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JP4194426B2 - Mold for optical element molding - Google Patents

Mold for optical element molding Download PDF

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Publication number
JP4194426B2
JP4194426B2 JP2003173737A JP2003173737A JP4194426B2 JP 4194426 B2 JP4194426 B2 JP 4194426B2 JP 2003173737 A JP2003173737 A JP 2003173737A JP 2003173737 A JP2003173737 A JP 2003173737A JP 4194426 B2 JP4194426 B2 JP 4194426B2
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JP
Japan
Prior art keywords
mold
optical element
slide member
molding
inclined surface
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP2003173737A
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Japanese (ja)
Other versions
JP2004098654A (en
Inventor
健太郎 野村
啓二 福本
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Canon Inc
Original Assignee
Canon Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Canon Inc filed Critical Canon Inc
Priority to JP2003173737A priority Critical patent/JP4194426B2/en
Priority to CNB031495974A priority patent/CN100368171C/en
Publication of JP2004098654A publication Critical patent/JP2004098654A/en
Application granted granted Critical
Publication of JP4194426B2 publication Critical patent/JP4194426B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Description

【0001】
【発明の属する技術分野】
本発明は光学素子成形用金型及びその金型により成形された光学素子成形品に関するものである。
【0002】
【従来の技術】
従来、特開平10−180819号公報に開示されているように、長尺の光学素子を離型する場合に、型開き時において光学素子の光学機能面に略垂直な2つの端面のうち、型の外側に近い面を先に離型させておくことにより、離型時の各キャビティ間またはキャビティ内の離型力の不均一によりエジェクタプレートが傾いた状態で離型が行われても、光学面の変形を防止することができるようにした技術が知られている。
【0003】
【特許文献1】
特開平10−180819号公報。
【0004】
【発明が解決しようとする課題】
しかしながら、上記の公報に開示されているような型構造では、部品点数の増加、構造の複雑化に伴う型製作費用の増加や納期延長等の問題があった。また、型の外形寸法の大型化により既存の機器では対応できなくなってしまうという問題点もあった。特に、走査光学系のレンズ等といった長尺光学素子の成形に上記公報記載の型構造を適用すると、型の外形寸法が大型化しやすい。
【0005】
従って、本発明は上述した課題に鑑みてなされたものであり、その目的は、装置の大型化やコストの増加を抑制しながら、光学素子を変形させることなく離型できるようにすることである。
【0006】
【課題を解決するための手段】
上述した課題を解決し、目的を達成するために、本発明に係わる光学素子成形用金型は、光学機能面と該光学機能面を取り囲む側面とを有する樹脂製の光学素子を成形するための光学素子成形用金型であって、前記光学機能面を成形する鏡面部を有する一組の型部材と、前記側面の一部を成形するための成形面と、該成形面とは反対側の面に位置する斜面部とを有するスライド部材とを具備し、前記一組の型部材のうちの一つには前記スライド部材の斜面部と係合する傾斜面が形成されており、型締め時に前記スライド部材の斜面部が前記型部材の傾斜面に係合することにより前記スライド部材の位置が規制され、型開動作開始と同時に前記斜面部と前記傾斜面とが離れ、前記光学素子の膨張を許容するように型開方向と垂直な方向に前記スライド部材が移動可能になることを特徴としている。
【0007】
また、この発明に係わる光学素子成形用金型において、型開方向と垂直な方向の前記スライド部材の移動範囲を規制する規制手段をさらに具備し、前記スライド部材の移動範囲は、前記光学素子の膨張量以上で、かつ、前記型部材の傾斜面と前記スライド部材の斜面部が係合可能な範囲以下であることを特徴としている。
【0011】
【発明の実施の形態】
以下、本発明の好適な一実施形態について、添付図面を参照して詳細に説明する。
【0012】
図1は、本発明の一実施形態に係わる金型を成形品の中心で切断した断面図であり、多数個取りの型の1つのキャビティを示している。本実施形態の金型は、図6に示すようなレーザー走査光学系に用いられる光学素子を成形するためのものである。
【0013】
1は走査光学系のレンズである光学素子成形品、2はゲートの反対側に位置するスライド部材で可動側型板7に設けられた溝の中に収まっており成形品の長手方向のみに移動が可能となっている。3はスライド部材2に固定されておりスライド部材2の移動を成形品の長手方向について規制する規制部材で規制部材3はスライド部材2よりも可動側型板側に突出しており、その突出部分は可動側型板が有する穴の中にガタを持った状態で収納されている。4はスライド部材2の移動を離型方向と略水平な方向に移動することを規制する規制部材、5、6は成形品を所望の形状に成形する鏡面駒、7は可動側型板、8は固定側型板、9,10,11はエジェクタピン、12,13はエジェクタプレートである。
【0014】
図1は、固定側型板8と可動側型板7を閉じ、樹脂をキャビティーに射出した後に冷却・固化を行っている状態において金型を成形品の中心で切断した図である。この図において、スライド部材2は、その外側斜面2aが固定側型板8の内側斜面8aに当接することにより位置を規制されている。なお、上記スライド部材2の外側への移動量は、規制部材3により規制されており、成形品1の膨張量以上で、かつ、固定側型板8と可動側型板7が開いた状態から閉じるときに、固定側型板8の内側斜面8aと移動部材2の外側斜面2aが係合可能な位置を越えない範囲に設定されている。また、スライド部材2の内側への移動量は外側への移動量とほぼ同等の移動量に設定されている。
【0015】
図2は図1に示す型が開いた状態を示す断面図、図3は型が開いて光学素子成形品を突き出した直後の断面図、図4は図3のA−A矢視図である。
【0016】
図1の状態から型が開かれて図2の状態になると、外側斜面2aが固定側型板8の内側斜面8aに当接することにより位置を規制されていたスライド部材2は外方に移動可能となる。
【0017】
図2の状態から図3の状態に移行するとき、光学素子成形品1が可動側の鏡面駒4から離型すると同時にキャビティーより受けていた応力が解き放たれ成形品は膨張を開始する。その膨張に伴いスライド部材2は成形品が膨張した方向に膨張量分だけスライドし、光学素子成形品1の膨張を許容する。これにより、離型時において離型方向と略垂直方向の面1aよりの応力を受けることなく離型することが可能となり、所望の光学機能面の精度を十分に満足し光学機能面の再現性がよい光学素子成形品を提供することが可能となる。
【0018】
なお、本発明は図1乃至図4に示される走査光学系レンズのような長尺光学素子成形品以外にも、図5及び図7に示されるような撮影光学系のプリズム14等の角形レンズや丸形のレンズにも適用することが可能である。
【0019】
以上のように、上記の実施形態によれば、離型時において光学素子成形品の離型方向と垂直方向に移動可能なスライド部材が光学素子成形品の膨張力により成形品の膨張量分移動することにより、成形品の離型方向と略垂直な面にかかる歪みを最小限に抑え、所望の光学性能が得られる光学素子成形品を得ることができる。
【0020】
また、従来の型と比較して部品点数の削減、構造の簡素化が可能となり、それに伴う型製作費用の削減が可能となる。
【0021】
また、型構造の簡素化に伴い型の外形寸法の小型化が可能となり、従来の装置での対応が可能となる。
【0022】
【発明の効果】
以上説明したように、本発明によれば、装置の大型化やコストの増加を抑制しながら、光学素子を変形させることなく離型できるようにすることが可能となる。
【図面の簡単な説明】
【図1】本発明の一実施形態に係わる金型を成形品の中心で切断した断面図である。
【図2】図1に示す型が開き、成形品を突き出す直前の状態を示す図である。
【図3】図2においてエジェクタピンが成形品を突き出し、成形品が離型した直後の状態を示す図である。
【図4】図3のA−A矢視図である。
【図5】撮影光学系のプリズムを成形する金型を成形品の中心で切断した断面図である。
【図6】レーザー走査光学系に用いられる光学素子成形品の斜視図である。
【図7】撮影光学系に用いられるプリズムの斜視図である。
【符号の説明】
1 光学素子成形品
2 スライド部材
3 規制部材
4 規制部材
5 可動側鏡面駒
6 固定側鏡面駒
7 可動側型板
8 固定側型板
9 エジェクタピン
10 エジェクタピン
11 エジェクタピン
12 エジェクタプレート
13 エジェクタプレート
14 光学素子成形品
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to an optical element molding die and an optical element molded product molded by the die.
[0002]
[Prior art]
Conventionally, as disclosed in Japanese Patent Application Laid-Open No. 10-180819, when releasing a long optical element, a mold is selected from two end faces substantially perpendicular to the optical function surface of the optical element when the mold is opened. By releasing the surface near the outside of the mold first, even if the mold is released while the ejector plate is tilted due to the unevenness of the mold release force between the cavities or in the cavity at the time of mold release, the optical There is known a technique capable of preventing the deformation of the surface.
[0003]
[Patent Document 1]
JP-A-10-180819.
[0004]
[Problems to be solved by the invention]
However, the mold structure as disclosed in the above publication has problems such as an increase in the number of parts, an increase in mold production cost due to a complicated structure, and an extended delivery time. In addition, there is a problem in that existing equipment cannot be used due to an increase in the outer dimensions of the mold. In particular, when the mold structure described in the above publication is applied to molding a long optical element such as a lens of a scanning optical system, the outer dimension of the mold is likely to be increased.
[0005]
Therefore, the present invention has been made in view of the above-described problems, and an object of the present invention is to enable mold release without deforming an optical element while suppressing an increase in size and cost of the apparatus. .
[0006]
[Means for Solving the Problems]
In order to solve the above-described problems and achieve the object, an optical element molding die according to the present invention is for molding a resin optical element having an optical functional surface and a side surface surrounding the optical functional surface. an optical element molding die, and a pair of mold members having a mirror surface part for forming the optically functional surface, and the molding surface for molding a portion of the side surface, opposite to the molded surface ; and a slide member having a slope portion located on the surface, the one of the pair of mold members are inclined surfaces formed for engagement with the inclined surface portion of the slide member, when the mold clamping The position of the slide member is regulated by engaging the inclined surface of the slide member with the inclined surface of the mold member, and the inclined surface and the inclined surface are separated at the same time as the mold opening operation starts, and the optical element expands. the scan in the mold opening direction perpendicular to allow Id member is characterized by comprising movable.
[0007]
In the optical element molding die according to the present invention, mold opening direction and further comprising a restricting means for restricting the moving range of the vertical direction of the sliding member, moving range of the sliding member, the optical element The amount of expansion is equal to or larger than the range in which the inclined surface of the mold member and the inclined surface of the slide member can be engaged with each other.
[0011]
DETAILED DESCRIPTION OF THE INVENTION
Hereinafter, a preferred embodiment of the present invention will be described in detail with reference to the accompanying drawings.
[0012]
FIG. 1 is a cross-sectional view of a mold according to an embodiment of the present invention cut at the center of a molded product, and shows one cavity of a multi-piece mold. The mold of this embodiment is for molding an optical element used in a laser scanning optical system as shown in FIG.
[0013]
1 is an optical element molded product, which is a lens of a scanning optical system, and 2 is a slide member located on the opposite side of the gate and is accommodated in a groove provided in the movable side mold plate 7 and moves only in the longitudinal direction of the molded product. Is possible. Reference numeral 3 denotes a restricting member that is fixed to the slide member 2 and restricts the movement of the slide member 2 in the longitudinal direction of the molded product. The restricting member 3 protrudes toward the movable side mold plate from the slide member 2, and the protruding portion is It is housed in a hole in the movable side mold plate with a backlash. 4 is a restricting member that restricts the movement of the slide member 2 in a direction substantially horizontal to the mold release direction, 5 and 6 are specular pieces for forming a molded product into a desired shape, 7 is a movable side mold plate, Is a fixed side template, 9, 10 and 11 are ejector pins, and 12 and 13 are ejector plates.
[0014]
FIG. 1 is a view in which the mold is cut at the center of the molded product in a state where the fixed mold plate 8 and the movable mold plate 7 are closed and the resin is injected into the cavity and then cooled and solidified. In this figure, the position of the slide member 2 is regulated by the outer inclined surface 2 a coming into contact with the inner inclined surface 8 a of the fixed-side template 8. Note that the amount of movement of the slide member 2 to the outside is regulated by the regulating member 3 and is greater than or equal to the amount of expansion of the molded product 1 and the fixed side mold plate 8 and the movable side template 7 are open. When closed, the inner slope 8a of the fixed-side template 8 and the outer slope 2a of the moving member 2 are set in a range that does not exceed a position where the engagement is possible. Further, the amount of movement of the slide member 2 to the inside is set to a movement amount substantially equal to the amount of movement to the outside.
[0015]
2 is a cross-sectional view showing a state where the mold shown in FIG. 1 is opened, FIG. 3 is a cross-sectional view immediately after the mold is opened and an optical element molded product is protruded, and FIG. 4 is a view taken along the line AA in FIG. .
[0016]
When the mold is opened from the state of FIG. 1 to the state of FIG. 2, the slide member 2 whose position is regulated by the outer inclined surface 2 a coming into contact with the inner inclined surface 8 a of the fixed-side mold plate 8 can move outward. It becomes.
[0017]
When shifting from the state of FIG. 2 to the state of FIG. 3, the optical element molded product 1 is released from the movable mirror piece 4 and the stress received from the cavity is released and the molded product starts to expand. Along with the expansion, the slide member 2 slides by the amount of expansion in the direction in which the molded product expands, and allows the optical element molded product 1 to expand. As a result, the mold can be released without receiving stress from the surface 1a in the direction substantially perpendicular to the mold release direction at the time of mold release, sufficiently satisfying the accuracy of the desired optical function surface and the reproducibility of the optical function surface. Therefore, it is possible to provide an optical element molded article with good quality.
[0018]
In addition to the long optical element molded product such as the scanning optical system lens shown in FIGS. 1 to 4, the present invention is a rectangular lens such as the prism 14 of the photographing optical system shown in FIGS. 5 and 7. It can also be applied to round and round lenses.
[0019]
As described above, according to the above-described embodiment, the slide member that can move in the direction perpendicular to the mold release direction of the optical element molded product at the time of mold release moves by the expansion amount of the molded product by the expansion force of the optical element molded product. By doing so, it is possible to obtain an optical element molded product that can minimize the distortion applied to the surface substantially perpendicular to the mold release direction of the molded product and obtain desired optical performance.
[0020]
In addition, the number of parts can be reduced and the structure can be simplified as compared with the conventional mold, and the mold production cost can be reduced accordingly.
[0021]
In addition, with the simplification of the mold structure, the outer dimensions of the mold can be reduced, and the conventional apparatus can be used.
[0022]
【The invention's effect】
As described above, according to the present invention, it is possible to release a mold without deforming the optical element while suppressing an increase in size and cost of the apparatus.
[Brief description of the drawings]
FIG. 1 is a cross-sectional view of a mold according to an embodiment of the present invention cut at the center of a molded product.
FIG. 2 is a view showing a state immediately before the mold shown in FIG. 1 is opened and a molded product is ejected;
FIG. 3 is a view showing a state immediately after the ejector pin protrudes a molded product and the molded product is released from the mold in FIG. 2;
4 is a view taken in the direction of arrows AA in FIG. 3;
FIG. 5 is a cross-sectional view of a mold for forming a prism of a photographic optical system cut at the center of a molded product.
FIG. 6 is a perspective view of an optical element molded product used in a laser scanning optical system.
FIG. 7 is a perspective view of a prism used in the photographing optical system.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 Optical element molded product 2 Slide member 3 Restriction member 4 Restriction member 5 Movable side specular piece 6 Fixed side specular piece 7 Movable side template 8 Fixed side template 9 Ejector pin 10 Ejector pin 11 Ejector pin 12 Ejector plate 13 Ejector plate 14 Optical element molded product

Claims (2)

光学機能面と該光学機能面を取り囲む側面とを有する樹脂製の光学素子を成形するための光学素子成形用金型であって、
前記光学機能面を成形する鏡面部を有する一組の型部材と、
前記側面の一部を成形するための成形面と、該成形面とは反対側の面に位置する斜面部とを有するスライド部材とを具備し、
前記一組の型部材のうちの一つには前記スライド部材の斜面部と係合する傾斜面が形成されており、
型締め時に前記スライド部材の斜面部が前記型部材の傾斜面に係合することにより前記スライド部材の位置が規制され、型開動作開始と同時に前記斜面部と前記傾斜面とが離れ、前記光学素子の膨張を許容するように型開方向と垂直な方向に前記スライド部材が移動可能になることを特徴とする光学素子成形用金型。
An optical element molding die for molding a resin optical element having an optical functional surface and a side surface surrounding the optical functional surface,
A set of mold members having a mirror surface portion for molding the optical functional surface;
A slide member having a molding surface for molding a part of the side surface and an inclined surface located on the surface opposite to the molding surface;
Wherein the one of the pair of mold members are inclined surfaces formed for engagement with the inclined surface portion of said slide member,
Wherein during clamping slope portion of the slide member the position of the slide member by engaging is regulated on the inclined surface of the mold member, the mold opening operation start and said inclined surface portion and the inclined surface moves away simultaneously, the optical An optical element molding die, wherein the slide member is movable in a direction perpendicular to the mold opening direction so as to allow expansion of the element.
型開方向と垂直な方向の前記スライド部材の移動範囲を規制する規制手段をさらに具備し、前記スライド部材の移動範囲は、前記光学素子の膨張量以上で、かつ、前記型部材の傾斜面と前記スライド部材の斜面部が係合可能な範囲以下であることを特徴とする請求項1に記載の光学素子成形用金型。  And a regulating means for regulating a movement range of the slide member in a direction perpendicular to a mold opening direction, the movement range of the slide member being equal to or larger than an expansion amount of the optical element, and an inclined surface of the mold member. 2. The optical element molding die according to claim 1, wherein the slope of the slide member is not more than a engageable range.
JP2003173737A 2002-07-18 2003-06-18 Mold for optical element molding Expired - Fee Related JP4194426B2 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
JP2003173737A JP4194426B2 (en) 2002-07-18 2003-06-18 Mold for optical element molding
CNB031495974A CN100368171C (en) 2002-07-18 2003-07-17 Metal mould for forming optical element and optical element forming product

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2002210158 2002-07-18
JP2003173737A JP4194426B2 (en) 2002-07-18 2003-06-18 Mold for optical element molding

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JP4194426B2 true JP4194426B2 (en) 2008-12-10

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CN101604124B (en) * 2005-06-08 2011-07-27 佳能株式会社 Mold, pattern forming method, and pattern forming apparatus
CN100553924C (en) * 2006-01-18 2009-10-28 鸿富锦精密工业(深圳)有限公司 Forming die for optical element
WO2011037038A1 (en) * 2009-09-28 2011-03-31 コニカミノルタオプト株式会社 Die and molding method
US8605360B2 (en) * 2010-02-15 2013-12-10 Canon Kabushiki Kaisha Plastic lens, and molding method and molding mold therefor
FR3001653B1 (en) * 2013-02-04 2015-06-26 Snecma MOLD COMPRISING SHELLS AND AT LEAST ONE DRAWER

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JPS60171233A (en) * 1984-02-15 1985-09-04 Matsushita Electric Ind Co Ltd Glass lens molding device
JP4467671B2 (en) * 1998-08-24 2010-05-26 キヤノン株式会社 Optical element molding apparatus and molding method
JP4574804B2 (en) * 2000-06-26 2010-11-04 オリンパス株式会社 Mold device for optical element having rotationally asymmetric surface

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JP2004098654A (en) 2004-04-02
CN100368171C (en) 2008-02-13

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