JP2008045713A - Sealing device - Google Patents

Sealing device Download PDF

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Publication number
JP2008045713A
JP2008045713A JP2006224156A JP2006224156A JP2008045713A JP 2008045713 A JP2008045713 A JP 2008045713A JP 2006224156 A JP2006224156 A JP 2006224156A JP 2006224156 A JP2006224156 A JP 2006224156A JP 2008045713 A JP2008045713 A JP 2008045713A
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annular
outer peripheral
peripheral end
annular member
fitted
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JP4982132B2 (en
Inventor
Hitoshi Hasegawa
仁志 長谷川
Yoshinori Yoshioka
嘉則 吉岡
Tomohiro Usami
智大 宇佐美
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Koyo Sealing Techno Co Ltd
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Koyo Sealing Techno Co Ltd
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D25/00Fluid-actuated clutches
    • F16D25/06Fluid-actuated clutches in which the fluid actuates a piston incorporated in, i.e. rotating with the clutch
    • F16D25/062Fluid-actuated clutches in which the fluid actuates a piston incorporated in, i.e. rotating with the clutch the clutch having friction surfaces
    • F16D25/063Fluid-actuated clutches in which the fluid actuates a piston incorporated in, i.e. rotating with the clutch the clutch having friction surfaces with clutch members exclusively moving axially
    • F16D25/0635Fluid-actuated clutches in which the fluid actuates a piston incorporated in, i.e. rotating with the clutch the clutch having friction surfaces with clutch members exclusively moving axially with flat friction surfaces, e.g. discs
    • F16D25/0638Fluid-actuated clutches in which the fluid actuates a piston incorporated in, i.e. rotating with the clutch the clutch having friction surfaces with clutch members exclusively moving axially with flat friction surfaces, e.g. discs with more than two discs, e.g. multiple lamellae
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D2300/00Special features for couplings or clutches
    • F16D2300/08Details or arrangements of sealings not provided for in group F16D3/84

Abstract

<P>PROBLEM TO BE SOLVED: To provide a sealing device which does not need high-accuracy machining for a cancel plate, and thereby suppresses cost. <P>SOLUTION: The sealing device 2 comprises a metallic annular member 8 which is arranged so as to oppose a piston seal 3, and a seal lip 9 which is adhered to the external peripheral end 81 of the annular member 8. In the sealing device, first and second annular flanges 12, 13 which sandwich the external peripheral end 81 from axial both sides are formed at the adhering part of the seal lip 9. The axial width of a fitting part between the external peripheral end 81 and both the annular flanges 12, 13 is reduced by fitting the first annular flange 12 to a notched step 14 formed at a corner of the external peripheral end 81. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、自動車等の自動変速機(AT)に用いられ、軸方向に摺動可能なピストンシールを備えた密封装置に関するものである。   The present invention relates to a sealing device that is used in an automatic transmission (AT) such as an automobile and includes a piston seal that is slidable in the axial direction.

例えば自動車等の自動変速機の動力接続部には、流体圧力により軸方向へ移動して多板クラッチを押圧する環状のピストンシールと、このピストンシールとの間で環状のキャンセル室を形成する環状のキャンセルプレートとを備えた密封装置が組み込まれている(特許文献1参照)。上記キャンセルプレートは、ピストンシールと対向して配置される金属製の環状部材と、この環状部材の外周端に接着されピストンシールとの間をシールするシールリップとを備えている。
特開2005−265160号公報
For example, in a power connection part of an automatic transmission such as an automobile, an annular piston seal that moves in the axial direction by fluid pressure to press a multi-plate clutch, and an annular cancel chamber that forms an annular cancellation chamber between the piston seal A sealing device including a cancel plate is incorporated (see Patent Document 1). The cancel plate includes a metal annular member disposed to face the piston seal, and a seal lip that is bonded to the outer peripheral end of the annular member and seals between the piston seal.
JP 2005-265160 A

上記キャンセルプレートのシールリップにおける接着部分には、環状部材の外周端を軸方向両側から挟み込む一対の環状鍔部が形成されており、当該シールリップの接着力が高められている。その一方で、環状部材には反り等の寸法誤差が存在し、キャンセルプレートの外周部と多板クラッチとの間の隙間は小さいため、当該外周部が多板クラッチに干渉してしまうおそれがあった。また、ピストンシールが動いてキャンセルプレートに近づいたときに、当該外周部がピストンシールと干渉してしまうということもあった。そのため、キャンセルプレートの外周部の位置を非常に狭い範囲の中で設定しなければならず、高精度の加工を要し、コストアップを招いていた。
本発明は上記事情に鑑みてなされたものであり、キャンセルプレートに高精度の加工を必要とせず、コストを抑えることができる密封装置の提供を目的とする。
A pair of annular flanges that sandwich the outer peripheral end of the annular member from both sides in the axial direction are formed at the adhesion portion of the cancel plate on the seal lip, thereby enhancing the adhesion of the seal lip. On the other hand, there is a dimensional error such as warpage in the annular member, and the gap between the outer peripheral portion of the cancel plate and the multi-plate clutch is small, so that the outer peripheral portion may interfere with the multi-plate clutch. It was. Further, when the piston seal moves and approaches the cancel plate, the outer peripheral portion sometimes interferes with the piston seal. For this reason, the position of the outer peripheral portion of the cancel plate has to be set within a very narrow range, which requires high-precision processing and increases the cost.
The present invention has been made in view of the above circumstances, and an object of the present invention is to provide a sealing device that does not require high-precision processing on a cancel plate and can reduce costs.

本発明は上記目的を達成するために次の技術的手段を講じた。
すなわち、本発明は、流体圧力により軸方向へ移動して多板クラッチを押圧する環状のピストンシールと、このピストンシールとの間で環状のキャンセル室を形成する環状のキャンセルプレートとを備え、前記キャンセルプレートは、前記ピストンシールと対向して配置される金属製の環状部材と、この環状部材の外周端に接着され前記ピストンシールとの間をシールするシールリップとを備え、前記シールリップにおける接着部分に前記環状部材の外周端を軸方向両側から挟み込む一対の環状鍔部が形成された密封装置であって、前記環状部材の外周端の角に、少なくとも一方の前記環状鍔部と嵌め合い可能な環状の切欠段差部が形成され、この切欠段差部に当該環状鍔部が嵌められた状態で前記シールリップが接着されていることを特徴とする。
In order to achieve the above object, the present invention takes the following technical means.
That is, the present invention comprises an annular piston seal that moves in the axial direction by fluid pressure to press the multi-plate clutch, and an annular cancellation plate that forms an annular cancellation chamber between the piston seal, The cancel plate includes a metal annular member disposed opposite to the piston seal, and a seal lip that is bonded to an outer peripheral end of the annular member and seals between the piston seal. A sealing device in which a pair of annular flanges sandwiching the outer peripheral edge of the annular member from both sides in the axial direction is formed in a portion, and can be fitted to at least one of the annular flange parts at the corner of the outer circumferential edge of the annular member An annular notch step portion is formed, and the seal lip is bonded to the notch step portion in a state where the annular flange portion is fitted. To.

上記本発明によれば、環状部材の外周端に、少なくとも一方の環状鍔部が嵌め合い可能な環状の切欠段差部が形成され、この切欠段差部に当該環状鍔部が嵌められた状態となっているので、環状部材の外周端と環状鍔部との嵌め合い部分の軸方向幅が減少する。これにより、キャンセルプレートの外周部の位置を容易に設定することができる。   According to the present invention, an annular notch step portion is formed on the outer peripheral end of the annular member so that at least one annular flange portion can be fitted therein, and the annular flange portion is fitted in the notch step portion. Therefore, the axial width of the fitting portion between the outer peripheral end of the annular member and the annular flange portion is reduced. Thereby, the position of the outer peripheral part of a cancellation plate can be set easily.

上記本発明において、前記切欠段差部に嵌められた前記環状鍔部の外側面が前記環状部材の側面と面一又は軸方向において当該側面よりも内側へ位置していることが好ましい。
この場合、環状鍔部が軸方向に突出せず、環状部材の外周端と環状鍔部との嵌め合い部分の軸方向幅を効果的に減少させることができる。
In the present invention, it is preferable that an outer side surface of the annular flange portion fitted in the notch step portion is positioned inward of the side surface in the same or axial direction as the side surface of the annular member.
In this case, the annular flange does not protrude in the axial direction, and the axial width of the fitting portion between the outer peripheral end of the annular member and the annular flange can be effectively reduced.

上記本発明において、前記環状部材の切欠段差部は前記外周端の多板クラッチ側の角に形成され、一方の前記環状鍔部が当該切欠段差部に嵌められていることが好ましい。
この場合、キャンセルプレートの外周部が多板クラッチに干渉し難くなる。
In the present invention, it is preferable that the notch step portion of the annular member is formed at a corner of the outer peripheral end on the multi-plate clutch side, and one of the annular flange portions is fitted into the notch step portion.
In this case, it becomes difficult for the outer peripheral portion of the cancel plate to interfere with the multi-plate clutch.

上記本発明において、前記環状部材の切欠段差部は前記外周端の多板クラッチ側と反対側の角に形成され、一方の前記環状鍔部が当該切欠段差部に嵌められていることが好ましい。この場合、ピストンシールが動いてキャンセルプレートに近づいたときに、当該キャンセルプレートの外周部がピストンシールに干渉し難くなる。   In the present invention, it is preferable that the notch step portion of the annular member is formed at a corner of the outer peripheral end opposite to the multi-plate clutch side, and one of the annular flange portions is fitted into the notch step portion. In this case, when the piston seal moves and approaches the cancel plate, the outer peripheral portion of the cancel plate hardly interferes with the piston seal.

上記本発明において、前記環状部材の切欠段差部は前記外周端の両側の角に形成され、前記両環状鍔部がそれぞれ当該切欠段差部に嵌められていることが好ましい。
この場合、環状部材の外周端と環状鍔部との嵌め合い部分の軸方向幅が大幅に減少し、キャンセルプレートの外周部の位置を更に設定し易くすることができる。
In the present invention, it is preferable that the notch step portion of the annular member is formed at both corners of the outer peripheral end, and the both annular flange portions are respectively fitted to the notch step portion.
In this case, the axial width of the fitting portion between the outer peripheral end of the annular member and the annular flange portion is greatly reduced, and the position of the outer peripheral portion of the cancel plate can be further easily set.

上記本発明において、前記切欠段差部に嵌められた前記環状鍔部はその先端と当該切欠段差部の壁面との間に隙間が空けられた状態で接着されていることが好ましい。
シールリップを金型内で環状部材に加硫接着する場合、環状鍔部の先端と切欠段差部の壁面との間に隙間が無ければ、当該先端と壁面の境目部分にバリが形成されるおそれがある。そこで、加硫成型の際に、段差部の壁面に沿うように金型の一部を挿入し上記の隙間が形成されるようにすれば、バリの形成を抑えることができる。
In the present invention, it is preferable that the annular flange portion fitted in the notch step portion is bonded in a state where a gap is left between a tip of the annular flange portion and a wall surface of the notch step portion.
When the seal lip is vulcanized and bonded to the annular member in the mold, if there is no gap between the tip of the annular flange and the wall surface of the notch step portion, burrs may be formed at the boundary between the tip and the wall surface. There is. Therefore, when vulcanization molding is performed, if a part of the mold is inserted along the wall surface of the stepped portion to form the gap, the formation of burrs can be suppressed.

本発明の密封装置によれば、環状部材の外周端と環状鍔部との嵌め合い部分の軸方向幅が減少し、キャンセルプレートの外周部の位置を容易に設定することができるので、高精度の加工を必要とせずコストを抑えることができる。   According to the sealing device of the present invention, the axial width of the fitting portion between the outer peripheral end of the annular member and the annular flange portion is reduced, and the position of the outer peripheral portion of the cancel plate can be easily set. The cost can be reduced without the need for processing.

以下、図面を参照しつつ本発明の実施形態について説明する。図1は、本発明の一実施形態に係る密封装置が自動変速機に組み込まれた状態を示している。この密封装置1は、キャンセルプレート2と、このキャンセルプレート2が組み込まれたピストンシール3と、キャンセルプレート2とピストンシール3の間に配置されたスプリング4とを備えている。このうち、ピストンシール3は、ハウジング5やキャンセルプレート2に対して軸方向に移動可能とされている。ピストンシール3とハウジング5の間は圧力室6となっており、この圧力室6に制御油が供給されて圧力室6の圧力が高められると、流体圧によりピストンシール3がスプリング4の弾性に抗して軸方向へ移動し、多板クラッチ7を押圧することで動力伝達が行われる。   Hereinafter, embodiments of the present invention will be described with reference to the drawings. FIG. 1 shows a state in which a sealing device according to an embodiment of the present invention is incorporated in an automatic transmission. The sealing device 1 includes a cancel plate 2, a piston seal 3 in which the cancel plate 2 is incorporated, and a spring 4 disposed between the cancel plate 2 and the piston seal 3. Among these, the piston seal 3 is movable in the axial direction with respect to the housing 5 and the cancel plate 2. A pressure chamber 6 is provided between the piston seal 3 and the housing 5, and when the control oil is supplied to the pressure chamber 6 and the pressure in the pressure chamber 6 is increased, the fluid pressure causes the piston seal 3 to move to the elasticity of the spring 4. Power is transmitted by moving in the axial direction against the multi-plate clutch 7.

ピストンシール3は、板金プレス加工により成形された金属製の環状部材31と、環状部材31に接着された外周側の第一シール部材32及び内周側の第二シール部材33とを備えている。環状部材31には図の左側へ突出する突出部31a、この突出部31aの径方向内側に位置するスプリング受け部31b、スプリング受け部31bの更に径方向内側に位置する平坦部31cを有している。第一シール部材32は、突出部31aに設けられてハウジング5とピストンシール3との間をシールし、第二シール部材33は、環状部材31の内周端に設けられてハウジング5と環状部材31の内端との間をシールしている。   The piston seal 3 includes a metal annular member 31 formed by sheet metal pressing, an outer peripheral first seal member 32 and an inner peripheral second seal member 33 bonded to the annular member 31. . The annular member 31 has a protruding portion 31a that protrudes to the left in the drawing, a spring receiving portion 31b that is positioned radially inside the protruding portion 31a, and a flat portion 31c that is positioned further radially inside of the spring receiving portion 31b. Yes. The first seal member 32 is provided on the protruding portion 31 a to seal between the housing 5 and the piston seal 3, and the second seal member 33 is provided on the inner peripheral end of the annular member 31, and the housing 5 and the annular member The space between the inner end of 31 is sealed.

キャンセルプレート2は、板金プレス加工により成形された金属製の環状部材8と、この環状部材8の外周端81に加硫接着されたシールリップ9とを備え、このシールリップ9によりピストンシール3と外周端81の間がシールされている。環状部材8は、径方向外側に位置する外周部8a、その径方向内側に位置するスプリング受け部8b、スプリング受け部8bの径方向内側に位置する平坦部8cを有している。シールリップ9は、図2に示すようにリップ本体10と、このリップ本体10と一体となった接着部分11とからなる。この接着部分11には、多板クラッチ側(図2右側)の第一環状鍔部12とその反対側の第二環状鍔部13が形成されており、これら各環状鍔部12,13により当該接着部分11が断面コ字状に形成されている。なお、第一環状鍔部12は、第二環状鍔部13よりも長さが短くなっている。このように構成された第一、第二環状鍔部12,13により、環状部材8の外周端81が軸方向両側から挟み込まれており、シールリップ9と環状部材8との接着強度が高められている。   The cancel plate 2 includes a metal annular member 8 formed by sheet metal pressing and a seal lip 9 vulcanized and bonded to the outer peripheral end 81 of the annular member 8. A space between the outer peripheral ends 81 is sealed. The annular member 8 has an outer peripheral portion 8a positioned on the radially outer side, a spring receiving portion 8b positioned on the radially inner side, and a flat portion 8c positioned on the radially inner side of the spring receiving portion 8b. As shown in FIG. 2, the seal lip 9 includes a lip main body 10 and an adhesive portion 11 integrated with the lip main body 10. A first annular flange 12 on the multi-plate clutch side (right side in FIG. 2) and a second annular flange 13 on the opposite side are formed on the adhesive portion 11. The bonding portion 11 is formed in a U-shaped cross section. The first annular flange 12 is shorter than the second annular flange 13. The first and second annular flanges 12 and 13 configured in this manner sandwich the outer peripheral end 81 of the annular member 8 from both sides in the axial direction, thereby increasing the adhesive strength between the seal lip 9 and the annular member 8. ing.

また、外周端81の多板クラッチ側の角には、環状の切欠段差部14が全周にわたって形成されている。この切欠段差部14は、シールリップ9の第一環状鍔部12と嵌め合い可能に形成されている。具体的には、切欠段差部14は第一環状鍔部12の厚みと同じ軸方向深さを有する壁面14aと、第一環状鍔部12の奥行き長さと同じ径方向長さを有する側面14bとで構成されている。そして、この切欠段差部14に、第一環状鍔部12がその外側面12aと環状部材8の側面8sを面一とした状態で密着されている。   Further, an annular notch step portion 14 is formed over the entire circumference at the corner of the outer peripheral end 81 on the side of the multi-plate clutch. The notch step portion 14 is formed so as to be able to fit with the first annular flange 12 of the seal lip 9. Specifically, the notch step portion 14 includes a wall surface 14 a having the same axial depth as the thickness of the first annular flange portion 12, and a side surface 14 b having the same radial length as the depth length of the first annular flange portion 12. It consists of The first annular flange 12 is in close contact with the notch step portion 14 with the outer surface 12a and the side surface 8s of the annular member 8 being flush with each other.

また、第二環状鍔部13は、外周端81の多板クラッチ側と反対側へ密着している。このように、外周端81の角に形成された切欠段差部14に、シールリップ9の第一環状鍔部12が嵌められていることから、環状部材8の外周端81と両環状鍔部12,13との嵌め合い部分の軸方向幅が従来よりも減少している。そして、切欠段差部14に第一環状鍔部12が嵌っていることで、環状部材8に反り等の寸法誤差が存在してもキャンセルプレート2の外周部2gが多板クラッチ7に干渉し難くなっている。   The second annular flange 13 is in close contact with the side of the outer peripheral end 81 opposite to the multi-plate clutch side. Thus, since the first annular flange 12 of the seal lip 9 is fitted in the notch step portion 14 formed at the corner of the outer peripheral end 81, the outer peripheral end 81 of the annular member 8 and the both annular flanges 12. , 13 in the axial direction width of the fitting portion is smaller than the conventional one. Since the first annular flange 12 is fitted in the notch step portion 14, the outer peripheral portion 2 g of the cancel plate 2 is unlikely to interfere with the multi-plate clutch 7 even if a dimensional error such as warpage exists in the annular member 8. It has become.

上記本実施形態の密封装置1とすれば、切欠段差部14に第一環状鍔部12が嵌められ、環状部材8の外周端81と両環状鍔部12、13との嵌め合い部分の軸方向幅が減少しているので、キャンセルプレート2の外周部2gの位置を容易に設定することができる。特に、第一環状鍔部12がその外側面12aと環状部材8の側面8sを面一とした状態で密着されているので、第一環状鍔部12が軸方向に突出せず、上記嵌め合い部分の軸方向幅を効果的に減少させることができる。これにより、高精度の加工を必要とせずコストを抑えることができる。また、環状部材8に反り等の寸法誤差が存在してもキャンセルプレート2の外周部2gが多板クラッチ7に干渉し難くなっているので、第一環状鍔部12が損傷し難くなりシールリップ9の接着強度の低下を防止することができる。   In the sealing device 1 of the present embodiment, the first annular flange 12 is fitted into the notch step portion 14, and the axial direction of the fitting portion between the outer peripheral end 81 of the annular member 8 and both the annular flanges 12, 13. Since the width is reduced, the position of the outer peripheral portion 2g of the cancel plate 2 can be easily set. In particular, since the first annular flange 12 is in close contact with the outer surface 12a and the side surface 8s of the annular member 8 being flush with each other, the first annular flange 12 does not protrude in the axial direction, and the above-described fitting is performed. The axial width of the portion can be effectively reduced. Thereby, cost can be held down without requiring high-precision processing. Further, even if there is a dimensional error such as warpage in the annular member 8, the outer peripheral portion 2g of the cancel plate 2 is difficult to interfere with the multi-plate clutch 7, so that the first annular flange 12 is difficult to be damaged and the seal lip 9 can prevent the adhesive strength from decreasing.

図3は、本発明の第二実施形態を示す要部断面図である。本実施形態が上記第一実施形態と異なる点は、環状の切欠段差部15を異なる角に形成した点である。なお、以下の各実施形態について第一実施形態と共通する部分については同符号を付してその説明を省略する。同図に示すように、環状部材8の外周端81の多板クラッチ側と反対側の角には、第二環状鍔部13を嵌め合わせ可能な環状の切欠段差部15が形成されている。そして、第二環状鍔部13が、その外側面13aを環状部材8の側面8sと面一とした状態で密着している。   FIG. 3 is a cross-sectional view of a main part showing a second embodiment of the present invention. This embodiment is different from the first embodiment in that the annular notch step portion 15 is formed at a different corner. In addition, about the following each embodiment, about the part which is common in 1st embodiment, the same code | symbol is attached | subjected and the description is abbreviate | omitted. As shown in the figure, an annular notch step portion 15 to which the second annular flange 13 can be fitted is formed at the corner of the outer peripheral end 81 of the annular member 8 opposite to the multi-plate clutch side. The second annular flange 13 is in close contact with the outer side surface 13 a of the side surface 8 s of the annular member 8.

なお、反対側の第一環状鍔部12は、外周端81の多板クラッチ側の側面へ密着している。このように、切欠段差部15を外周端81の多板クラッチ側とは反対側の角に形成することによっても、環状部材8の外周端81と両環状鍔部12,13との嵌め合い部分の軸方向幅を従来よりも減少させることができる。また、第二環状鍔部13が軸方向に突出していないので、ピストンシール4がキャンセルプレート2へ近づいたときに当該第二環状鍔部13と干渉し難くなっている。   The first annular flange 12 on the opposite side is in close contact with the side surface of the outer peripheral end 81 on the multi-plate clutch side. As described above, the notch step portion 15 is formed at the corner of the outer peripheral end 81 opposite to the multi-plate clutch side, so that the fitting portion between the outer peripheral end 81 of the annular member 8 and the two annular flanges 12 and 13 is also provided. The axial width can be reduced as compared with the conventional case. Further, since the second annular flange 13 does not protrude in the axial direction, it is difficult to interfere with the second annular flange 13 when the piston seal 4 approaches the cancel plate 2.

図4は、本発明の第三実施形態を示す要部断面図である。本実施形態が上記各実施形態と異なる点は、外周端81の両側の角に切欠段差部14、15が形成されている点である。同図に示すように、環状部材8の外周端81の多板クラッチ側の角、及びその反対側の角には、それぞれ第一環状鍔部12、第二環状鍔部13を嵌め合わせ可能な環状の切欠段差部14,15が形成されている。そして、第一環状鍔部12、第二環状鍔部13が、それら各外側面12a,13aを環状部材8の側面8sと面一とした状態で密着している。このように、切欠段差部14,15を外周端81の両側の角に形成し、各切欠段差部14,15に第一、第二環状鍔部12,13を嵌め合わすことで、外周端81と両環状鍔部12,13との嵌め合い部分の軸方向幅を大幅に減少させることができる。これにより、切欠段差部を外周端81の片側の角だけに形成した場合よりも、キャンセルプレート2の外周部2gの位置を更に設定し易くなる。   FIG. 4 is a cross-sectional view of an essential part showing a third embodiment of the present invention. The present embodiment is different from the above embodiments in that notch step portions 14 and 15 are formed at corners on both sides of the outer peripheral end 81. As shown in the figure, the first annular collar 12 and the second annular collar 13 can be fitted to the corner of the outer peripheral end 81 of the annular member 8 on the multi-plate clutch side and the opposite corner, respectively. Annular notch steps 14 and 15 are formed. The first annular flange 12 and the second annular flange 13 are in close contact with each of the outer side surfaces 12a, 13a flush with the side surface 8s of the annular member 8. As described above, the notch step portions 14 and 15 are formed at the corners on both sides of the outer peripheral end 81, and the first and second annular flange portions 12 and 13 are fitted to the respective notch step portions 14 and 15, thereby And the axial direction width | variety of the fitting part of both the annular collar parts 12 and 13 can be reduced significantly. This makes it easier to set the position of the outer peripheral portion 2g of the cancel plate 2 than when the notch step portion is formed only at one corner of the outer peripheral end 81.

図5は、本発明の第四実施形態を示す要部断面図である。本実施形態が上記第一実施形態と異なる点は、第一環状鍔部12の先端12aと切欠段差部14の壁面14aとの間に隙間Sが空けられている点である。第一実施形態と同様に、環状部材8の外周端81の多板クラッチ側の角に、第一環状鍔部12を嵌め合わせ可能な環状の切欠段差部14が形成されている。第一環状鍔部12の径方向長さは、切欠段差部14の奥行き長さよりも小さくなっており、第一環状鍔部12の先端12aと壁面14aとの間に隙間Sが形成されている。これは、シールリップ9を加硫接着するための図示しない金型の一部を、先端12aと壁面14aとの間に挿入したことによるものである。   FIG. 5 is a cross-sectional view of an essential part showing a fourth embodiment of the present invention. The present embodiment is different from the first embodiment in that a gap S is provided between the tip 12a of the first annular flange 12 and the wall surface 14a of the notch step portion 14. Similar to the first embodiment, an annular notch step portion 14 capable of fitting the first annular flange 12 is formed at the corner of the outer peripheral end 81 of the annular member 8 on the multi-plate clutch side. The length in the radial direction of the first annular flange 12 is smaller than the depth length of the notch step portion 14, and a gap S is formed between the tip 12a of the first annular flange 12 and the wall surface 14a. . This is because a part of a mold (not shown) for vulcanizing and bonding the seal lip 9 is inserted between the tip 12a and the wall surface 14a.

第一実施形態のように、第一環状鍔部12の先端12aと切欠段差部14の壁面14aとの間に隙間が無ければ、シールリップ9を加硫接着した際に当該先端12aと壁面14aの境目部分にバリが形成される場合が多い。このようなバリは、軸方向へ突出することとなり外周端81が多板クラッチ側へ寄ったときに多板クラッチ7へ接触するおそれがある。そこで、切欠段差部14の壁面14aにあてがうように金型の一部を挿入しておけば、バリの形成を抑えることができる。なお、本実施形態では、切欠段差部を外周端81の多板クラッチ側の角に形成した場合を説明したが、第二実施形態と同様に、切欠段差部を外周端81の多板クラッチ側と反対側の角に形成して、第二環状鍔部の先端を壁面との間に隙間を形成するようにしてもよい。   If there is no gap between the tip 12a of the first annular flange 12 and the wall surface 14a of the notch step portion 14 as in the first embodiment, the tip 12a and the wall surface 14a when the seal lip 9 is vulcanized and bonded. In many cases, burrs are formed at the borders of the area. Such a burr protrudes in the axial direction, and there is a possibility that it contacts the multi-plate clutch 7 when the outer peripheral end 81 approaches the multi-plate clutch side. Therefore, if a part of the mold is inserted so as to be applied to the wall surface 14a of the notch step portion 14, the formation of burrs can be suppressed. In the present embodiment, the case where the notch step portion is formed at the corner on the multi-plate clutch side of the outer peripheral end 81 has been described. However, the notch step portion is formed on the multi-plate clutch side of the outer peripheral end 81 as in the second embodiment. A gap may be formed between the end of the second annular flange and the wall surface.

なお、上記実施形態はすべて例示であって制限的なものではない。本発明の技術的範囲は特許請求の範囲によって規定され、そこに記載された構成と均等の範囲内のすべての変更も本発明の技術的範囲に含まれる。環状部材の外周端へ形成する切欠段差部の深さ、奥行き長さや環状鍔部の長さは適宜変更することができ、環状部材、シールリップの形状、ピストンシールの構成は上記各実施形態に限定されるものではない。また、環状鍔部の外側面は、環状部材の側面よりも若干突出していてもよいが、好ましくは上記各実施形態のように面一か或いは内側へ位置していればよい。   In addition, all the said embodiment is illustrations and is not restrictive. The technical scope of the present invention is defined by the claims, and all modifications within the scope equivalent to the configurations described therein are also included in the technical scope of the present invention. The depth of the notch step portion formed on the outer peripheral end of the annular member, the depth length and the length of the annular flange portion can be changed as appropriate, and the shape of the annular member, the seal lip, and the piston seal configuration are the same as those in the above embodiments. It is not limited. In addition, the outer side surface of the annular flange may slightly protrude from the side surface of the annular member, but it is preferable that the outer side surface is located flush or inward as in the above embodiments.

本発明の密封装置を備えたボンデッドピストンシールが自動変速機に組み込まれた状態の一実施形態を示す断面図である。It is sectional drawing which shows one Embodiment of the state in which the bonded piston seal provided with the sealing device of this invention was integrated in the automatic transmission. 図1の要部断面図である。It is principal part sectional drawing of FIG. 第二実施形態に係る要部断面図である。It is principal part sectional drawing concerning 2nd embodiment. 第三実施形態に係る要部断面図である。It is principal part sectional drawing concerning 3rd embodiment. 第四実施形態に係る要部断面図である。It is principal part sectional drawing which concerns on 4th embodiment.

符号の説明Explanation of symbols

1 ボンデッドピストンシール
2 密封装置(キャンセルプレート)
3 ピストンシール
4 スプリング
5 ハウジング
7 多板クラッチ
8 環状部材
81 外周端
9 シールリップ
11 接着部分
12 第一環状鍔部
13 第二環状鍔部
14、15 切欠段差部
1 Bonded piston seal 2 Sealing device (cancellation plate)
3 piston seal 4 spring 5 housing 7 multi-plate clutch 8 annular member 81 outer peripheral end 9 seal lip 11 adhesive portion 12 first annular flange 13 second annular flange 14, 15 notch stepped portion

Claims (6)

流体圧力により軸方向へ移動して多板クラッチを押圧する環状のピストンシールと、
このピストンシールとの間で環状のキャンセル室を形成する環状のキャンセルプレートとを備え、
前記キャンセルプレートは、前記ピストンシールと対向して配置される金属製の環状部材と、この環状部材の外周端に接着され前記ピストンシールとの間をシールするシールリップとを備え、前記シールリップにおける接着部分に前記環状部材の外周端を軸方向両側から挟み込む一対の環状鍔部が形成された密封装置であって、
前記環状部材の外周端の角に、少なくとも一方の前記環状鍔部と嵌め合い可能な環状の切欠段差部が形成され、この切欠段差部に当該環状鍔部が嵌められた状態で前記シールリップが接着されていることを特徴とする密封装置。
An annular piston seal that moves axially by fluid pressure and presses the multi-plate clutch;
An annular cancel plate that forms an annular cancel chamber with the piston seal;
The cancel plate includes a metal annular member disposed to face the piston seal, and a seal lip that is bonded to an outer peripheral end of the annular member and seals between the piston seal. A sealing device in which a pair of annular flanges that sandwich the outer peripheral end of the annular member from both sides in the axial direction is formed in an adhesive part,
An annular notch stepped portion that can be fitted with at least one of the annular flanges is formed at a corner of the outer peripheral end of the annular member, and the seal lip is fitted in the state where the annular flange is fitted into the notched stepped portion. A sealing device characterized by being bonded.
前記切欠段差部に嵌められた前記環状鍔部の外側面が、前記環状部材の側面と面一又は軸方向において当該側面よりも内側へ位置している請求項1に記載の密封装置。   2. The sealing device according to claim 1, wherein an outer side surface of the annular flange portion fitted in the notch step portion is positioned inward of the side surface in the same or axial direction as the side surface of the annular member. 前記環状部材の切欠段差部は前記外周端の多板クラッチ側の角に形成され、一方の前記環状鍔部が当該切欠段差部に嵌められている請求項1又は2に記載の密封装置。   3. The sealing device according to claim 1, wherein the notch step portion of the annular member is formed at a corner on the multi-plate clutch side of the outer peripheral end, and one of the annular flange portions is fitted into the notch step portion. 前記環状部材の切欠段差部は前記外周端の多板クラッチ側と反対側の角に形成され、一方の前記環状鍔部が当該切欠段差部に嵌められている請求項1又は2に記載の密封装置。   The notch step part of the said annular member is formed in the corner on the opposite side to the multi-plate clutch side of the said outer peripheral end, and the said one annular collar part is fitted by the said notch step part. apparatus. 前記環状部材の切欠段差部は前記外周端の両側の角に形成され、前記両環状鍔部がそれぞれ当該切欠段差部に嵌められている請求項1又は2に記載の密封装置。   3. The sealing device according to claim 1, wherein the notch step portion of the annular member is formed at both corners of the outer peripheral end, and the both annular flange portions are respectively fitted to the notch step portion. 前記切欠段差部に嵌められた前記環状鍔部は、その先端と当該切欠段差部の壁面との間に隙間が空けられた状態で接着されている請求項1〜5のいずれか一項に記載の密封装置。   The said annular collar part fitted by the said notch level difference part is adhere | attached in the state in which the clearance gap was opened between the front-end | tip and the wall surface of the said notch level difference part. Sealing device.
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010276187A (en) * 2009-06-01 2010-12-09 Koyo Sealing Techno Co Ltd Method for manufacturing sealing device
WO2020137580A1 (en) * 2018-12-25 2020-07-02 Nok株式会社 Clutch piston
WO2021079631A1 (en) * 2019-10-25 2021-04-29 Nok株式会社 Sealing device

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Publication number Priority date Publication date Assignee Title
JPH09317792A (en) * 1996-05-30 1997-12-09 Mitsubishi Cable Ind Ltd Piston for automatic transmission
JP2000027892A (en) * 1998-07-13 2000-01-25 Mitsubishi Cable Ind Ltd Automatic transmission piston structure
JP2005265160A (en) * 2004-03-22 2005-09-29 Nok Corp Oil seal

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH09317792A (en) * 1996-05-30 1997-12-09 Mitsubishi Cable Ind Ltd Piston for automatic transmission
JP2000027892A (en) * 1998-07-13 2000-01-25 Mitsubishi Cable Ind Ltd Automatic transmission piston structure
JP2005265160A (en) * 2004-03-22 2005-09-29 Nok Corp Oil seal

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010276187A (en) * 2009-06-01 2010-12-09 Koyo Sealing Techno Co Ltd Method for manufacturing sealing device
WO2020137580A1 (en) * 2018-12-25 2020-07-02 Nok株式会社 Clutch piston
CN112789425A (en) * 2018-12-25 2021-05-11 Nok株式会社 Clutch piston
WO2021079631A1 (en) * 2019-10-25 2021-04-29 Nok株式会社 Sealing device
JPWO2021079631A1 (en) * 2019-10-25 2021-04-29
CN114514391A (en) * 2019-10-25 2022-05-17 Nok株式会社 Sealing device

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