JP2021088235A - Wheel bearing device and wheel attachment method - Google Patents

Wheel bearing device and wheel attachment method Download PDF

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JP2021088235A
JP2021088235A JP2019218593A JP2019218593A JP2021088235A JP 2021088235 A JP2021088235 A JP 2021088235A JP 2019218593 A JP2019218593 A JP 2019218593A JP 2019218593 A JP2019218593 A JP 2019218593A JP 2021088235 A JP2021088235 A JP 2021088235A
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wheel
supported
central hole
peripheral surface
flange
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世煥 文
Shihuan Wen
世煥 文
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JTEKT Corp
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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 

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Abstract

To provide a wheel bearing device which can prevent falling of a wheel during attachment of the wheel and enables work, in which the wheel is fixed to a flange part by bolts, to be performed easily, and to provide a wheel attachment method.SOLUTION: A wheel bearing device 1 includes: an inner member 2 attached with a wheel 80 having a supported part 81 provided with a center hole 800; an outer member 3 fixed to a knuckle 91; and rolling elements 41. The inner member 2 has: a flange part 22 for fixing the supported part 81; and a support part 23 which is fitted in the center hole 800 and supports the supported part 81. The support part 23 has: a cylindrical part 231 having an outer peripheral surface 231a which is fitted in an inner peripheral surface 800a of the center hole 800; and a protruding part 232 protruding from the cylindrical part 231 to the radial outer side. In the wheel 80, the supported part 81 is disposed at an axial position between the flange part 22 and the protruding part 232 and a portion, in which a recessed part 801 is not formed, of the supported part 81 is engaged with the protruding part 232 to be prevented from removing.SELECTED DRAWING: Figure 1

Description

本発明は、車輪用軸受装置及び車輪の取付方法に関する。 The present invention relates to a wheel bearing device and a wheel mounting method.

従来、車輪のホイールを車輪用軸受装置(ハブユニット)のハブに取り付ける取付構造としては、例えば特許文献1に記載されたもののように、ハブのフランジ部に圧入固定されたスタットボルトをホイールのボルト孔に挿通させ、スタットボルトのねじ部にナットを螺合させる構造が広く用いられてきたが、近年では、例えば特許文献2に記載されたもののように、ホイールのボルト孔に挿通させたボルトをハブのフランジ部に設けられたねじ孔(タップ孔)に螺合させる構造が提案されている。この構造によれば、ナットが不要となるので、ばね下重量の軽量化に寄与することができる。 Conventionally, as a mounting structure for attaching a wheel to a hub of a wheel bearing device (hub unit), a stat bolt press-fitted and fixed to a flange portion of the hub, for example, as described in Patent Document 1, is used as a wheel bolt. A structure in which a nut is screwed into a screw portion of a stat bolt by inserting it into a hole has been widely used, but in recent years, a bolt inserted into a bolt hole of a wheel, for example, as described in Patent Document 2, has been used. A structure has been proposed in which a screw is screwed into a screw hole (tap hole) provided in a flange portion of a hub. According to this structure, a nut is not required, which can contribute to the reduction of unsprung weight.

ハブのフランジ部に圧入固定されたスタットボルトをホイールのボルト孔に挿通させる構造では、ホイールを取り付ける際、ハブから突出したボルトをホイールのボルト孔に挿通させることによりホイールが支持される。一方、ハブのフランジ部のねじ孔にボルトを螺合させてホイールを取り付ける構造では、ハブの中心部に設けられた円筒状の突起にホイールの中心孔を嵌め合わせ、ホイールを仮支持した状態でボルトをボルト孔に挿通させて螺合させなければならないが、この円筒状の突起はホイールの中心孔の軸方向長さに比して短いので、仮支持したホイールの脱落が発生しやすい。 In the structure in which a stat bolt press-fitted and fixed to the flange portion of the hub is inserted into the bolt hole of the wheel, the wheel is supported by inserting a bolt protruding from the hub into the bolt hole of the wheel when the wheel is attached. On the other hand, in the structure in which a bolt is screwed into the screw hole of the flange of the hub to attach the wheel, the center hole of the wheel is fitted to the cylindrical protrusion provided in the center of the hub, and the wheel is temporarily supported. The bolt must be inserted into the bolt hole and screwed, but since this cylindrical protrusion is shorter than the axial length of the center hole of the wheel, the temporarily supported wheel is likely to fall off.

特許文献2に記載のものでは、この問題点に鑑みて、円筒状の突起であるインロー部の内側に圧入される円筒形状の部材(グリースキャップ)の円筒部に鍔部を突設し、この鍔部によってインロー部から離脱したホイールを係止するように構成されている。 In the case described in Patent Document 2, in view of this problem, a collar portion is projected from the cylindrical portion of a cylindrical member (grease cap) press-fitted into the inside of the in-row portion which is a cylindrical protrusion. It is configured to lock the wheel separated from the in-row portion by the collar portion.

特開2005−170342号公報Japanese Unexamined Patent Publication No. 2005-170342 特開2018−177078号公報Japanese Unexamined Patent Publication No. 2018-177078

特許文献2に記載の構造では、ホイールの取り付け作業時においてホイールの脱落を防止し得るものの、鍔部が設けられた円筒形状の部材の追加が必要となり、部品点数及び組付け工数がかさんでしまう。また、ホイールの脱落を防止できたとしても、ホイールの取り付け作業時においてホイールがハブのインロー部から離脱してしまうと、インロー部にホイールの中心孔を嵌め合わせる作業のやり直しが必要となり、作業性を向上させる効果は乏しい。 In the structure described in Patent Document 2, although it is possible to prevent the wheel from falling off during the wheel mounting work, it is necessary to add a cylindrical member provided with a flange portion, which increases the number of parts and the assembly man-hours. It ends up. Even if the wheel can be prevented from falling off, if the wheel separates from the in-row portion of the hub during the wheel installation work, it is necessary to redo the work of fitting the center hole of the wheel into the in-row portion, which makes workability easier. The effect of improving the wheel is poor.

そこで、本発明は、車輪の取付時における車輪の脱落を防ぐと共に、車輪をボルトによってフランジ部に固定する作業を容易に行うことが可能な車輪用軸受装置及び車輪の取付方法を提供することを目的とする。 Therefore, the present invention provides a wheel bearing device and a wheel mounting method capable of preventing the wheel from falling off when the wheel is mounted and easily fixing the wheel to the flange portion with bolts. The purpose.

本発明は、上記の目的を達成するため、中心孔が形成された被支持部を有する車輪側部材が取り付けられる内方部材と、車体側部材に固定される外方部材と、前記内方部材と前記外方部材との間に配置された複数の転動体とを備え、前記被支持部には、前記中心孔の内周面から径方向外方に向かって窪む凹部が形成されており、前記内方部材は、前記被支持部を相対回転不能に固定するためのフランジ部と、前記中心孔に嵌合して前記被支持部を支持するための支持部とを有し、前記支持部が前記フランジ部から軸方向に突出して設けられており、前記支持部は、前記中心孔の前記内周面に嵌合する外周面を有する円筒部と、当該円筒部の軸方向一方側端部において前記外周面から径方向外方に突出した凸部とを有し、前記車輪側部材は、前記被支持部が前記フランジ部と前記凸部との間の軸方向位置に配置され、前記被支持部の前記凹部が形成されていない部位が前記凸部によって係止されて前記支持部から抜け止めされる、車輪用軸受装置を提供する。 In order to achieve the above object, the present invention includes an inner member to which a wheel side member having a supported portion having a central hole is formed, an outer member fixed to the vehicle body side member, and the inner member. A plurality of rolling elements arranged between the outer member and the outer member are provided, and the supported portion is formed with a recess recessed from the inner peripheral surface of the central hole in the radial direction outward. The inner member has a flange portion for fixing the supported portion so as not to be relatively rotatable, and a support portion for fitting the supported portion and supporting the supported portion by fitting into the center hole. A portion is provided so as to project axially from the flange portion, and the support portion includes a cylindrical portion having an outer peripheral surface that fits into the inner peripheral surface of the central hole, and one side end of the cylindrical portion in the axial direction. The portion has a convex portion that protrudes radially outward from the outer peripheral surface, and the wheel side member has the supported portion arranged at an axial position between the flange portion and the convex portion. Provided is a wheel bearing device in which a portion of a supported portion where the concave portion is not formed is locked by the convex portion and is prevented from coming off from the support portion.

また、本発明は、上記の目的を達成するため、内方部材及び外方部材の間に複数の転動体が配置された車輪用軸受装置の前記内方部材に車輪側部材を取り付ける車輪の取付方法であって、前記車輪側部材は、中心孔及び当該中心孔の内周面から径方向外方に向かって窪む凹部が形成された被支持部を有し、前記内方部材は、前記被支持部を相対回転不能に固定するためのフランジ部と、前記中心孔に嵌合して前記被支持部を支持するための支持部とを有し、前記支持部が前記フランジ部から軸方向に突出して設けられており、前記支持部は、前記中心孔の前記内周面に嵌合する外周面を有する円筒部と、当該円筒部の軸方向一方側端部において前記外周面から径方向外方に突出した凸部とを有し、前記凹部の周方向の位置と前記凸部の周方向の位置とを一致させた状態で前記中心孔に前記円筒部を挿通させた後、前記凹部の周方向の位置と前記凸部の周方向の位置とが不一致となるように前記車輪側部材を前記内方部材に対して相対回転させ、前記凸部によって前記被支持部を前記支持部から抜け止めする、車輪の取付方法を提供する。 Further, in order to achieve the above object, the present invention attaches a wheel for attaching a wheel side member to the inner member of a wheel bearing device in which a plurality of rolling elements are arranged between the inner member and the outer member. In the method, the wheel-side member has a central hole and a supported portion in which a recess recessed from the inner peripheral surface of the central hole in the radial direction is formed, and the inner member is said to have the same. It has a flange portion for fixing the supported portion so as not to rotate relative to each other, and a support portion for fitting the supported portion to support the supported portion, and the supporting portion is axially oriented from the flange portion. The support portion is provided so as to project from the outer peripheral surface to a cylindrical portion having an outer peripheral surface that fits into the inner peripheral surface of the central hole, and an axial one-side end portion of the cylindrical portion in the radial direction from the outer peripheral surface. The cylindrical portion is inserted into the central hole in a state where the concave portion has a convex portion protruding outward and the circumferential position of the concave portion and the circumferential position of the convex portion are matched, and then the concave portion is inserted. The wheel side member is rotated relative to the inner member so that the position in the circumferential direction of the wheel and the position in the circumferential direction of the convex portion do not match, and the convex portion causes the supported portion from the support portion. Provided is a method of mounting a wheel to prevent it from coming off.

本発明に係る車輪用軸受装置及び車輪の取付方法によれば、車輪の取付時における車輪の脱落を防ぐと共に、車輪をボルトによってフランジ部に固定する作業を容易に行うことが可能となる。 According to the wheel bearing device and the wheel mounting method according to the present invention, it is possible to prevent the wheel from falling off when the wheel is mounted and to easily fix the wheel to the flange portion with bolts.

本発明の実施の形態に係る車輪用軸受装置の全体構成を示す断面図である。It is sectional drawing which shows the whole structure of the bearing device for a wheel which concerns on embodiment of this invention. 車輪用軸受装置及びブレーキロータを車両アウタ側から見た構成図である。It is a block diagram which saw the bearing device for a wheel and a brake rotor from the vehicle outer side. ホイールの被支持部を車両インナ側から見た構成図である。It is a block diagram which looked at the supported part of a wheel from the vehicle inner side. 車輪用軸受装置及びブレーキロータの一部をブレーキキャリパ及びブレーキパッドと共に示す斜視図である。It is a perspective view which shows a part of a wheel bearing device and a brake rotor together with a brake caliper and a brake pad. (a)は、車輪の車両インナ側の側面を示す全体図であり、(b)は、(a)の一部を拡大して示す拡大図である。(A) is an overall view showing the side surface of the wheel on the vehicle inner side, and (b) is an enlarged view showing a part of (a) in an enlarged manner. (a)及び(b)は、車輪の取付手順を示す説明図である。(A) and (b) are explanatory views which show the wheel mounting procedure.

[実施の形態]
本発明の実施の形態について、図1乃至図6を参照して説明する。なお、以下に説明する実施の形態は、本発明を実施する上での好適な具体例として示すものである。このため、技術的に好ましい種々の技術的事項を具体的に例示している部分もあるが、本発明の技術的範囲は、この具体的態様に限定されるものではない。
[Embodiment]
Embodiments of the present invention will be described with reference to FIGS. 1 to 6. The embodiments described below are shown as suitable specific examples for carrying out the present invention. Therefore, although there are some parts that specifically exemplify various technically preferable technical matters, the technical scope of the present invention is not limited to this specific aspect.

(車輪用軸受装置の全体構成)
図1は、本発明の実施の形態に係る車輪用軸受装置の全体構成を示す断面図である。図1では、車両に搭載された車輪用軸受装置を、その周辺部と共に示している。
(Overall configuration of bearing device for wheels)
FIG. 1 is a cross-sectional view showing an overall configuration of a wheel bearing device according to an embodiment of the present invention. In FIG. 1, a wheel bearing device mounted on a vehicle is shown together with its peripheral portion.

この車輪用軸受装置1は、車両の懸架装置を構成するナックル91に対して、車輪をブレーキロータ6と共に回転可能に支持する。図1では、車輪のホイール80の一部である被支持部81、及びブレーキロータ6の一部を示している。ホイール80は、本発明における車輪側部材の一態様である。以下、車輪用軸受装置1において、車輪が取り付けられる側(図1の左側)を車両アウタ側といい、その反対側(図1の右側)を車両インナ側という。 The wheel bearing device 1 rotatably supports the wheels together with the brake rotor 6 with respect to the knuckle 91 constituting the vehicle suspension device. FIG. 1 shows a supported portion 81, which is a part of the wheel 80 of the wheel, and a part of the brake rotor 6. The wheel 80 is one aspect of the wheel side member in the present invention. Hereinafter, in the wheel bearing device 1, the side on which the wheels are mounted (left side in FIG. 1) is referred to as the vehicle outer side, and the opposite side (right side in FIG. 1) is referred to as the vehicle inner side.

車輪用軸受装置1は、ハブ20及び内輪200からなる内方部材2と、車体側部材としてのナックル91に固定される外方部材3と、内方部材2と外方部材3との間に配置された複数の転動体41と、複数の転動体41を保持する一対の保持器42,43と、内方部材2と外方部材3との間の軸受内部空間10への異物の侵入を抑止する車両アウタ側及び車両インナ側のシールリング51,52とを備えている。内方部材2は、外方部材3に対して回転軸線Oを中心として回転する。以下、回転軸線Oに平行な方向を軸方向という。 The wheel bearing device 1 is located between an inner member 2 composed of a hub 20 and an inner ring 200, an outer member 3 fixed to a knuckle 91 as a vehicle body side member, and an inner member 2 and an outer member 3. Foreign matter can enter the bearing internal space 10 between the plurality of arranged rolling elements 41, the pair of cages 42 and 43 holding the plurality of rolling elements 41, and the inner member 2 and the outer member 3. It is provided with seal rings 51 and 52 on the vehicle outer side and the vehicle inner side to be suppressed. The inner member 2 rotates about the rotation axis O with respect to the outer member 3. Hereinafter, the direction parallel to the rotation axis O is referred to as an axial direction.

複数の転動体41は、複列に配置され、このうち車両アウタ側列の複数の転動体41が保持器42に保持され、車両インナ側列の複数の転動体41が保持器43に保持されている。外方部材3は、円筒状の本体部31と、ナックル91に取り付けられる車体取付フランジ32と、シールリング51,52がそれぞれ取り付けられる庇部33,34とを一体に有している。車体取付フランジ32は、ナックルボルト911によってナックル91に固定される。本体部31の内周には、車両アウタ側列ならびに車両インナ側列のそれぞれの転動体41が転動する2つの外側軌道面3a,3bが形成されている。 The plurality of rolling elements 41 are arranged in a plurality of rows, of which the plurality of rolling elements 41 in the vehicle outer side row are held by the cage 42, and the plurality of rolling elements 41 in the vehicle inner side row are held by the cage 43. ing. The outer member 3 integrally has a cylindrical main body portion 31, a vehicle body mounting flange 32 attached to the knuckle 91, and eaves portions 33 and 34 to which the seal rings 51 and 52 are attached, respectively. The vehicle body mounting flange 32 is fixed to the knuckle 91 by the knuckle bolt 911. Two outer raceway surfaces 3a and 3b on which the rolling elements 41 of the vehicle outer side row and the vehicle inner side row roll are formed on the inner circumference of the main body portion 31.

ホイール80は、被支持部81の中心部に中心孔800が形成されており、複数のハブボルト100によってハブ20に取り付けられる。ハブ20は、外方部材3の内側に配置される胴部21と、ホイール80の被支持部81及びブレーキロータ6を相対回転不能に固定するためのフランジ部22と、ホイール80の中心孔800に嵌合し、フランジ部22に固定される前のホイール80の被支持部81を支持するための支持部23とを一体に有している。 The wheel 80 has a center hole 800 formed in the center of the supported portion 81, and is attached to the hub 20 by a plurality of hub bolts 100. The hub 20 includes a body portion 21 arranged inside the outer member 3, a flange portion 22 for fixing the supported portion 81 of the wheel 80 and the brake rotor 6 so as not to rotate relative to each other, and a center hole 800 of the wheel 80. It integrally has a support portion 23 for supporting the supported portion 81 of the wheel 80 before being fitted to the flange portion 22 and fixed to the flange portion 22.

胴部21は、外径が異なる大径部211及び小径部212からなり、大径部211が小径部212よりも車両アウタ側に設けられている。大径部211の外周面には、車両アウタ側列の複数の転動体41が転動する内側軌道面2aが形成されている。小径部212の外周面には、内輪200が嵌着されており、内輪200の外周面には、車両インナ側列の複数の転動体41が転動する内側軌道面2bが形成されている。 The body portion 21 is composed of a large diameter portion 211 and a small diameter portion 212 having different outer diameters, and the large diameter portion 211 is provided on the vehicle outer side of the small diameter portion 212. On the outer peripheral surface of the large-diameter portion 211, an inner raceway surface 2a on which a plurality of rolling elements 41 in the vehicle outer side row roll is formed. An inner ring 200 is fitted on the outer peripheral surface of the small diameter portion 212, and an inner raceway surface 2b on which a plurality of rolling elements 41 in the vehicle inner side row roll is formed on the outer peripheral surface of the inner ring 200.

フランジ部22は、外方部材3よりも車両アウタ側で胴部21から径方向外方に張り出して形成されている。支持部23は、フランジ部22から軸方向に沿って車両アウタ側に向かって突出している。フランジ部22には、複数のハブボルト100がそれぞれ螺合する複数のねじ孔220が設けられている。ハブボルト100は、頭部101と軸部102とを有し、軸部102の先端部には、フランジ部22のねじ孔220に螺合する雄ねじ103が形成されている。ねじ孔220は、フランジ部22を軸方向に貫通する貫通孔である。本実施の形態では、フランジ部22に六つのねじ孔220が周方向等間隔に設けられている。 The flange portion 22 is formed so as to project radially outward from the body portion 21 on the vehicle outer side of the outer member 3. The support portion 23 projects from the flange portion 22 toward the outer side of the vehicle along the axial direction. The flange portion 22 is provided with a plurality of screw holes 220 into which a plurality of hub bolts 100 are screwed. The hub bolt 100 has a head portion 101 and a shaft portion 102, and a male screw 103 screwed into a screw hole 220 of the flange portion 22 is formed at the tip end portion of the shaft portion 102. The screw hole 220 is a through hole that penetrates the flange portion 22 in the axial direction. In the present embodiment, the flange portion 22 is provided with six screw holes 220 at equal intervals in the circumferential direction.

ハブ20の中心部には、胴部21を軸方向に貫通する軸孔210が形成されている。この軸孔210の内面には、スプライン嵌合部210aが形成されており、このスプライン嵌合部210aにドライブシャフトの継手部材92のステム部921が相対回転不能に嵌合する。継手部材92は、ステム部921よりも車両インナ側の端部にカップ部922を有しており、このカップ部922の内側に、駆動力を伝達する等速ジョイントの構成部材が配置される。また、継手部材92は、ステム部921よりも車両アウタ側の端部に雄ねじ部923を有しており、この雄ねじ部923にナット93が螺合している。 A shaft hole 210 that penetrates the body portion 21 in the axial direction is formed in the central portion of the hub 20. A spline fitting portion 210a is formed on the inner surface of the shaft hole 210, and the stem portion 921 of the joint member 92 of the drive shaft is fitted into the spline fitting portion 210a so as not to rotate relative to each other. The joint member 92 has a cup portion 922 at an end on the vehicle inner side of the stem portion 921, and a constant velocity joint component for transmitting a driving force is arranged inside the cup portion 922. Further, the joint member 92 has a male threaded portion 923 at an end on the vehicle outer side of the stem portion 921, and a nut 93 is screwed into the male threaded portion 923.

ブレーキロータ6は、ハブ20のフランジ部22の車両アウタ側に配置される円板状の取付部61と、取付部61の外周側の端部から車両インナ側に延びる円筒状の周板部62と、周板部62の車両インナ側の端部から径方向外方に張り出した摩擦部63とを一体に有している。取付部61には、ハブボルト100の軸部102を挿通させる複数のボルト挿通孔610が形成されている。ボルト挿通孔610は、ブレーキロータ6の取付部61を軸方向に貫通する貫通孔である。ブレーキロータ6は、複数のハブボルト100の軸力によってホイール80の被支持部81とハブ20のフランジ部22との間に挟まれ、内方部材2と一体に回転する。 The brake rotor 6 includes a disk-shaped mounting portion 61 arranged on the vehicle outer side of the flange portion 22 of the hub 20, and a cylindrical peripheral plate portion 62 extending from the outer peripheral end of the mounting portion 61 toward the vehicle inner side. And a friction portion 63 protruding outward in the radial direction from the end portion of the peripheral plate portion 62 on the vehicle inner side. The mounting portion 61 is formed with a plurality of bolt insertion holes 610 through which the shaft portion 102 of the hub bolt 100 is inserted. The bolt insertion hole 610 is a through hole that penetrates the mounting portion 61 of the brake rotor 6 in the axial direction. The brake rotor 6 is sandwiched between the supported portion 81 of the wheel 80 and the flange portion 22 of the hub 20 by the axial force of the plurality of hub bolts 100, and rotates integrally with the inner member 2.

内方部材2は、複数の転動体41の転動により、継手部材92から伝達される駆動力によって外方部材3に対して円滑に回転する。なお、本実施の形態では、転動体41が球体であるが、これに限らず、例えば円すいころであってもよい。また、本実施の形態では、内方部材2が1つの内輪200を有しているが、これに限らず、内方部材2が2つの内輪を有し、このうち一方の内輪に内側軌道面2aが形成され、他方の内輪に内側軌道面2bが形成されていてもよい。 The inner member 2 smoothly rotates with respect to the outer member 3 by the driving force transmitted from the joint member 92 due to the rolling of the plurality of rolling elements 41. In the present embodiment, the rolling element 41 is a sphere, but the present invention is not limited to this, and may be a tapered roller, for example. Further, in the present embodiment, the inner member 2 has one inner ring 200, but the inner member 2 has two inner rings, and one of the inner rings has an inner raceway surface. 2a may be formed and the inner raceway surface 2b may be formed on the other inner ring.

(車輪の軸受構造)
次に、車輪の軸受構造及び取付方法について、図2乃至図6を参照して詳細に説明する。図2は、車輪用軸受装置1及びブレーキロータ6を車両アウタ側から見た構成図であり、図3は、ホイール80の被支持部81を車両インナ側から見た構成図である。図4は、車輪用軸受装置1及びブレーキロータ6の一部をブレーキキャリパ94及びブレーキパッド95と共に示す斜視図である。図5(a)は、車輪8の車両インナ側の側面を示す全体図であり、図5(b)は、図5(a)の一部を拡大して示す拡大図である。図6(a)及び(b)は、車輪8の取付手順を示す説明図である。
(Wheel bearing structure)
Next, the bearing structure of the wheel and the mounting method will be described in detail with reference to FIGS. 2 to 6. FIG. 2 is a configuration diagram of the wheel bearing device 1 and the brake rotor 6 as viewed from the vehicle outer side, and FIG. 3 is a configuration diagram of the supported portion 81 of the wheel 80 as viewed from the vehicle inner side. FIG. 4 is a perspective view showing a part of the wheel bearing device 1 and the brake rotor 6 together with the brake caliper 94 and the brake pad 95. 5 (a) is an overall view showing the side surface of the wheel 8 on the vehicle inner side, and FIG. 5 (b) is an enlarged view showing a part of FIG. 5 (a) in an enlarged manner. 6 (a) and 6 (b) are explanatory views showing a mounting procedure of the wheel 8.

ハブ20の支持部23は、ホイール80の中心孔800の内周面800aに嵌合する外周面231aを有する円筒状の円筒部231と、円筒部231の軸方向一方側端部において円筒部231の外周面231aから径方向外方に突出した複数の凸部232とを有している。本実施の形態では、支持部23に三つの凸部232が周方向に互いに離間して設けられており、それぞれの凸部232の周方向長さ及び径方向高さは共通である。これら三つの凸部232は、円筒部231の周方向に沿って等間隔に設けられている。また、ホイール80の中心孔800の内径は、円筒部231の外径よりも僅かに大きく形成されている。 The support portion 23 of the hub 20 has a cylindrical cylindrical portion 231 having an outer peripheral surface 231a that fits into the inner peripheral surface 800a of the central hole 800 of the wheel 80, and a cylindrical portion 231 at one end in the axial direction of the cylindrical portion 231. It has a plurality of convex portions 232 protruding outward in the radial direction from the outer peripheral surface 231a of the above. In the present embodiment, the support portion 23 is provided with three convex portions 232 separated from each other in the circumferential direction, and the circumferential length and the radial height of the respective convex portions 232 are common. These three convex portions 232 are provided at equal intervals along the circumferential direction of the cylindrical portion 231. Further, the inner diameter of the central hole 800 of the wheel 80 is formed to be slightly larger than the outer diameter of the cylindrical portion 231.

ブレーキロータ6の取付部61は、複数の仮止めボルト96によってハブ20のフランジ部22に仮固定されている。仮止めボルト96は、車輪8を車輪用軸受装置1から取り外した際にもブレーキロータ6をフランジ部22に固定しておくためのものである。ブレーキロータ6は、複数のボルト挿通孔610がフランジ部22のねじ孔220に連通する位置で、フランジ部22に仮固定されている。ブレーキロータ6の取付部61には、図4に示すように、フランジ部22への取り付けの際に三つの凸部232をそれぞれ通過させる三つの切り欠き611が内径側の端部に形成されている。 The mounting portion 61 of the brake rotor 6 is temporarily fixed to the flange portion 22 of the hub 20 by a plurality of temporary fixing bolts 96. The temporary fixing bolt 96 is for fixing the brake rotor 6 to the flange portion 22 even when the wheel 8 is removed from the wheel bearing device 1. The brake rotor 6 is temporarily fixed to the flange portion 22 at a position where a plurality of bolt insertion holes 610 communicate with the screw holes 220 of the flange portion 22. As shown in FIG. 4, the mounting portion 61 of the brake rotor 6 is formed with three notches 611 at the end on the inner diameter side that allow the three convex portions 232 to pass through when mounting on the flange portion 22. There is.

車輪8は、タイヤT及びホイール80からなる。ホイール80は、被支持部81と、タイヤTが取り付けられたリム部82と、被支持部81とリム部82とを連結する連結部83とを一体に有している。連結部83は、複数のスポーク831と、ボス部832とを有しており、ボス部832の車両インナ側に被支持部81が設けられている。被支持部81は、ブレーキロータ6のボルト挿通孔610に連通してハブボルト100の軸部102を挿通させる複数のボルト挿通孔810が設けられた平板状であり、軸方向視において円環状に形成されている。ボルト挿通孔810は、被支持部81を軸方向に貫通する貫通孔であり、本実施の形態では、六つのボルト挿通孔810が周方向等間隔に設けられている。 The wheel 8 includes a tire T and a wheel 80. The wheel 80 integrally includes a supported portion 81, a rim portion 82 to which the tire T is attached, and a connecting portion 83 that connects the supported portion 81 and the rim portion 82. The connecting portion 83 has a plurality of spokes 831 and a boss portion 832, and a supported portion 81 is provided on the vehicle inner side of the boss portion 832. The supported portion 81 has a flat plate shape provided with a plurality of bolt insertion holes 810 that communicate with the bolt insertion holes 610 of the brake rotor 6 and allow the shaft portion 102 of the hub bolt 100 to be inserted, and is formed in an annular shape in the axial direction. Has been done. The bolt insertion holes 810 are through holes that penetrate the supported portion 81 in the axial direction, and in the present embodiment, six bolt insertion holes 810 are provided at equal intervals in the circumferential direction.

被支持部81には、中心孔800の内周面800aから径方向外方に向かって窪む複数の円弧状の凹部801が形成されている。凹部801の数は、支持部23の凸部232の数と同じであり、本実施の形態では、三つの凹部801が周方向に互いに離間して設けられている。それぞれの凹部801の周方向長さは、凸部232の周方向長さよりも長く、それぞれの凹部801の径方向の深さは、凸部232の径方向の高さ(円筒部231の外周面231aからの突出高さ)よりも高い。 The supported portion 81 is formed with a plurality of arc-shaped recesses 801 that are recessed outward in the radial direction from the inner peripheral surface 800a of the central hole 800. The number of recesses 801 is the same as the number of convex portions 232 of the support portion 23, and in the present embodiment, the three recesses 801 are provided so as to be separated from each other in the circumferential direction. The circumferential length of each concave portion 801 is longer than the circumferential length of the convex portion 232, and the radial depth of each concave portion 801 is the radial height of the convex portion 232 (the outer peripheral surface of the cylindrical portion 231). It is higher than the protrusion height from 231a).

ホイール80は、図1に示すように、被支持部81がフランジ部22と凸部232との間の軸方向位置に配置され、被支持部81の凹部801が形成されていない部位が凸部232によって係止されて支持部23から抜け止めされる。換言すれば、中心孔800の内周面800aが凸部232と軸方向において重畳することにより、被支持部81が支持部23から抜け止めされる。次に、図6(a)及び(b)を参照し、車輪用軸受装置1への車輪8の取付手順について詳細に説明する。 As shown in FIG. 1, in the wheel 80, the supported portion 81 is arranged at an axial position between the flange portion 22 and the convex portion 232, and the portion of the supported portion 81 where the concave portion 801 is not formed is a convex portion. It is locked by 232 and prevented from coming off from the support portion 23. In other words, the inner peripheral surface 800a of the central hole 800 overlaps with the convex portion 232 in the axial direction, so that the supported portion 81 is prevented from coming off from the supporting portion 23. Next, the procedure for attaching the wheel 8 to the wheel bearing device 1 will be described in detail with reference to FIGS. 6A and 6B.

図6(a)及び(b)では、実線で示す車輪用軸受装置1及びブレーキロータ6に、車両アウタ側から見たホイール80の被支持部81を破線で重ねて示している。図6(a)は、凹部801の周方向の位置と凸部232の周方向の位置とを一致させ、ホイール80の中心孔800にハブ20の支持部23における円筒部231を挿通させた状態を示している。この状態では、中心孔800に円筒部231が挿通されて被支持部81が支持部23に支持される。 In FIGS. 6A and 6B, the supported portion 81 of the wheel 80 seen from the outer side of the vehicle is superimposed on the bearing device 1 for wheels and the brake rotor 6 shown by solid lines with broken lines. FIG. 6A shows a state in which the circumferential position of the concave portion 801 and the circumferential position of the convex portion 232 are matched, and the cylindrical portion 231 of the support portion 23 of the hub 20 is inserted into the central hole 800 of the wheel 80. Is shown. In this state, the cylindrical portion 231 is inserted through the central hole 800, and the supported portion 81 is supported by the support portion 23.

その後、図6(b)に示すように、中心孔800に円筒部231が挿通された状態で、凹部801の周方向の位置と凸部232の周方向の位置とが不一致となるようにホイール80をハブ20に対して相対回転させる。これにより、被支持部81が凸部232によってハブ20の支持部23から抜け止めされる。ここで、「凹部801の周方向の位置と凸部232の周方向の位置とが不一致となる」とは、被支持部81における凹部801が形成されていない部位の少なくとも一部が凸部232と軸方向に向かい合うことをいう。 After that, as shown in FIG. 6B, with the cylindrical portion 231 inserted through the central hole 800, the wheel is set so that the circumferential position of the concave portion 801 and the circumferential position of the convex portion 232 do not match. The 80 is rotated relative to the hub 20. As a result, the supported portion 81 is prevented from coming off from the supported portion 23 of the hub 20 by the convex portion 232. Here, "the position in the circumferential direction of the concave portion 801 and the position in the circumferential direction of the convex portion 232 do not match" means that at least a part of the portion of the supported portion 81 in which the concave portion 801 is not formed is the convex portion 232. It means facing in the axial direction.

図6(b)では、図6(a)に示す状態から、ホイール80が図6(a)の矢印A方向に60°回転した状態を示している。この状態では、被支持部81が凸部232によってハブ20の支持部23から抜け止めされると共に、ホイール80の被支持部81のボルト挿通孔810、ブレーキロータ6の取付部61のボルト挿通孔610、及びハブ20のフランジ部22のねじ孔220が互いに連通する。換言すれば、凹部801が形成されていない部位における中心孔800の内周面800aと凸部232とが軸方向に並んだ状態において、フランジ部22の複数のねじ孔220と、ブレーキロータ6のボルト挿通孔610と、ホイール80のボルト挿通孔810とが連通する。 FIG. 6B shows a state in which the wheel 80 is rotated by 60 ° in the direction of arrow A in FIG. 6A from the state shown in FIG. 6A. In this state, the supported portion 81 is prevented from coming off from the supported portion 23 of the hub 20 by the convex portion 232, and the bolt insertion hole 810 of the supported portion 81 of the wheel 80 and the bolt insertion hole of the mounting portion 61 of the brake rotor 6 are prevented. The screw holes 220 of the 610 and the flange portion 22 of the hub 20 communicate with each other. In other words, in a state where the inner peripheral surface 800a of the central hole 800 and the convex portion 232 are aligned in the axial direction in the portion where the concave portion 801 is not formed, the plurality of screw holes 220 of the flange portion 22 and the brake rotor 6 The bolt insertion hole 610 and the bolt insertion hole 810 of the wheel 80 communicate with each other.

そして、ホイール80のボルト挿通孔810と、ブレーキロータ6のボルト挿通孔610及びハブ20のねじ孔220とが互いに連通した状態で、ホイール80の被支持部81をブレーキロータ6の取付部61と共にハブボルト100によってハブ20のフランジ部22に固定する。これにより、ホイール80がハブ20に取り付けられる。 Then, in a state where the bolt insertion hole 810 of the wheel 80, the bolt insertion hole 610 of the brake rotor 6 and the screw hole 220 of the hub 20 are in communication with each other, the supported portion 81 of the wheel 80 is connected with the mounting portion 61 of the brake rotor 6. It is fixed to the flange portion 22 of the hub 20 by the hub bolt 100. As a result, the wheel 80 is attached to the hub 20.

(実施の形態の効果)
以上説明した実施の形態によれば、ホイール80の被支持部81がハブ20の支持部23の凸部232によって抜け止めされるので、車輪8の取付時に支持部23から車輪8が外れる防ぐことができ、車輪8のホイール80をハブボルト100によってハブ20のフランジ部22に固定する作業を容易に行うことが可能となる。
(Effect of embodiment)
According to the embodiment described above, the supported portion 81 of the wheel 80 is prevented from coming off by the convex portion 232 of the support portion 23 of the hub 20, so that the wheel 8 can be prevented from coming off from the support portion 23 when the wheel 8 is attached. This makes it possible to easily fix the wheel 80 of the wheel 8 to the flange portion 22 of the hub 20 by the hub bolt 100.

(付記)
以上、本発明を実施の形態に基づいて説明したが、この実施の形態は特許請求の範囲に係る発明を限定するものではない。また、実施の形態の中で説明した特徴の組合せの全てが発明の課題を解決するための手段に必須であるとは限らない点に留意すべきである。
(Additional note)
Although the present invention has been described above based on the embodiment, the embodiment does not limit the invention according to the claims. It should also be noted that not all combinations of features described in the embodiments are essential to the means for solving the problems of the invention.

また、本発明は、その趣旨を逸脱しない範囲で、一部の構成を省略し、あるいは構成を追加もしくは置換して、適宜変形して実施することが可能である。例えば、上記実施の形態では、駆動力が伝達される駆動輪としての車輪8が取り付けられる車輪用軸受装置1を例にとって説明したが、駆動力が伝達されない従動輪が取り付けられる車輪用軸受装置に本発明を適用することも可能である。 Further, the present invention can be carried out by appropriately modifying it by omitting a part of the configuration or adding or replacing the configuration within a range not deviating from the gist thereof. For example, in the above embodiment, the wheel bearing device 1 to which the wheel 8 is attached as the driving wheel to which the driving force is transmitted has been described as an example, but the wheel bearing device to which the driven wheel to which the driving force is not transmitted is attached. It is also possible to apply the present invention.

また、上記の実施の形態では、フランジ部22に六つのねじ孔220が設けられ、六本のハブボルト100によって車輪8のホイール80がハブ20に取り付けられる場合について説明したが、フランジ部22のねじ孔220の数は、四つでもよく、五つでもよい。またさらに、上記実施の形態では、支持部23における凸部232及び被支持部81における凹部801の数が三つである場合について説明したが、凸部232及び被支持部81の数は、一つ又は二つでもよく、四つ以上でもよい。 Further, in the above embodiment, the case where the flange portion 22 is provided with the six screw holes 220 and the wheel 80 of the wheel 8 is attached to the hub 20 by the six hub bolts 100 has been described. The number of holes 220 may be four or five. Further, in the above embodiment, the case where the number of the convex portion 232 in the support portion 23 and the number of the concave portions 801 in the supported portion 81 are three has been described, but the number of the convex portions 232 and the supported portion 81 is one. It may be one or two, or four or more.

1…車輪用軸受装置 100…ハブボルト
2…内方部材 20…ハブ
22…フランジ部 220…ねじ孔
23…支持部 231…円筒部
231a…外周面 232…凸部
3…外方部材 41…転動体
8…車輪 80…ホイール(車輪側部材)
800…中心孔 800a…内周面
801…凹部 81…被支持部
810…ボルト挿通孔 91…ナックル(車体側部材)
1 ... Wheel bearing device 100 ... Hub bolt 2 ... Inner member 20 ... Hub 22 ... Flange part 220 ... Screw hole 23 ... Support part 231 ... Cylindrical part 231a ... Outer peripheral surface 232 ... Convex part 3 ... Outer member 41 ... Rolling element 8 ... Wheel 80 ... Wheel (wheel side member)
800 ... Central hole 800a ... Inner peripheral surface 801 ... Recessed portion 81 ... Supported part 810 ... Bolt insertion hole 91 ... Knuckle (vehicle body side member)

Claims (6)

中心孔が形成された被支持部を有する車輪側部材が取り付けられる内方部材と、車体側部材に固定される外方部材と、前記内方部材と前記外方部材との間に配置された複数の転動体とを備え、
前記被支持部には、前記中心孔の内周面から径方向外方に向かって窪む凹部が形成されており、
前記内方部材は、前記被支持部を相対回転不能に固定するためのフランジ部と、前記中心孔に嵌合して前記被支持部を支持するための支持部とを有し、前記支持部が前記フランジ部から軸方向に突出して設けられており、
前記支持部は、前記中心孔の前記内周面に嵌合する外周面を有する円筒部と、当該円筒部の軸方向一方側端部において前記外周面から径方向外方に突出した凸部とを有し、
前記車輪側部材は、前記被支持部が前記フランジ部と前記凸部との間の軸方向位置に配置され、前記被支持部の前記凹部が形成されていない部位が前記凸部によって係止されて前記支持部から抜け止めされる、
車輪用軸受装置。
It is arranged between the inner member to which the wheel side member having the supported portion having the central hole is formed is attached, the outer member fixed to the vehicle body side member, and the inner member and the outer member. Equipped with multiple rolling elements
The supported portion is formed with a recess that is recessed from the inner peripheral surface of the central hole in the radial direction.
The inner member has a flange portion for fixing the supported portion so as not to be relatively rotatable, and a support portion for fitting the supported portion to support the supported portion by fitting into the central hole, and the supporting portion. Is provided so as to project axially from the flange portion.
The support portion includes a cylindrical portion having an outer peripheral surface that fits into the inner peripheral surface of the central hole, and a convex portion that protrudes radially outward from the outer peripheral surface at one end of the cylindrical portion in the axial direction. Have,
In the wheel side member, the supported portion is arranged at an axial position between the flange portion and the convex portion, and a portion of the supported portion where the concave portion is not formed is locked by the convex portion. To prevent it from coming off from the support
Bearing device for wheels.
前記被支持部は、前記凹部の周方向の位置が前記凸部の周方向の位置と一致した状態で前記中心孔に前記円筒部が挿通されて前記支持部に支持され、
前記支持部は、前記中心孔に前記円筒部が挿通された状態で、前記凹部の周方向の位置と前記凸部の周方向の位置とが不一致となるように前記車輪側部材が前記内方部材に対して相対回転することにより、前記凸部によって前記被支持部を抜け止めする、
請求項1に記載の車輪用軸受装置。
The supported portion is supported by the supporting portion by inserting the cylindrical portion into the central hole in a state where the circumferential position of the concave portion coincides with the circumferential position of the convex portion.
In the support portion, the wheel side member is inward so that the position in the circumferential direction of the concave portion and the position in the circumferential direction of the convex portion do not match in a state where the cylindrical portion is inserted into the central hole. By rotating relative to the member, the supported portion is prevented from coming off by the convex portion.
The wheel bearing device according to claim 1.
前記支持部には、複数の前記凸部が周方向に互いに離間して設けられ、
前記被支持部には、複数の前記凹部が周方向に互いに離間して設けられている、
請求項1又は2に記載の車輪用軸受装置。
A plurality of the convex portions are provided on the support portion so as to be separated from each other in the circumferential direction.
A plurality of the recesses are provided in the supported portion so as to be separated from each other in the circumferential direction.
The wheel bearing device according to claim 1 or 2.
前記フランジ部及び前記被支持部のそれぞれには、前記被支持部を前記フランジ部に固定するためのボルトが挿通される複数の貫通孔が軸方向に貫通して形成されており、
前記凹部が形成されていない部位における前記中心孔の前記内周面と前記凸部とが軸方向に並んだ状態で、前記フランジ部の前記複数の貫通孔と前記被支持部の前記複数の貫通孔とが連通する、
請求項1乃至3の何れか1項に記載の車輪用軸受装置。
Each of the flange portion and the supported portion is formed with a plurality of through holes through which bolts for fixing the supported portion to the flange portion are inserted so as to penetrate in the axial direction.
The plurality of through holes of the flange portion and the plurality of penetrations of the supported portion in a state where the inner peripheral surface of the central hole and the convex portion are aligned in the axial direction in the portion where the recess is not formed. Communicate with the hole,
The wheel bearing device according to any one of claims 1 to 3.
内方部材及び外方部材の間に複数の転動体が配置された車輪用軸受装置の前記内方部材に車輪側部材を取り付ける車輪の取付方法であって、
前記車輪側部材は、中心孔及び当該中心孔の内周面から径方向外方に向かって窪む凹部が形成された被支持部を有し、
前記内方部材は、前記被支持部を相対回転不能に固定するためのフランジ部と、前記中心孔に嵌合して前記被支持部を支持するための支持部とを有し、前記支持部が前記フランジ部から軸方向に突出して設けられており、
前記支持部は、前記中心孔の前記内周面に嵌合する外周面を有する円筒部と、当該円筒部の軸方向一方側端部において前記外周面から径方向外方に突出した凸部とを有し、
前記凹部の周方向の位置と前記凸部の周方向の位置とを一致させた状態で前記中心孔に前記円筒部を挿通させた後、前記凹部の周方向の位置と前記凸部の周方向の位置とが不一致となるように前記車輪側部材を前記内方部材に対して相対回転させ、前記凸部によって前記被支持部を前記支持部から抜け止めする、
車輪の取付方法。
It is a method of mounting a wheel for mounting a wheel side member to the inner member of a wheel bearing device in which a plurality of rolling elements are arranged between an inner member and an outer member.
The wheel-side member has a central hole and a supported portion in which a recess recessed from the inner peripheral surface of the central hole in the radial direction is formed.
The inner member has a flange portion for fixing the supported portion so as not to be relatively rotatable, and a support portion for fitting the supported portion to support the supported portion by fitting into the central hole, and the supporting portion. Is provided so as to project axially from the flange portion.
The support portion includes a cylindrical portion having an outer peripheral surface that fits into the inner peripheral surface of the central hole, and a convex portion that protrudes radially outward from the outer peripheral surface at one end of the cylindrical portion in the axial direction. Have,
After inserting the cylindrical portion into the central hole in a state where the circumferential position of the concave portion and the circumferential position of the convex portion are matched, the circumferential position of the concave portion and the circumferential direction of the convex portion The wheel side member is rotated relative to the inner member so as to be inconsistent with the position of, and the supported portion is prevented from coming off from the supported portion by the convex portion.
How to install the wheels.
前記フランジ部及び前記被支持部のそれぞれには、前記被支持部を前記フランジ部に固定するためのボルトが挿通される複数の貫通孔が軸方向に貫通して形成されており、
前記被支持部が前記凸部によって前記支持部から抜け止めされた状態で前記フランジ部の前記複数の貫通孔と前記被支持部の前記複数の貫通孔とを連通させ、当該連通した状態で前記被支持部を前記フランジ部に前記複数のボルトによって固定する、
請求項5に記載の車輪の取付方法。
Each of the flange portion and the supported portion is formed with a plurality of through holes through which bolts for fixing the supported portion to the flange portion are inserted so as to penetrate in the axial direction.
The plurality of through holes of the flange portion and the plurality of through holes of the supported portion are communicated with each other in a state where the supported portion is prevented from coming off from the support portion by the convex portion, and the communicated state is described. The supported portion is fixed to the flange portion by the plurality of bolts.
The wheel mounting method according to claim 5.
JP2019218593A 2019-12-03 2019-12-03 Wheel bearing device and wheel attachment method Pending JP2021088235A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023149151A1 (en) * 2022-02-04 2023-08-10 Ntn株式会社 Vehicle wheel bearing device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023149151A1 (en) * 2022-02-04 2023-08-10 Ntn株式会社 Vehicle wheel bearing device

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