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JP5026301B2 - Rolling bearing unit and manufacturing method thereof - Google Patents

Rolling bearing unit and manufacturing method thereof Download PDF

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Publication number
JP5026301B2
JP5026301B2 JP2008031611A JP2008031611A JP5026301B2 JP 5026301 B2 JP5026301 B2 JP 5026301B2 JP 2008031611 A JP2008031611 A JP 2008031611A JP 2008031611 A JP2008031611 A JP 2008031611A JP 5026301 B2 JP5026301 B2 JP 5026301B2
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rolling bearing
inner ring
rolling
fitting
outer ring
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JP2009191895A (en
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正美 大阿久
敦司 太田
住夫 清水
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Seiko Instruments Inc
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Seiko Instruments Inc
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C35/00Rigid support of bearing units; Housings, e.g. caps, covers
    • F16C35/04Rigid support of bearing units; Housings, e.g. caps, covers in the case of ball or roller bearings
    • F16C35/06Mounting or dismounting of ball or roller bearings; Fixing them onto shaft or in housing
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C19/00Bearings with rolling contact, for exclusively rotary movement
    • F16C19/02Bearings with rolling contact, for exclusively rotary movement with bearing balls essentially of the same size in one or more circular rows
    • F16C19/04Bearings with rolling contact, for exclusively rotary movement with bearing balls essentially of the same size in one or more circular rows for radial load mainly
    • F16C19/06Bearings with rolling contact, for exclusively rotary movement with bearing balls essentially of the same size in one or more circular rows for radial load mainly with a single row or balls
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C19/00Bearings with rolling contact, for exclusively rotary movement
    • F16C19/54Systems consisting of a plurality of bearings with rolling friction

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Mounting Of Bearings Or Others (AREA)

Description

本発明は、転がり軸受ユニットおよびその製造方法に関するものである。   The present invention relates to a rolling bearing unit and a manufacturing method thereof.

回転装置に用いる軸受装置として、軸が嵌合された内輪と、ハウジングに嵌合された外輪と、これら内輪と外輪との間に配置された転動体とからなる軸受を2個以上備えたものが知られている。通常、このような軸受装置の各軸受の内輪と軸、および、各軸受の外輪とハウジングは、それぞれ圧入、または、接着剤を併用した圧入、もしくは、接着剤を併用したすきまばめによって固定されている(例えば、特許文献1参照)。なお、すきまばめとは、孔の最小許容寸法より軸の最大許容寸法が小さく、常に孔と軸の間に隙間がある嵌め合いをいう。   As a bearing device used for a rotating device, a bearing device including two or more bearings including an inner ring fitted with a shaft, an outer ring fitted in a housing, and a rolling element disposed between the inner ring and the outer ring. It has been known. Normally, the inner ring and shaft of each bearing and the outer ring and housing of each bearing of such a bearing device are fixed by press-fitting, press-fitting with an adhesive, or clearance fit with an adhesive, respectively. (For example, refer to Patent Document 1). The clearance fit is a fit in which the maximum allowable dimension of the shaft is smaller than the minimum allowable dimension of the hole, and there is always a gap between the hole and the shaft.

特許文献1の軸受装置では、軸と軸受の内輪とをすきまばめによって取り付け、かつ、軸受の外輪とハウジングとをすきまばめによって取り付け、それぞれの公差を所定の範囲に設定することにより、高速回転時における歳差運動の発生を抑制することとしている。
特開2002−130265号公報
In the bearing device of Patent Document 1, the shaft and the inner ring of the bearing are attached by a clearance fit, the outer ring of the bearing and the housing are attached by a clearance fit, and the respective tolerances are set within a predetermined range. The generation of precession during rotation is suppressed.
JP 2002-130265 A

しかしながら、特許文献1の軸受装置のように、軸と軸受の内輪の嵌合部分、および、軸受の外輪とハウジングの嵌合部分をそれぞれすきまばめによって固定すると、嵌合部分のすきまが大きい場合には芯ずれとなり、トルクに乱れを生じさせる原因となるという不都合がある。また、これらの嵌合部分をそれぞれ圧入によって固定しようとすると、嵌合時に嵌合部分に塗布された接着剤がかき出されたり、軸受に負荷がかかって内輪が変形したりして、トルクやノイズに悪影響を与えるおそれがあるという不都合がある。   However, when the fitting portion of the shaft and the inner ring of the bearing and the fitting portion of the outer ring of the bearing and the housing are respectively fixed by clearance fit, as in the bearing device of Patent Document 1, the clearance of the fitting portion is large. Has a disadvantage that it causes misalignment and causes disturbance in torque. If these fitting parts are fixed by press-fitting, the adhesive applied to the fitting part is scraped off at the time of fitting, or the bearing is loaded and the inner ring is deformed. There is an inconvenience that noise may be adversely affected.

本発明は上述した事情に鑑みてなされたものであって、嵌合時に転がり軸受にかかる負荷を低減し、かつ、芯ずれを最小限に抑えることができる転がり軸受ユニットおよびその製造方法を提供することを目的とする。   The present invention has been made in view of the above-described circumstances, and provides a rolling bearing unit capable of reducing the load applied to the rolling bearing during fitting and minimizing misalignment, and a method for manufacturing the same. For the purpose.

上記目的を達成するために、本発明は以下の手段を提供する。
本発明は、同軸上に配置された内輪と外輪との間の円環状空間に周方向に間隔をあけて複数個の転動体を内蔵し、軸方向に所定の間隔をあけて配置される2つの転がり軸受と、これら2つの転がり軸受の前記内輪に嵌合された状態で接着される第1の部材と、前記2つの転がり軸受の前記外輪を嵌合させた状態で接着される嵌合孔を有する第2の部材とを備え、前記2つの転がり軸受の前記内輪と前記第1の部材との嵌合部分または前記外輪と前記嵌合孔との嵌合部分の少なくとも1箇所が中間ばめによって組み付けられている転がり軸受ユニットを提供する。
In order to achieve the above object, the present invention provides the following means.
In the present invention, a plurality of rolling elements are incorporated in an annular space between an inner ring and an outer ring that are coaxially arranged with a circumferential interval therebetween, and are arranged with a predetermined interval in the axial direction. Two rolling bearings, a first member to be bonded in a state of being fitted to the inner ring of the two rolling bearings, and a fitting hole to be bonded in a state of being fitted to the outer ring of the two rolling bearings And at least one of the fitting portion between the inner ring and the first member of the two rolling bearings or the fitting portion between the outer ring and the fitting hole is an intermediate fit. A rolling bearing unit assembled by the above is provided.

本発明によれば、第1の部材に組み付けられた2つの転がり軸受の外輪が第2の部材の嵌合孔に嵌合されることにより、転がり軸受ユニットが構成される。この場合に、2つの転がり軸受の内輪と第1の部材との嵌合部分、または、2つの転がり軸受の外輪と嵌合孔との嵌合部分のうちの少なくとも一箇所が、中間ばめによって隙間の大きさ(すなわち、遊び)を制限されているので、すべての嵌合部分をすきまばめにして常に遊びがある場合に比べて、同軸度を確保して芯ずれを抑えることができる。また、これらの嵌合部分が圧入によって組み付けられる場合に比べて、嵌合時に転がり軸受にかかる負荷を低減することができ、内輪が変形したり転動体に傷が付いたりするのを防ぐことができる。   According to the present invention, the rolling bearing unit is configured by fitting the outer rings of the two rolling bearings assembled to the first member into the fitting holes of the second member. In this case, at least one of the fitting portion between the inner ring and the first member of the two rolling bearings or the fitting portion between the outer ring and the fitting hole of the two rolling bearings is caused by an intermediate fit. Since the size of the gap (that is, play) is limited, the coaxiality can be secured and misalignment can be suppressed as compared with the case where there is always play by making all the fitting portions fit. In addition, compared to the case where these fitting parts are assembled by press fitting, the load applied to the rolling bearing during fitting can be reduced, and the inner ring can be prevented from being deformed and the rolling elements from being damaged. it can.

上記発明においては、前記第1の部材が、軸方向の一端に全周にわたって半径方向外方に突出し一方の前記転がり軸受の前記内輪の端面を突き当てる鍔部を備え、該鍔部から遠い側に配置されている他方の前記転がり軸受の前記外輪と前記嵌合孔との嵌合部分が中間ばめによって組み付けられていることとしてもよい。   In the above invention, the first member includes a flange portion protruding radially outward at one end in the axial direction over the entire circumference and abutting the end surface of the inner ring of one of the rolling bearings, on the side far from the flange portion It is good also as the fitting part of the said outer ring | wheel and the said fitting hole of the other said rolling bearing arrange | positioned in being assembled | attached by the intermediate fit.

このような構成によれば、第1の部材の鍔部に内輪の端面が突き当てられた一方の転がり軸受に対して軸方向の反対側に配置された他方の転がり軸受の内輪を軸方向に押圧するだけで、2つの転がり軸受に予圧をかけることができる。また、第1の部材の鍔部が妨げとなることなく嵌合部分の少なくとも1箇所を中間ばめにすることができる。   According to such a configuration, the inner ring of the other rolling bearing arranged on the opposite side of the axial direction with respect to the one rolling bearing in which the end surface of the inner ring is abutted against the flange portion of the first member is axially moved. Pre-loading can be applied to the two rolling bearings simply by pressing. Also, at least one of the fitting portions can be an intermediate fit without hindering the flange of the first member.

本発明は、同軸上に配置された内輪と外輪との間の円環状空間に周方向に間隔をあけて複数個の転動体を内蔵する第1の転がり軸受の前記内輪に、外周面に接着剤を塗布した第1の部材をすきまばめによって嵌合させるステップと、同軸上に配置された内輪と外輪との間の円環状空間に周方向に間隔をあけて複数個の転動体を内蔵する第2の転がり軸受に対応する内周面の位置に接着剤を塗布した第2の部材の嵌合孔に、前記第2の転がり軸受の前記外輪を中間ばめによって嵌合させて接着するステップと、内周面の前記第1の転がり軸受に対応する位置に接着剤を塗布した第2の部材の嵌合孔に、外周面の前記第2の転がり軸受に対応する位置に接着剤を塗布した第1の部材を挿入し、前記第1の転がり軸受の外輪と前記嵌合孔の内周面、および、前記第2の転がり軸受の前記内輪と前記第1の部材の外周面とをそれぞれすきまばめによって嵌合させて接着するステップとを備える転がり軸受ユニットの製造方法を提供する。   In the present invention, the outer ring is bonded to the inner ring of the first rolling bearing having a plurality of rolling elements in the annular space between the inner ring and the outer ring arranged on the same axis and spaced apart in the circumferential direction. A plurality of rolling elements are built in the annular space between the inner ring and the outer ring arranged on the same axis and spaced in the circumferential direction. The outer ring of the second rolling bearing is fitted and bonded to the fitting hole of the second member coated with an adhesive at the position of the inner peripheral surface corresponding to the second rolling bearing. And an adhesive agent at a position corresponding to the second rolling bearing on the outer peripheral surface in the fitting hole of the second member coated with an adhesive at a position corresponding to the first rolling bearing on the inner peripheral surface. Insert the coated first member, the outer ring of the first rolling bearing and the inner peripheral surface of the fitting hole, And, to provide a method of manufacturing a rolling bearing unit and a step of bonding the outer peripheral surface of said the inner ring of the second rolling bearing first member respectively fitted by clearance fit.

本発明によれば、第1の転がり軸受を組み付けた第1の部材を、第2の転がり軸受が組み付けられた第2の部材の嵌合孔に嵌合させることにより、転がり軸受ユニットを構成させる。この場合に、第2の転がり軸受を第2の部材に中間ばめによって組み付けるので、第2の転がり軸受の外輪と嵌合孔との嵌合部分の遊びを効果的に制限することができる。   According to the present invention, a rolling bearing unit is configured by fitting the first member assembled with the first rolling bearing into the fitting hole of the second member assembled with the second rolling bearing. . In this case, since the second rolling bearing is assembled to the second member by an intermediate fit, play of the fitting portion between the outer ring and the fitting hole of the second rolling bearing can be effectively limited.

具体的には、すべての嵌合部分をすきまばめにして常に遊びがある場合に比べて、同軸度を確保し易くすることができる。また、嵌合部分を圧入によって組み付けた場合に比べて、嵌合時に接着剤を塗布するスペースを確保したり、転がり軸受にかかる負荷を低減したりすることができる。したがって、芯ずれを抑えるとともに、嵌合時に接着剤がかき出されたり転がり軸受が変形したりすることなく転がり軸受ユニットを組立てることができる。   Specifically, the coaxiality can be easily ensured as compared with the case where there is always play by making all fitting portions into a clearance fit. Moreover, compared with the case where a fitting part is assembled | attached by press injection, the space which apply | coats an adhesive agent at the time of a fitting can be ensured, or the load concerning a rolling bearing can be reduced. Accordingly, it is possible to assemble the rolling bearing unit while suppressing misalignment and without scraping off the adhesive or deforming the rolling bearing during fitting.

上記発明においては、前記第1の部材が、軸方向の一端に全周にわたって半径方向外方に突出し前記第1の転がり軸受の前記内輪の端面を突き当てる鍔部を備え、該鍔部に内輪の端面が突き当てられた第1の転がり軸受に対して軸方向の反対側に配置された第2の転がり軸受の内輪を軸方向に押圧して、2つの前記転がり軸受の内輪を相互に近接させる方向に予圧をかけた状態で、これら内輪と前記第1の部材とを接着させるステップを備えることとしてもよい。   In the above invention, the first member includes a flange portion that protrudes radially outward at one end in the axial direction over the entire circumference and abuts the end surface of the inner ring of the first rolling bearing, and the inner ring is provided in the flange portion. The inner rings of the second rolling bearings, which are arranged on the opposite side of the axial direction with respect to the first rolling bearings against which the end surfaces of the two rolling bearings are pressed, are axially pressed to bring the inner rings of the two rolling bearings close to each other. It is good also as providing the step which adhere | attaches these inner rings and said 1st member in the state which applied the preload to the direction to make.

このような構成によれば、第2の転がり軸受の内輪を軸方向に押圧するだけで、2つの転がり軸受に予圧をかけることができる。また、第1の部材の鍔部が妨げとなることなく嵌合部分の少なくとも一箇所を中間ばめにすることができる。   According to such a configuration, it is possible to apply preload to the two rolling bearings simply by pressing the inner ring of the second rolling bearing in the axial direction. Further, at least one of the fitting portions can be an intermediate fit without hindering the collar portion of the first member.

本発明によれば、嵌合時に転がり軸受にかかる負荷を低減し、かつ、芯ずれを最小限に抑えることができるという効果を奏する。   According to the present invention, it is possible to reduce the load applied to the rolling bearing during fitting and to minimize the misalignment.

以下、本発明の一実施形態に係る転がり軸受ユニットおよびその製造方法について、図面を参照して説明する。
図1に示すように、本実施形態に係る転がり軸受ユニット1は、例えば、スイングアーム用の転がり軸受ユニットである。この転がり軸受ユニット1は、軸方向に所定の間隔をあけて配置される第1の転がり軸受10Aおよび第2の転がり軸受10B(以下、第1の転がり軸受10Aと第2の転がり軸受10Bとを合わせて「転がり軸受10A,10B」という。)と、これらの転がり軸受10A,10Bに嵌合されるシャフト(第1の部材)3と、転がり軸受10A,10Bを嵌合させる嵌合孔7を有する円筒状のスリーブ(第2の部材)5とを備えている。
Hereinafter, a rolling bearing unit and a manufacturing method thereof according to an embodiment of the present invention will be described with reference to the drawings.
As shown in FIG. 1, the rolling bearing unit 1 according to the present embodiment is a rolling bearing unit for a swing arm, for example. This rolling bearing unit 1 includes a first rolling bearing 10A and a second rolling bearing 10B (hereinafter referred to as a first rolling bearing 10A and a second rolling bearing 10B) that are arranged at predetermined intervals in the axial direction. (Referred to as “rolling bearings 10A and 10B”), a shaft (first member) 3 fitted to these rolling bearings 10A and 10B, and a fitting hole 7 for fitting the rolling bearings 10A and 10B. And a cylindrical sleeve (second member) 5.

転がり軸受10A,10Bは、シャフト3とスリーブ5とを相対的に回転させるためのものである。第1の転がり軸受10Aは、同軸上に配置された内輪12aおよび外輪14aと、これら内輪12aと外輪14aとの間の円環状空間に周方向に間隔をあけて内蔵される複数個の転動体16とを備えている。   The rolling bearings 10A and 10B are for rotating the shaft 3 and the sleeve 5 relatively. The first rolling bearing 10A includes an inner ring 12a and an outer ring 14a that are coaxially arranged, and a plurality of rolling elements that are built in an annular space between the inner ring 12a and the outer ring 14a with a circumferential interval therebetween. 16.

第1の転がり軸受10Aの内輪12aの外周面には、深溝型若しくはアンギュラ型の内輪軌道が設けられ、また、外輪14aの内周面には、深溝型若しくはアンギュラ型の外輪軌道が設けられている。
なお、第2の転がり軸受10Bは、第1の転がり軸受10Aと同じ構成であり、説明を省略する。
A deep groove type or angular type inner ring raceway is provided on the outer peripheral surface of the inner ring 12a of the first rolling bearing 10A, and a deep groove type or angular type outer ring raceway is provided on the inner peripheral surface of the outer ring 14a. Yes.
Note that the second rolling bearing 10B has the same configuration as the first rolling bearing 10A, and a description thereof will be omitted.

シャフト3は、略円筒状部材であって、一端に軸方向に延びるネジ孔9、他端に軸方向に突出する雄ねじ形成用の突起11を備えている。シャフト3の前記他端には、全周にわたって半径方向外方に突出する鍔状のフランジ部(鍔部)13が設けられている。   The shaft 3 is a substantially cylindrical member, and includes a screw hole 9 extending in the axial direction at one end and a projection 11 for forming an external thread protruding in the axial direction at the other end. The other end of the shaft 3 is provided with a flange-like flange portion (ridge portion) 13 that protrudes radially outward over the entire circumference.

シャフト3には、フランジ部13側から順に第1の転がり軸受10Aおよび第2の転がり軸受10Bが嵌め込まれている。また、シャフト3の外周面と転がり軸受10A,10Bの内輪12a,12bとは接着剤により接着されている。このシャフト3は、シャフト3の外径寸法と転がり軸受10A,10Bの内輪12a,12bの内径寸法との寸法差が+0.002mm〜+0.025mmの範囲のものが用いられており、内輪12a,12bにすきまばめによって組み付けられている。   A first rolling bearing 10A and a second rolling bearing 10B are fitted into the shaft 3 in order from the flange portion 13 side. Further, the outer peripheral surface of the shaft 3 and the inner rings 12a and 12b of the rolling bearings 10A and 10B are bonded with an adhesive. The shaft 3 has a dimensional difference between the outer diameter of the shaft 3 and the inner diameter of the inner rings 12a and 12b of the rolling bearings 10A and 10B in the range of +0.002 mm to +0.025 mm. 12b is assembled by clearance fit.

スリーブ5の嵌合孔7の内面には、軸方向の略中央に内側に向かって突出する凸部15が設けられている。この嵌合孔7には、凸部15を挟んで軸方向の一方に第1の転がり軸受10A、他方に第2の転がり軸受10Bがそれぞれ嵌め込まれており、外輪14a,14bの互いに対向する端面が凸部15に突き当てられている。以下、嵌合孔7の第1の転がり軸受10Aが嵌め込まれている部分を「第1の嵌合部17」といい、第2の転がり軸受が嵌め込まれている部分を「第2の嵌合部19」という。   On the inner surface of the fitting hole 7 of the sleeve 5, a convex portion 15 that protrudes inward is provided at the approximate center in the axial direction. The fitting hole 7 is fitted with a first rolling bearing 10A on one side in the axial direction and a second rolling bearing 10B on the other side with the convex portion 15 in between, and end faces of the outer rings 14a and 14b facing each other. Is abutted against the convex portion 15. Hereinafter, the portion of the fitting hole 7 in which the first rolling bearing 10A is fitted is referred to as “first fitting portion 17”, and the portion in which the second rolling bearing is fitted is referred to as “second fitting”. Part 19 ".

嵌合孔7の内周面と転がり軸受10A,10Bの外輪14a,14bとは、内輪12a,12bが相互に近接する方向に押圧された状態で、それぞれ接着剤により接着されている。これにより、転がり軸受10A,10Bには予圧がかけられた状態となり、内輪12a,12bおよび外輪14a,14bと転動体16とが隙間なく接触させられている。   The inner peripheral surface of the fitting hole 7 and the outer rings 14a and 14b of the rolling bearings 10A and 10B are bonded to each other with an adhesive in a state in which the inner rings 12a and 12b are pressed in directions close to each other. As a result, the rolling bearings 10A and 10B are preloaded, and the inner rings 12a and 12b and the outer rings 14a and 14b and the rolling elements 16 are brought into contact with no gap.

このスリーブ5は、第1の嵌合部17の内径寸法と第1の転がり軸受10Aの外輪14aの外径寸法との寸法差が+0.002mm〜+0.020mmの範囲のものが用いられており、外輪14aがすきまばめによって組み付けられている。また、スリーブ5は、第2の嵌合部19の内径寸法と第2の転がり軸受10Bの外輪14bの外径寸法との寸法差が−0.004mm〜+0.015mmの範囲のものが用いられており、外輪14bが中間ばめによって組み付けられている。   This sleeve 5 has a dimensional difference between the inner diameter of the first fitting portion 17 and the outer diameter of the outer ring 14a of the first rolling bearing 10A in the range of +0.002 mm to +0.020 mm. The outer ring 14a is assembled by a clearance fit. Further, the sleeve 5 is used in which the dimensional difference between the inner diameter of the second fitting portion 19 and the outer diameter of the outer ring 14b of the second rolling bearing 10B is in the range of -0.004 mm to +0.015 mm. The outer ring 14b is assembled by an intermediate fit.

以下、このように構成される本実施形態の転がり軸受ユニット1の製造方法について説明する。
まず、スリーブ5の第2の嵌合部19の内周面に接着剤を塗布して、第2の転がり軸受10Bの外輪14bを嵌合させる。そして、図2に示すように、嵌合孔9の凸部15に第2の転がり軸受10Bの外輪14bの端面を突き当てた状態で、外輪14bと第2の嵌合部19の内周面とを接着する。この場合に、第2の転がり軸受10Bと第2の嵌合部19との嵌合部分を中間ばめにしたことにより、この嵌合部分の遊びを制限することができる。
Hereinafter, the manufacturing method of the rolling bearing unit 1 of this embodiment comprised in this way is demonstrated.
First, an adhesive is applied to the inner peripheral surface of the second fitting portion 19 of the sleeve 5, and the outer ring 14b of the second rolling bearing 10B is fitted. Then, as shown in FIG. 2, the outer peripheral surface of the outer ring 14b and the second fitting portion 19 are in contact with the end face of the outer ring 14b of the second rolling bearing 10B against the convex portion 15 of the fitting hole 9. And glue. In this case, since the fitting portion between the second rolling bearing 10B and the second fitting portion 19 is an intermediate fit, play of the fitting portion can be limited.

次に、シャフト3の外周面の第1の転がり軸受10Aの内輪12aに対応する位置に接着剤を塗布する。そして、第1の転がり軸受10Aの内輪12aにシャフト3を嵌合させ、図3に示すように、フランジ部13に内輪12aの端面を突き当てる。   Next, an adhesive is applied to a position corresponding to the inner ring 12a of the first rolling bearing 10A on the outer peripheral surface of the shaft 3. Then, the shaft 3 is fitted to the inner ring 12a of the first rolling bearing 10A, and the end surface of the inner ring 12a is abutted against the flange portion 13 as shown in FIG.

この場合に、第1の転がり軸受10Aとシャフト3との嵌合部分をすきまばめにしたことにより、この嵌合部分には常に遊びがある。したがって、シャフト3に塗布した接着剤が内輪12aによってかき出されるのを防いだり、径が小さく変形し易い内輪12aにかかる負荷を低減したりすることができる。   In this case, since the fitting portion between the first rolling bearing 10A and the shaft 3 is a clearance fit, there is always play in the fitting portion. Therefore, the adhesive applied to the shaft 3 can be prevented from being scraped out by the inner ring 12a, and the load applied to the inner ring 12a having a small diameter and easily deformed can be reduced.

続いて、スリーブ5の第1の嵌合部17の内周面に接着剤を塗布する。また、シャフト3の外周面の第2の転がり軸受10Bの内輪12bに対応する位置に接着剤を塗布する。そして、図4に示すように、第1の転がり軸受10Aに嵌め込まれたシャフト3をネジ孔9が鉛直上向きになるように固定した状態で、スリーブ5を嵌め合わせる。   Subsequently, an adhesive is applied to the inner peripheral surface of the first fitting portion 17 of the sleeve 5. Further, an adhesive is applied to a position corresponding to the inner ring 12b of the second rolling bearing 10B on the outer peripheral surface of the shaft 3. Then, as shown in FIG. 4, the sleeve 5 is fitted in a state where the shaft 3 fitted in the first rolling bearing 10 </ b> A is fixed so that the screw hole 9 is vertically upward.

具体的には、第2の嵌合部19に嵌め込まれている第2の転がり軸受10Bの内輪12bにシャフト3を嵌合させ、また、第1の嵌合部17に第1の転がり軸受10Aの外輪14aを嵌合させて、外輪14aの端面を凸部15に突き当てる。   Specifically, the shaft 3 is fitted to the inner ring 12b of the second rolling bearing 10B fitted in the second fitting portion 19, and the first rolling bearing 10A is fitted to the first fitting portion 17. The outer ring 14 a is fitted, and the end surface of the outer ring 14 a is abutted against the convex portion 15.

この場合に、第1の転がり軸受10Aとシャフト3との嵌合部分や、すきまばめによって組み付けられる第2の転がり軸受10Bとシャフト3との嵌合部分および第1の転がり軸受10Aと第1の嵌合部17との嵌合部分には常に遊びがあるので、中間ばめによって遊びが制限されている第2の転がり軸受10Bと第2の嵌合部19との嵌合部分に倣って、半径方向に軸心位置が調節されながら嵌め込まれる。   In this case, the fitting portion between the first rolling bearing 10A and the shaft 3, the fitting portion between the second rolling bearing 10B and the shaft 3 assembled by clearance fitting, and the first rolling bearing 10A and the first Since there is always play in the fitting portion with the fitting portion 17, following the fitting portion between the second rolling bearing 10 </ b> B and the second fitting portion 19 where play is limited by the intermediate fit. The axial center position is adjusted while being adjusted in the radial direction.

したがって、同軸度を確保し易く、芯ずれを抑えることができる。また、第2の転がり軸受10Bとシャフト3との嵌合部分や第1の転がり軸受10Aと第1の嵌合部17との嵌合部分に塗布された接着剤がかき出されるのを防いだり、転がり軸受10A,10B、特に、径が小さく変形し易い内輪12bにかかる負荷を低減したりすることができる。   Therefore, it is easy to ensure the coaxiality, and misalignment can be suppressed. In addition, the adhesive applied to the fitting portion between the second rolling bearing 10B and the shaft 3 and the fitting portion between the first rolling bearing 10A and the first fitting portion 17 is prevented from being scraped off. Further, it is possible to reduce the load applied to the rolling bearings 10A and 10B, particularly the inner ring 12b having a small diameter and being easily deformed.

続いて、第2の転がり軸受10Bとシャフト3との嵌合部分、および、第1の転がり軸受10Aと第1の嵌合部17との嵌合部分がそれぞれ完全に接着する前に、転がり軸受10A,10Bに予圧をかける。この場合に、転がり軸受10A,10Bの外輪14a,14b間の間隔は凸部15の長さによって決定されているので、内輪12a,12bどうしを近接させる方向に押圧するだけで予圧をかけることができる。   Subsequently, before the fitting portion between the second rolling bearing 10B and the shaft 3 and the fitting portion between the first rolling bearing 10A and the first fitting portion 17 are completely bonded, the rolling bearing. Preload is applied to 10A and 10B. In this case, since the interval between the outer rings 14a and 14b of the rolling bearings 10A and 10B is determined by the length of the convex portion 15, it is possible to apply preload only by pressing the inner rings 12a and 12b in the direction in which they are brought close to each other. it can.

また、第1の転がり軸受10Aの内輪12aがフランジ部13に突き当てられているので、第1の転がり軸受10Aに対して軸方向の反対側に配置された第2の転がり軸受10Bの内輪12bを軸方向に押圧するだけで、第1の転がり軸受10Aおよび第2の転がり軸受10Bに予圧をかけることができる。   Further, since the inner ring 12a of the first rolling bearing 10A is abutted against the flange portion 13, the inner ring 12b of the second rolling bearing 10B disposed on the opposite side in the axial direction with respect to the first rolling bearing 10A. It is possible to apply preload to the first rolling bearing 10A and the second rolling bearing 10B simply by pressing in the axial direction.

そこで、第2の転がり軸受10Bの内輪12bを軸方向に押圧し、第1の転がり軸受10Aおよび第2の転がり軸受10Bに予圧をかけた状態で、第2の転がり軸受10Bの内輪12bとシャフト3の外周面、および、第1の転がり軸受10Aの外輪14aと第1の嵌合部17の内周面をそれぞれ完全に接着させる。   Therefore, the inner ring 12b of the second rolling bearing 10B and the shaft are pressed in a state where the inner ring 12b of the second rolling bearing 10B is pressed in the axial direction and preload is applied to the first rolling bearing 10A and the second rolling bearing 10B. 3 and the outer ring 14a of the first rolling bearing 10A and the inner peripheral surface of the first fitting portion 17 are completely bonded to each other.

これにより、簡易な方法で2つの転がり軸受10A,10Bの内輪12a,12bおよび外輪14a,14bと各転動体16との隙間をなくし、転がり軸受ユニット1の剛性確保および回転精度の向上を図ることができる。また、接着により予圧をかけた状態に維持されるので、予圧抜けを防ぎ、転がり軸受ユニット1の回転精度の悪化を防止することができる。   Thereby, the clearances between the inner rings 12a and 12b and the outer rings 14a and 14b of the two rolling bearings 10A and 10B and the respective rolling elements 16 are eliminated by a simple method, thereby ensuring the rigidity of the rolling bearing unit 1 and improving the rotation accuracy. Can do. Moreover, since it maintains in the state which applied the preload by adhesion | attachment, preload loss can be prevented and the deterioration of the rotation precision of the rolling bearing unit 1 can be prevented.

以上、本実施形態に係る転がり軸受ユニット1およびその製造方法によれば、フランジ部13から遠い側に配置される第2の転がり軸受10Bと第2の嵌合部19との嵌合部分を中間ばめとし、その他の箇所をすきまばめとしたので、フランジ部13が妨げとなることなく嵌合部分の少なくとも一箇所を中間ばめにすることができる。これにより、嵌合時に転がり軸受10A,10Bにかかる負荷を低減し、かつ、芯ずれを最小限に抑えることができる。   As described above, according to the rolling bearing unit 1 and the manufacturing method thereof according to the present embodiment, the fitting portion between the second rolling bearing 10 </ b> B disposed on the side far from the flange portion 13 and the second fitting portion 19 is intermediate. Since it is a fit and other places are clearance fits, at least one of the fitting parts can be an intermediate fit without hindering the flange 13. Thereby, the load concerning rolling bearing 10A, 10B at the time of a fitting can be reduced, and misalignment can be suppressed to the minimum.

なお、本実施形態においては、第2の転がり軸受10Bと第2の嵌合部19との嵌合部分を中間ばめにすることを例示して説明したが、これに代えて、第2の転がり軸受10Bとシャフト3との嵌合部分、第1の転がり軸受10Aと第1の嵌合部17との嵌合部分、または、第1の転がり軸受10Aとシャフト3との嵌合部分を中間ばめにすることとしてもよい。また、上記嵌合部分のうちの2箇所以上を中間ばめにすることとしてもよい。   In the present embodiment, the fitting portion between the second rolling bearing 10B and the second fitting portion 19 is illustrated as an intermediate fit. However, instead of this, The fitting portion between the rolling bearing 10B and the shaft 3, the fitting portion between the first rolling bearing 10A and the first fitting portion 17, or the fitting portion between the first rolling bearing 10A and the shaft 3 is intermediate. It may be a fit. Further, two or more of the fitting portions may be intermediate fits.

本発明の一実施形態に係る転がり軸受ユニットを示す概略図である。It is the schematic which shows the rolling bearing unit which concerns on one Embodiment of this invention. スリーブに第2の転がり軸受ユニットが嵌め込まれた状態の断面を示す図である。It is a figure which shows the cross section of the state in which the 2nd rolling bearing unit was engage | inserted by the sleeve. 第1の転がり軸受にシャフトを嵌合させた状態の断面を示す図である。It is a figure which shows the cross section of the state which fitted the shaft to the 1st rolling bearing. シャフトが嵌合された第1の転がり軸受をスリーブに嵌合させる様子を示す図である。It is a figure which shows a mode that the 1st rolling bearing with which the shaft was fitted is fitted to a sleeve.

符号の説明Explanation of symbols

1 転がり軸受ユニット
3 シャフト(第1の部材)
5 スリーブ(第2の部材)
7 嵌合孔
10A 第1の転がり軸受
10B 第2の転がり軸受
12a,12b 内輪
14a,14b 外輪
16 転動体
1 Rolling bearing unit 3 Shaft (first member)
5 Sleeve (second member)
7 Fitting hole 10A 1st rolling bearing 10B 2nd rolling bearing 12a, 12b Inner ring 14a, 14b Outer ring 16 Rolling element

Claims (3)

同軸上に配置された内輪と外輪との間の円環状空間に周方向に間隔をあけて複数個の転動体を内蔵し、軸方向に所定の間隔をあけて配置される第1の転がり軸受と第2の転がり軸受と、
軸方向の一端に半径方向外方に突出し第1の転がり軸受の前記内輪の端面を突き当てる鍔部を備え、これら2つの転がり軸受の前記内輪に嵌合された状態で接着される第1の部材と、
前記2つの転がり軸受の前記外輪を嵌合させた状態で接着される嵌合孔を有する第2の部材とを備え、
前記第1の転がり軸受の前記内輪と前記第1の部材との間と、前記第1の転がり軸受の前記外輪と前記第2の部材の前記嵌合孔との間と、前記第2の転がり軸受の前記内輪と前記第1の部材との間をすきまばめにするとともに、前記第2の転がり軸受の前記外輪と前記嵌合孔との間が中間ばめによって組み付けられている転がり軸受ユニット。
A first rolling bearing in which a plurality of rolling elements are built in an annular space between an inner ring and an outer ring arranged on the same axis and spaced apart in the circumferential direction, and arranged at predetermined intervals in the axial direction. And a second rolling bearing,
A first flange that protrudes radially outward at one end in the axial direction and abuts against the end face of the inner ring of the first rolling bearing is bonded to the inner ring of the two rolling bearings. Members,
A second member having a fitting hole to be bonded in a state where the outer ring of the two rolling bearings is fitted.
Between the inner ring and the first member of the first rolling bearing, between the outer ring of the first rolling bearing and the fitting hole of the second member, and the second rolling. A rolling bearing unit in which a clearance fit is provided between the inner ring and the first member of the bearing, and an intermediate fit is provided between the outer ring and the fitting hole of the second rolling bearing. .
同軸上に配置された内輪と外輪との間の円環状空間に周方向に間隔をあけて複数個の転動体を内蔵する第1の転がり軸受の前記内輪に、軸方向の一端に半径方向外方に突出し前記第1の転がり軸受の前記内輪の端面を突き当てる鍔部を有し外周面に接着剤を塗布した第1の部材をすきまばめによって嵌合させるステップと、
内周面の位置に接着剤を塗布した第2の部材の前記鍔部から遠い側に位置する嵌合孔に、同軸上に配置された内輪と外輪との間の円環状空間に周方向に間隔をあけて複数個の転動体を内蔵する第2の転がり軸受の前記外輪を中間ばめによって嵌合させて接着するステップと、
内周面の前記鍔部に近い側の位置に接着剤を塗布した第2の部材の嵌合孔に、外周面の前記第2の転がり軸受に対応する位置に接着剤を塗布した第1の部材を挿入し、前記第1の転がり軸受の外輪と前記嵌合孔の内周面、および、前記第2の転がり軸受の前記内輪と前記第1の部材の外周面とをそれぞれすきまばめによって嵌合させて接着するステップと、
を備える転がり軸受ユニットの製造方法。
The inner ring of the first rolling bearing, which includes a plurality of rolling elements spaced circumferentially in an annular space between the inner ring and the outer ring arranged on the same axis, is radially outward at one end in the axial direction. Fitting a first member having a flange portion protruding in the direction and abutting against an end face of the inner ring of the first rolling bearing with an adhesive applied to the outer peripheral surface by a clearance fit;
In a fitting hole located on the side farther from the flange portion of the second member where the adhesive is applied to the position of the inner peripheral surface, in the annular space between the inner ring and the outer ring arranged coaxially in the circumferential direction Fitting and bonding the outer ring of the second rolling bearing containing a plurality of rolling elements at intervals by an intermediate fit;
A first member in which an adhesive is applied at a position corresponding to the second rolling bearing on the outer peripheral surface in a fitting hole of a second member applied with an adhesive at a position on the side closer to the flange portion of the inner peripheral surface; By inserting a member, the outer ring of the first rolling bearing and the inner peripheral surface of the fitting hole, and the inner ring of the second rolling bearing and the outer peripheral surface of the first member are respectively fitted by clearance fit. Mating and adhering; and
A method of manufacturing a rolling bearing unit comprising:
前記第1の部材が、前記鍔部に内輪の端面が突き当てられた第1の転がり軸受に対して軸方向の反対側に配置された第2の転がり軸受の内輪を軸方向に押圧して、2つの前記転がり軸受の内輪を相互に近接させる方向に予圧をかけた状態で、これら内輪と前記第1の部材とを接着させるステップを備える請求項2に記載の軸受ユニットの製造方法。 The first member axially presses the inner ring of the second rolling bearing disposed on the opposite side to the first rolling bearing with the end face of the inner ring abutting against the flange. The bearing unit manufacturing method according to claim 2, further comprising a step of bonding the inner ring and the first member in a state where a preload is applied in a direction in which the inner rings of the two rolling bearings are close to each other .
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