JP4248807B2 - Resin thrust washer and manufacturing method thereof - Google Patents

Resin thrust washer and manufacturing method thereof Download PDF

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Publication number
JP4248807B2
JP4248807B2 JP2002158970A JP2002158970A JP4248807B2 JP 4248807 B2 JP4248807 B2 JP 4248807B2 JP 2002158970 A JP2002158970 A JP 2002158970A JP 2002158970 A JP2002158970 A JP 2002158970A JP 4248807 B2 JP4248807 B2 JP 4248807B2
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JP
Japan
Prior art keywords
thrust washer
resin
welding
resin thrust
introduction space
Prior art date
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Expired - Fee Related
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JP2002158970A
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Japanese (ja)
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JP2003343549A (en
Inventor
延幸 上辻
清人 七尾
納 八木田
誠仁 山見
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Toray Plastics Precision Co Ltd
Original Assignee
Toyo Plastics Seiko Co Ltd
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Priority to JP2002158970A priority Critical patent/JP4248807B2/en
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Description

【0001】
【発明が属する技術分野】
本発明は回転体の軸部に装着する樹脂製スラストワッシャー及びその製造方法に関し、さらに詳しくは、高寸法精度の製品を低コストで得られるようにした樹脂製スラストワッシャー及びその製造方法に関する。
【0002】
【従来の技術】
スラストワッシャーは機械装置における回転体の軸部の周りに、その保護部品として設けられるものである。
【0003】
図6は、このようなスラストワッシャーとして、二つの相対回転する回転体61,62間における一方の回転体62に装着される場合を示す。スラストワッシャー63は、樹脂によりドーナツ状の環状体64として一体に射出成形され、内部に内周側から半径方向外側へ延びる潤滑油の導入空間65を有し、さらに導入空間65から背面の外側に抜ける管状突起66を有している。そして、その管状突起66を、回転体62の軸部(図示せず)の周りに設けられた嵌合孔70に挿入することにより、その回転体62に対して同心状に支持されている。
【0004】
回転体62が回転すると遠心力により潤滑油が矢印のように半径方向に流動してスラストワッシャー63の導入空間65に流入し、その導入空間65から管状突起66を経て流出し回転体62の表面を潤滑する。また、潤滑油は環状体64と他方の回転体61との隙間にも流入し、両回転体61,62間を潤滑する。
【0005】
しかし、従来のスラストワッシャー63は、一体の構造体として射出成形されているため、上記のように潤滑油の導入空間65が半径方向外側へ凹んだ状態に形成されていることで、この導入空間65を抜き型などのスライド機構を備えた金型で成形しなければならない。そのため金型構造が複雑になり、かつ抜き型で成形された成形品はバリが出やすいため、そのバリを修正するための後加工の作業が多くなるという問題があった。したがって、上記構造からなるスラストワッシャーの製造には、一般的にコストアップになることは避けられず、かつ成形品の寸法精度も出し憎いという問題があった。
【0006】
【発明が解決しようとする課題】
本発明の目的は、上述した従来の問題を解消し、高寸法精度の製品を低コストで製造可能にした樹脂製スラストワッシャー及びその製造方法を提供することにある。
【0007】
【課題を解決するための手段】
上記目的を達成する本発明の樹脂製スラストワッシャーは、以下の(1)の構成からなる。
(1)ドーナツ状の環状体を成している樹脂製スラストワッシャーにおいて、該ドーナツ状環状体の内部に内周側から半径方向外側へ延びるとともに該環状体の中心軸方向からみて外周縁形状が半径方向外側に膨らむ複数の円弧状を組合せてなる形状を呈した潤滑油の環状導入空間を形成し、かつ、該円弧状の外周縁近傍の内側に、該環状導入空間からワッシャーの背面外側へ向けて前記潤滑油を流動させる流路を内部に有する管状突起を前記環状の周方向に間欠的に設けるとともに、前記ドーナツ状環状体を該環状体の中心軸に直交する面で前記環状導入空間を二分した形状を有する二つの半割部材から構成し、該二つの半割部材を外周部で互いに接着して構成したことを特徴とする樹脂製スラストワッシャー。
【0008】
また、本発明による樹脂製スラストワッシャーの製造方法は、以下の(2)の構成を有するものである。
(2)上記(1)記載の樹脂製スラストワッシャーを製造する方法であって、上記(1)記載の二つの半割部材を、それぞれ個別に樹脂で射出成形し、次いでこれら半割部材の外周部を互いに接着することを特徴とする樹脂製スラストワッシャーの製造方法
【0009】
このように本発明では、スラストワッシャー本体を構成するドーナツ状の環状体を、中心軸に直交する面で半径方向に延びる導入空間を分割するようにした半割部材から構成したため、各半割部材において導入空間が半径方向に凹んだ部分を持たないことから、それら半割部材をスライド機構を備えた抜き型などを設けない金型で成形が可能になる。したがって、バリが少なく修正後加工作業の少ない成形品を得ることが可能になり、それにより低コストで高寸法精度の成形品を得ることができる。
【0010】
【発明の実施の形態】
以下、本発明を図に示す実施形態に基づいて説明する。
【0011】
図1〜図5は、本発明のスラストワッシャーの一例を示す。
【0012】
図に示すスラストワッシャーは、ドーナツ状の環状体1を本体として構成されている。環状体1には、内周側から半径方向外側へ延びる潤滑油の導入空間2が形成され、さらに導入空間2から背面の外側へ抜ける管状突起3が形成されている。管状突起3は複数本が設けられ、かつ中心軸Aを中心に環状体1の周方向に略等角度に設けられている。また、反対の表側表面の外縁部には、放射方向に延びる多数の凹溝4が周方向に等間隔に設けられている。
【0013】
上記構成からなる環状体1は、中心軸Aに直交する面で上記導入空間2を二分割するようにした二つの半割部材10、11から構成され、かつその二つの半割部材10、11が周縁部を互いに接着して構成されている。この半割部材10、11において、半割部材10側には導入空間2の一部と凹溝4が形成され、また半割部材11側には導入空間2の残りの一部と管状突起3が形成されている。
以上の構成により、潤滑油は、たとえば、環状の導入空間2に導入された後、図6で前述し説明したように、回転体62の回転とともに回転する該スラストワッシャーの回転時の遠心力によって、該ドーナツ状環状体の内周側から(導入空間2側から)ワッシャーの背面外側へ向いた潤滑油の流動が管状突起3内の流路で生じるものであり、該突起3の管先端を経て潤滑油は流れ出てさらに所要部等に流れていく。
潤滑油の環状導入空間2は、そうした遠心力による潤滑油の流動が効果的に生ずるように、その外周縁形状は、たとえば、図2に1例を破線(一部破粋断面部では実線)で示したように、環状体1の中心軸方向からみて、該空間2の外周縁線形状が半径方向外側に膨らんだ形状、具体的には複数の円弧状が組合わされた形状を呈して形成されている。図2の例では、中心軸Aを中心にした4つの円弧部Bとそれよりも更に外側に膨らんだ4つの円弧部C(空間では12)によって、環状導入空間2の外周縁形状が構成されている。該4つの円弧部Bよりも更に外側に膨らんだ4つの円弧部Cにより形成される空間12は、図1および図5の側面断面図でも示している通りである。
そして、該円弧状の外周縁B〜Cの近傍の内側には、管状突起3が環状導入空間2の周方向に間欠的に配置されて設けられている。遠心力により、導入空間の最外周縁に向いて潤滑油が流動していくからである。前述のように、図2では、外周縁の形状は、4つの径方向に膨出した円弧部と、環状体の中心軸と共通な中心をもって径方向に膨出した同心の4つの円弧部から形成され管状突起3は、それら計8つの円弧部B〜Cのそれぞれにおいて、外周縁線B〜Cの直近内側でかつ各管状突起3内の流路が該空間2に開口している位置で計8個が設けられている。
【0014】
上記スラストワッシャーの製造方法は、それぞれ二つの半割部材10,11を個別に熱可塑性樹脂で射出成形し、しかる後、それら二つの半割部材10,11を重ねて外周縁部を互いに接着するようにすればよい。図5は接着する前の個々に射出成形した二つの半割部材10,11を示し、図1はこれらを接着した後のスラストワッシャーを示す。
【0015】
二つの半割部材10,11を接着する接着手段としては特に限定されないが、好ましくは接着作業性に優れている溶着で行うのがよい。溶着手段としては、超音波溶着、振動溶着、レーザー溶着又はスピン溶着などを使用することができる。勿論、溶着手段によらず、作業性の点では溶着よりも不利になるが、接着剤による接着であってもよい。
【0016】
本発明のスラストワッシャーに使用する樹脂としては、射出成形用樹脂として使用される熱可塑性樹脂を広く採用することができる。例えば、ナイロン、ポリエステル、ポリイミド、ポリアミドイミド、アクリロニトリル・ブタジエン・スチレン(ABS)、ポリオキシメチレン、ポリカーボネート、ポリエチレン、ポリプロピレンなどを挙げることができる。
【0017】
本発明によれば、上述したようにスラストワッシャーが二つの半割部材10,11から構成され、内側の潤滑油の導入空間2が環状体1の中心軸Aに直交する面で2分されているため、これら半割部材10,11を射出成形する金型として、導入空間2の成形のために中心軸Aに直交する方向にスライド機構を有する抜き型などを設けることが不要になり、一般的な金型で成形が可能になる。したがって、射出成形後の半割部材10,11はバリが少なく、修正後加工の少ない成形品にすることができる。また、それによって低コストで、かつ寸法精度に優れた成形品を得ることができる。
【0018】
本発明のスラストワッシャーは、機械装置における歯車やホイール等の回転体の軸部周りの保護部品として使用される。例えば、図6に示すように二つの相対回転する回転体の間や、回転体と静止体との間などに使用される。
【0019】
【発明の効果】
上述したように本発明によれば、スラストワッシャー本体を構成するドーナツ状の環状体を、中心軸に直交する面で半径方向に延びる導入空間を分割するようにした半割部材から構成したため、各半割部材において導入空間が半径方向に凹んだ部分を持たないことから、それら半割部材をスライド機構を備えた抜き型などを設けない金型で成形が可能になる。したがって、バリが少なく修正後加工作業の少ない成形品を得ることが可能になり、それにより低コストで高寸法精度の成形品を得ることができる。
【図面の簡単な説明】
【図1】本発明の実施形態からなるスラストワッシャーを示し、図2におけるX−X矢視に相当する断面図である。
【図2】図1に示したスラストワッシャーを一部を切り欠いて示す右側面図である。
【図3】図1に示したスラストワッシャーの左側面図である。
【図4】図3におけるY−Y矢視断面図である。
【図5】図1において二つの半割部材に分離した状態で示す説明図である。
【図6】従来のスラストワッシャーの使用状態の要部を示す説明図である。
【符号の説明】
1 環状体
2 導入空間
3 管状突起
4 凹溝
10、11 半割部材
12 円弧部Bよりも外側に膨らんだ円弧部Cにより形成される空間
A 中心軸
B 中心軸Aを中心にした円弧部
C 円弧部Bよりも更に外側に膨らんだ円弧部
[0001]
[Technical field to which the invention belongs]
The present invention relates to a resin thrust washer mounted on a shaft portion of a rotating body and a manufacturing method thereof, and more particularly to a resin thrust washer and a manufacturing method thereof capable of obtaining a product with high dimensional accuracy at low cost.
[0002]
[Prior art]
The thrust washer is provided as a protective component around the shaft portion of the rotating body in the mechanical device.
[0003]
FIG. 6 shows a case where such a thrust washer is attached to one rotating body 62 between two relatively rotating rotating bodies 61 and 62. The thrust washer 63 is integrally injection-molded as a donut-shaped annular body 64 with resin, and has a lubricant introduction space 65 extending from the inner peripheral side to the radially outer side, and further from the introduction space 65 to the outside of the back surface. It has a tubular projection 66 that comes off. The tubular protrusion 66 is supported concentrically with the rotating body 62 by inserting it into a fitting hole 70 provided around a shaft portion (not shown) of the rotating body 62.
[0004]
When the rotating body 62 rotates, the lubricating oil flows in the radial direction as indicated by the arrow due to centrifugal force, flows into the introduction space 65 of the thrust washer 63, flows out from the introduction space 65 through the tubular protrusion 66, and the surface of the rotating body 62. Lubricate. The lubricating oil also flows into the gap between the annular body 64 and the other rotating body 61 and lubricates between the rotating bodies 61 and 62.
[0005]
However, since the conventional thrust washer 63 is injection molded as an integral structure, the introduction space 65 of the lubricating oil is formed in a state of being recessed radially outward as described above. 65 must be formed by a mold having a slide mechanism such as a punching die. For this reason, the mold structure is complicated, and a molded product molded with a punching die tends to generate burrs, and there is a problem that post-processing work for correcting the burrs increases. Therefore, the production of the thrust washer having the above structure has a problem that it is generally inevitable that the cost is increased, and that the dimensional accuracy of the molded product is also increased.
[0006]
[Problems to be solved by the invention]
An object of the present invention is to provide a resin-made thrust washer that eliminates the above-described conventional problems and enables a high-dimensional accuracy product to be manufactured at low cost, and a method for manufacturing the same.
[0007]
[Means for Solving the Problems]
The resin thrust washer of the present invention that achieves the above object has the following configuration (1).
(1) In a resin thrust washer forming a donut-shaped annular body, an outer peripheral edge shape is formed inside the donut-shaped annular body and extends radially outward from the inner peripheral side as viewed from the central axis direction of the annular body. Forming an annular introduction space for lubricating oil having a shape formed by combining a plurality of arc shapes that bulge outward in the radial direction, and on the inner side in the vicinity of the outer peripheral edge of the arc shape, from the annular introduction space to the back outer side of the washer together intermittently providing the tubular projection having the cause passage flowing the lubricating oil toward the inside in the circumferential direction of the annular, the annular introduced at a plane perpendicular to the donut-shaped annular body to the central axis of the annular body A resin-made thrust washer comprising two halves having a shape that bisects a space, and the two halves are bonded to each other at the outer periphery.
[0008]
Moreover, the manufacturing method of the resin-made thrust washer by this invention has the structure of the following (2).
(2) A method for producing the resin thrust washer described in (1) above, wherein the two halved members described in (1) are individually injection molded with resin, and then the outer periphery of these halved members A method for producing a resin thrust washer, wherein the parts are bonded together.
[0009]
As described above, in the present invention, the donut-shaped annular body constituting the thrust washer main body is constituted by the half member that divides the introduction space extending in the radial direction on the plane orthogonal to the central axis. Since the introduction space does not have a portion recessed in the radial direction, the half member can be molded with a mold without a die or the like having a slide mechanism. Therefore, it is possible to obtain a molded product with less burrs and less post-correction work, and thereby a molded product with high dimensional accuracy can be obtained at low cost.
[0010]
DETAILED DESCRIPTION OF THE INVENTION
Hereinafter, the present invention will be described based on embodiments shown in the drawings.
[0011]
1 to 5 show an example of the thrust washer of the present invention.
[0012]
The thrust washer shown in the figure has a donut-shaped annular body 1 as a main body. The annular body 1 is formed with a lubricating oil introduction space 2 extending radially outward from the inner peripheral side, and further formed with a tubular protrusion 3 that extends from the introduction space 2 to the outside of the back surface. A plurality of tubular protrusions 3 are provided, and are provided at substantially equal angles in the circumferential direction of the annular body 1 around the central axis A. In addition, a large number of concave grooves 4 extending in the radial direction are provided at equal intervals in the circumferential direction on the outer edge portion of the opposite front surface.
[0013]
The annular body 1 having the above-described configuration is composed of two halved members 10 and 11 that divide the introduction space 2 in a plane perpendicular to the central axis A, and the two halved members 10 and 11. Is formed by adhering the peripheral portions to each other. In the half members 10, 11, a part of the introduction space 2 and the concave groove 4 are formed on the half member 10 side, and the remaining part of the introduction space 2 and the tubular protrusion 3 are formed on the half member 11 side. Is formed.
With the above configuration, for example, as described above with reference to FIG. 6, the lubricating oil is introduced into the annular introduction space 2, and then, by the centrifugal force at the time of rotation of the thrust washer rotating with the rotation of the rotating body 62. The flow of the lubricating oil from the inner peripheral side of the donut-shaped annular body (from the introduction space 2 side) toward the outer back side of the washer is generated in the flow path in the tubular protrusion 3, and the tube tip of the protrusion 3 is After that, the lubricating oil flows out and further flows to the required part.
In the annular introduction space 2 of the lubricating oil, the outer peripheral shape thereof is, for example, a broken line in FIG. 2 (a solid line in a partially excerpted cross section) so that the lubricating oil flows effectively by such centrifugal force. As shown in FIG. 2, the outer peripheral line shape of the space 2 is formed to swell outward in the radial direction when viewed from the central axis direction of the annular body 1 , specifically, a shape in which a plurality of arc shapes are combined. Has been. In the example of FIG. 2, the outer peripheral edge shape of the annular introduction space 2 is configured by four arc portions B centered on the central axis A and four arc portions C (12 in space) that swell further outward. ing. The space 12 formed by the four arc portions C swelled further outward than the four arc portions B is as shown in the side sectional views of FIGS. 1 and 5.
Then, inside the vicinity of the outer peripheral edge B~C of the circular arc, the tubular projection 3 is provided to be intermittently arranged in the circumferential direction of the annular introducing space 2. This is because the lubricating oil flows toward the outermost peripheral edge of the introduction space due to the centrifugal force. As described above, in FIG. 2, the shape of the outer peripheral edge is four arcuate portions C bulging in the radial direction and four concentric arcuate portions bulging in the radial direction with the center common to the central axis of the annular body. is formed from B, the tubular projections 3, in each of which a total of eight arcuate portions B-C, the most recent inside a and the flow path of the tubular projections 3 of the outer peripheral edge line B-C is open to the space 2 A total of eight are provided at the positions.
[0014]
In the method for manufacturing the thrust washer, the two half members 10 and 11 are individually injection-molded with a thermoplastic resin, and then the two half members 10 and 11 are overlapped to bond the outer peripheral edges to each other. What should I do? FIG. 5 shows the two halves 10 and 11 individually injection-molded before bonding, and FIG. 1 shows the thrust washer after bonding them.
[0015]
The bonding means for bonding the two halved members 10 and 11 is not particularly limited, but is preferably performed by welding having excellent bonding workability. As the welding means, ultrasonic welding, vibration welding, laser welding, spin welding, or the like can be used. Of course, regardless of the welding means, it is more disadvantageous than welding in terms of workability, but bonding with an adhesive may also be used.
[0016]
As the resin used in the thrust washer of the present invention, a thermoplastic resin used as an injection molding resin can be widely used. Examples thereof include nylon, polyester, polyimide, polyamideimide, acrylonitrile / butadiene / styrene (ABS), polyoxymethylene, polycarbonate, polyethylene, and polypropylene.
[0017]
According to the present invention, as described above, the thrust washer is composed of the two halved members 10, 11, and the inner lubricating oil introduction space 2 is divided into two by a plane orthogonal to the central axis A of the annular body 1. Therefore, it is not necessary to provide a die or the like having a slide mechanism in the direction orthogonal to the central axis A for forming the introduction space 2 as a mold for injection molding the half members 10 and 11. It becomes possible to mold with a typical mold. Therefore, the half members 10 and 11 after the injection molding have few burrs and can be formed into a molded product with little post-correction processing. Further, it is possible to obtain a molded product with low cost and excellent dimensional accuracy.
[0018]
The thrust washer of the present invention is used as a protective component around the shaft portion of a rotating body such as a gear or a wheel in a mechanical device. For example, as shown in FIG. 6, it is used between two rotating bodies that rotate relative to each other or between a rotating body and a stationary body.
[0019]
【The invention's effect】
As described above, according to the present invention, the donut-shaped annular body constituting the thrust washer main body is constituted by the half member that divides the introduction space extending in the radial direction on the plane orthogonal to the central axis. Since the introduction space does not have a portion that is recessed in the radial direction in the half member, the half member can be molded with a mold that does not include a die having a slide mechanism. Therefore, it is possible to obtain a molded product with less burrs and less post-correction work, thereby obtaining a molded product with high dimensional accuracy at low cost.
[Brief description of the drawings]
FIG. 1 is a cross-sectional view showing a thrust washer according to an embodiment of the present invention and corresponding to the direction of arrows XX in FIG.
FIG. 2 is a right side view showing the thrust washer shown in FIG. 1 with a part cut away.
3 is a left side view of the thrust washer shown in FIG. 1. FIG.
4 is a cross-sectional view taken along line YY in FIG. 3;
FIG. 5 is an explanatory view showing a state in which it is separated into two halved members in FIG. 1;
FIG. 6 is an explanatory view showing a main part of a conventional thrust washer in use.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 Ring body 2 Introduction space 3 Tubular protrusion 4 Concave groove 10, 11 Half member
12 Space A formed by arc portion C bulging outward from arc portion B
B Circular arc centering on central axis A
C Arc part bulging further outward than arc part B

Claims (5)

ドーナツ状の環状体を成している樹脂製スラストワッシャーにおいて、該ドーナツ状環状体の内部に内周側から半径方向外側へ延びるとともに該環状体の中心軸方向からみて外周縁形状が半径方向外側に膨らむ複数の円弧状を組合せてなる形状を呈した潤滑油の環状導入空間を形成し、かつ、該円弧状の外周縁近傍の内側に、該環状導入空間からワッシャーの背面外側へ向けて前記潤滑油を流動させる流路を内部に有する管状突起を前記環状の周方向に間欠的に設けるとともに、前記ドーナツ状環状体を該環状体の中心軸に直交する面で前記環状導入空間を二分した形状を有する二つの半割部材から構成し、該二つの半割部材を外周部で互いに接着して構成したことを特徴とする樹脂製スラストワッシャー。In a resin thrust washer that forms a donut-shaped annular body, the outer peripheral shape of the resin thrust washer extends radially outward from the inner peripheral side and viewed from the center axis direction of the annular body in the radial direction. An annular introduction space for lubricating oil having a shape formed by combining a plurality of arc shapes that bulge outward is formed, and inside the vicinity of the outer peripheral edge of the arc shape, from the annular introduction space toward the outside of the back surface of the washer provided with a tubular projection having the cause passage flowing the lubricating oil therein intermittently in the circumferential direction of the annular, bisects the annular introduction space at a plane perpendicular to the donut-shaped annular body to the central axis of the annular body A resin thrust washer comprising two halved members having the above-mentioned shape, and the two halved members being bonded to each other at the outer periphery. 前記接着が溶着である請求項1に記載の樹脂製スラストワッシャー。  The resin thrust washer according to claim 1, wherein the adhesion is welding. 前記溶着が超音波溶着、振動溶着、レーザー溶着又はスピン溶着である請求項2に記載の樹脂製スラストワッシャー。The resin thrust washer according to claim 2, wherein the welding is ultrasonic welding, vibration welding, laser welding, or spin welding. 請求項1記載の樹脂製スラストワッシャーを製造する方法であって、前記請求項1記載の二つの半割部材を、それぞれ個別に樹脂で射出成形し、次いでこれら半割部材の外周部を互いに接着することを特徴とする樹脂製スラストワッシャーの製造方法。  A method for producing a resin thrust washer according to claim 1, wherein the two half members according to claim 1 are individually injection molded with resin, and then the outer peripheral portions of these half members are bonded to each other. A method for producing a resin thrust washer. 前記接着を溶着で行う請求項4に記載の樹脂製スラストワッシャーの製造方法。The manufacturing method of the resin-made thrust washer of Claim 4 which performs the said adhesion | attachment by welding.
JP2002158970A 2002-05-31 2002-05-31 Resin thrust washer and manufacturing method thereof Expired - Fee Related JP4248807B2 (en)

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JP5656904B2 (en) * 2012-03-29 2015-01-21 東レプラスチック精工株式会社 Manufacturing method of resin thrust washer and mold used for manufacturing the same
JP6256068B2 (en) * 2014-02-06 2018-01-10 スズキ株式会社 Gear support structure for cam gear train mechanism of motorcycle
JP6194289B2 (en) * 2014-08-08 2017-09-06 東レプラスチック精工株式会社 Plastic thrust washer
JP5887388B2 (en) * 2014-08-08 2016-03-16 東レプラスチック精工株式会社 Manufacturing method of plastic thrust washer
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