隔壁体の内側から外側に向けて徐々に高くなる同一湾曲面上あるいは同一円弧面上にあるとされるから、ボス部とシート部とに架け渡されるリーフバルブにあって、ボス部に定着される内周側端部と、ボス部の外側縁より外周側となる部分との繋がり部分に局部的な変形が発現されなくなる。   Since the space between the outer edge of the boss part and the outer edge of the sheet part is on the same curved surface or the same arc surface that gradually increases from the inner side to the outer side of the partition body, the boss part and the sheet part In the leaf valve spanned between the two, the local deformation at the connecting portion between the inner peripheral side end portion fixed to the boss portion and the outer peripheral edge of the boss portion is prevented.

したがって、リーフバルブの内周側端部をボス部に定着する力が区々となったりしても、あるいは、ボス部の高さや外径に寸法誤差があったりしても、上記の繋がり部分に局部的な変形が発現されず、また、変形が発現されるとしても変形量が大きくならず、リーフバルブに付与されるイニシャル荷重が区々とならないことになる。   Therefore, even if the force for fixing the inner peripheral side end of the leaf valve to the boss portion varies, or there is a dimensional error in the height or outer diameter of the boss portion, the above connected portion In addition, local deformation does not occur, and even if deformation occurs, the amount of deformation does not increase, and the initial load applied to the leaf valve does not vary.

その結果、緩衝器において、減衰力が設定通りに発生され、減衰力の大きさが製品毎にバラツクことにならず、たとえば、車両のサスペンションに組み込まれる油圧緩衝器とされるとき、乗車フィーリングを安定させてバラツキをなくし、また、乗車フィーリングの再現性を良くすることが可能になる。   As a result, in the shock absorber, the damping force is generated as set, and the magnitude of the damping force does not vary from product to product. For example, when the hydraulic shock absorber is incorporated in the suspension of the vehicle, the riding feeling It is possible to stabilize the vehicle and eliminate variations, and to improve the reproducibility of the ride feeling.

この発明の一の実施形態によるピストン部分を示す部分縦断面図である。It is a fragmentary longitudinal cross-section which shows the piston part by one Embodiment of this invention. 図1中のリーフバルブシート部を拡大して示す縦断面図である。It is a longitudinal cross-sectional view which expands and shows the leaf valve seat part in FIG. 従来例とされるリーフバルブシート部を拡大して示す縦断面図である。It is a longitudinal cross-sectional view which expands and shows the leaf valve seat part made into a prior art example.

以下に、図示した実施形態に基づいて、この発明を説明するが、この発明による緩衝器は、たとえば、車両のサスペンションに組み込まれる油圧緩衝器とされ、伸縮作動時に所定の減衰作用をなして、車両の車体と車軸の振動を抑制する。   Hereinafter, the present invention will be described based on the illustrated embodiment. A shock absorber according to the present invention is, for example, a hydraulic shock absorber incorporated in a suspension of a vehicle, and performs a predetermined damping action during expansion and contraction operation. Suppresses vibrations of the vehicle body and axle.

そして、油圧緩衝器は、作動流体たる作動油を収容するシリンダ1内に出入自在に挿通のロッド2の先端部2aに保持されてシリンダ1内に摺動自在に挿入される環状に形成の隔壁体たるピストン3を有し、このピストン3に伸側のリーフバルブ4と圧側のリーフバルブ5を積層してなる。なお、作動流体については、作動油以外の流体からなるとしても良い。   The hydraulic shock absorber is formed in an annularly formed partition wall that is held by the distal end portion 2a of the rod 2 that is inserted and slidably inserted into the cylinder 1 so as to be able to enter and leave the cylinder 1 that stores the working fluid as the working fluid. The piston 3 is a body, and the piston 3 is formed by laminating a leaf valve 4 on the expansion side and a leaf valve 5 on the compression side. The working fluid may be made of a fluid other than the working oil.

詳しく説明すると、ピストン3は、シリンダ1内に摺動自在に挿入されてシリンダ1内に図1中で下方側の圧力室たる一方室R1と、図1中で上方側の圧力室たる他方室R2とを区画すると共に、一方室R1と他方室R2との連通を可能にする内周側に開穿の伸側のポート3aおよび外周側に開穿の圧側のポート3bを有する。   More specifically, the piston 3 is slidably inserted into the cylinder 1 and is inserted into the cylinder 1 as a lower pressure chamber R1 in FIG. 1 and in the other chamber as an upper pressure chamber in FIG. In addition to partitioning R2, it has an opening side port 3a on the inner peripheral side enabling communication between the one chamber R1 and the other chamber R2, and a pressure side port 3b on the outer peripheral side.

それゆえ、油圧緩衝器にあって、ピストン3がシリンダ1内を移動して一方室R1および他方室R2が広狭されるときには、作動油が伸側のポート3aおよび圧側のポート3bを通じて一方室R1と他方室R2とを往復し得ることになる。   Therefore, in the hydraulic shock absorber, when the piston 3 moves in the cylinder 1 and the one chamber R1 and the other chamber R2 are widened and narrowed, the hydraulic oil passes through the expansion side port 3a and the pressure side port 3b. And the other chamber R2.

一方、ピストン3は、他方室R2側端たる一端に伸側のリーフバルブ4を積層させるために、内周側に環状に形成されてリーフバルブ4の内周側端部(符示せず)を固定的に着座させるボス部12と、外周側に環状に形成されてリーフバルブ4の外周側端部(符示せず)を離着座自在に着座させるシート部13とを有し、図示するところでは、ボス部12とシート部13と間に凹部たる環状溝11を区画している。   On the other hand, the piston 3 is formed in an annular shape on the inner peripheral side in order to stack the extended leaf valve 4 on one end which is the other chamber R2 side end, and an inner peripheral side end (not shown) of the leaf valve 4 is provided. There is a boss portion 12 that is fixedly seated, and a seat portion 13 that is annularly formed on the outer peripheral side and seats an outer peripheral side end portion (not shown) of the leaf valve 4 so as to be detachably seated. An annular groove 11 serving as a recess is defined between the boss portion 12 and the sheet portion 13.

なお、ピストン3は、一方室R1側端たる他端に圧側のリーフバルブ5を積層させるために、内周側に環状に形成のボス部3dと、外周側に環状に形成のシート部3eとを有し、ボス部3dおよびシート部3eとの間に環状溝3cを有している。   The piston 3 has a boss portion 3d formed in an annular shape on the inner peripheral side and a seat portion 3e formed in an annular shape on the outer peripheral side in order to stack the pressure-side leaf valve 5 on the other end which is the one chamber R1 side end. And has an annular groove 3c between the boss 3d and the seat 3e.

各側のリーフバルブ4,5は、図示するところでは、それぞれが同径となる環状のリーフバルブ(符示せず)を複数枚積層し、さらに、異径となる環状のリーフバルブ(符示せず)を複数枚積層してなり、内周側端部固定で外周側端部自由の態勢にピストン3に積層されている。   As shown, the leaf valves 4 and 5 on each side are formed by stacking a plurality of annular leaf valves (not shown) each having the same diameter, and further, annular leaf valves (not shown) having different diameters. ) Are stacked, and are fixed to the piston 3 so that the outer peripheral end is fixed and the outer peripheral end is free.

そして、各側のリーフバルブ4,5は、ピストン3をいわゆる上下から挟む態勢でロッド2の先端部2aに介装され、内周側端部がピストン3のボス部12,3dに着座された状態でロッド2の段差部2bとロッド2の先端螺条部2cに螺装のピストンナット6との間に挟持されて定着され、外周側端部がシート部13,3eに離着座自在に着座されて、各側のポート3a,3bの下流側端を開放可能に閉塞している。   The leaf valves 4 and 5 on each side are interposed in the tip 2a of the rod 2 so as to sandwich the piston 3 from above and below, and the inner peripheral ends are seated on the bosses 12 and 3d of the piston 3. In this state, the stepped portion 2b of the rod 2 and the tip thread portion 2c of the rod 2 are clamped and fixed between the screwed piston nut 6, and the outer peripheral side end portions are seated on the seat portions 13 and 3e so as to be separably seated. Thus, the downstream ends of the ports 3a and 3b on each side are closed so as to be openable.

ちなみに、圧側のリーフバルブ5は、図示するところでは、同径の複数枚と異径の複数枚とを積層してなるが、これに代えて、図示しないが、同径の複数枚のみからなるとして異径の複数枚を積層しないとしても良く、また、同径の複数枚からなるのに代えて、一枚からなるとしても良い。   Incidentally, the pressure-side leaf valve 5 is formed by laminating a plurality of sheets having the same diameter and a plurality of sheets having different diameters, but instead of this, it is composed of only a plurality of sheets having the same diameter. As a matter of course, a plurality of sheets having different diameters may not be stacked, and instead of a plurality of sheets having the same diameter, a single sheet may be used.

それゆえ、油圧緩衝器にあっては、ピストン3がシリンダ1内を移動して、たとえば、一方室R1が狭くなるときには、一方室R1からの作動油が伸側のリーフバルブ4の外周側端部を撓ませて、シート部13との間に出現する隙間を通過して他方室R2に流出することになり、このときの圧力損失で所定の減衰作用がなされることになる。   Therefore, in the hydraulic shock absorber, when the piston 3 moves in the cylinder 1 and, for example, the one chamber R1 becomes narrow, the hydraulic oil from the one chamber R1 becomes the outer peripheral side end of the leaf valve 4 on the expansion side. The portion is bent, passes through a gap appearing between the sheet portion 13 and the other chamber R2 and flows out into the other chamber R2, and a predetermined damping action is performed by the pressure loss at this time.

上記と反対に、他方室R2が狭くなるときには、他方室R2からの作動油が圧側のリーフバルブ5の外周側端部を撓ませて、シート部3eとの間に出現する隙間を通過して一方室R1に流出することになり、このときの圧力損失で所定の減衰作用がなされることになる。   Contrary to the above, when the other chamber R2 is narrowed, the hydraulic oil from the other chamber R2 bends the outer peripheral side end portion of the pressure side leaf valve 5 and passes through the gap that appears between the seat portion 3e. On the other hand, it flows out to the chamber R1, and a predetermined damping action is performed by the pressure loss at this time.

以上のように、油圧緩衝器にあって、ピストン3は、一端に伸側のリーフバルブ4を積層させるが、図示するところでは、図2に示すように、一端にあって、ボス部12の内側縁aの高さ位置H1に対して、シート部13の外側縁bの高さ位置H2が一端の外方、つまり、他方室R2側に高くなるとして、ボス部12よりシート部13を高くする高低差を有してなる。   As described above, in the hydraulic shock absorber, the piston 3 is laminated with the leaf valve 4 on the extension side at one end. However, as shown in FIG. The height position H2 of the outer edge b of the seat portion 13 is higher than the height position H1 of the inner edge a on the outer side of one end, that is, on the other chamber R2 side. It has a difference in height.

なお、図2にあっては、説明の都合上、リーフバルブ4を二点鎖線図で示す一枚からなるとし、また、図2中の符号3fは、ピストン3の軸芯部に設けられてロッド2の先端部2aの貫通を許容する孔を示す。   In FIG. 2, for convenience of explanation, it is assumed that the leaf valve 4 is composed of one sheet indicated by a two-dot chain diagram, and the reference numeral 3 f in FIG. 2 is provided on the shaft core portion of the piston 3. The hole which accept | permits the penetration of the front-end | tip part 2a of the rod 2 is shown.

このように、ピストン3の一端にあって、ボス部12に対してシート部13が高くなる高低差を有する場合には、この一端に積層されるリーフバルブ4にあって、内周側端部のボス部12への定着の際に外周側端部がシート部13の上端に押し付けられるようになり、イニシャル荷重を付与することが可能になる。   As described above, when the seat 3 has a height difference with respect to the boss portion 12 at one end of the piston 3, the leaf valve 4 is laminated at the one end, and the inner peripheral side end portion is provided. At the time of fixing to the boss portion 12, the outer peripheral side end portion is pressed against the upper end of the sheet portion 13, and an initial load can be applied.

したがって、リーフバルブ4による圧力損失、つまり、一方室R1からの作動油がリーフバルブ4の外周側端部を撓ませてシート部13との間に出現する隙間を通過して他方室R2に流出する際の圧力損失が、リーフバルブ4にイニシャル荷重が付与されない場合に比較して、大きくなり、高い減衰力の発生が可能とされることになる。   Therefore, the pressure loss due to the leaf valve 4, that is, the hydraulic oil from one chamber R1 deflects the outer peripheral side end of the leaf valve 4 and passes through the gap that appears between the seat portion 13 and flows out into the other chamber R2. As a result, the pressure loss is larger than when the initial load is not applied to the leaf valve 4, and a high damping force can be generated.

ちなみに、図示しないが、圧側のリーフバルブ5を積層させるピストン3の他端にあっても、ボス部3dよりシート部3eを高くする高低差を有してなるとしても良いことはもちろんである。   Incidentally, although not shown, it goes without saying that even at the other end of the piston 3 on which the pressure-side leaf valve 5 is laminated, there may be a height difference that makes the seat portion 3e higher than the boss portion 3d.

次に、ピストン3の一端は、図示するところにあって、ボス部12の内側縁aからシート部13の外側縁bまで連続する面が図2中で左側となるピストン3の内側から図2中で右側となるピストン3の外側に向けて徐々に高くなる同一湾曲面上にあるとされている。   Next, one end of the piston 3 is shown in the figure, and the surface from the inner edge a of the boss portion 12 to the outer edge b of the seat portion 13 is the left side in FIG. It is said that they are on the same curved surface that gradually increases toward the outside of the piston 3 on the right side.

ピストン3の一端にあって、ボス部12の内周縁aとシート部13の外側縁bとの間の面が内側から外側に向けて徐々に高くなる同一湾曲面上にあるとされるから、ボス部12がほぼ水平面に近い状態になる。   Since the surface between the inner peripheral edge a of the boss portion 12 and the outer edge b of the seat portion 13 is on the same curved surface that gradually increases from the inside toward the outside at one end of the piston 3, The boss portion 12 is almost in a horizontal plane.

そして、ピストン3の一端にあって、ボス部12の外側縁cからシート部13の外側縁bとの間の面が内側から外側に向けて徐々に高くなる同一湾曲面上にあるとされるから、リーフバルブ4がピストン3の一端に積層されるとき、ボス部12に定着される内周側端部と、ボス部12の外側縁cより外側となる部分4aとの繋がり部分4bに局部的な変形が発現されなくなる。   The surface between the outer edge c of the boss portion 12 and the outer edge b of the seat portion 13 is on the same curved surface that gradually increases from the inside toward the outside at one end of the piston 3. Thus, when the leaf valve 4 is stacked on one end of the piston 3, the inner peripheral side end fixed to the boss portion 12 and the portion 4a outside the outer edge c of the boss portion 12 are locally connected to the connection portion 4b. General deformation is not expressed.

すなわち、前記したように、図3に示す従来例では、ボス部P1とシート部P2とが有する高低差は、ボス部P1とシート部P2とで形成される円錐面で具現化されるから、積層されるリーフバルブVにあっては、ボス部P1に積層される内周側端部と、ボス部P1の外側縁P3より外側となる部分V1との繋がり部分V2に局部的な変形が起きる。   That is, as described above, in the conventional example shown in FIG. 3, the height difference between the boss part P1 and the sheet part P2 is embodied by the conical surface formed by the boss part P1 and the sheet part P2. In the leaf valve V to be laminated, local deformation occurs in the connection portion V2 between the inner peripheral side end portion laminated on the boss portion P1 and the portion V1 outside the outer edge P3 of the boss portion P1. .

それに対して、この発明にあっては、図2に示すように、リーフバルブ4の内周側端部を定着させるボス部12を水平面に近くするから、リーフバルブ4の内周側端部がボス部12に定着されるとき、リーフバルブ4の内周側端部と、ボス部12の外側縁cより外側となる部分4aとの繋がり部分4bに局部的な変形が発現されなくなる。   On the other hand, in the present invention, as shown in FIG. 2, since the boss portion 12 that fixes the inner peripheral side end of the leaf valve 4 is close to a horizontal plane, the inner peripheral side end of the leaf valve 4 is When fixing to the boss portion 12, local deformation is not expressed in the connecting portion 4 b between the inner peripheral side end portion of the leaf valve 4 and the portion 4 a outside the outer edge c of the boss portion 12.

そして、一端に積層されたリーフバルブ4を全体として見ると、ボス部12の内側縁aとシート部13の外側縁bとの間の面を内側から外側に向けて徐々に高くなる同一湾曲面上にあるとするから、リーフバルブ4がボス部12からシート部13にかけて変局部的な変形なくして連続する自然な変形状態になる。   And when the leaf valve 4 laminated | stacked on one end is seen as a whole, the same curved surface which becomes high gradually toward the outside from the inner side to the outer side between the inner edge a of the boss part 12 and the outer edge b of the seat part 13 Since it exists in the upper part, the leaf valve 4 will be in the continuous natural deformation state from the boss | hub part 12 to the sheet | seat part 13 without a local deformation | transformation.

したがって、リーフバルブ4の内周側端部をボス部12に定着する力が区々となったり、あるいは、ボス部12の高さや外径に寸法誤差があったりしても、上記の繋がり部分4bにおける変形量が大きくならず、リーフバルブ4の外周側端部に付与されるイニシャル荷重が区々にならないようにすることが可能になり、油圧緩衝器において、減衰力を設定通りに発生して、乗車フィーリングを安定させてバラツキをなくし、また、乗車フィーリングの再現性を良くすることが可能になる。   Accordingly, even if the force for fixing the inner peripheral side end of the leaf valve 4 to the boss portion 12 varies, or there is a dimensional error in the height or outer diameter of the boss portion 12, the above connected portion The amount of deformation at 4b does not increase, and the initial load applied to the outer peripheral side end of the leaf valve 4 can be prevented from being divided, and a damping force is generated as set in the hydraulic shock absorber. This makes it possible to stabilize the ride feeling and eliminate variations, and improve the reproducibility of the ride feeling.

上記したところでは、ピストン3の一端において、ボス部12の内側縁aからシート部12の外側縁bまで連続する面が内側から外側に向けて徐々に高くなる同一湾曲面上にあるとしたが、これに代えて、図示しないが、内側から外側に向けて徐々に高くなる同一円弧面上にあるとしても良い。ちなみに、円弧面は、曲率を同じにして曲がる面であるが、湾曲面は、曲率を同じにしないで曲がる面であり、二次曲線からなる面や楕円を形成する面を含む。   As described above, at one end of the piston 3, the continuous surface from the inner edge a of the boss portion 12 to the outer edge b of the seat portion 12 is on the same curved surface that gradually increases from the inner side toward the outer side. Alternatively, although not shown, they may be on the same circular arc surface that gradually increases from the inside toward the outside. Incidentally, the arc surface is a surface that bends with the same curvature, but the curved surface is a surface that bends without making the curvature the same, and includes a surface formed of a quadratic curve and a surface that forms an ellipse.

そして、ボス部12の内側縁aからシート部13の外側縁bまで連続する面が内側から外側に向けて徐々に高くなる同一円弧面上にある場合にも、ボス部12は、極めて水平面に近いほぼ水平面とされることになり、上記した繋がり部分4bにおける局部的な変形を発現させないようにすることが可能になる。   Even when the continuous surface from the inner edge a of the boss portion 12 to the outer edge b of the seat portion 13 is on the same circular arc surface that gradually increases from the inner side toward the outer side, the boss portion 12 is extremely horizontal. It becomes a nearly horizontal plane, and it becomes possible to prevent the above-described local deformation in the connecting portion 4b.

そして、このことからすると、ボス部12は、上記した同一湾曲面上や同一円弧面上にあることに代えて、図示しないが、水平面からなるとしても良く、この場合であっても、ボス部12の外側縁cとシート部13の外側縁bとの間が内側から外側に向けて徐々に高くなる同一湾曲面上あるいは同一円弧面上にあるから、ボス部12に積層される伸側のリーフバルブ4における内周側端部と、この内周側端部に外側となる部分4aとの繋がり部分4bに局部的な変形を発現させないようにすることが可能になる。ちなみに、シート部13については、図示しないが、上記した同一湾曲面あるいは同一円弧面からなるのに代えて、水平面からなるとしても良い。   From this point of view, the boss portion 12 may be formed of a horizontal plane (not shown) instead of being on the same curved surface or the same circular arc surface as described above. 12 between the outer edge c of the sheet 12 and the outer edge b of the sheet portion 13 is on the same curved surface or the same arc surface that gradually increases from the inside toward the outside. It is possible to prevent local deformation from occurring in the connecting portion 4b between the inner peripheral side end portion of the leaf valve 4 and the outer peripheral portion 4a. Incidentally, although not shown, the sheet portion 13 may be formed of a horizontal plane instead of the same curved surface or the same arc surface.

前記したところでは、隔壁体がシリンダ1内に挿入のピストン3とされる場合を例にして説明したが、この発明が意図するところからすると、図示しないが、隔壁体がシリンダ1内に設けられるベースリーフバルブにおけるリーフバルブディスクとされるとしても良い。   In the above description, the case where the partition body is the piston 3 inserted into the cylinder 1 has been described as an example. However, from the intention of the present invention, the partition body is provided in the cylinder 1 although not illustrated. It may be a leaf valve disk in the base leaf valve.

そして、前記したところでは、ピストン3の一端にボス部12とシート部13とで間に凹部たる環状溝11が形成されるとしたが、この発明の具現化の観点からすると、これに代えて、図示しないが、上記の凹部がボス部12とシート部13およびボス部12とシート部13とを左右で連結する連結部とで区画される独立型の開口窓からなるとしても良い。そして、この場合には、ボス部12の内側縁cとシート部13の外側縁bとの間となる同一湾曲面あるいは同一円弧面に上記の連結部の上面を含むことになる。   And in the place mentioned above, although it was supposed that the annular groove 11 which is a recessed part between the boss | hub part 12 and the sheet | seat part 13 was formed in the end of piston 3, from a viewpoint of implementation of this invention, it replaces with this Although not shown in the drawings, the concave portion may be composed of a stand-alone opening window defined by a boss portion 12 and a sheet portion 13 and a connecting portion that connects the boss portion 12 and the sheet portion 13 on the left and right. In this case, the upper surface of the connecting portion is included in the same curved surface or the same arc surface between the inner edge c of the boss portion 12 and the outer edge b of the seat portion 13.

また、図示したところでは、油圧緩衝器が倒立型に設定されてなるとしたが、油圧緩衝器が正立型に設定されてなるとしても、この発明の具現化が可能になることはもちろんである。   Further, in the illustrated case, the hydraulic shock absorber is set to be an inverted type, but it is needless to say that the present invention can be realized even if the hydraulic shock absorber is set to an upright type. .

1 シリンダ
2 ロッド
2a 先端部
2b 段差部
2c 先端螺条部
3 隔壁体たるピストン
3a,3b ポート
3c,11 環状溝
3d,12 ボス部
3e,13 シート部
3f 孔
4,5 リーフバルブ
4a 外側となる部分
4b 繋がり部分
5a 透孔
6 ピストンナット
a 内側縁
b,c 外側縁
H1,H2 高さ位置
R1 圧力室たる一方室
R2 圧力室たる他方室
DESCRIPTION OF SYMBOLS 1 Cylinder 2 Rod 2a Tip part 2b Step part 2c Tip thread part 3 Piston 3a, 3b Port 3c, 11 Annular groove 3d, 12 Boss part 3e, 13 Seat part 3f Hole 4, 5 Leaf valve 4a Outside Part 4b Connection part 5a Through hole 6 Piston nut a Inner edge b, c Outer edge H1, H2 Height position R1 One chamber as pressure chamber R2 Other chamber as pressure chamber

Claims (2)

圧力室を区画する隔壁体と、この隔壁体に積層されるリーフバルブとを有し、このリーフバルブの内周側端部を定着させるボス部と、上記リーフバルブの外周側端部を離着座させるシート部とを有し、上記ボス部と上記シート部との間に上記ボス部より上記シート部を高くする高低差を有してなる緩衝器において、
上記ボス部の外側縁から上記シート部の外側縁の間が上記隔壁体の内側から外側に向けて徐々に高くなる同一湾曲面上あるいは同一円弧面上にあるようにし、
上記ボス部が上記湾曲面上あるいは上記円弧面上にあるか、または、水平面とされてなることを特徴とする緩衝器。
A partition body for partitioning the pressure chamber, a leaf valve stacked on the partition body, a boss for fixing the inner peripheral end of the leaf valve, and an outer peripheral end of the leaf valve are seated A shock absorber having a height difference that makes the sheet portion higher than the boss portion between the boss portion and the sheet portion.
The space between the outer edge of the boss portion and the outer edge of the sheet portion is on the same curved surface or the same arc surface that gradually increases from the inner side to the outer side of the partition body,
The shock absorber according to claim 1, wherein the boss portion is on the curved surface or the arc surface, or is a horizontal surface.
上記シート部と上記ボス部との間に凹部が設けられ、
この凹部は、上記ボス部と、上記シート部と、上記ボス部と上記シート部を連結する連結部とで区画される開口窓からなり、
上記湾曲面あるいは上記円弧面は、上記連結部を含んでなる請求項1に記載の緩衝器。
A recess is provided between the sheet portion and the boss portion,
The concave portion includes an opening window defined by the boss portion, the sheet portion, and a connecting portion that connects the boss portion and the sheet portion.
The shock absorber according to claim 1, wherein the curved surface or the circular arc surface includes the connecting portion.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2022209576A1 (en) * 2021-03-29 2022-10-06 日立Astemo株式会社 Shock absorber and valve device

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Publication number Priority date Publication date Assignee Title
JPS499431U (en) * 1972-04-26 1974-01-26
JP2004176775A (en) * 2002-11-26 2004-06-24 Kayaba Ind Co Ltd Damping force generating part structure
JP2010107003A (en) * 2008-10-31 2010-05-13 Hitachi Automotive Systems Ltd Shock absorber
JP2011179550A (en) * 2010-02-26 2011-09-15 Hitachi Automotive Systems Ltd Shock absorber

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS499431U (en) * 1972-04-26 1974-01-26
JP2004176775A (en) * 2002-11-26 2004-06-24 Kayaba Ind Co Ltd Damping force generating part structure
JP2010107003A (en) * 2008-10-31 2010-05-13 Hitachi Automotive Systems Ltd Shock absorber
JP2011179550A (en) * 2010-02-26 2011-09-15 Hitachi Automotive Systems Ltd Shock absorber

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2022209576A1 (en) * 2021-03-29 2022-10-06 日立Astemo株式会社 Shock absorber and valve device
JPWO2022209576A1 (en) * 2021-03-29 2022-10-06
KR20230130145A (en) 2021-03-29 2023-09-11 히다치 아스테모 가부시키가이샤 Shock absorber and valve device
JP7378010B2 (en) 2021-03-29 2023-11-10 日立Astemo株式会社 Shock absorbers and valve devices
DE112022001839T5 (en) 2021-03-29 2024-02-15 Hitachi Astemo, Ltd. Shock absorber and valve device

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