JP2008232403A - Bearing unit for strut - Google Patents

Bearing unit for strut Download PDF

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JP2008232403A
JP2008232403A JP2007077266A JP2007077266A JP2008232403A JP 2008232403 A JP2008232403 A JP 2008232403A JP 2007077266 A JP2007077266 A JP 2007077266A JP 2007077266 A JP2007077266 A JP 2007077266A JP 2008232403 A JP2008232403 A JP 2008232403A
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bearing
strut
ring
cover member
peripheral edge
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Hiroshi Yano
広 矢野
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JTEKT Corp
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JTEKT Corp
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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
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C19/00Bearings with rolling contact, for exclusively rotary movement
    • F16C19/02Bearings with rolling contact, for exclusively rotary movement with bearing balls essentially of the same size in one or more circular rows
    • F16C19/10Bearings with rolling contact, for exclusively rotary movement with bearing balls essentially of the same size in one or more circular rows for axial load mainly

Abstract

<P>PROBLEM TO BE SOLVED: To provide a bearing for a strut sufficiently exerting a bearing function for a long period of time, even if loads in a vertical direction are repeatedly applied by up-and-down motions of a vehicle at low cost. <P>SOLUTION: A bearing unit 100 for a strut comprises: a pair of bearing rings 2, 3 vertically opposed to each other with sandwiching rolling elements 4 between them in a rotational axis L direction of the bearing 1 for a strut; and a pair of cover members 5, 6 sandwiching the bearing rings 2, 3 from above and below. Elastic seal members 7, 8 are integrally molded on both sides in a radial direction of a bearing ring mounting part 5r in a lower cover member 5. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

本発明は、ストラット式サスペンション装置に使用されるストラット用軸受ユニットに関する。   The present invention relates to a strut bearing unit used in a strut suspension device.

特開2001−173658号公報JP 2001-173658 A 特開2003−214425号公報JP 2003-214425 A 特開2004−176728号公報JP 2004-176728 A

車輪と車体とをつなぐストラット式サスペンション装置には、車体側との取り付け部が設けられてストラット軸の上端に固定されるアッパーサポートと、コイルスプリングの上端側を支持するアッパースプリングシートとの間にストラット用の軸受が介装されており、アッパースプリングシートのアッパーサポートに対するストラット軸線回りの回転が許容される構成となっている(特許文献1〜3)。   A strut suspension device that connects a wheel and a vehicle body is provided between an upper support that is fixed to the upper end of a strut shaft and an upper spring seat that supports the upper end side of a coil spring. A strut bearing is interposed, and rotation around the strut axis with respect to the upper support of the upper spring seat is allowed (Patent Documents 1 to 3).

ところで、ストラット式サスペンション装置においては、ストラット用軸受内部の隙間が、車輪が跳ね上げた路面上の水や泥水等の流動性異物にさらされ易いため、その隙間の両端にはゴムシール部が設けられる。従来のゴムシール部には、図5に示すように、下側軌道輪3に一体加硫された形で形成されるものがある。図5のゴムシール部80は、下側軌道輪3の両端縁に一体化されて上側軌道輪2に向けて突出するリップ部7a,8a,8bを有する両端上部7,8と、その両端上部7,8から下側軌道輪3の側面及び下面を被うように密着して回り込み、両端上部7,8の双方を一体に連結する周り込み部87(厚さ約0.1mm〜0.2mm)とを有した形で形成されている。このように、軌道輪両端のゴムシール部が該軌道輪に一体加硫される従来の構造は、軌道輪とゴムシール部とを一体化することにより製造過程を簡略化し、低コスト化を実現するための技術である。   By the way, in the strut type suspension device, since the gap inside the strut bearing is easily exposed to fluid foreign matters such as water and muddy water on the road surface where the wheels are flipped up, rubber seal portions are provided at both ends of the gap. . Some conventional rubber seals are formed in a form integrally vulcanized with the lower race 3 as shown in FIG. The rubber seal portion 80 of FIG. 5 includes upper ends 7 and 8 having lip portions 7a, 8a, and 8b that are integrated with both ends of the lower race 3 and project toward the upper race 2, and upper ends 7 of the ends. , 8 so as to cover the side surface and the lower surface of the lower race ring 3 so as to cover each other, and a wrap portion 87 (thickness of about 0.1 mm to 0.2 mm) for connecting both the upper ends 7 and 8 together. It is formed in the form with. As described above, the conventional structure in which the rubber seal portions at both ends of the bearing ring are integrally vulcanized to the bearing ring is intended to simplify the manufacturing process and realize cost reduction by integrating the bearing ring and the rubber seal portion. Technology.

ところが、車両の上下運動に伴いストラット式サスペンション装置には上下方向の荷重が繰り返し作用することになるが、このとき、この回り込み部87にも上下方向の荷重が繰り返し負荷されるので、回り込み部87には磨耗やはがれが生じる可能性がある。回り込み部87に磨耗やはがれが生じた場合には、下側軌道輪3と下カバー部材5との間ですべりが発生し易くなり、軸受機能の早期低下につながってしまう。   However, the vertical load is repeatedly applied to the strut suspension device as the vehicle moves up and down. At this time, the vertical load is also repeatedly applied to the wrap portion 87. There is a possibility of wear and peeling. When the wraparound portion 87 is worn or peeled off, slippage is likely to occur between the lower race 3 and the lower cover member 5, leading to an early deterioration of the bearing function.

本発明の課題は、車両の上下運動により上下方向の荷重が繰り返し負荷されても、軸受機能を長期に渡って十分に発揮できるストラット用軸受を低コストで提供することにある。   SUMMARY OF THE INVENTION An object of the present invention is to provide a strut bearing that can sufficiently exhibit a bearing function for a long period of time even when a vertical load is repeatedly applied by a vertical movement of a vehicle.

課題を解決するための手段及び作用・効果Means and actions / effects for solving the problems

上記の課題を解決するために、本発明のストラット用軸受ユニットは、
車両のストラット式サスペンション装置のアッパーサポート側に設けられる上側軌道輪と、同じくストラット式サスペンション装置のコイルスプリング側に設けられる下側軌道輪と、それら一対の軌道輪の間に配される複数の転動体とを有するストラット用軸受と、
ストラット用軸受の回転軸線方向において上側軌道輪の軌道面とは反対側に結合される上カバー部材と、同じく回転軸線方向において下側軌道輪の軌道面とは反対側に結合される下カバー部材とからなる一対のカバー部材を備え、
回転軸線に関し各軌道輪の内周縁側又は外周縁側の少なくともいずれかにおいて、軌道輪の一方をなす第一軌道輪の周縁部が同じく他方をなす第二軌道輪の周縁よりも張り出すとともに、該第二軌道輪に結合されたカバー部材の該第二軌道輪の周縁から張り出して位置するカバー周縁部と第一軌道輪の周縁部とが対向し、当該カバー周縁部に、第一軌道輪の周縁部に摺接する弾性シール部材が一体成形されてなることを特徴とする。
In order to solve the above problems, the strut bearing unit of the present invention includes:
The upper raceway provided on the upper support side of the strut suspension device of the vehicle, the lower raceway provided on the coil spring side of the strut suspension device, and a plurality of rolling wheels arranged between the pair of raceways. A strut bearing having a moving body;
An upper cover member coupled to the opposite side of the raceway surface of the upper race ring in the rotation axis direction of the strut bearing, and a lower cover member coupled to the opposite side of the raceway plane of the lower race ring in the rotation axis direction. A pair of cover members consisting of
In at least one of the inner peripheral edge side and the outer peripheral edge side of each raceway with respect to the rotation axis, the peripheral edge portion of the first raceway ring forming one of the raceway rings protrudes from the peripheral edge of the second raceway ring also forming the other, A cover peripheral portion of the cover member coupled to the second race ring is projected from the periphery of the second race ring, and a peripheral portion of the first race ring is opposed to the cover peripheral portion. An elastic seal member that is in sliding contact with the peripheral edge portion is integrally formed.

上記本発明の構成によれば、車両の上下運動により上下方向の負荷を支持する部分がシール部に存在しないので、磨耗やすべりの発生箇所がない。従って、軸受は、その機能を長期に渡って十分に発揮することができる。また、シール部はカバー部材に一体成形されるので、従来の、軌道輪に一体成形されていた場合と比較しても、大きなコストアップにはならない。   According to the above configuration of the present invention, there is no portion where the vertical load is supported by the vertical movement of the vehicle in the seal portion, and therefore there is no occurrence of wear or slip. Therefore, the bearing can sufficiently exhibit its function over a long period of time. Further, since the seal portion is integrally formed with the cover member, the cost is not greatly increased even when compared with the conventional case where the seal portion is integrally formed with the raceway ring.

弾性シール部材は、熱可塑性エラストマー又は2液混合型ゴムによる成形体とすることができる。これらの材料は、シール部材とカバー部材とを一体成形(2色成形)するのに好適である。具体的には、弾性シール部材をシリコーンゴムによる成形体とすることが可能である。   The elastic seal member can be a molded body made of thermoplastic elastomer or two-component mixed rubber. These materials are suitable for integrally molding the seal member and the cover member (two-color molding). Specifically, the elastic seal member can be a molded body made of silicone rubber.

また、各カバー部材には、対応する軌道輪を装着する軌道輪装着部を形成することができる。このとき、その軌道輪装着部とカバー周縁部とが隣接する形で弾性シール部材を一体化させることもできる。この構成によると、軌道輪装着部をなす凹部と弾性シール部材が設けられる凹部とが連通下形状とすることができるので、成形されるカバー部材の形状を単純化することができる。   Each cover member can be formed with a bearing ring mounting portion for mounting a corresponding bearing ring. At this time, the elastic seal member can be integrated so that the bearing ring mounting portion and the cover peripheral portion are adjacent to each other. According to this configuration, since the concave portion forming the bearing ring mounting portion and the concave portion provided with the elastic seal member can be formed in a communicating lower shape, the shape of the cover member to be molded can be simplified.

カバー周縁部は、回転軸線を含む当該回転軸線方向断面において、断面L字型に切り欠かれた形状とされ、該切り欠き部に弾性シール部材が一体化された形状とすることができる。この構成によると、カバー周縁部を断面L字型のシンプルな形状とすることができる。また、シール材料をL字状の壁面全面にわたって密着させることができるので、シール部材とカバー部材とを強固に一体化させ易い。   The cover peripheral portion may have a shape that is cut out in an L-shaped cross section in a cross section in the direction of the rotation axis including the rotation axis, and an elastic seal member may be integrated with the cutout portion. According to this structure, a cover peripheral part can be made into the simple shape of a cross-section L-shape. Moreover, since the sealing material can be closely adhered over the entire L-shaped wall surface, it is easy to firmly integrate the sealing member and the cover member.

また、第一軌道輪の周縁部の、第二軌道輪の周縁からの張り出し方向において、弾性シール部材を、軌道輪装着部に装着された第二軌道輪に密着させる形で形成することができる。この構成によると、弾性シール部材を用いて軌道輪の位置決めを行なうことができる。   In addition, the elastic seal member can be formed in close contact with the second race ring mounted on the race ring mounting portion in the protruding direction of the peripheral portion of the first race ring from the periphery of the second race ring. . According to this configuration, the race can be positioned using the elastic seal member.

また、弾性シール部材は下カバー部材にのみ一体成形されていてもよい。より具体的に言えば、回転軸線に関し各軌道輪の内周縁側又は外周縁側の少なくともいずれかにおいて、上側軌道輪の周縁部が下側軌道輪の周縁よりもラジアル方向に張り出すとともに、該下側軌道輪に結合された下カバー部材の、該下側軌道輪の周縁から張り出して位置するカバー周縁部と上側軌道輪の周縁部とが回転軸線方向に対向し、当該カバー周縁部に一体成形される弾性シール部材を、上側軌道輪の周縁部に摺接させて構成することができる。この構成によると、弾性シール部材は基端部が下側にあり、摺接部分が上方に位置する構成となる。外部から侵入する泥水等の流動性異物は重力の影響を受けるので、基端部が上側で摺接部分が下方にある場合に比べると、軸受内を効果的にシールできる。   The elastic seal member may be integrally formed only on the lower cover member. More specifically, with respect to the rotation axis, at least one of the inner periphery side and the outer periphery side of each track ring, the peripheral portion of the upper track ring protrudes in the radial direction from the periphery of the lower track ring, and the lower The cover peripheral portion of the lower cover member that is coupled to the side raceway and that protrudes from the peripheral edge of the lower raceway and the peripheral portion of the upper raceway are opposed to each other in the rotational axis direction, and are integrally formed with the cover peripheral portion. The elastic seal member can be configured to be in sliding contact with the peripheral edge of the upper race. According to this configuration, the elastic seal member has a configuration in which the base end portion is on the lower side and the sliding contact portion is positioned on the upper side. Since fluid foreign matters such as muddy water entering from the outside are affected by gravity, the inside of the bearing can be effectively sealed as compared with the case where the base end portion is on the upper side and the sliding contact portion is on the lower side.

以下、本発明に係るストラット軸支持構造の実施形態を、図面を参照しつつ説明する。図1は、ストラット式サスペンション装置の一例を示す斜視図、図2は、図1のP部の拡大断面図、図3は、図2の要部拡大図である。   Hereinafter, embodiments of a strut shaft support structure according to the present invention will be described with reference to the drawings. 1 is a perspective view showing an example of a strut suspension device, FIG. 2 is an enlarged cross-sectional view of a portion P in FIG. 1, and FIG. 3 is an enlarged view of a main part of FIG.

図1に示すように、ストラット式サスペンション装置(ストラット用軸受ユニット)100は、支持メンバー81に装着されて車体の一部を支持するストラット軸(サスペンション部)83と、ストラット軸83に組み込まれタイヤ側からの振動や衝撃を吸収するコイルスプリング82と、車体の上部に固定されるアッパーサポート(車体側支持部)70とを備えている。   As shown in FIG. 1, a strut suspension device (strut bearing unit) 100 includes a strut shaft (suspension portion) 83 that is mounted on a support member 81 and supports a part of a vehicle body, and a tire built into the strut shaft 83. A coil spring 82 that absorbs vibrations and shocks from the side and an upper support (vehicle body side support) 70 that is fixed to the upper portion of the vehicle body are provided.

このストラット式サスペンション装置100は、その下側が車体側の支持メンバー81に取り付けられ、車体全体を車軸等に対して浮上支持する役割を有する。そして、この支持メンバー81周りには、車軸93と、車軸93に固定され車輪を装着するハブ90と、ハブ90に固定されるブレーキディスク91と、ブレーキディスク91に油圧により圧接させるパッドを内部に設けたキャリパボディ92とが配置されている。   The strut suspension device 100 has a lower side attached to a support member 81 on the vehicle body side, and has a role of supporting the entire vehicle body in a floating manner with respect to an axle or the like. Around the support member 81, an axle 93, a hub 90 fixed to the axle 93 and fitted with wheels, a brake disc 91 fixed to the hub 90, and a pad that presses the brake disc 91 with hydraulic pressure are provided inside. A provided caliper body 92 is disposed.

ストラット式サスペンション装置100の上部の内部構造は、図2に示すように、ストラット軸83と、ストラット軸83周りに配置されるコイルスプリング82と、ストラット軸83周りに配置されてコイルスプリング82の上端をストラット軸線L方向(アキシャル方向)に支持する下カバー部材5と、ストラット軸83の上端部にて該ストラット軸83と一体回転可能に設けられて車両の車体パネル79がボルト(図示なし)により連結されるアッパーサポート(車体側連結部)70と、アッパーサポート70の下端開口内に一体回転可能に結合された上カバー部材6と、下カバー部材5と上カバー部材6との間の介装されるサスペンション用軸受(ストラット用軸受;以下、単に軸受ともいう)1と、を備えて構成されている。さらに、ストラット軸83の上端にて、該ストラット軸83とアッパーサポート70とを一体回転可能に締結するナット86等も設けられている。   As shown in FIG. 2, the internal structure of the upper portion of the strut suspension device 100 includes a strut shaft 83, a coil spring 82 disposed around the strut shaft 83, and an upper end of the coil spring 82 disposed around the strut shaft 83. The lower cover member 5 that supports the strut shaft L in the direction of the strut axis L (axial direction) and the strut shaft 83 is provided at the upper end of the strut shaft 83 so as to be rotatable integrally with the strut shaft 83. An upper support (vehicle body side connecting portion) 70 to be connected, an upper cover member 6 coupled so as to be integrally rotatable within a lower end opening of the upper support 70, and an interposition between the lower cover member 5 and the upper cover member 6 And a suspension bearing (a strut bearing; hereinafter, also simply referred to as a bearing) 1. Further, at the upper end of the strut shaft 83, a nut 86 and the like for fastening the strut shaft 83 and the upper support 70 so as to be integrally rotatable are also provided.

アッパーサポート70は、弾性材71と、ナット86によりアッパーサポート70をストラット軸83に一体回転可能に締結するためのリング部材72,73と、内端部が弾性材71の内部に埋設されるとともに外端部に車体79へのボルト固定部(図示なし)が形成されるリング部材74と、アッパーサポート70の下端部を形成して上カバー部材6と一体回転可能に結合する金属プレート75と、で構成されている。   The upper support 70 includes an elastic member 71, ring members 72 and 73 for fastening the upper support 70 to the strut shaft 83 so as to be integrally rotatable with a nut 86, and an inner end portion embedded in the elastic member 71. A ring member 74 in which a bolt fixing portion (not shown) to the vehicle body 79 is formed at the outer end, a metal plate 75 which forms a lower end portion of the upper support 70 and is coupled to the upper cover member 6 so as to be integrally rotatable, It consists of

下カバー部材5と上カバー部材6との間には、軸受1を配置する軸受配置空隙89が、ストラット軸83に対しラジアル方向外側を開放する形で設けられている。この軸受配置空隙89には軸受1が配置されており、軸受1は、図3に示すように、上カバー部材6の下端面に形成された凹状の軌道輪装着部6rに一体回転可能に固定される上側軌道輪2と、コイルスプリング82の上端側を支持する下カバー部材5の上端面に形成された凹状の軌道輪装着部5rに一体回転可能に固定される下側軌道輪3と、それら軌道輪2,3の間に配される複数の転動体からなる転動体列4とを備えて構成されている。つまり、軸受1の回転軸線L方向において、上側軌道輪2の軌道面2rとは反対側に上カバー部材6が結合され、同じく回転軸線L方向において下側軌道輪3の軌道面3rとは反対側に下カバー部材3が結合されるとともに、上側軌道輪2と下側軌道輪3とが、複数の転動体4を挟む形で互いに相対回転可能にストラット軸83の軸線(回転軸線)L方向に対向配置されて、ナット86の締結に伴い上カバー部材6と下カバー部材5との間で狭圧保持されている。   Between the lower cover member 5 and the upper cover member 6, a bearing disposition space 89 in which the bearing 1 is disposed is provided so as to open the radially outer side with respect to the strut shaft 83. The bearing 1 is arranged in the bearing arrangement space 89, and the bearing 1 is fixed to a concave bearing ring mounting portion 6r formed on the lower end surface of the upper cover member 6 so as to be integrally rotatable as shown in FIG. The upper race ring 2 that is formed, and the lower race ring 3 that is fixed to the concave race ring mounting portion 5r formed on the upper end surface of the lower cover member 5 that supports the upper end side of the coil spring 82 so as to be integrally rotatable. The rolling element row 4 is composed of a plurality of rolling elements arranged between the races 2 and 3. That is, the upper cover member 6 is coupled to the opposite side to the raceway surface 2r of the upper race 2 in the direction of the rotation axis L of the bearing 1, and is opposite to the raceway surface 3r of the lower raceway 3 in the same direction of the rotation axis L. The lower cover member 3 is coupled to the side, and the upper race ring 2 and the lower race ring 3 are rotatable relative to each other while sandwiching the plurality of rolling elements 4 in the direction of the axis (rotation axis) L of the strut shaft 83 The upper cover member 6 and the lower cover member 5 are held at a narrow pressure as the nut 86 is fastened.

ストラット軸線Lに関し各軌道輪2,3のラジアル方向周縁側において、上側軌道輪2の内周縁部21は、下側軌道輪3の周縁31aよりもラジアル方向内向きに張り出している。そして、この上側軌道輪2の周縁部21と、下側軌道輪3に結合されたカバー部材5の該下側軌道輪3の周縁31aからラジアル方向内向きに張り出したところに位置するカバー周縁部51とが対向している。さらに、このカバー周縁部51には、上側軌道輪2の周縁部21に摺接する弾性シール部材7が一体成形されている。他方、同じくストラット軸線Lに関し各軌道輪2,3の外周縁側において、上側軌道輪2の周縁部22が下側軌道輪3の周縁32aよりもラジアル方向外向きに張り出している。そして、この上側軌道輪2の周縁部22と、該下側軌道輪3に結合されたカバー部材5の該下側軌道輪3の周縁からラジアル方向外向きに張り出したところに位置するカバー周縁部52とが対向している。さらに、このカバー周縁部52には、上側軌道輪2の周縁部22に摺接する弾性シール部材8が一体成形されている。   With respect to the strut axis L, the inner peripheral edge portion 21 of the upper race ring 2 protrudes inward in the radial direction from the peripheral edge 31 a of the lower race ring 3 on the radial peripheral side of each race ring 2, 3. And the peripheral part 21 of this upper track ring 2 and the cover peripheral part located in the place which protruded inward in the radial direction from the peripheral part 31a of this lower track ring 3 of the cover member 5 couple | bonded with the lower track ring 3 51 is facing. Further, the cover peripheral portion 51 is integrally formed with an elastic seal member 7 that is in sliding contact with the peripheral portion 21 of the upper race 2. On the other hand, similarly, on the outer peripheral edge side of each of the race rings 2 and 3 with respect to the strut axis L, the peripheral edge portion 22 of the upper race ring 2 projects outward in the radial direction from the peripheral edge 32 a of the lower race ring 3. And the peripheral part 22 of this upper track ring 2, and the cover peripheral part located in the place projected over the radial direction outward from the peripheral part of this lower track ring 3 of the cover member 5 couple | bonded with this lower track ring 3 52 is facing. Further, an elastic seal member 8 that is in sliding contact with the peripheral edge portion 22 of the upper race 2 is integrally formed on the cover peripheral edge portion 52.

これらカバー部材6,5には、対応する軌道輪2,3を装着する軌道輪装着部6r,5rが形成されており、本実施形態においては、軌道輪装着部5rとカバー周縁部51,52とがラジアル方向に隣接する形で、カバー部材5に弾性シール部材7,8が一体化されている。つまり、カバー部材5は、2色成形により弾性シール部材7,8が一体化された成形体(2色成形体)である。カバー周縁部51,52は、ストラット軸線Lを含む当該軸線L方向の断面において、断面L字型をなす形で切り欠かれ、該切り欠き部に弾性シール部材7,8が一体化されている。本実施形態においては、シール部7,8には、対向する軌道輪(本実施形態には上側軌道輪2)に向けて突出するリップ部7a,8a,8bが該対向する軌道輪に対し摺接する形で配置されている。また、ラジアル方向外側に位置するシール部8には、2つのリップ部8a,8bによる二重シール構造とされており、外部から泥水等の流動性異物に侵入を受け易いラジアル方向外側のシール機能が高められている。   The cover members 6 and 5 are formed with bearing ring mounting portions 6r and 5r for mounting the corresponding bearing rings 2 and 3, and in this embodiment, the bearing ring mounting portion 5r and the cover peripheral portions 51 and 52 are provided. And the elastic seal members 7 and 8 are integrated with the cover member 5 in a form adjacent to each other in the radial direction. That is, the cover member 5 is a molded body (two-color molded body) in which the elastic seal members 7 and 8 are integrated by two-color molding. The cover peripheral portions 51 and 52 are cut out in a shape having an L-shaped cross section in the cross section in the direction of the axis L including the strut axis L, and the elastic seal members 7 and 8 are integrated with the cut out portions. . In the present embodiment, the seal portions 7 and 8 are provided with lip portions 7a, 8a, and 8b protruding toward the facing raceway (the upper raceway 2 in this embodiment) with respect to the facing raceway. They are arranged in contact. Further, the seal portion 8 located on the outer side in the radial direction has a double seal structure with two lip portions 8a and 8b, and the seal function on the outer side in the radial direction is liable to intrude into fluid foreign matters such as muddy water from the outside. Has been increased.

なお、本実施形態における弾性シール部材7,8は、上側軌道輪2の周縁部21,22の、第二軌道輪3の周縁31a,32aからの張り出し方向(即ち本実施形態においてはラジアル方向)において、軌道輪装着部5r,6rに装着された第二軌道輪3と密着しており、第二軌道輪3は、弾性シール部材7,8にて上記張り出し方向(ラジアル方向)の位置決めがなされた形となっている。カバー周縁部51,52は、回転軸線Lを含む当該回転軸線L方向断面において、断面L字型に切り欠かれ、該切り欠き部に弾性シール部材が一体化されている。   In addition, the elastic seal members 7 and 8 in this embodiment are protruding directions from the peripheral edges 31a and 32a of the second race ring 3 (that is, radial direction in the present embodiment). Are closely attached to the second bearing ring 3 mounted on the bearing ring mounting portions 5r and 6r, and the second bearing ring 3 is positioned in the protruding direction (radial direction) by the elastic seal members 7 and 8. It has become a shape. The cover peripheral portions 51 and 52 are notched in an L-shaped cross section in the cross section in the direction of the rotation axis L including the rotation axis L, and an elastic seal member is integrated with the notch.

弾性シール部材7,8は、熱可塑性エラストマー又は2液混合型のゴム等による成形体とすることができる。本実施形態においては、シリコーンゴムによる成形体であるが、その他の弾性材であってもよい。また、弾性シール部材7,8を除くカバー部材6,5の本体部はポリアミド66等の樹脂成形体である。   The elastic seal members 7 and 8 can be formed from a thermoplastic elastomer or a two-component mixed rubber or the like. In the present embodiment, the molded body is made of silicone rubber, but other elastic materials may be used. The body portions of the cover members 6 and 5 excluding the elastic seal members 7 and 8 are resin molded bodies such as polyamide 66.

なお、上記の軸受1の組み付けは、図3のようにして行なうことができる。即ち、まずは、図3(a)に示すように、下カバー部材5上に軸受1を配置する。このとき、軸受1の下側軌道輪3を下カバー部材5の軌道輪装着部5rに結合させる。続いて図3(b)に示すように、下カバー部材5上に配置された軸受1の上側軌道輪2上に上カバー部材6を配置する。このとき、軸受1の上側軌道輪2を上カバー部材6の軌道輪装着部6rに結合させる。これにより、図3(c)のように、上カバー部材6に上方への力が作用しても、上カバー部材6の外周縁先端部6aが、下カバー部材5のラジアル方向外縁に形成された凹部5aの上面に係止され、上カバー部材6の上方への抜けが防止された状態となる。つまり、上カバー部材6と下カバー部材5と、さらにはその内部の軸受1がばらけないように固定された状態となる。   The above-described bearing 1 can be assembled as shown in FIG. That is, first, as shown in FIG. 3A, the bearing 1 is disposed on the lower cover member 5. At this time, the lower bearing ring 3 of the bearing 1 is coupled to the bearing ring mounting portion 5 r of the lower cover member 5. Subsequently, as shown in FIG. 3B, the upper cover member 6 is disposed on the upper race 2 of the bearing 1 disposed on the lower cover member 5. At this time, the upper bearing ring 2 of the bearing 1 is coupled to the bearing ring mounting portion 6 r of the upper cover member 6. As a result, as shown in FIG. 3C, the outer peripheral edge tip 6 a of the upper cover member 6 is formed at the outer edge in the radial direction of the lower cover member 5 even when an upward force is applied to the upper cover member 6. The upper cover member 6 is locked to the upper surface of the recessed portion 5a to prevent the upper cover member 6 from coming off upward. That is, the upper cover member 6, the lower cover member 5, and the bearing 1 inside thereof are fixed so as not to be separated.

図3(b)から図3(c)への組み付けについて具体的に説明する。上カバー部材6における外周縁先端部6aは、ラジアル方向内周面に軸線L方向下方に向けてラジアル方向外向きに傾斜する傾斜面を有する。上カバー部材6を軸受1の上側軌道輪2上に配置する際には、上カバー部材6は下方に押し込み、当該外周縁先端部6aの傾斜面上で、下カバー部材5のラジアル方向外側上端縁部5bの外周面を摺動させる。このとき、上カバー部材6の外周縁部6bは、下カバー部材5のラジアル方向外側上端縁部5bによってラジアル方向外向きに弾性変形するが、該ラジアル方向外側上端縁部5bを外周縁先端部6aが乗り越えると弾性復帰して、下カバー部材5の凹部5a内に該外周縁先端部6aのラジアル方向内周側が入り込む。これにより、上カバー部材6は下カバー部材5に対し、上記の抜け止め状態となる。つまり、組み付け作業としては、上カバー部材6を、下カバー部材5上に配置された軸受1の上側軌道輪2上から下方に押し込むだけの簡易なものとなる。   The assembly from FIG. 3B to FIG. 3C will be specifically described. The outer peripheral edge front end portion 6a of the upper cover member 6 has an inclined surface that is inclined radially outward toward the lower side in the axis L direction on the radially inner circumferential surface. When the upper cover member 6 is disposed on the upper race 2 of the bearing 1, the upper cover member 6 is pushed downward, and the upper end of the lower cover member 5 in the radial direction on the inclined surface of the outer peripheral edge tip 6a. The outer peripheral surface of the edge 5b is slid. At this time, the outer peripheral edge 6b of the upper cover member 6 is elastically deformed outward in the radial direction by the radially outer upper end edge 5b of the lower cover member 5. If 6a gets over, it will return elastically and the radially inner peripheral side of the outer peripheral edge tip 6a will enter the recess 5a of the lower cover member 5. Thereby, the upper cover member 6 is in the above-described retaining state with respect to the lower cover member 5. In other words, the assembling work is as simple as pushing the upper cover member 6 downward from above the upper race 2 of the bearing 1 arranged on the lower cover member 5.

以上、本発明の実施形態を説明したが、これらはあくまで例示にすぎず、本発明はこれらに限定されるものではなく、特許請求の範囲の趣旨を逸脱しない限りにおいて種々の変更が可能である。   As mentioned above, although embodiment of this invention was described, these are only illustrations to the last, and this invention is not limited to these, A various change is possible unless it deviates from the meaning of a claim. .

例えば、本発明においては、回転軸線Lに関し各軌道輪2,3の内周縁側又は外周縁側の少なくともいずれかにおいて、軌道輪2,3の一方をなす第一軌道輪の周縁部が同じく他方をなす第二軌道輪の周縁よりも張り出すとともに、該第二軌道輪に結合されたカバー部材の該第二軌道輪の周縁から張り出して位置するカバー周縁部と第一軌道輪の周縁部とが対向し、当該カバー周縁部に、第一軌道輪の周縁部に摺接する弾性シール部材が一体成形される形で構成することができる。   For example, in the present invention, at least one of the inner peripheral edge side and the outer peripheral edge side of each of the race rings 2 and 3 with respect to the rotation axis L, the peripheral portion of the first race ring that forms one of the race rings 2 and 3 is also the other. A cover peripheral portion that protrudes from the peripheral edge of the second raceway ring, and a cover peripheral portion that protrudes from the peripheral edge of the second raceway ring and a peripheral edge portion of the first raceway ring. The elastic seal member which opposes and is slidably contacted with the peripheral part of a 1st track ring in the cover peripheral part can be comprised in the form integrally formed.

従って、例えば、図4に示すように、弾性シール部材7,8を上カバー部材6に一体化させることができる。具体的にいえば、軸線Lに関し各軌道輪2,3の内周縁側及び外周縁側の双方において、下側軌道輪3の周縁部31,32が上側軌道輪2の周縁21a,22aよりもラジアル方向に張り出すとともに、該上側軌道輪2に結合された上カバー部材6の該上側軌道輪2の周縁21a,22aからラジアル方向に張り出したところに位置するカバー周縁部61,62と下側軌道輪3の周縁部31,32とが対向し、当該カバー周縁部61,62に、下側軌道輪2の周縁部31,32に摺接する弾性シール部材7,8が一体成形されている。   Therefore, for example, as shown in FIG. 4, the elastic seal members 7 and 8 can be integrated with the upper cover member 6. Specifically, the peripheral edge portions 31 and 32 of the lower track ring 3 are more radial than the peripheral edges 21 a and 22 a of the upper track ring 2 on both the inner peripheral edge side and the outer peripheral edge side of each track ring 2 and 3 with respect to the axis L. Cover peripheral portions 61 and 62 and a lower track, which extend in the radial direction and are positioned in a radial direction from the peripheral edges 21a and 22a of the upper track ring 2 of the upper cover member 6 coupled to the upper track ring 2 The elastic peripheral members 31 and 32 of the ring 3 are opposed to each other, and elastic seal members 7 and 8 which are in sliding contact with the peripheral edges 31 and 32 of the lower race 2 are integrally formed with the cover peripheral portions 61 and 62.

また、上カバー部材のラジアル方向の一方側に弾性シール部材を、下カバー部材のラジアル方向の他方側に弾性シール部材を一体化させる構成であってもよい。上カバー部材又は下カバー部材のラジアル方向の一方側にのみ弾性シール部材を一体化させる構成であってもよい。   Moreover, the structure which integrates an elastic seal member on the one side of the radial direction of an upper cover member and the elastic seal member on the other side of the radial direction of a lower cover member may be sufficient. The elastic seal member may be integrated only on one side in the radial direction of the upper cover member or the lower cover member.

また、上記実施形態は、対をなす軌道輪がストラット軸線L方向に対向する形で設けられているが、対をなす軌道輪がストラット軸83に対しラジアル方向に対向して、それら軌道輪間に転動体が配置される構成に適用されてもよい。   Further, in the above embodiment, the pair of race rings are provided so as to face the strut axis L direction, but the pair of race rings face the strut shaft 83 in the radial direction, and the space between the race rings is The present invention may be applied to a configuration in which rolling elements are arranged.

本発明のストラット用軸受が適用されるストラット式サスペンション装置の一例を示す斜視図。The perspective view which shows an example of the strut type suspension apparatus with which the bearing for struts of this invention is applied. 本発明の第一実施形態に係る図1のP部の拡大断面図。The expanded sectional view of the P section of Drawing 1 concerning a first embodiment of the present invention. 図2のストラット式サスペンション装置の組付け方法を説明する図。The figure explaining the assembly | attachment method of the strut type suspension apparatus of FIG. 本発明の第二実施形態に係る図1のP部の拡大断面図。The expanded sectional view of the P section of Drawing 1 concerning a second embodiment of the present invention. 従来の実施形態に係る図1のP部の拡大断面図。The expanded sectional view of the P section of Drawing 1 concerning a conventional embodiment.

符号の説明Explanation of symbols

100 ストラット式サスペンション装置(ストラット用軸受ユニット)
1 サスペンション用軸受(ストラット用軸受)
2 上側軌道輪
21,22 (上側軌道輪2の)周縁部
3 下側軌道輪
31a、31b (下側軌道輪3)の周縁
5 下カバー部材
51,52 カバー周縁部
6 上カバー部材
7,8 弾性シール部材
70 アッパーサポート(車体側支持部)
83 ストラット軸
L ストラット軸線(回転軸線)
100 Strut suspension device (Strut bearing unit)
1 Suspension bearing (Strut bearing)
2 Upper track ring 21, 22 Peripheral edge (of upper race ring 2) 3 Lower race ring 31 a, 31 b (Lower race ring 3) peripheral edge 5 Lower cover member 51, 52 Cover peripheral edge 6 Upper cover member 7, 8 Elastic seal member 70 Upper support (vehicle body side support)
83 Strut shaft L Strut axis (rotation axis)

Claims (2)

車両のストラット式サスペンション装置のアッパーサポート側に設けられる上側軌道輪と、同じく前記ストラット式サスペンション装置のコイルスプリング側に設けられる下側軌道輪と、それら一対の軌道輪の間に配される複数の転動体とを有するストラット用軸受と、
前記ストラット用軸受の回転軸線方向において前記上側軌道輪の軌道面とは反対側に結合される上カバー部材と、同じく前記回転軸線方向において前記下側軌道輪の軌道面とは反対側に結合される下カバー部材とからなる一対のカバー部材を備え、
前記回転軸線に関し各前記軌道輪の内周縁側又は外周縁側の少なくともいずれかにおいて、前記軌道輪の一方をなす第一軌道輪の周縁部が同じく他方をなす第二軌道輪の周縁よりも張り出すとともに、該第二軌道輪に結合された前記カバー部材の該第二軌道輪の周縁から張り出して位置するカバー周縁部と前記第一軌道輪の周縁部とが対向し、当該カバー周縁部に、前記第一軌道輪の前記周縁部に摺接する弾性シール部材が一体成形されてなることを特徴とするストラット用軸受ユニット。
An upper raceway provided on the upper support side of the strut suspension device of the vehicle, a lower raceway provided on the coil spring side of the strut suspension device, and a plurality of raceways disposed between the pair of raceways. A strut bearing having rolling elements;
The upper cover member is coupled to the opposite side of the raceway surface of the upper race in the rotation axis direction of the strut bearing, and is coupled to the opposite side of the raceway surface of the lower race in the rotation axis direction. A pair of cover members consisting of a lower cover member,
With respect to the rotation axis, at least one of the inner peripheral edge side and the outer peripheral edge side of each of the track rings, the peripheral edge portion of the first track ring that forms one of the track rings protrudes from the periphery of the second track ring that also forms the other. In addition, the cover peripheral portion that protrudes from the peripheral edge of the second race ring of the cover member coupled to the second race ring and the peripheral edge portion of the first race ring face each other, A strut bearing unit comprising an elastic seal member that is slidably in contact with the peripheral edge of the first raceway ring.
各前記カバー部材には、対応する前記軌道輪を装着する軌道輪装着部が形成されており、当該軌道輪装着部と前記カバー周縁部とが隣接する形で前記弾性シール部材が一体化されてなる請求項1記載のストラット用軸受ユニット。   Each cover member is formed with a bearing ring mounting portion for mounting the corresponding bearing ring, and the elastic seal member is integrated so that the bearing ring mounting portion and the cover peripheral portion are adjacent to each other. The strut bearing unit according to claim 1.
JP2007077266A 2007-03-23 2007-03-23 Bearing unit for strut Pending JP2008232403A (en)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010285037A (en) * 2009-06-10 2010-12-24 Bridgestone Corp Strut mount
JP2011131299A (en) * 2009-12-22 2011-07-07 Nsk Ltd Joint section for manipulator
JP2013500445A (en) * 2009-07-29 2013-01-07 アクティエボラゲット・エスコーエッフ Thrust bearing and vehicle suspension
JP2013151954A (en) * 2012-01-24 2013-08-08 Jtekt Corp Bearing for strut
KR20160050435A (en) * 2014-10-29 2016-05-11 현대모비스 주식회사 Suspention Apparatus Of Vehicle
CN107477082A (en) * 2017-09-18 2017-12-15 浙江辛子精工机械股份有限公司 Closed type plain thrust bearing

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010285037A (en) * 2009-06-10 2010-12-24 Bridgestone Corp Strut mount
JP2013500445A (en) * 2009-07-29 2013-01-07 アクティエボラゲット・エスコーエッフ Thrust bearing and vehicle suspension
JP2011131299A (en) * 2009-12-22 2011-07-07 Nsk Ltd Joint section for manipulator
JP2013151954A (en) * 2012-01-24 2013-08-08 Jtekt Corp Bearing for strut
KR20160050435A (en) * 2014-10-29 2016-05-11 현대모비스 주식회사 Suspention Apparatus Of Vehicle
KR102227851B1 (en) 2014-10-29 2021-03-15 현대모비스 주식회사 Suspention Apparatus Of Vehicle
CN107477082A (en) * 2017-09-18 2017-12-15 浙江辛子精工机械股份有限公司 Closed type plain thrust bearing

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