JP2007132455A - Bearing device for wheel - Google Patents

Bearing device for wheel Download PDF

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Publication number
JP2007132455A
JP2007132455A JP2005327436A JP2005327436A JP2007132455A JP 2007132455 A JP2007132455 A JP 2007132455A JP 2005327436 A JP2005327436 A JP 2005327436A JP 2005327436 A JP2005327436 A JP 2005327436A JP 2007132455 A JP2007132455 A JP 2007132455A
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Japan
Prior art keywords
wheel
rolling surface
tapered
tapered roller
hub
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JP2005327436A
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Japanese (ja)
Inventor
Hiroshi Kawamura
浩志 河村
Hikari Umekida
光 梅木田
Kazunari Yamamoto
一成 山本
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NTN Corp
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NTN Corp
NTN Toyo Bearing Co Ltd
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Priority to JP2005327436A priority Critical patent/JP2007132455A/en
Priority to PCT/JP2006/322190 priority patent/WO2007052807A1/en
Priority to EP06823094A priority patent/EP1950435A4/en
Publication of JP2007132455A publication Critical patent/JP2007132455A/en
Priority to US12/115,730 priority patent/US7857521B2/en
Priority to US12/891,882 priority patent/US8186885B2/en
Pending legal-status Critical Current

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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T10/00Road transport of goods or passengers
    • Y02T10/80Technologies aiming to reduce greenhouse gasses emissions common to all road transportation technologies
    • Y02T10/86Optimisation of rolling resistance, e.g. weight reduction 

Abstract

<P>PROBLEM TO BE SOLVED: To provide a bearing device for a wheel for facilitating assembling, and largely reducing assembling manhours, by reducing weight and the size of the device. <P>SOLUTION: This bearing device for the wheel of a fourth generation structure is constituted of a double row tapered roller bearing of a back face joining type. A cylindrical shaft part 23 is integrally formed in an outside joint member 16, and a hub wheel 12 and the outside joint member 16 are integrally and plastically joined by biting in a recess-projection part 17 formed in an inner diameter of the hub wheel 12 by diametrically expanding this shaft part 23. A cage 7 is formed by injection molding, and a column part 11 between pockets 10 is positioned on the inner diameter side more than a pitch circle diameter of a tapered roller 3. A width W of an inner diameter side opening part of the pocket 10 is set to a width guided without making the tapered roller 3 slip out to the inner diameter side by contacting with a tapered side surface of the column part 11. A large collar 2b for guiding the tapered roller 3 is integrally formed on the large diameter side of an outside rollingly traveling surface 2a of an outside member 2. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は、自動車等の車輪を回転自在に支承する複列円錐ころ軸受からなる車輪用軸受装置、特に、軽量・コンパクト化を図った車輪用軸受装置に関するものである。   The present invention relates to a wheel bearing device including a double-row tapered roller bearing that rotatably supports a wheel of an automobile or the like, and more particularly to a wheel bearing device that is lightweight and compact.

従来から自動車等の車輪を支持する車輪用軸受装置は、車輪を取り付けるためのハブ輪を転がり軸受を介して回転自在に支承するもので、駆動輪用と従動輪用とがある。構造上の理由から、駆動輪用では内輪回転方式が、従動輪用では内輪回転と外輪回転の両方式が一般的に採用されている。この車輪用軸受装置には、所望の軸受剛性を有し、ミスアライメントに対しても耐久性を発揮すると共に、燃費向上の観点から回転トルクが小さい複列アンギュラ玉軸受が多用されている。一方、オフロードカーやトラック等、車体重量が嵩む車両には複列円錐ころ軸受が使用されている。   2. Description of the Related Art Conventionally, a wheel bearing device for supporting a wheel of an automobile or the like is such that a hub wheel for mounting a wheel is rotatably supported via a rolling bearing, and there are a drive wheel and a driven wheel. For structural reasons, an inner ring rotation method is generally used for driving wheels, and an inner ring rotation method and an outer ring rotation method are generally used for driven wheels. As the wheel bearing device, a double-row angular ball bearing having a desired bearing rigidity, exhibiting durability against misalignment, and having a small rotational torque from the viewpoint of improving fuel efficiency is often used. On the other hand, double row tapered roller bearings are used in vehicles such as off-road cars and trucks that have a heavy vehicle body weight.

また、車輪用軸受装置には、懸架装置を構成するナックルとハブ輪との間に複列アンギュラ玉軸受等からなる車輪用軸受を嵌合させた第1世代と称される構造から、外方部材の外周に直接車体取付フランジまたは車輪取付フランジが形成された第2世代構造、また、ハブ輪の外周に一方の内側転走面が直接形成された第3世代構造、あるいは、ハブ輪と等速自在継手の外側継手部材の外周にそれぞれ内側転走面が直接形成された第4世代構造とに大別されている。   Further, the wheel bearing device has a structure called a first generation in which a wheel bearing composed of a double row angular ball bearing or the like is fitted between a knuckle and a hub wheel constituting a suspension device. Second generation structure in which body mounting flange or wheel mounting flange is formed directly on the outer periphery of the member, third generation structure in which one inner rolling surface is directly formed on the outer periphery of the hub wheel, or hub wheel, etc. It is roughly classified into a fourth generation structure in which the inner rolling surface is directly formed on the outer periphery of the outer joint member of the speed universal joint.

ここで、複列円錐ころ軸受からなる車輪用軸受装置は、トラック等、比較的重量が嵩む車両に用いられるため、軽量・コンパクト化へのニーズが少なく、複列アンギュラ玉軸受に比べ開発が遅れ第2世代構造のものまでしか開発されてないのが現状である。しかし、最近は、ワンボックスカー等のワゴン車の需要が増大し、多機能化が求められていることから、複列円錐ころ軸受が必要な負荷容量の大きな車輪用軸受装置においても、軽量・コンパクト化が望まれるようになってきている。   Here, wheel bearing devices consisting of double-row tapered roller bearings are used for relatively heavy vehicles such as trucks, so there is little need for light weight and compactness, and development is delayed compared to double-row angular contact ball bearings. Only the second generation structure has been developed. Recently, however, the demand for wagons such as one-box cars has increased, and there has been a demand for multi-functionality. Therefore, even in wheel bearing devices with large load capacity that require double-row tapered roller bearings, Compactness has been desired.

こうした車輪用軸受装置の一例を図6に示す。この車輪用軸受装置50は、外周にナックル(図示せず)に取り付けられるための車体取付フランジ51bを一体に有し、内周に複列の外側転走面51a、51aが形成された外方部材51と、外周に複列の外側転走面51a、51aに対向する複列の内側転走面52a、54aが形成された内方部材55と、両転走面間に収容された複列の円錐ころ56、56と、これら複列の円錐ころ56、56を転動自在に保持する保持器57、57とを備えた複列円錐ころ軸受からなる。   An example of such a wheel bearing device is shown in FIG. This wheel bearing device 50 has a vehicle body mounting flange 51b integrally attached to a knuckle (not shown) on the outer periphery, and an outer side in which double row outer rolling surfaces 51a, 51a are formed on the inner periphery. A member 51, an inner member 55 having a double-row inner raceway surface 52a, 54a facing the outer-row outer raceway surfaces 51a, 51a on the outer periphery, and a double-row accommodated between the two raceway surfaces And the double row tapered roller bearings provided with retainers 57 and 57 for holding the double row tapered rollers 56 and 56 so as to roll freely.

内方部材55は、一端部に車輪(図示せず)を取り付けるための車輪取付フランジ53を一体に有し、外周に前記外方部材51の複列の外側転走面51a、51aに対向する一方の内側転走面52aと、この内側転走面52aから軸方向に延びる円筒状の小径段部52bが形成され、内周にトルク伝達用のセレーション52cが形成されたハブ輪52と、このハブ輪52の小径段部52bに圧入され、外周に前記外方部材51の複列の外側転走面51a、51aに対向する他方の内側転走面54aが形成された内輪54とからなり、駆動輪側の第3世代構造を構成している。   The inner member 55 integrally has a wheel mounting flange 53 for mounting a wheel (not shown) at one end, and faces the double-row outer rolling surfaces 51a, 51a of the outer member 51 on the outer periphery. One inner rolling surface 52a, a cylindrical small-diameter stepped portion 52b extending in the axial direction from the inner rolling surface 52a, and a hub wheel 52 in which a serration 52c for torque transmission is formed on the inner periphery, The inner ring 54 is press-fitted into the small-diameter step portion 52b of the hub wheel 52, and has an outer ring formed with the other inner rolling surface 54a facing the double row outer rolling surface 51a, 51a of the outer member 51 on the outer periphery. This constitutes the third generation structure on the drive wheel side.

なお、車輪取付フランジ53の周方向等配に車輪を締結するハブボルト60が植設されると共に、外方部材51と内方部材55との間に形成される環状空間の開口部にはシール58、59が装着され、軸受内部に封入された潤滑グリースの漏洩と、外部から軸受内部に雨水やダスト等が侵入するのを防止している。   Hub bolts 60 for fastening the wheels are planted at equal intervals in the circumferential direction of the wheel mounting flange 53, and a seal 58 is provided at the opening of the annular space formed between the outer member 51 and the inner member 55. , 59 are installed to prevent leakage of lubricating grease sealed inside the bearing and intrusion of rainwater, dust, etc. into the bearing from the outside.

ここで、ハブ輪52および内輪54の内側転走面52a、54aの大径側には円錐ころ56を案内する大鍔52d、54bが形成されているが、小径側にはころ脱落防止用の小鍔が形成されていない。そのため、保持器57は、未組み込み状態で、円錐ころ56をポケット61内に脱落阻止状態に保持している。すなわち、保持器57は合成樹脂を射出成形によって形成され、図7に示すように、保持器57の隣り合うポケット61、61間の柱部62は、外径側部分62aの断面形状が内径側へ狭まる台形状となり、この外径側部分62aから内径突出部分62bが突出する形状になっている。そして、このポケット61の外径側部分62a、62a間の幅は、円錐ころ56が柱部62のテーパ状となった側面で接して外径側へ抜け出さずに案内される幅とされていると共に、内径突出部分62b、62b間の幅Wは、円錐ころ56の対応部分の外径よりも若干狭い幅であって、保持器57の弾性変形により、内径側から円錐ころ56をポケット61に押込み可能で、かつ押込み完了状態では、円錐ころ56は二点鎖線で示すように、内径突出部分62bに接して自然には円錐ころ56が内径側へ脱落しない幅とされている。これにより、部品点数の削減や製品コストの低減のみならず、自動組立装置による組立の容易化や組立工数の削減を実現している。
特開平11−44322号公報
Here, large flanges 52d and 54b for guiding the tapered rollers 56 are formed on the large diameter side of the inner raceway surfaces 52a and 54a of the hub ring 52 and the inner ring 54, but on the small diameter side, rollers are prevented from falling off. Gavel is not formed. Therefore, the retainer 57 holds the tapered roller 56 in the pocket 61 in a non-dropped state in an unassembled state. That is, the retainer 57 is formed by injection molding a synthetic resin. As shown in FIG. 7, the pillar 62 between the adjacent pockets 61 and 61 of the retainer 57 has a cross-sectional shape of the outer diameter side portion 62a on the inner diameter side. A trapezoidal shape that narrows toward the outside, and an inner diameter protruding portion 62b protrudes from the outer diameter side portion 62a. The width between the outer diameter side portions 62a and 62a of the pocket 61 is such that the tapered roller 56 is in contact with the tapered side surface of the column portion 62 and is guided without coming out to the outer diameter side. At the same time, the width W between the inner diameter protruding portions 62b and 62b is slightly narrower than the outer diameter of the corresponding portion of the tapered roller 56, and the tapered roller 56 is inserted into the pocket 61 from the inner diameter side by elastic deformation of the cage 57. In a state where the pressing is possible and the pressing is completed, the tapered roller 56 is in contact with the inner diameter protruding portion 62b so that the tapered roller 56 does not fall out to the inner diameter side as shown by a two-dot chain line. As a result, not only the number of parts and the product cost are reduced, but also the assembly by the automatic assembly apparatus is facilitated and the number of assembly steps is reduced.
JP-A-11-44322

こうした従来の車輪用軸受装置50では、円錐ころ56が保持器57の内径突出部分62bに接して自然には内径側へ脱落しないように構成されているが、この内径突出部分62b、62b間の幅Wを狭く設定すると、保持器57の弾性変形によって内径側から円錐ころ56をポケット61に押込むことが難しくなる。したがって、組立性を向上させると共に、確実に円錐ころ56の脱落を防止するためには、この入口幅Wをバラツキなく所定の幅寸法に規制しなければならなく、量産性を考慮したこうした射出成形では限界があった。さらに、保持器57を弾性変形させて円錐ころ56をポケット61内に挿入する形式のため、円錐ころ56を同時に挿入することは難しく、組立工数が嵩んで自動組立装置による組立の容易化や組立工数の大幅な削減には限界があった。   In such a conventional wheel bearing device 50, the tapered roller 56 is configured to come into contact with the inner diameter protruding portion 62b of the retainer 57 and not fall off naturally toward the inner diameter side, but between the inner diameter protruding portions 62b and 62b. When the width W is set narrow, it becomes difficult to push the tapered roller 56 into the pocket 61 from the inner diameter side due to elastic deformation of the cage 57. Therefore, in order to improve the assemblability and reliably prevent the tapered roller 56 from falling off, the inlet width W must be regulated to a predetermined width without variation, and such injection molding in consideration of mass productivity. Then there was a limit. Further, since the tapered roller 56 is inserted into the pocket 61 by elastically deforming the retainer 57, it is difficult to insert the tapered roller 56 at the same time, which increases the number of assembly steps and facilitates assembly and assembly by the automatic assembly apparatus. There was a limit to the significant reduction in man-hours.

本発明は、このような事情に鑑みてなされたもので、装置の軽量・コンパクト化を図ると共に、組立の容易化や組立工数の大幅な削減を図った車輪用軸受装置を提供することを目的としている。   The present invention has been made in view of such circumstances, and an object of the present invention is to provide a wheel bearing device that achieves weight reduction and compactness of the device and facilitates assembly and significantly reduces the number of assembly steps. It is said.

係る目的を達成すべく、本発明のうち請求項1記載の発明は、外周に懸架装置に取り付けられるための車体取付フランジを一体に有し、内周にそれぞれ外向きに開いたテーパ状の複列の外側転走面が形成された外方部材と、一端部に車輪を取り付けるための車輪取付フランジを一体に有し、外周に前記複列の外側転走面に対向するテーパ状の一方の内側転走面と、この内側転走面から軸方向に延びる小径段部が形成されたハブ輪、およびこのハブ輪に嵌合され、外周に前記複列の外側転走面に対向するテーパ状の他方の内側転走面が形成された内輪または等速自在継手の外側継手部材からなる内方部材と、この内方部材と前記外方部材の両転走面間に保持器を介して転動自在に収容された複列の円錐ころと、前記外方部材と内方部材とで形成される環状空間の開口部に装着されたシールとを備え、背面合せタイプの複列円錐ころ軸受で構成された車輪用軸受装置において、前記保持器が合成樹脂から射出成形によって形成され、隣り合うポケット間の柱部が、前記円錐ころのピッチ円直径よりも内径側に位置し、前記ポケットの内径側開口部の幅が、前記円錐ころが前記柱部のテーパ状となった側面で接して内径側へ抜け出さずに案内される幅に設定されている。   In order to achieve such an object, the invention according to claim 1 of the present invention has a body mounting flange integrally attached to the suspension on the outer periphery, and has a taper-shaped compound that opens outward on the inner periphery. The outer member formed with the outer rolling surface of the row and the wheel mounting flange for attaching the wheel to one end are integrated, and one of the tapered shapes facing the outer rolling surface of the double row on the outer periphery A hub ring formed with an inner rolling surface and a small-diameter step portion extending in an axial direction from the inner rolling surface, and a tapered shape fitted to the hub ring and facing the outer rolling surface of the double row on the outer periphery An inner member formed of an inner ring formed with the other inner rolling surface or an outer joint member of a constant velocity universal joint, and a rolling device interposed between both rolling surfaces of the inner member and the outer member via a cage. Formed by double row tapered rollers accommodated movably, the outer member and the inner member And a seal mounted at the opening of the annular space, and a rear bearing type double row tapered roller bearing, wherein the cage is formed by injection molding from a synthetic resin, and adjacent pockets The column portion between them is located on the inner diameter side of the pitch circle diameter of the tapered roller, and the width of the inner diameter side opening portion of the pocket is in contact with the tapered side surface of the column portion so that the inner diameter is the inner diameter. It is set to a width that can be guided without slipping out to the side.

このように、外周に車体取付フランジを一体に有し、内周に複列の外側転走面が形成された外方部材と、アウター側の端部に車輪取付フランジを一体に有し、外周に一方の内側転走面が直接形成されたハブ輪、およびこのハブ輪に嵌合され、外周に他方の内側転走面が形成された内輪または等速自在継手の外側継手部材からなる内方部材と、両転走面間に保持器を介して転動自在に収容された複列の円錐ころと、外方部材と内方部材とで形成される環状空間の開口部に装着されたシールとを備え、背面合せタイプの複列円錐ころ軸受で構成された第3または第4世代構造の車輪用軸受装置において、保持器が合成樹脂から射出成形によって形成され、隣り合うポケット間の柱部が、円錐ころのピッチ円直径よりも内径側に位置し、ポケットの内径側開口部の幅が、円錐ころが柱部のテーパ状となった側面で接して内径側へ抜け出さずに案内される幅に設定されているので、保持器の寸法精度を厳しく規制しなくても、外方部材の外側転走面と保持器によって円錐ころを保持し、保持器から脱落するのを確実に防止することができるため、自動組立装置による組立の容易化や組立工数の大幅な削減ができる。   As described above, the outer member integrally having the vehicle body mounting flange on the outer periphery, the outer member having the double-row outer raceway formed on the inner periphery, and the wheel mounting flange integrally on the outer side end portion, The inner ring is formed of a hub ring in which one inner rolling surface is directly formed and an inner ring fitted to the hub ring and the other inner rolling surface is formed on the outer periphery or an outer joint member of a constant velocity universal joint. A seal attached to an opening of an annular space formed by a member, a double-row tapered roller that is rotatably accommodated between both rolling surfaces via a cage, and an outer member and an inner member And a third or fourth generation wheel bearing device comprising back-to-back type double row tapered roller bearings, wherein the cage is formed from a synthetic resin by injection molding, and a column portion between adjacent pockets Is located on the inner diameter side of the pitch circle diameter of the tapered roller, The width of the diameter side opening is set to a width that guides the tapered roller without contacting it with the tapered side surface of the column, and does not come out to the inner diameter side, so the dimensional accuracy of the cage is not strictly regulated. However, it is possible to hold the tapered roller by the outer rolling surface of the outer member and the cage and reliably prevent it from falling off the cage. Can be reduced.

好ましくは、請求項2に記載の発明のように、前記内方部材の内側転走面の両端に大鍔および小鍔を有せず、前記外方部材の外側転走面の大径側に前記円錐ころを案内する大鍔が一体に形成されていれば、組立性が向上すると共に、外方部材に円錐ころが仮組みされた状態で、保持器が移動してシールに干渉することはない。したがって、保持器干渉によるシールの変形や損傷を防止してシールの密封性能の向上を図ることができる。   Preferably, as in the invention described in claim 2, the inner member does not have large ridges and small ridges at both ends of the inner rolling surface, and on the larger diameter side of the outer rolling surface of the outer member. If the large collar for guiding the tapered roller is integrally formed, the assemblability is improved, and the retainer moves and interferes with the seal in a state where the tapered roller is temporarily assembled to the outer member. Absent. Therefore, the seal can be prevented from being deformed or damaged due to the interference with the cage, and the sealing performance of the seal can be improved.

また、請求項3に記載の発明のように、前記内方部材が、前記ハブ輪と、このハブ輪に内嵌される外側継手部材とからなり、この外側継手部材が、カップ状のマウス部と、このマウス部の底部をなし、外周に前記内側転走面が直接形成された肩部、およびこの肩部から軸方向に延びる軸部が一体に形成され、この軸部の端部を塑性変形させて前記ハブ輪に加締ることにより前記ハブ輪と外側継手部材とが一体に塑性結合されていれば、ナット等で強固に緊締して予圧量を管理する必要がなく、軽量・コンパクト化を図ることができると共に、ハブ輪の強度・耐久性を向上させ、かつ長期間その予圧量を維持することができる。   According to a third aspect of the present invention, the inner member includes the hub wheel and an outer joint member fitted into the hub wheel, and the outer joint member includes a cup-shaped mouth portion. And a shoulder portion that forms the bottom of the mouse portion, the inner rolling surface is directly formed on the outer periphery, and a shaft portion that extends in the axial direction from the shoulder portion, and the end portion of the shaft portion is plastic. If the hub wheel and the outer joint member are integrally plastically bonded by deforming and tightening to the hub wheel, it is not necessary to tighten the nut tightly to control the preload, and it is lightweight and compact. The strength and durability of the hub wheel can be improved, and the preload amount can be maintained for a long time.

好ましくは、請求項4に記載の発明のように、前記ハブ輪の内径に硬化した凹凸部が形成され、前記軸部の端部に形成された中空状の嵌合部を拡径させて当該凹凸部に食い込ませることにより、前記ハブ輪と外側継手部材とが一体に塑性結合されていれば、装置の軽量・コンパクト化を一層図ることができる。   Preferably, as in the invention according to claim 4, a hardened uneven portion is formed on the inner diameter of the hub wheel, and the hollow fitting portion formed at the end portion of the shaft portion is expanded in diameter. If the hub wheel and the outer joint member are integrally plastically joined by biting into the concavo-convex portion, the device can be further reduced in weight and size.

また、請求項5に記載の発明のように、前記シールのうち少なくともインナー側のシールが、前記内方部材に圧入されるスリンガと、前記外方部材に圧入される芯金、およびこの芯金に一体に加硫接着されたシール部材からなる環状のシール板とを備え、それぞれ断面略L字状に形成されて互いに対向配置されると共に、前記シール部材が、前記スリンガに摺接するサイドリップを一体に有していれば、長期間に亘って密封性能を向上させることができる。   Further, as in the invention according to claim 5, at least an inner side seal among the seals is a slinger that is press-fitted into the inner member, a core bar that is press-fitted into the outer member, and the core bar And an annular seal plate made of a vulcanized and bonded seal member, each having a substantially L-shaped cross-section, arranged opposite to each other, and the seal member having a side lip that is in sliding contact with the slinger If they are integrated, the sealing performance can be improved over a long period of time.

本発明に係る車輪用軸受装置は、外周に懸架装置に取り付けられるための車体取付フランジを一体に有し、内周にそれぞれ外向きに開いたテーパ状の複列の外側転走面が形成された外方部材と、一端部に車輪を取り付けるための車輪取付フランジを一体に有し、外周に前記複列の外側転走面に対向するテーパ状の一方の内側転走面と、この内側転走面から軸方向に延びる小径段部が形成されたハブ輪、およびこのハブ輪に嵌合され、外周に前記複列の外側転走面に対向するテーパ状の他方の内側転走面が形成された内輪または等速自在継手の外側継手部材からなる内方部材と、この内方部材と前記外方部材の両転走面間に保持器を介して転動自在に収容された複列の円錐ころと、前記外方部材と内方部材とで形成される環状空間の開口部に装着されたシールとを備え、背面合せタイプの複列円錐ころ軸受で構成された車輪用軸受装置において、前記保持器が合成樹脂から射出成形によって形成され、隣り合うポケット間の柱部が、前記円錐ころのピッチ円直径よりも内径側に位置し、前記ポケットの内径側開口部の幅が、前記円錐ころが前記柱部のテーパ状となった側面で接して内径側へ抜け出さずに案内される幅に設定されているので、保持器の寸法精度を厳しく規制しなくても、外方部材の外側転走面と保持器によって円錐ころを保持し、保持器から脱落するのを確実に防止することができるため、自動組立装置による組立の容易化や組立工数の大幅な削減ができる。   The wheel bearing device according to the present invention has a vehicle body mounting flange integrally attached to the suspension device on the outer periphery, and is formed with a tapered double row outer rolling surface that opens outward on the inner periphery. The outer member and a wheel mounting flange for attaching the wheel to one end are integrated, and one tapered inner rolling surface facing the outer rolling surface of the double row on the outer periphery, and the inner rolling surface. A hub wheel formed with a small-diameter step portion extending in the axial direction from the running surface, and the other tapered inner rolling surface that is fitted to the hub wheel and faces the outer rolling surface of the double row are formed on the outer periphery. An inner member composed of an outer joint member of an inner ring or a constant velocity universal joint, and a double row accommodated between the rolling surfaces of the inner member and the outer member via a retainer. An opening in the annular space formed by the tapered roller and the outer member and the inner member is mounted. In the wheel bearing device comprising a back-to-back type double-row tapered roller bearing, the cage is formed from a synthetic resin by injection molding, and a column portion between adjacent pockets is formed in the conical shape. Positioned on the inner diameter side of the pitch circle diameter of the roller, the width of the opening on the inner diameter side of the pocket is guided without coming out to the inner diameter side by contacting the tapered roller with the tapered side surface of the column portion. Since the width is set, even if the dimensional accuracy of the cage is not strictly regulated, the tapered roller is held by the outer rolling surface of the outer member and the cage, and it is reliably prevented from falling off the cage. Therefore, the assembly by the automatic assembly apparatus can be facilitated and the number of assembly steps can be greatly reduced.

外周に懸架装置に取り付けられるための車体取付フランジを一体に有し、内周にそれぞれ外向きに開いたテーパ状の複列の外側転走面が形成された外方部材と、一端部に車輪を取り付けるための車輪取付フランジを一体に有し、外周に前記複列の外側転走面に対向するテーパ状の一方の内側転走面と、この内側転走面から軸方向に延びる小径段部が形成されたハブ輪、およびこのハブ輪に嵌合され、外周に前記複列の外側転走面に対向するテーパ状の他方の内側転走面が形成された等速自在継手の外側継手部材からなる内方部材と、この内方部材と前記外方部材の両転走面間に保持器を介して転動自在に収容された複列の円錐ころと、前記外方部材と内方部材とで形成される環状空間の開口部に装着されたシールとを備え、背面合せタイプの複列円錐ころ軸受で構成された車輪用軸受装置において、前記外側継手部材が、外周に前記内側転走面が直接形成された肩部と、この肩部から軸方向に延びる円筒状の軸部が一体に形成され、この軸部を拡径させて前記ハブ輪の内径に硬化して形成された凹凸部に食い込ませることにより、前記ハブ輪と外側継手部材とが一体に塑性結合されると共に、前記保持器が合成樹脂から射出成形によって形成され、前記保持器が合成樹脂から射出成形によって形成され、隣り合うポケット間の柱部が、前記円錐ころのピッチ円直径よりも内径側に位置し、前記ポケットの内径側開口部の幅が、前記円錐ころが前記柱部のテーパ状となった側面で接して内径側へ抜け出さずに案内される幅に設定されると共に、前記外方部材の外側転走面の大径側に前記円錐ころを案内する大鍔が一体に形成されている。   An outer member integrally having a vehicle body mounting flange to be attached to the suspension device on the outer periphery, and formed with a tapered double row outer rolling surface opened outward on the inner periphery, and a wheel on one end A wheel mounting flange for integrally mounting, a tapered inner rolling surface facing the outer rolling surface of the double row on the outer periphery, and a small diameter step portion extending in the axial direction from the inner rolling surface And an outer joint member of a constant velocity universal joint that is fitted to the hub wheel and has a tapered inner inner rolling surface that faces the outer rolling surface of the double row on the outer periphery. An inner member, a double-row tapered roller housed between the rolling surfaces of the inner member and the outer member via a cage, and the outer member and the inner member. And a seal attached to the opening of the annular space formed by In the wheel bearing device constituted by a row tapered roller bearing, the outer joint member includes a shoulder portion in which the inner rolling surface is directly formed on an outer periphery, and a cylindrical shaft portion extending in an axial direction from the shoulder portion. The hub ring and the outer joint member are integrally plastically bonded by forming the shaft portion with a diameter and hardening the inner diameter of the hub wheel so as to bite into the uneven portion formed. The cage is formed from synthetic resin by injection molding, the cage is formed from synthetic resin by injection molding, and the column part between adjacent pockets is located on the inner diameter side of the pitch circle diameter of the tapered roller, The width of the opening on the inner diameter side of the pocket is set to a width that guides the tapered roller without coming out to the inner diameter side by contacting the tapered side surface of the column portion, and on the outer side of the outer member. Previous to large diameter side of rolling surface Large rib for guiding the tapered rollers are integrally formed.

以下、本発明の実施の形態を図面に基づいて詳細に説明する。
図1は、本発明に係る車輪用軸受装置の第1の実施形態を示す縦断面図、図2は、図1の要部拡大図、図3は、図2のIII−III線に沿った拡大断面図である。なお、以下の説明では、車両に組み付けた状態で車両の外側寄りとなる側をアウター側(図面左側)、中央寄り側をインナー側(図面右側)という。
Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings.
1 is a longitudinal sectional view showing a first embodiment of a wheel bearing device according to the present invention, FIG. 2 is an enlarged view of a main part of FIG. 1, and FIG. 3 is taken along the line III-III of FIG. It is an expanded sectional view. In the following description, the side closer to the outer side of the vehicle in a state assembled to the vehicle is referred to as the outer side (left side in the drawing), and the side closer to the center is referred to as the inner side (right side in the drawing).

この車輪用軸受装置は第3世代と呼称される駆動輪用であって、内方部材1と外方部材2、および両部材1、2間に転動自在に収容された複列の円錐ころ3、3とを備えている。内方部材1は、ハブ輪4と、このハブ輪4に所定のシメシロを介して圧入された内輪5とからなる。   This wheel bearing device is for a drive wheel called the third generation, and is a double row tapered roller accommodated in a freely rollable manner between the inner member 1, the outer member 2, and both members 1,2. 3 and 3. The inner member 1 includes a hub ring 4 and an inner ring 5 that is press-fitted into the hub ring 4 through a predetermined scissors.

ハブ輪4は、一端部に車輪(図示せず)を取り付けるための車輪取付フランジ6を一体に有し、外周にテーパ状の一方(アウター側)の内側転走面4aと、この内側転走面4aから軸方向に延びる小径段部4bが形成され、内周にトルク伝達用のセレーション(またはスプライン)4cが形成されている。車輪取付フランジ6にはハブボルト6aが周方向等配に植設されている。内輪5は、外周にテーパ状の他方(インナー側)の内側転走面5aが形成され、ハブ輪4の小径段部4bに圧入されている。内輪5はSUJ2等の高炭素クロム鋼で形成され、ズブ焼入れによって芯部まで58〜64HRCの範囲に硬化処理されている。なお、ハブ輪4および内輪5の内側転走面4a、5aの両端部には、従来のようなころ案内用の大鍔やころ保持用の小鍔が形成されておらず、後述する外方部材2の外側転走面2aに大鍔2bが一体に形成されている。   The hub wheel 4 integrally has a wheel mounting flange 6 for mounting a wheel (not shown) at one end, and has an inner rolling surface 4a on one outer side (tapered outer side) and the inner rolling surface. A small diameter step 4b extending in the axial direction from the surface 4a is formed, and a serration (or spline) 4c for torque transmission is formed on the inner periphery. Hub bolts 6a are planted on the wheel mounting flange 6 at equal intervals in the circumferential direction. The inner ring 5 is formed with the other inner (inner side) inner raceway surface 5 a on the outer periphery, and is press-fitted into the small-diameter step portion 4 b of the hub ring 4. The inner ring 5 is made of high carbon chrome steel such as SUJ2, and is hardened in the range of 58 to 64 HRC up to the core part by quenching. Note that conventional roller guide large collars and roller retaining small collars are not formed at both ends of the inner raceway surfaces 4a and 5a of the hub wheel 4 and the inner ring 5, and an outer side to be described later. A large collar 2b is integrally formed on the outer rolling surface 2a of the member 2.

ハブ輪4はS53C等の炭素0.40〜0.80wt%を含む中炭素鋼で形成され、内側転走面4aをはじめ、車輪取付フランジ6のインナー側に円弧状に形成された基部6bから小径段部4bに亙って高周波焼入れによって表面硬さを58〜64HRCの範囲に硬化処理されている。これにより、シール8のシールランド部となる基部6bの耐摩耗性が向上すると共に、車輪取付フランジ6に負荷される回転曲げ荷重に対して充分な機械的強度を有し、内輪5の嵌合部となる小径段部4bの耐フレッティング性が向上する。   The hub wheel 4 is formed of medium carbon steel containing 0.40 to 0.80 wt% of carbon such as S53C, and the like from an inner rolling surface 4a and a base 6b formed in an arc shape on the inner side of the wheel mounting flange 6. The surface hardness is hardened to a range of 58 to 64 HRC by induction hardening over the small diameter step 4b. As a result, the wear resistance of the base portion 6b which becomes the seal land portion of the seal 8 is improved, and the mechanical strength is sufficient with respect to the rotational bending load applied to the wheel mounting flange 6, and the inner ring 5 is fitted. The fretting resistance of the small-diameter step portion 4b that becomes the portion is improved.

外方部材2は、外周にナックル(図示せず)に取り付けられるための車体取付フランジ2bを一体に有し、内周に内方部材1の複列の内側転走面4a、5aに対向し、それぞれ外向きに開いたテーパ状の複列の外側転走面2a、2aが一体に形成されている。これら両転走面間に複列の円錐ころ3、3が収容され、保持器7、7によって転動自在に保持されている。この外方部材2はS53C等の炭素0.40〜0.80wt%を含む中炭素鋼で形成され、複列の外側転走面2a、2aが高周波焼入れによって表面硬さを58〜64HRCの範囲に硬化処理されている。   The outer member 2 integrally has a vehicle body mounting flange 2b to be attached to a knuckle (not shown) on the outer periphery, and faces the double row inner rolling surfaces 4a and 5a of the inner member 1 on the inner periphery. Each of the tapered double-row outer rolling surfaces 2a and 2a, which are open outwardly, is integrally formed. Double-row tapered rollers 3 and 3 are accommodated between these rolling surfaces, and are held by rollers 7 and 7 so as to roll freely. This outer member 2 is formed of medium carbon steel containing carbon 0.40 to 0.80 wt% such as S53C, and the double row outer rolling surfaces 2a and 2a have a surface hardness in the range of 58 to 64HRC by induction hardening. Has been cured.

また、外方部材2と内方部材1との間に形成される環状空間の開口部にはシール8、9が装着されている。具体的には、アウター側のシール8は、車輪取付フランジ6の基部6bに摺接し、インナー側のシール9は、外方部材2の端部内周と内輪5の外周に装着される、所謂パックシールで構成されている。これらのシール8、9によって、軸受内部に封入されたグリースの外部への漏洩と、外部から雨水やダスト等が軸受内部に侵入するのを防止している。なお、ここでは、駆動輪側の第3世代構造を例示したが、本発明に係る車輪用軸受装置はこれに限らず、ハブ輪に内側転走面が一体に形成されたものであれば従動輪側であっても良い。   Further, seals 8 and 9 are attached to the opening of the annular space formed between the outer member 2 and the inner member 1. Specifically, the outer seal 8 is in sliding contact with the base 6 b of the wheel mounting flange 6, and the inner seal 9 is attached to the inner periphery of the end of the outer member 2 and the outer periphery of the inner ring 5. It consists of a seal. These seals 8 and 9 prevent the grease sealed inside the bearing from leaking outside and preventing rainwater, dust, and the like from entering the bearing from the outside. Although the third generation structure on the drive wheel side is illustrated here, the wheel bearing device according to the present invention is not limited to this, and any wheel bearing device in which the inner raceway surface is integrally formed on the hub wheel may be used. It may be on the driving wheel side.

ここで、本実施形態では、図2に拡大して示すように、外方部材2における外側転走面2aの大径側には円錐ころ3を案内する大鍔2bが一体に形成されている。そして、この大鍔2bの内周にアウター側のシール8が装着されている。また、保持器7は、PA(ポリアミド)66等の熱可塑性樹脂をベースにGF(グラスファイバー)等の強化材が添加され、射出成形によって形成されている。この保持器7は、図3に示すように、隣り合うポケット10、10間の柱部11が、円錐ころ3のピッチ円直径(PCD)よりも内径側に位置し、ポケット10の内径側開口部の幅Wが、円錐ころ3が柱部11のテーパ状となった側面で接して内径側へ抜け出さずに案内される幅に設定されている。これにより、保持器7の寸法精度を厳しく規制しなくても、外方部材2の外側転走面2aと保持器7によって円錐ころ3を保持し、保持器7から脱落するのを確実に防止することができる。   Here, in this embodiment, as shown in an enlarged view in FIG. 2, a large collar 2b for guiding the tapered roller 3 is integrally formed on the large diameter side of the outer rolling surface 2a of the outer member 2. . The outer seal 8 is mounted on the inner periphery of the large collar 2b. The cage 7 is formed by injection molding with a reinforcing material such as GF (glass fiber) added to a base of a thermoplastic resin such as PA (polyamide) 66. As shown in FIG. 3, the retainer 7 has a column portion 11 between adjacent pockets 10, 10 located on the inner diameter side of the pitch circle diameter (PCD) of the tapered rollers 3, and an inner diameter side opening of the pocket 10. The width W of the portion is set such that the tapered roller 3 is in contact with the tapered side surface of the column portion 11 and is guided without coming out to the inner diameter side. Thereby, even if the dimensional accuracy of the cage 7 is not strictly regulated, the tapered roller 3 is held by the outer rolling surface 2a of the outer member 2 and the cage 7 and reliably prevented from falling off the cage 7. can do.

また、軸受の組立は、外方部材2の外側転走面2aに円錐ころ3を所定間隔に整列させた後、円錐ころ3がポケット10内に同時に嵌合されるように保持器7を内径側から嵌挿すると共に、ハブ輪4と内輪5を両側から挿入するだけで容易にできるため、自動組立装置による組立の容易化や組立工数の大幅な削減ができる。   Also, in assembling the bearing, after the tapered rollers 3 are aligned with the outer raceway 2a of the outer member 2 at a predetermined interval, the retainer 7 has an inner diameter so that the tapered rollers 3 are simultaneously fitted in the pockets 10. Since the hub ring 4 and the inner ring 5 can be easily inserted by inserting them from both sides, the assembly by the automatic assembly apparatus can be facilitated and the number of assembly steps can be greatly reduced.

さらに、外方部材2における外側転走面2aの大径側に円錐ころ3を案内する大鍔2bが形成されているので、外方部材2に円錐ころ3が組み込まれた状態で、従来のように保持器7が軸方向に移動することはない。したがって、保持器7がシール8に干渉し、シール8が変形あるいは損傷してシール8の密封性が低下することはない。   Further, since the large flange 2b for guiding the tapered roller 3 is formed on the large diameter side of the outer rolling surface 2a of the outer member 2, the tapered roller 3 is incorporated in the outer member 2 in the state of the related art. Thus, the cage 7 does not move in the axial direction. Therefore, the cage 7 does not interfere with the seal 8 and the seal 8 is not deformed or damaged, so that the sealing performance of the seal 8 is not deteriorated.

図4は、本発明に係る車輪用軸受装置の第2の実施形態を示す縦断面図、図5は、本発明に係る車輪用軸受装置の組立方法を示す説明図である。なお、前述した実施形態と同一部品同一部位あるいは同一の機能を有する部位には同じ符号を付して詳細な説明を省略する。   FIG. 4 is a longitudinal sectional view showing a second embodiment of the wheel bearing device according to the present invention, and FIG. 5 is an explanatory view showing an assembling method of the wheel bearing device according to the present invention. In addition, the same code | symbol is attached | subjected to the site | part which has the same components same site | part as the embodiment mentioned above, or the same function, and detailed description is abbreviate | omitted.

この車輪用軸受装置は第4世代と呼称され、ハブ輪12と複列の転がり軸受13および等速自在継手14がユニット化して構成されている。複列の転がり軸受13は、内方部材15と外方部材2、および両部材15、2間に転動自在に収容された複列の円錐ころ3、3を備えている。内方部材15は、ハブ輪12と、このハブ輪12に内嵌され、塑性結合された外側継手部材16とからなる。   This wheel bearing device is referred to as a fourth generation, and includes a hub wheel 12, a double row rolling bearing 13 and a constant velocity universal joint 14 as a unit. The double row rolling bearing 13 includes an inner member 15, an outer member 2, and double row tapered rollers 3, 3 accommodated between the members 15, 2 so as to roll freely. The inner member 15 includes a hub ring 12 and an outer joint member 16 that is fitted into the hub ring 12 and is plastically coupled.

ハブ輪12は、一端部に車輪(図示せず)を取り付けるための車輪取付フランジ6を一体に有し、外周にテーパ状の一方(アウター側)の内側転走面4aと、この内側転走面4aから軸方向に延びる小径段部12aが形成されている。ハブ輪12はS53C等の炭素0.40〜0.80wt%を含む中炭素鋼で形成され、内側転走面4aをはじめ、車輪取付フランジ6のインナー側の基部6bから小径段部12aに亙って高周波焼入れによって表面硬さを58〜64HRCの範囲に硬化処理されている。これにより、車輪取付フランジ6に負荷される回転曲げ荷重に対して充分な機械的強度を有する。   The hub wheel 12 integrally has a wheel mounting flange 6 for mounting a wheel (not shown) at one end portion, and has one inner rolling surface 4a (outer side) tapered on the outer periphery, and this inner rolling. A small diameter step portion 12a extending in the axial direction from the surface 4a is formed. The hub wheel 12 is made of medium carbon steel containing 0.40 to 0.80 wt% of carbon such as S53C, and the inner raceway surface 4a and the base portion 6b on the inner side of the wheel mounting flange 6 to the small diameter step portion 12a. Thus, the surface hardness is set to a range of 58 to 64 HRC by induction hardening. Thereby, it has sufficient mechanical strength with respect to the rotational bending load loaded on the wheel mounting flange 6.

また、ハブ輪12の内周には凹凸部17が形成され、熱処理によって表面硬さを54〜64HRCの範囲に表面が硬化処理されている。熱処理としては、局部加熱ができ、硬化層深さの設定が比較的容易にできる高周波誘導加熱による焼入れが好適である。なお、凹凸部17はアヤメローレット状に形成され、旋削等により独立して形成された複数の環状溝と、ブローチ加工等により形成された複数の軸方向溝とを略直交させて構成した交叉溝、あるいは、互いに傾斜した螺旋溝で構成した交叉溝からなる。また、凹凸部17の凸部は良好な食い込み性を確保するために、その先端部が三角形状等の尖塔形状に形成されている。   Further, an uneven portion 17 is formed on the inner periphery of the hub wheel 12, and the surface is hardened by heat treatment so that the surface hardness is in the range of 54 to 64HRC. As the heat treatment, local heating is preferable, and quenching by high-frequency induction heating that can set the hardened layer depth relatively easily is preferable. In addition, the uneven part 17 is formed in the shape of an iris knurl, and is a cross groove formed by orthogonally crossing a plurality of annular grooves formed independently by turning or the like and a plurality of axial grooves formed by broaching or the like. Alternatively, it consists of a cross groove composed of spiral grooves inclined with respect to each other. In addition, in order to ensure good biting property, the tip of the concavo-convex portion 17 has a spire shape such as a triangular shape.

等速自在継手14は、外側継手部材16と継手内輪18、ケージ19、およびトルク伝達ボール20とからなる。外側継手部材16はS53C等の炭素0.40〜0.80wt%を含む中炭素鋼からなり、カップ状のマウス部21と、このマウス部21の底部をなす肩部22と、この肩部22から軸方向に延びる円筒状の軸部23とが一体に形成されている。この軸部23は、ハブ輪12に所定の径方向すきまを介して円筒嵌合するインロウ部23aと、このインロウ部23aの端部に嵌合部23bがそれぞれ形成されている。   The constant velocity universal joint 14 includes an outer joint member 16, a joint inner ring 18, a cage 19, and a torque transmission ball 20. The outer joint member 16 is made of medium carbon steel containing 0.40 to 0.80 wt% of carbon such as S53C, and has a cup-shaped mouth portion 21, a shoulder portion 22 that forms the bottom portion of the mouth portion 21, and the shoulder portion 22. And a cylindrical shaft portion 23 extending in the axial direction are integrally formed. The shaft portion 23 is formed with an in-row portion 23a that is cylindrically fitted to the hub wheel 12 via a predetermined radial clearance, and a fitting portion 23b is formed at the end of the in-row portion 23a.

マウス部21の内周には曲線部を有する軸方向に延びるトラック溝21aが形成されると共に、継手内輪18の外周には、このトラック溝21aに対応するトラック溝18aが形成されている。そして、これら両トラック溝21a、18a間にケージ19を介してトルク伝達ボール20が収容されている。また、肩部22の外周には、前記複列の外側転走面2a、2aに対向するテーパ状の他方(インナー側)の内側転走面16aが形成されている。そして、トラック溝21aと、後述するシール24が摺接するシール嵌合部から内側転走面16aおよび軸部23に亙って高周波焼入れによって表面硬さを58〜64HRCの範囲に硬化処理されている。ここで、軸部23のうち嵌合部23bは鍛造後の生のままとされている。   A track groove 21 a having a curved portion extending in the axial direction is formed on the inner periphery of the mouse portion 21, and a track groove 18 a corresponding to the track groove 21 a is formed on the outer periphery of the joint inner ring 18. A torque transmission ball 20 is accommodated between the track grooves 21a and 18a via a cage 19. In addition, on the outer periphery of the shoulder portion 22, the other inner (inner side) inner rolling surface 16 a facing the double row outer rolling surfaces 2 a and 2 a is formed. And the surface hardness is hardened in the range of 58 to 64 HRC by induction hardening over the inner rolling surface 16a and the shaft portion 23 from the seal fitting portion where the track groove 21a and a seal 24 described later are in sliding contact. . Here, the fitting part 23b of the shaft part 23 is left raw after forging.

外方部材2の複列の外側転走面2a、2aと、これらに対向する複列の内側転走面4a、16a間には複列の円錐ころ3、3が収容され、保持器7、7によって転動自在に保持されている。また、外方部材2の両端部にはシール24、24が装着され、軸受内部に封入された潤滑グリースの漏洩と、外部から軸受内部に雨水やダスト等が侵入するのを防止している。これらの複列の転がり軸受13は、両転走面2a、4aおよび2a、16aに加わる力の作用方向の作用線が軸心に向うほど軸方向に離反する、所謂背面合せタイプの複列円錐ころ軸受を構成している。   Double row tapered rollers 3, 3 are accommodated between double row outer rolling surfaces 2a, 2a of outer member 2 and double row inner rolling surfaces 4a, 16a facing these, 7 is held so as to roll freely. Further, seals 24 and 24 are attached to both ends of the outer member 2 to prevent leakage of lubricating grease sealed inside the bearing and intrusion of rainwater, dust, etc. into the bearing from the outside. These double row rolling bearings 13 are so-called back-to-back type double row cones in which the action lines of the acting directions of the forces applied to the rolling surfaces 2a, 4a and 2a, 16a are separated in the axial direction toward the axial center. It constitutes a roller bearing.

ここで、本実施形態では、前述した実施形態と同様、外方部材2における外側転走面2aの大径側に円錐ころ3を案内する大鍔2bが一体に形成され、ハブ輪12および外側継手部材16の内側転走面4a、16aの両端部には、ころ案内用の大鍔やころ保持用の小鍔が形成されていない。そして、保持器7の柱部11が、円錐ころ3のピッチ円直径よりも内径側に位置し、円錐ころ3が保持器7から脱落するのを防止している。   Here, in this embodiment, as in the above-described embodiment, the large collar 2b for guiding the tapered roller 3 is integrally formed on the large diameter side of the outer rolling surface 2a of the outer member 2, and the hub wheel 12 and the outer ring 2 are formed integrally. At both ends of the inner rolling surfaces 4a and 16a of the joint member 16, a roller guide large collar and a roller retaining small collar are not formed. The column portion 11 of the cage 7 is positioned on the inner diameter side of the pitch circle diameter of the tapered roller 3 to prevent the tapered roller 3 from dropping from the cage 7.

シール24は、車輪取付フランジ6の基部6bに圧入されるスリンガ25と、このスリンガ25に対向して外方部材2の大鍔2bに内嵌され、断面略L字状に形成されてシール部材を有する環状のシール板26とからなる、所謂パックシールを構成している。スリンガ25は、オーステナイト系ステンレス鋼鈑(JIS規格のSUS304系等)、あるいは、防錆処理された冷間圧延鋼鈑(JIS規格のSPCC系等)からプレス加工にて断面が略L字状に形成されている。   The seal 24 is press-fitted into the base portion 6b of the wheel mounting flange 6, and is fitted into the large flange 2b of the outer member 2 so as to face the slinger 25, and is formed into a substantially L-shaped cross section. That is, a so-called pack seal is formed. The slinger 25 has a substantially L-shaped cross section by pressing from an austenitic stainless steel plate (JIS standard SUS304, etc.) or a rust-proof cold rolled steel plate (JIS standard SPCC, etc.). Is formed.

次に、図5を用いて本実施形態に係る車輪用軸受装置の組立方法を詳細に説明する。
まず、外方部材2の複列の外側転走面2a、2aに円錐ころ3、3が整列され、これら複列の円錐ころ3、3とポケット10とを対応させた状態で、保持器7が弾性変形して内径側から嵌挿される。そして、外方部材2の両端部にシール24を構成するシール板26がそれぞれ装着される。その後、車輪取付フランジ6の基部6bと肩部22にシール24を構成するスリンガ25がそれぞれ圧入されると共に、これらハブ輪12と外側継手部材16が外方部材2の両側から矢印の方向に内挿される。そして、ハブ輪12の小径段部12aの端面に外側継手部材16の肩部22が衝合され、突合せ状態になるまでハブ輪12に軸部23が内嵌される。さらに、この軸部23における嵌合部23bの内径にマンドレル等の拡径治具を押し込んで嵌合部23bを拡径し、この嵌合部23bをハブ輪12の凹凸部17に食い込ませて加締め、ハブ輪12と外側継手部材16とが一体に塑性結合されて完了する。
Next, the assembly method of the wheel bearing device according to the present embodiment will be described in detail with reference to FIG.
First, the tapered rollers 3 and 3 are aligned with the double-row outer rolling surfaces 2 a and 2 a of the outer member 2, and the cage 7 is in a state where the double-row tapered rollers 3 and 3 correspond to the pocket 10. Is elastically deformed and inserted from the inner diameter side. And the sealing board 26 which comprises the seal | sticker 24 is each mounted | worn with the both ends of the outer member 2. As shown in FIG. Thereafter, the slinger 25 constituting the seal 24 is press-fitted into the base portion 6b and the shoulder portion 22 of the wheel mounting flange 6, respectively, and the hub wheel 12 and the outer joint member 16 are inserted in the direction of the arrow from both sides of the outer member 2. Inserted. Then, the shoulder portion 22 of the outer joint member 16 is abutted against the end surface of the small-diameter step portion 12a of the hub wheel 12, and the shaft portion 23 is internally fitted to the hub wheel 12 until a butt state is reached. Further, a diameter expanding jig such as a mandrel is pushed into the inner diameter of the fitting portion 23b in the shaft portion 23 to increase the diameter of the fitting portion 23b, and the fitting portion 23b is bitten into the uneven portion 17 of the hub wheel 12. By caulking, the hub wheel 12 and the outer joint member 16 are integrally plastically joined to complete.

こうした構成により、従来のようにナット等で強固に緊締して予圧量を管理する必要がないため、装置の軽量・コンパクト化を図ることができると共に、ハブ輪12の強度・耐久性を向上させ、かつ長期間その予圧量を維持することができる。なお、ハブ輪12の開口端部と中空の軸部23にはエンドキャップ27、28が装着され、塑性結合部に雨水等が浸入してその部位が発錆するのを防止すると共に、マウス部21内に封入されたグリースが外部に漏洩するのを防止している。   With such a configuration, it is not necessary to control the preload by tightening firmly with a nut or the like as in the prior art, so that the device can be reduced in weight and size, and the strength and durability of the hub wheel 12 can be improved. In addition, the preload amount can be maintained for a long time. End caps 27 and 28 are attached to the open end portion of the hub wheel 12 and the hollow shaft portion 23 to prevent rainwater from entering the plastic joint portion and rusting the portion. The grease sealed in 21 is prevented from leaking outside.

なお、複列円錐ころ軸受からなる複列の転がり軸受13では、軸受組立時、円錐ころ3、3が各転走面の母線方向に擦れ合うため、拡径加締工程で安定した軸受内部すきまを確保することは難しい。すなわち、これら各面同士の当接部からグリース等の潤滑剤が退避して金属接触に近い状態となり、これら各当接部の摩擦係数が大きくなる。このため、円錐ころ3、3が案内される大鍔2b、2bにスムーズに移動せずに不整列な状態で組み立てられる。例えば、この内部すきまを負とすべき場合にも正の内部すきまのままとなり、所望の予圧を付与できなくなる可能性がある。特に、円錐ころ3、3の中心軸が正規の自転軸に対して傾いてしまう、所謂スキューが発生すると、このような問題がさらに顕著になる。   In the double row rolling bearing 13 composed of double row tapered roller bearings, the tapered rollers 3 and 3 rub against each other in the generatrix direction of each rolling surface when the bearing is assembled. It is difficult to secure. That is, the lubricant such as grease is retracted from the contact portions between these surfaces and becomes close to metal contact, and the friction coefficient of each contact portion increases. For this reason, the tapered rollers 3 and 3 are assembled in an unaligned state without smoothly moving to the large collars 2b and 2b guided. For example, even when the internal clearance should be negative, the positive internal clearance remains, and there is a possibility that a desired preload cannot be applied. In particular, when a so-called skew occurs in which the central axes of the tapered rollers 3 and 3 are inclined with respect to the normal rotation axis, such a problem becomes more prominent.

本実施形態では、このような不具合を避けるために、前述した拡径加締工程では、ハブ輪12と外側継手部材16および外方部材2とを、相対的に揺動(往復回転)もしくは回転(一方向回転)させつつ塑性結合が行われる。実際には、ハブ輪12を作業台の上面に支持した状態で、外方部材2をこのハブ輪12に対して揺動させつつ、外側継手部材16の軸部23に拡径治具を押し込んで両者を塑性結合するようにしている。こうすることにより、複列の円錐ころ3、3はスムーズに各転走面上を擦り上って大鍔2b、2bに安定して整列され、所定の予圧を精度良く付与することができる。   In the present embodiment, in order to avoid such a problem, the hub wheel 12, the outer joint member 16, and the outer member 2 are relatively swung (reciprocating) or rotated in the above-described diameter expansion caulking process. Plastic bonding is performed while rotating in one direction. Actually, with the hub wheel 12 supported on the upper surface of the work table, the diameter expansion jig is pushed into the shaft portion 23 of the outer joint member 16 while the outer member 2 is swung with respect to the hub wheel 12. The two are plastically connected. By doing so, the double-row tapered rollers 3 and 3 are smoothly rubbed on the respective rolling surfaces and stably aligned with the large flanges 2b and 2b, and a predetermined preload can be applied with high accuracy.

なお、ハブ輪12と外側継手部材16とを塑性結合する手段として例示した構成以外にも、例えば、図示はしないが、ハブ輪に外側継手部材の軸部を内嵌すると共に、この軸部の端部を径方向外方に塑性変形させて加締部を形成し、この加締部で両部材を軸方向に固定する、所謂揺動加締方式を採用しても良い。   In addition to the configuration exemplified as the means for plastically coupling the hub wheel 12 and the outer joint member 16, for example, although not shown, the shaft portion of the outer joint member is fitted into the hub wheel, and the shaft portion A so-called swing caulking method may be employed in which the end portion is plastically deformed radially outward to form a caulking portion, and both members are fixed in the axial direction by the caulking portion.

以上、本発明の実施の形態について説明を行ったが、本発明はこうした実施の形態に何等限定されるものではなく、あくまで例示であって、本発明の要旨を逸脱しない範囲内において、さらに種々なる形態で実施し得ることは勿論のことであり、本発明の範囲は、特許請求の範囲の記載によって示され、さらに特許請求の範囲に記載の均等の意味、および範囲内のすべての変更を含む。   The embodiment of the present invention has been described above, but the present invention is not limited to such an embodiment, and is merely an example, and various modifications can be made without departing from the scope of the present invention. Of course, the scope of the present invention is indicated by the description of the scope of claims, and further, the equivalent meanings described in the scope of claims and all modifications within the scope of the scope of the present invention are included. Including.

本発明に係る車輪用軸受装置は、ハブ輪の外周にテーパ状の内側転走面が直接形成された第3または第4世代構造の車輪用軸受装置に適用することができる。   The wheel bearing device according to the present invention can be applied to a wheel bearing device having a third or fourth generation structure in which a tapered inner rolling surface is directly formed on the outer periphery of a hub wheel.

本発明に係る車輪用軸受装置の第1の実施形態を示す縦断面図である。It is a longitudinal section showing a 1st embodiment of a bearing device for wheels concerning the present invention. 図1の要部拡大図である。It is a principal part enlarged view of FIG. 図2のIII−III線に沿った拡大断面図である。It is an expanded sectional view along the III-III line of FIG. 本発明に係る車輪用軸受装置の第2の実施形態を示す縦断面図である。It is a longitudinal cross-sectional view which shows 2nd Embodiment of the wheel bearing apparatus which concerns on this invention. 図4の車輪用軸受装置の組立方法を示す説明図である。It is explanatory drawing which shows the assembly method of the wheel bearing apparatus of FIG. 従来の車輪用軸受装置を示す縦断面図である。It is a longitudinal cross-sectional view which shows the conventional wheel bearing apparatus. 図6のころアセンブリを示す拡大断面図である。It is an expanded sectional view which shows the roller assembly of FIG.

符号の説明Explanation of symbols

1、15・・・・・・・・・・・・・内方部材
2・・・・・・・・・・・・・・・・外方部材
2a・・・・・・・・・・・・・・・外側転走面
2b・・・・・・・・・・・・・・・大鍔
3・・・・・・・・・・・・・・・・円錐ころ
4、12・・・・・・・・・・・・・ハブ輪
4a、5a、16a・・・・・・・・内側転走面
4b、12a・・・・・・・・・・・小径段部
4c・・・・・・・・・・・・・・・セレーション
5・・・・・・・・・・・・・・・・内輪
6・・・・・・・・・・・・・・・・車輪取付フランジ
6a・・・・・・・・・・・・・・・ハブボルト
6b・・・・・・・・・・・・・・・基部
7・・・・・・・・・・・・・・・・保持器
8、9、24・・・・・・・・・・・シール
13・・・・・・・・・・・・・・・複列の転がり軸受
14・・・・・・・・・・・・・・・等速自在継手
16・・・・・・・・・・・・・・・外側継手部材
17・・・・・・・・・・・・・・・凹凸部
18・・・・・・・・・・・・・・・継手内輪
18a、21a・・・・・・・・・・トラック溝
19・・・・・・・・・・・・・・・ケージ
20・・・・・・・・・・・・・・・トルク伝達ボール
21・・・・・・・・・・・・・・・マウス部
22・・・・・・・・・・・・・・・肩部
23・・・・・・・・・・・・・・・軸部
23a・・・・・・・・・・・・・・インロウ部
23b・・・・・・・・・・・・・・嵌合部
25・・・・・・・・・・・・・・・スリンガ
26・・・・・・・・・・・・・・・シール板
27、28・・・・・・・・・・・・エンドキャップ
50・・・・・・・・・・・・・・・車輪用軸受装置
51・・・・・・・・・・・・・・・外方部材
51a・・・・・・・・・・・・・・外側転走面
51b・・・・・・・・・・・・・・車体取付フランジ
52・・・・・・・・・・・・・・・ハブ輪
52a、54a・・・・・・・・・・内側転走面
52b・・・・・・・・・・・・・・小径段部
52c・・・・・・・・・・・・・・セレーション
52d、54b・・・・・・・・・・大鍔
53・・・・・・・・・・・・・・・車輪取付フランジ
54・・・・・・・・・・・・・・・内輪
55・・・・・・・・・・・・・・・内方部材
56・・・・・・・・・・・・・・・円錐ころ
57・・・・・・・・・・・・・・・保持器
58、59・・・・・・・・・・・・シール
60・・・・・・・・・・・・・・・ハブボルト
61・・・・・・・・・・・・・・・ポケット
62・・・・・・・・・・・・・・・柱部
62a・・・・・・・・・・・・・・外径側部分
62b・・・・・・・・・・・・・・内径突出部分
W・・・・・・・・・・・・・・・・入口幅
1, 15 ... Inner member 2 ... Outer member 2a ...・ ・ ・ ・ ・ Outer rolling surface 2b ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ 鍔 鍔 3 ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ Tapered rollers 4, 12 ・··································································· Inner rolling surface 4b, 12a ... Serration 5 ... Inner ring 6 ... Wheel mounting flange 6a ... hub bolt 6b ... base 7 ...・ ・ ・ ・ Retainer 8, 9, 24 ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ Seal 13 ・ ・ ・ ・ ・ ・Rolling bearings 14 ... constant velocity universal joints 16 ... outer joint members 17 ... ······································································ Joint inner ring 18a, 21a ...・ ・ ・ ・ ・ ・ ・ ・ ・ Cage 20 ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ Torque transmission ball 21 ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ Mouse part 22・ ・ ・ ・ ・ ・ ・ ・ Shoulder 23 ・ ・ ・ ・ ・ ・ ・ ・ Shaft 23a ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ In wax 23b ... fitting part 25 ... slinger 26 ...・ Seal plates 27, 28 ... End cap 50 ... ············· Bearing device 51 ··················· Outside member 51a Rolling surface 51b ..... Body mounting flange 52 ..... Hub wheels 52a, 54a ...・ ・ Inner rolling surface 52b ・ ・ ・ ・ ・ ・ ・ ・ ・ Small diameter step 52c ・ ・ ・ ・ ・ ・ ・ ・ ・ Serrations 52d, 54b ・ ・ ・ ・ ・ ・... Daegu 53 ... Wheel mounting flange 54 ... Inner ring 55 ... .... Inner member 56 ... tapered rollers 57 ...・ ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ Seal 60 ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ ・・ Hub bolt 61 ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ Pocket 62 ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ Column 62a ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ ・・ ・ Outer diameter side part 62b ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ Inner diameter protruding part W ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ ・ Inlet width

Claims (5)

外周に懸架装置に取り付けられるための車体取付フランジを一体に有し、内周にそれぞれ外向きに開いたテーパ状の複列の外側転走面が形成された外方部材と、
一端部に車輪を取り付けるための車輪取付フランジを一体に有し、外周に前記複列の外側転走面に対向するテーパ状の一方の内側転走面と、この内側転走面から軸方向に延びる小径段部が形成されたハブ輪、およびこのハブ輪に嵌合され、外周に前記複列の外側転走面に対向するテーパ状の他方の内側転走面が形成された内輪または等速自在継手の外側継手部材からなる内方部材と、
この内方部材と前記外方部材の両転走面間に保持器を介して転動自在に収容された複列の円錐ころと、
前記外方部材と内方部材とで形成される環状空間の開口部に装着されたシールとを備え、背面合せタイプの複列円錐ころ軸受で構成された車輪用軸受装置において、
前記保持器が合成樹脂から射出成形によって形成され、隣り合うポケット間の柱部が、前記円錐ころのピッチ円直径よりも内径側に位置し、前記ポケットの内径側開口部の幅が、前記円錐ころが前記柱部のテーパ状となった側面で接して内径側へ抜け出さずに案内される幅に設定されていることを特徴とする車輪用軸受装置。
An outer member integrally having a vehicle body mounting flange for being attached to a suspension device on the outer periphery, and having a tapered double row outer rolling surface formed outwardly on the inner periphery,
It has a wheel mounting flange for mounting the wheel at one end, and has one tapered inner rolling surface facing the outer rolling surface of the double row on the outer periphery, and an axial direction from this inner rolling surface. A hub ring formed with an extending small-diameter stepped portion, and an inner ring or constant speed which is fitted to the hub ring and has a tapered inner inner rolling surface facing the outer rolling surface of the double row on the outer periphery. An inner member composed of an outer joint member of a universal joint;
A double-row tapered roller accommodated between the rolling surfaces of the inner member and the outer member so as to be freely rollable via a cage;
In a wheel bearing device comprising a back-to-back type double row tapered roller bearing, comprising a seal attached to an opening of an annular space formed by the outer member and the inner member,
The cage is formed of synthetic resin by injection molding, the column portion between adjacent pockets is positioned on the inner diameter side of the pitch circle diameter of the tapered roller, and the width of the inner diameter side opening of the pocket is the cone A bearing device for a wheel, wherein the roller is set to a width that is in contact with the tapered side surface of the column portion and guided without coming out to the inner diameter side.
前記内方部材の内側転走面の両端に大鍔および小鍔を有せず、前記外方部材の外側転走面の大径側に前記円錐ころを案内する大鍔が一体に形成されている請求項1に記載の車輪用軸受装置。   A large flange for guiding the tapered roller is integrally formed on the large diameter side of the outer rolling surface of the outer member without having a large flange and a small flange on both ends of the inner rolling surface of the inner member. The wheel bearing device according to claim 1. 前記内方部材が、前記ハブ輪と、このハブ輪に内嵌される外側継手部材とからなり、この外側継手部材が、カップ状のマウス部と、このマウス部の底部をなし、外周に前記内側転走面が直接形成された肩部、およびこの肩部から軸方向に延びる軸部が一体に形成され、この軸部の端部を塑性変形させて前記ハブ輪に加締ることにより前記ハブ輪と外側継手部材とが一体に塑性結合されている請求項1または2に記載の車輪用軸受装置。   The inner member includes the hub wheel and an outer joint member fitted into the hub wheel. The outer joint member forms a cup-like mouth portion and a bottom portion of the mouth portion, The shoulder portion directly formed with the inner rolling surface and the shaft portion extending in the axial direction from the shoulder portion are integrally formed, and the end portion of the shaft portion is plastically deformed and crimped to the hub ring. The wheel bearing device according to claim 1 or 2, wherein the hub wheel and the outer joint member are integrally plastically coupled. 前記ハブ輪の内径に硬化した凹凸部が形成され、前記軸部の端部に形成された中空状の嵌合部を拡径させて当該凹凸部に食い込ませることにより、前記ハブ輪と外側継手部材とが一体に塑性結合されている請求項3に記載の車輪用軸受装置。   The hub wheel and the outer joint are formed by forming a hardened concave and convex portion on the inner diameter of the hub ring, and expanding the hollow fitting portion formed at the end of the shaft portion to bite into the concave and convex portion. The wheel bearing device according to claim 3, wherein the member is integrally plastically coupled. 前記シールのうち少なくともインナー側のシールが、前記内方部材に圧入されるスリンガと、前記外方部材に圧入される芯金、およびこの芯金に一体に加硫接着されたシール部材からなる環状のシール板とを備え、それぞれ断面略L字状に形成されて互いに対向配置されると共に、前記シール部材が、前記スリンガに摺接するサイドリップを一体に有している請求項1乃至4いずれかに記載の車輪用軸受装置。   At least an inner side seal of the seals is formed of a slinger that is press-fitted into the inner member, a metal core that is press-fitted into the outer member, and a seal member that is integrally vulcanized and bonded to the metal core. 5. Each of the sealing plates is formed in a substantially L-shaped cross section and arranged to face each other, and the sealing member integrally has a side lip that is in sliding contact with the slinger. The wheel bearing apparatus described in 1.
JP2005327436A 2005-11-07 2005-11-11 Bearing device for wheel Pending JP2007132455A (en)

Priority Applications (5)

Application Number Priority Date Filing Date Title
JP2005327436A JP2007132455A (en) 2005-11-11 2005-11-11 Bearing device for wheel
PCT/JP2006/322190 WO2007052807A1 (en) 2005-11-07 2006-11-07 Wheel bearing device
EP06823094A EP1950435A4 (en) 2005-11-07 2006-11-07 Wheel bearing device
US12/115,730 US7857521B2 (en) 2005-11-07 2008-05-06 Bearing apparatus for a wheel of vehicle
US12/891,882 US8186885B2 (en) 2005-11-07 2010-09-28 Bearing apparatus for a wheel of vehicle

Applications Claiming Priority (1)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010019284A (en) * 2008-07-08 2010-01-28 Nsk Ltd Retainer for conical roller bearing, and conical roller bearing
JP2010071321A (en) * 2008-09-16 2010-04-02 Nsk Ltd Tapered roller bearing

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2600131A1 (en) * 1986-06-13 1987-12-18 Roulements Soc Nouvelle Roller bearing comprising an interposed cage for axially and radially retaining the rollers
JP2000211310A (en) * 1999-01-21 2000-08-02 Ntn Corp Wheel support structure
JP2001018605A (en) * 1999-07-06 2001-01-23 Ntn Corp Bearing device for driving wheel
JP2003056570A (en) * 2001-08-09 2003-02-26 Nsk Ltd Double-row conical roller bearing unit and assembling method therefor

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2600131A1 (en) * 1986-06-13 1987-12-18 Roulements Soc Nouvelle Roller bearing comprising an interposed cage for axially and radially retaining the rollers
JP2000211310A (en) * 1999-01-21 2000-08-02 Ntn Corp Wheel support structure
JP2001018605A (en) * 1999-07-06 2001-01-23 Ntn Corp Bearing device for driving wheel
JP2003056570A (en) * 2001-08-09 2003-02-26 Nsk Ltd Double-row conical roller bearing unit and assembling method therefor

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010019284A (en) * 2008-07-08 2010-01-28 Nsk Ltd Retainer for conical roller bearing, and conical roller bearing
JP2010071321A (en) * 2008-09-16 2010-04-02 Nsk Ltd Tapered roller bearing

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