JP2011196503A - Sealing device assembly for rolling bearing - Google Patents

Sealing device assembly for rolling bearing Download PDF

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Publication number
JP2011196503A
JP2011196503A JP2010065937A JP2010065937A JP2011196503A JP 2011196503 A JP2011196503 A JP 2011196503A JP 2010065937 A JP2010065937 A JP 2010065937A JP 2010065937 A JP2010065937 A JP 2010065937A JP 2011196503 A JP2011196503 A JP 2011196503A
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annular member
cylindrical portion
protrusion
slinger
annular
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Japanese (ja)
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Nobuyuki Seo
信之 瀬尾
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JTEKT Corp
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JTEKT Corp
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C33/00Parts of bearings; Special methods for making bearings or parts thereof
    • F16C33/72Sealings
    • F16C33/76Sealings of ball or roller bearings
    • F16C33/78Sealings of ball or roller bearings with a diaphragm, disc, or ring, with or without resilient members
    • F16C33/7869Sealings of ball or roller bearings with a diaphragm, disc, or ring, with or without resilient members mounted with a cylindrical portion to the inner surface of the outer race and having a radial portion extending inward
    • F16C33/7879Sealings of ball or roller bearings with a diaphragm, disc, or ring, with or without resilient members mounted with a cylindrical portion to the inner surface of the outer race and having a radial portion extending inward with a further sealing ring
    • F16C33/7883Sealings of ball or roller bearings with a diaphragm, disc, or ring, with or without resilient members mounted with a cylindrical portion to the inner surface of the outer race and having a radial portion extending inward with a further sealing ring mounted to the inner race and of generally L-shape, the two sealing rings defining a sealing with box-shaped cross-section
    • 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
    • F16C33/00Parts of bearings; Special methods for making bearings or parts thereof
    • F16C33/72Sealings
    • F16C33/76Sealings of ball or roller bearings
    • F16C33/78Sealings of ball or roller bearings with a diaphragm, disc, or ring, with or without resilient members
    • F16C33/7816Details of the sealing or parts thereof, e.g. geometry, material
    • F16C33/7833Special methods of manufacture
    • 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
    • F16C43/00Assembling bearings
    • F16C43/04Assembling rolling-contact bearings
    • F16C43/045Mounting or replacing seals
    • 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
    • F16C19/14Bearings with rolling contact, for exclusively rotary movement with bearing balls essentially of the same size in one or more circular rows for both radial and axial load
    • F16C19/18Bearings with rolling contact, for exclusively rotary movement with bearing balls essentially of the same size in one or more circular rows for both radial and axial load with two or more rows of balls
    • F16C19/181Bearings with rolling contact, for exclusively rotary movement with bearing balls essentially of the same size in one or more circular rows for both radial and axial load with two or more rows of balls with angular contact
    • F16C19/183Bearings with rolling contact, for exclusively rotary movement with bearing balls essentially of the same size in one or more circular rows for both radial and axial load with two or more rows of balls with angular contact with two rows at opposite angles
    • F16C19/184Bearings with rolling contact, for exclusively rotary movement with bearing balls essentially of the same size in one or more circular rows for both radial and axial load with two or more rows of balls with angular contact with two rows at opposite angles in O-arrangement

Abstract

PROBLEM TO BE SOLVED: To prevent a slip out of a seal lip of an elastic seal member of a first annular member from a slide-contact surface of a cylinder part of a second annular member in the axial direction.SOLUTION: A projection 50 is formed to project in the radial direction on a slide-contact surface 42 side formed in the cylinder part 42 of a slinger 40 (the second annular member) in at least a part in the circumferential direction of an end surface of the slide-surface contact surface 42a, which is formed in the cylinder part 42 of the slinger 40, on a side opposite to an axial directional end surface, wherein an annular plane part 44 is disposed. The projection 50 prevents a slip out of the seal lip 38 of the elastic seal member 36 of a core metal 30 (the first annular member) from the slide-contact surface 42a of the cylinder part 42 of the slinger 40.

Description

この発明は転がり軸受用密封装置組立体に関する。詳しくは、転がり軸受の内輪と外輪との間の開口端に組立体として介挿される密封装置組立体が、先端にシールリップを有する弾性シール部材を取付けた第1の環状部材と、該第1の環状部材の弾性シール部材のシールリップと摺接する摺接面を有する第2の環状部材とからなり、該両環状部材が軸方向から組み合わされて組立てられる転がり軸受用密封装置組立体に関する。   The present invention relates to a seal assembly for a rolling bearing. Specifically, a sealing device assembly that is inserted as an assembly at an opening end between an inner ring and an outer ring of a rolling bearing includes a first annular member having an elastic seal member having a seal lip at the tip, and the first annular member. The present invention relates to a rolling bearing sealing device assembly comprising a second annular member having a slidable contact surface slidably contacting a seal lip of an elastic seal member of the annular member, and the annular members are assembled together in the axial direction.

従来、特許文献1及び特許文献2のような転がり軸受用密封装置組立体が知られている。この転がり軸受用密封装置組立体は、転がり軸受装置の内輪と外輪との間の開口端に組立体として介挿される密封装置組立体が、先端にシールリップを有する弾性シール部材を取付けた第1の環状部材と、この第1の環状部材の弾性シール部材のシールリップと摺接する摺接面を有する第2の環状部材とから構成され、両環状部材が軸方向から組み合わされて組立てられるものである。この転がり軸受用密封装置組立体は第1の環状部材の弾性シール部材と摺接する第2の環状部材の摺接面への異物侵入や弾性シール部材への傷付を防止するため、予め第1の環状部材と第2の環状部材との組合わされた内方にグリースを封入した状態とされて密封性能を備えている。   Conventionally, a sealing device assembly for a rolling bearing as in Patent Document 1 and Patent Document 2 is known. In this rolling bearing sealing device assembly, the sealing device assembly inserted as an assembly at the opening end between the inner ring and the outer ring of the rolling bearing device is provided with a first elastic seal member having a seal lip attached to the tip. Of the first annular member and a second annular member having a sliding contact surface that is in sliding contact with the seal lip of the elastic sealing member of the first annular member, and the two annular members are assembled together in the axial direction. is there. In order to prevent foreign matter from entering the sliding contact surface of the second annular member that is in sliding contact with the elastic sealing member of the first annular member and damage to the elastic sealing member, the rolling bearing sealing device assembly is provided in advance. The annular member and the second annular member are combined with grease inside to provide a sealing performance.

この転がり軸受用密封装置組立体は、単体の状態で第1の環状部材と第2の環状部材との組合わせが分離しないように、第1の環状部材の弾性シール部材のシールリップが第2の環状部材の摺接面に対し径方向の弾性力の付与、すなわちしめ代(緊迫力)を付与することで固定されている。ところで、近年自動車等の車両の燃費改善を目的に低トルク化の要求が高く、上記転がり軸受用密封装置組立体の第1の環状部材の弾性シール部材のシールリップが第2の環状部材の摺接面に対するしめ代(緊迫力)を小さくすることで低トルク化を図るものが多くなってきている。上記のように、しめ代(緊迫力)を小さくすることは低トルク化が図れるものの転がり軸受用密封装置組立体の単体における第1の環状部材と第2の環状部材との固定力が弱くなってしまう。そのため、転がり軸受用密封装置組立体は、転がり軸受装置の内輪と外輪との間の開口端に圧入する際に、軸方向を上下(第1の環状部材を固定して第2の環状部材を下側にする場合、又は第2の環状部材を固定して第1の環状部材を下側にする場合)にすると、第1の環状部材の弾性シール部材のシールリップが第2の環状部材の摺接面に対し軸方向に離脱してしまい両環状部材が分離してしまうおそれが高くなるという問題を有していた。   In the rolling bearing sealing device assembly, the seal lip of the elastic seal member of the first annular member is the second so that the combination of the first annular member and the second annular member is not separated in a single state. It is fixed by applying an elastic force in the radial direction to the slidable contact surface of the annular member, that is, by applying an interference (tightening force). By the way, in recent years, there has been a high demand for lower torque for the purpose of improving the fuel efficiency of vehicles such as automobiles, and the seal lip of the elastic seal member of the first annular member of the sealing device assembly for rolling bearings is slid on the second annular member. Increasingly, torque is reduced by reducing the amount of interference (tightening force) on the contact surface. As described above, reducing the interference (tightening force) can reduce the torque, but the fixing force between the first annular member and the second annular member in the single unit of the rolling bearing sealing device assembly is weakened. End up. Therefore, when the rolling bearing sealing device assembly is press-fitted into the opening end between the inner ring and the outer ring of the rolling bearing device, the axial direction is moved up and down (the first annular member is fixed and the second annular member is fixed). When the second annular member is fixed or the first annular member is fixed to the lower side), the sealing lip of the elastic sealing member of the first annular member is There is a problem that the possibility that both annular members are separated from each other in the axial direction with respect to the sliding contact surface becomes high.

特開2009−197962号公報JP 2009-197962 A 特開2004−132519号公報JP 2004-132519 A

ここで、第1の環状部材と第2の環状部材とが分離しない構成として、両環状部材を組合わせた後、第2の環状部材の端面を覆う環状部材を嵌め込んで蓋をすることで第1の環状部材の弾性シール部材のシールリップを第2の環状部材の摺接面の軸方向に離脱することを防ぐことも考えられるが、新たな構成品を必要とするため材料コスト、製作コストの増大につながるおそれがある。そこで本発明の発明者は鋭意検討の結果、第1の環状部材の弾性シール部材のシールリップは第2の環状部材の摺接面に対してしめ代(緊迫力)をもって密着して接触していることに着目した。すなわち、第1の環状部材の弾性シール部材のシールリップは、第2の環状部材の摺接面において密着しているため、この摺接面に僅か突出した構成であっても弾性シール部材のシールリップが引っかかることとなれば摺接面から軸方向に離脱することを抑制することができる。   Here, as a configuration in which the first annular member and the second annular member are not separated, after combining both the annular members, the annular member that covers the end surface of the second annular member is fitted and covered. Although it is conceivable to prevent the seal lip of the elastic seal member of the first annular member from being detached in the axial direction of the sliding contact surface of the second annular member, a new component is required, so the material cost and production There is a risk of increasing costs. Therefore, as a result of intensive studies, the inventors of the present invention have contacted the seal lip of the elastic seal member of the first annular member in close contact with the sliding contact surface of the second annular member with a tightening margin (tightening force). Focused on being. That is, since the seal lip of the elastic seal member of the first annular member is in close contact with the slidable contact surface of the second annular member, the seal of the elastic seal member is configured even if the lip is slightly projected on the slidable contact surface. If the lip is caught, it can be prevented from coming off from the sliding contact surface in the axial direction.

而して、本発明は、このような点に鑑みて創案されたものであり、本発明が解決しようとする課題は、シールリップに対する摺動面を有する第2の環状部材の円筒部自体にシールリップの離脱方向に対して抵抗となる突起形状を設けることにより、第1の環状部材の弾性シール部材のシールリップが第2の環状部材の円筒部の摺接面から軸方向に離脱するのを抑制することにある。   Thus, the present invention has been devised in view of these points, and the problem to be solved by the present invention is in the cylindrical portion itself of the second annular member having a sliding surface with respect to the seal lip. By providing a protrusion shape that is resistant to the direction of separation of the seal lip, the seal lip of the elastic seal member of the first annular member is detached from the sliding contact surface of the cylindrical portion of the second annular member in the axial direction. It is to suppress.

上記課題を解決するために、本発明の転がり軸受用密封装置組立体は次の手段をとる。
先ず、第1の発明に係る転がり軸受用密封装置組立体は、転がり軸受の内輪と外輪との間の開口端に組立体として介挿される密封装置組立体が、先端にシールリップを有する弾性シール部材を取付けた第1の環状部材と、該第1の環状部材の弾性シール部材のシールリップと摺接する摺接面を有する第2の環状部材とからなり、該両環状部材が軸方向から組み合わされて組立てられる転がり軸受用密封装置組立体であって、前記第1の環状部材及び第2の環状部材は、円筒部と、該円筒部の端部から径方向に延出した環状平板部と、によって断面L型に一体形成され、前記両環状部材の円筒部、環状平板部のそれぞれが互いに対向する位置に配置構成されて断面矩形状に組み合わされており、前記第1の環状部材の弾性シール部材は、その先端のシールリップが前記第2の環状部材の円筒部に構成される摺接面に対し径方向の弾性力が付与されて摺接する構成とされており、前記第2の環状部材の円筒部に構成される摺接面における前記環状平板部が配設される軸方向端面とは反対側の端面の周方向の少なくとも一部には、前記第2の環状部材の円筒部に構成される摺接面側の径方向に向けて突出する突部が形成されており、該突部により前記第1の環状部材の弾性シール部材のシールリップが前記第2の環状部材の円筒部の摺接面から軸方向に離脱することが抑制されることを特徴とする。
In order to solve the above problems, the rolling bearing sealing device assembly of the present invention takes the following means.
First, a rolling bearing sealing device assembly according to a first aspect of the present invention is an elastic seal in which a sealing device assembly inserted as an assembly at an opening end between an inner ring and an outer ring of a rolling bearing has a seal lip at the tip. A first annular member to which the member is attached, and a second annular member having a sliding contact surface in sliding contact with the seal lip of the elastic seal member of the first annular member, and the two annular members are combined in the axial direction. A rolling device sealing device assembly that is assembled by being assembled, wherein the first annular member and the second annular member include a cylindrical portion, and an annular flat plate portion extending in a radial direction from an end portion of the cylindrical portion. Are formed integrally with the L-shaped cross section, and the cylindrical portion and the annular flat plate portion of the two annular members are arranged at positions facing each other and combined in a rectangular cross section, and the elasticity of the first annular member is The seal member The seal lip is configured to be in sliding contact with a slidable contact surface formed in the cylindrical portion of the second annular member by applying a radial elastic force, and is configured in the cylindrical portion of the second annular member. The sliding contact surface formed on the cylindrical portion of the second annular member is at least partially in the circumferential direction of the end surface opposite to the axial end surface on which the annular flat plate portion is disposed. A protrusion projecting in the radial direction on the side is formed, and the protrusion causes the seal lip of the elastic seal member of the first annular member to pivot from the sliding contact surface of the cylindrical portion of the second annular member. It is characterized by being suppressed in the direction.

この第1の発明によれば、第1の環状部材の弾性シール部材は、その先端のシールリップが第2の環状部材の円筒部に構成される摺接面に対し径方向の弾性力が付与されて摺接する構成である。そして、第2の環状部材の円筒部に構成される摺接面における環状平板部が配設される軸方向端面とは反対側の端面の周方向の少なくとも一部には、第2の環状部材の円筒部に構成される摺接面側の径方向に向けて突出する突部が形成されている。この突部によって、第1の環状部材の弾性シール部材のシールリップが第2の環状部材の円筒部の摺接面から軸方向に離脱することを抑制することができる。   According to the first aspect of the present invention, the elastic seal member of the first annular member gives a radial elastic force to the slidable contact surface of which the seal lip at the tip is formed in the cylindrical portion of the second annular member. It is the structure which is done and is slidably contacted. The second annular member is provided at least in the circumferential direction of the end surface opposite to the axial end surface on which the annular flat plate portion is disposed in the sliding contact surface formed in the cylindrical portion of the second annular member. A protrusion projecting in the radial direction on the slidable contact surface side formed in the cylindrical portion is formed. By this protrusion, the seal lip of the elastic seal member of the first annular member can be prevented from detaching in the axial direction from the sliding surface of the cylindrical portion of the second annular member.

次に、第2の発明に係る転がり軸受用密封装置組立体は、第1の発明の転がり軸受用密封装置組立体であって、前記突部が形成される第2の環状部材の円筒部の端面における前記摺接面の裏面側の面には全周に面取り加工が施されており、前記突部を形成するための第2の環状部材の円筒部の端面への加工は、該突部の前記摺接面側への形成に伴い裏面側にも突部が形成される加工であり、該裏面側に突出して形成される突部の大きさは前記面取り加工が施された径方向深さより浅く突出する大きさとして形成されていることを特徴とする。   Next, a rolling bearing sealing device assembly according to the second invention is the rolling bearing sealing device assembly according to the first invention, wherein the cylindrical portion of the second annular member on which the protrusion is formed is provided. A chamfering process is performed on the entire surface of the back surface side of the slidable contact surface at the end surface, and the process to the end surface of the cylindrical portion of the second annular member for forming the protrusion is performed by the protrusion. Is a process in which a protrusion is also formed on the back surface side with the formation on the sliding contact surface side, and the size of the protrusion protruding to the back surface side is the radial depth where the chamfering process is performed. It is characterized by being formed in a size that projects shallower than the thickness.

この第2の発明によれば、転がり軸受用密封装置組立体は、転がり軸受装置の内輪と外輪との間の開口端に円滑に圧入するために、第2の環状部材の円筒部の端面における摺接面の裏面側の面には全周に面取り加工が施されている。ここで、突部を形成するための第2の環状部材の円筒部の端面への加工は、突部が摺接面側に形成されることに伴い裏面側にも突部が形成される加工である。しかし、裏面側に突出して形成される突部の大きさは面取り加工が施された径方向深さより浅く突出する大きさとして形成されている。そのため、転がり軸受用密封装置組立体は、転がり軸受装置の内輪と外輪との間の開口端に円滑に圧入できると共に、第2の環状部材の円筒部に構成される摺接面側の径方向に向けて突出する突部を形成することができる。   According to the second aspect of the invention, the rolling bearing sealing device assembly is provided on the end surface of the cylindrical portion of the second annular member in order to smoothly press fit the opening end between the inner ring and the outer ring of the rolling bearing device. A chamfering process is performed on the entire surface of the back surface of the sliding surface. Here, the processing on the end surface of the cylindrical portion of the second annular member for forming the protrusion is processing in which the protrusion is also formed on the back surface side as the protrusion is formed on the sliding contact surface side. It is. However, the size of the protruding portion that protrudes to the back surface side is formed as a size that protrudes shallower than the radial depth on which chamfering is performed. Therefore, the rolling bearing sealing device assembly can be smoothly press-fitted into the opening end between the inner ring and the outer ring of the rolling bearing device, and the radial direction on the sliding surface side formed in the cylindrical portion of the second annular member A protrusion that protrudes toward the surface can be formed.

次に、第3の発明に係る転がり軸受用密封装置組立体は、第1の発明又は第2の発明の転がり軸受用密封装置組立体であって、前記第1の環状部材と第2の環状部材とを軸方向から組み合わせて組立てるに際して、該組立てる際の挿入方向に対して傾斜面を有する圧入治具を第2の環状部材の円筒部の端面に当てがい、第1の環状部材に取付けた弾性シール部材のシールリップを第2の環状部材の円筒部の摺接面に圧入装着し、前記圧入治具の前記第2の環状部材の円筒部の端面に当てがう端面には該円筒部の端面に突部を形成することのできる加工部位が設けられており、前記第2の環状部材の円筒部の摺接面に前記第1の環状部材に取付けた弾性シール部材のシールリップを圧入装着するに際して、圧入治具を第2の環状部材の円筒部の端面に当てがう際に、圧入治具に設けた加工部位により前記突部を加工形成することを特徴とする。   Next, a rolling bearing sealing device assembly according to a third invention is the rolling bearing sealing device assembly of the first invention or the second invention, wherein the first annular member and the second annular member are assembled. When assembling the members from the axial direction, a press-fitting jig having an inclined surface with respect to the insertion direction at the time of assembling is applied to the end surface of the cylindrical portion of the second annular member and attached to the first annular member. A seal lip of the elastic seal member is press-fitted and attached to the sliding contact surface of the cylindrical portion of the second annular member, and the cylindrical portion is attached to the end surface of the press-fitting jig that is applied to the end surface of the cylindrical portion of the second annular member. A processing portion capable of forming a protrusion on the end surface of the second annular member is provided, and a sealing lip of an elastic sealing member attached to the first annular member is press-fitted into the sliding surface of the cylindrical portion of the second annular member. When mounting, the press-fitting jig is attached to the cylindrical portion of the second annular member. When the covering cormorants on the surface, the machined portion provided in the press-fitting jig, characterized in that process forming the protrusion.

この第3の発明によれば、第1の環状部材と第2の環状部材とを軸方向から組み合わせる圧入治具には、第2の環状部材の円筒部の端面に突部を形成することのできる加工部位が設けられている。そのため、第1の環状部材と第2の環状部材の組み合わせとともに、第2の環状部材の円筒部の端面に突部を形成することができるため、加工コスト、製造コストの抑制を図ることができる。   According to the third aspect of the present invention, the press-fitting jig for combining the first annular member and the second annular member from the axial direction has a protrusion formed on the end surface of the cylindrical portion of the second annular member. A processing site that can be processed is provided. Therefore, together with the combination of the first annular member and the second annular member, a protrusion can be formed on the end surface of the cylindrical portion of the second annular member, so that the processing cost and the manufacturing cost can be suppressed. .

本発明は上記各発明の手段をとることにより、第1の環状部材の弾性シール部材のシールリップが第2の環状部材の円筒部の摺接面から軸方向に離脱するのを抑制することができる。   In the present invention, by taking the measures of the respective inventions described above, the seal lip of the elastic seal member of the first annular member can be prevented from being detached from the sliding contact surface of the cylindrical portion of the second annular member in the axial direction. it can.

この発明の実施例1に係る転がり軸受用密封装置組立体が介挿される転がり軸受装置を示す縦断面図である。It is a longitudinal cross-sectional view which shows the rolling bearing apparatus by which the sealing device assembly for rolling bearings concerning Example 1 of this invention is inserted. この発明の実施例1に係る転がり軸受用密封装置組立体を示す縦断面図である。It is a longitudinal cross-sectional view which shows the sealing device assembly for rolling bearings concerning Example 1 of this invention. この発明の実施例1に係る転がり軸受用密封装置組立体の構成であるスリンガーを示す縦断面図である。It is a longitudinal cross-sectional view which shows the slinger which is a structure of the sealing device assembly for rolling bearings concerning Example 1 of this invention. 図3のIV部分の部分拡大断面図である。FIG. 4 is a partial enlarged cross-sectional view of a portion IV in FIG. 3. 図4のV−V線視で見た側面図である。It is the side view seen by the VV line view of FIG. この発明の実施例1に係る転がり軸受用密封装置組立体の組み立て構成を示す縦断面図である。It is a longitudinal cross-sectional view which shows the assembly structure of the sealing device assembly for rolling bearings concerning Example 1 of this invention. この発明の実施例1に係る転がり軸受用密封装置組立体の組み立て構成を示す縦断面図である。It is a longitudinal cross-sectional view which shows the assembly structure of the sealing device assembly for rolling bearings concerning Example 1 of this invention. この発明の実施例1に係る転がり軸受用密封装置組立体の組み立て構成を示す縦断面図である。It is a longitudinal cross-sectional view which shows the assembly structure of the sealing device assembly for rolling bearings concerning Example 1 of this invention. この発明の実施例1に係る転がり軸受用密封装置組立体の組み立て構成を示す縦断面図である。It is a longitudinal cross-sectional view which shows the assembly structure of the sealing device assembly for rolling bearings concerning Example 1 of this invention. この発明の実施例2に係る転がり軸受用密封装置組立体の構成であるスリンガーを示す縦断面図である。It is a longitudinal cross-sectional view which shows the slinger which is a structure of the sealing device assembly for rolling bearings concerning Example 2 of this invention. 図10のXI部分の部分拡大断面図である。It is a partial expanded sectional view of the XI part of FIG. 図11のXII−XII線視で見た側面図である。It is the side view seen by the XII-XII line view of FIG. この発明の実施例2に係る転がり軸受用密封装置組立体の組み立て構成を示す縦断面図である。It is a longitudinal cross-sectional view which shows the assembly structure of the sealing apparatus assembly for rolling bearings concerning Example 2 of this invention. この発明の実施例2に係る転がり軸受用密封装置組立体の組み立て構成を示す縦断面図である。It is a longitudinal cross-sectional view which shows the assembly structure of the sealing apparatus assembly for rolling bearings concerning Example 2 of this invention. この発明の実施例3に係る転がり軸受用密封装置組立体の構成であるスリンガーを示す縦断面図である。It is a longitudinal cross-sectional view which shows the slinger which is a structure of the sealing device assembly for rolling bearings concerning Example 3 of this invention. 図15のXVI部分の部分拡大断面図である。It is a partial expanded sectional view of the XVI part of FIG. 図16のXVII−XVII線視で見た側面図である。It is the side view seen by the XVII-XVII line view of FIG. この発明の実施例3に係る転がり軸受用密封装置組立体の組み立て構成を示す縦断面図である。It is a longitudinal cross-sectional view which shows the assembly structure of the sealing device assembly for rolling bearings concerning Example 3 of this invention. この発明の実施例3に係る転がり軸受用密封装置組立体の組み立て構成を示す縦断面図である。It is a longitudinal cross-sectional view which shows the assembly structure of the sealing device assembly for rolling bearings concerning Example 3 of this invention. この発明の実施例4に係る転がり軸受用密封装置組立体の構成であるスリンガーを示す縦断面図である。It is a longitudinal cross-sectional view which shows the slinger which is a structure of the sealing device assembly for rolling bearings concerning Example 4 of this invention. 図20のXXI部分の部分拡大断面図である。It is a partial expanded sectional view of the XXI part of FIG. この発明の実施例4に係る転がり軸受用密封装置組立体の組み立て構成を示す縦断面図である。It is a longitudinal cross-sectional view which shows the assembly structure of the sealing device assembly for rolling bearings concerning Example 4 of this invention. この発明の実施例4に係る転がり軸受用密封装置組立体の組み立て構成を示す縦断面図である。It is a longitudinal cross-sectional view which shows the assembly structure of the sealing device assembly for rolling bearings concerning Example 4 of this invention.

この発明を実施するための形態について実施例にしたがって説明する。   A mode for carrying out the present invention will be described in accordance with an embodiment.

この発明の実施例1を図1〜図9にしたがって説明する。なお、本実施例1における各図の図示は理解を容易とするために誇張して図示しており、以降に示す他の実施例に対応する各図においても同様である。
図1に図示されるように、この転がり軸受装置10は、車両の車輪を懸架装置に支持する為に構成されるものである。この転がり軸受装置10は、外周面に内輪軌道面12aを有する内輪12、12と、内周面に複列の外輪軌道面14aを有する外輪14と、複数の転動体16と、この転動体16を内輪軌道面12aと外輪軌道面14aとの間で転動可能に保持する保持器18とから構成されている。この転がり軸受装置10の内部空間にはグリースが封入されており、低摩擦化、低磨耗化を図っている。
そして、上記転がり軸受装置10の内部空間に封入したグリースが外部に漏洩するのを防止すると共に外部からの水、埃、泥等の異物の侵入を防止するために、転がり軸受装置10の内輪12、12と外輪14との間の開口端には、二つの環状部材からなる組立体として構成される転がり軸受用密封装置組立体20が介挿されている。この転がり軸受用密封装置組立体20について説明する。
A first embodiment of the present invention will be described with reference to FIGS. In addition, illustration of each figure in the present Example 1 is exaggerated for easy understanding, and the same applies to each figure corresponding to other examples shown below.
As shown in FIG. 1, the rolling bearing device 10 is configured to support a vehicle wheel on a suspension device. The rolling bearing device 10 includes inner rings 12 and 12 having an inner ring raceway surface 12a on an outer peripheral surface, an outer ring 14 having a double row outer ring raceway surface 14a on an inner peripheral surface, a plurality of rolling elements 16, and the rolling elements 16. Is comprised of a retainer 18 that holds the inner ring raceway surface 12a and the outer ring raceway surface 14a in a rollable manner. Grease is sealed in the internal space of the rolling bearing device 10 to reduce friction and wear.
And in order to prevent the grease enclosed in the internal space of the rolling bearing device 10 from leaking to the outside and to prevent the entry of foreign matter such as water, dust and mud from the outside, the inner ring 12 of the rolling bearing device 10. , 12 and the outer ring 14 is provided with a rolling bearing sealing device assembly 20 configured as an assembly composed of two annular members. The rolling bearing sealing device assembly 20 will be described.

図2に図示されるように、この転がり軸受用密封装置組立体20は、概略、先端にシールリップ38を有する弾性シール部材36を取付けた芯金30(第1の環状部材)と、この芯金30に取り付けられた弾性シール部材36のシールリップ38と摺接する摺接面42aを有するスリンガー40(第2の環状部材)とからなる。この芯金30、スリンガー40は共に、金属製の板部材(例えば炭素鋼板)を塑性加工、打抜加工などによって環状に形成されており、円筒部32、42と、円筒部32、42の端部から径方向に延出した環状平板部34、44と、によって断面L型状に一体形成されている。そして、芯金30とスリンガー40の円筒部32、42、環状平板部34、44のそれぞれが互いに対向する位置に配置構成されて軸方向から組み合わされて断面矩形状に組み合わされている。なお、本実施例1の芯金30が本発明の「第1の環状部材」に相当し、本実施例1のスリンガー40が本発明の「第2の環状部材」に相当する。   As shown in FIG. 2, this rolling bearing sealing device assembly 20 is roughly composed of a cored bar 30 (first annular member) to which an elastic seal member 36 having a seal lip 38 is attached at the tip, and the core. It consists of a slinger 40 (second annular member) having a sliding contact surface 42a that is in sliding contact with the seal lip 38 of the elastic sealing member 36 attached to the gold 30. Both the metal core 30 and the slinger 40 are formed in a ring shape by plastic processing, punching processing or the like of a metal plate member (for example, carbon steel plate), and end portions of the cylindrical portions 32 and 42 and the cylindrical portions 32 and 42 are formed. Are integrally formed in an L-shaped cross section by annular flat plate portions 34 and 44 extending radially from the portion. The cylindrical portion 32 and 42 and the annular flat plate portions 34 and 44 of the core metal 30 and the slinger 40 are arranged and arranged at positions facing each other, and are combined from the axial direction to form a rectangular cross section. The core 30 of the first embodiment corresponds to the “first annular member” of the present invention, and the slinger 40 of the first embodiment corresponds to the “second annular member” of the present invention.

芯金30と弾性シール部材36について説明する。
図2に図示されるように、芯金30は、外周面が外輪14の内周面に嵌合する円筒部32と、円筒部32の端部から内径方向に延出した環状平板部34と、によって断面L型状に一体形成されている。この芯金30には、外部からの水、埃、泥等の異物の侵入を防止するために弾性シール部材36のシールリップ38が配設されている。この弾性シール部材36のシールリップ38は、例えば、二トリルゴム、アクリルゴム等の合成ゴム、天然ゴム、軟質合成樹脂等を適宜選択することができる。本実施例においては合成ゴムが選択されており、芯金30の環状平板部34に加硫接着によって取り付けられている。この先端の弾性シール部材36のシールリップ38はスリンガー40(第2の環状部材)の円筒部42及び環状平板部44に摺接することで外部からの水、埃、泥等の異物の侵入を防止する構成とされており、このスリンガー40の円筒部42及び環状平板部44に向かって3方向に突き出し状に形成されている。シールリップ38は、主リップ38a、補助リップ38b、サイドリップ38cの3構成であり、スリンガー40の円筒部42に構成される摺接面42aに対し径方向の弾性力を付与して摺接するのが主リップ38a、補助リップ38bである。また、スリンガー40の環状平板部44に構成される摺接面44aに対し軸方向の弾性力を付与して摺接するのがサイドリップ38cである。
The core metal 30 and the elastic seal member 36 will be described.
As shown in FIG. 2, the core metal 30 includes a cylindrical portion 32 whose outer peripheral surface is fitted to the inner peripheral surface of the outer ring 14, and an annular flat plate portion 34 that extends from the end of the cylindrical portion 32 in the inner diameter direction. Are integrally formed in a L-shaped cross section. The metal core 30 is provided with a seal lip 38 of an elastic seal member 36 in order to prevent entry of foreign matter such as water, dust and mud from the outside. As the seal lip 38 of the elastic seal member 36, for example, synthetic rubber such as nitrile rubber or acrylic rubber, natural rubber, soft synthetic resin, or the like can be appropriately selected. In this embodiment, synthetic rubber is selected and attached to the annular flat plate portion 34 of the core metal 30 by vulcanization adhesion. The sealing lip 38 of the elastic seal member 36 at the tip is in sliding contact with the cylindrical portion 42 and the annular flat plate portion 44 of the slinger 40 (second annular member) to prevent entry of foreign matters such as water, dust, mud and the like from the outside. The slinger 40 is formed so as to protrude in three directions toward the cylindrical portion 42 and the annular flat plate portion 44 of the slinger 40. The seal lip 38 has a main lip 38a, an auxiliary lip 38b, and a side lip 38c. The seal lip 38 is in sliding contact with a sliding contact surface 42a formed on the cylindrical portion 42 of the slinger 40 by applying a radial elastic force. Are the main lip 38a and the auxiliary lip 38b. Further, the side lip 38c is in sliding contact with the sliding contact surface 44a formed on the annular flat plate portion 44 of the slinger 40 by applying an elastic force in the axial direction.

スリンガー40について説明する。
図3に図示されるように、スリンガー40は、円筒部42と、円筒部42の端部から外径方向に延出した環状平板部44と、によって断面L型に一体形成されている。この円筒部42の外周面は芯金30に構成されるシールリップ38のうち、主リップ38a、補助リップ38bと摺接する摺接面42aとして構成されており、裏面側の内周面は内輪12、12の外周面に嵌合する嵌合面42bとして構成されている。また図2で見て嵌合面42bの右端には、内輪12、12の外周面に円滑に嵌合をさせるため全周に面取り加工46が施されている。なお、本実施例1では、この面取り加工46の寸法は次のような寸法が設定されている。スリンガー40の板厚は0.6mmである。この円筒部42の端面から0.4mmの位置から嵌合面42bに対して20度の角度によって面取り加工46が施されている。なお、この本実施例1において示した面取り加工46の寸法は一例であって、スリンガー40全体の大きさ、板厚、材質等によって適宜の寸法に設定されるものである。
The slinger 40 will be described.
As shown in FIG. 3, the slinger 40 is integrally formed in a cross-sectional L shape by a cylindrical portion 42 and an annular flat plate portion 44 extending from the end portion of the cylindrical portion 42 in the outer diameter direction. The outer peripheral surface of the cylindrical portion 42 is configured as a slidable contact surface 42 a that is in sliding contact with the main lip 38 a and the auxiliary lip 38 b among the seal lips 38 formed on the core metal 30, and the inner peripheral surface on the back side is the inner ring 12. , 12 is configured as a fitting surface 42b fitted to the outer peripheral surface. Further, a chamfering process 46 is applied to the entire periphery of the right end of the fitting surface 42b as viewed in FIG. 2 in order to smoothly fit the outer circumferential surfaces of the inner rings 12, 12. In the first embodiment, the dimensions of the chamfering process 46 are set as follows. The thickness of the slinger 40 is 0.6 mm. A chamfering process 46 is performed at an angle of 20 degrees with respect to the fitting surface 42b from a position 0.4 mm from the end surface of the cylindrical portion 42. In addition, the dimension of the chamfering process 46 shown in the first embodiment is an example, and is set to an appropriate dimension depending on the size, thickness, material, and the like of the slinger 40 as a whole.

また、図4及び図5に図示されるように、面取り加工46が施された、図4で見て右端面の周方向の一部には、摺接面42a側の径方向に向けて突出する突部50aがかしめ形成されている。なお、この突部50aが形成される端面は、スリンガー40の円筒部42に構成される摺接面42aにおける環状平板部44が配設される軸方向端面とは反対側の端面である。そして径方向外方の突部50aは、シールリップ38の主リップ38a、補助リップ38bがスリンガー40の円筒部42の摺接面42aから軸方向に離脱することを抑制するために構成されている。この突部50aはスリンガー40の円筒部42の端面の周方向において2つ以上あることが好ましい。更には、等間隔に配設されているのが好ましい。この突部50は、摺接面42a側の形成に伴い裏面側の嵌合面42b側にも突部50bが形成されているが、この突部50bの大きさは、面取り加工46が施された径方向深さより浅く突出する大きさとして形成されている。そのため、この突部50はスリンガー40を内輪12、12の外周面に嵌合させる際に影響を与えない。ここで本実施例1のスリンガー40の円筒部42の面取り加工46が施されることによって径方向深さは、約0.14mmとなる。そのため、本実施例1における突部50bの径方向の大きさは、0.1mmから0.14mm以内であることが好ましい。   Further, as shown in FIGS. 4 and 5, a part of the right end surface in the circumferential direction as seen in FIG. 4 is chamfered 46 and protrudes in the radial direction on the sliding contact surface 42 a side. A protruding portion 50a is formed by caulking. The end surface on which the protrusion 50a is formed is an end surface opposite to the axial end surface on which the annular flat plate portion 44 is disposed on the sliding contact surface 42a formed on the cylindrical portion 42 of the slinger 40. The radially outward projecting portion 50a is configured to prevent the main lip 38a and the auxiliary lip 38b of the seal lip 38 from being separated from the sliding contact surface 42a of the cylindrical portion 42 of the slinger 40 in the axial direction. . It is preferable that there are two or more protrusions 50 a in the circumferential direction of the end surface of the cylindrical portion 42 of the slinger 40. Furthermore, it is preferable that they are arranged at equal intervals. As the protrusion 50 is formed on the sliding contact surface 42a side, the protrusion 50b is also formed on the back-side fitting surface 42b side. The size of the protrusion 50b is chamfered 46. It is formed as a size that protrudes shallower than the radial depth. For this reason, the protrusion 50 does not affect the fitting of the slinger 40 to the outer peripheral surfaces of the inner rings 12 and 12. Here, the chamfering 46 of the cylindrical portion 42 of the slinger 40 of the first embodiment is performed, so that the radial depth is about 0.14 mm. Therefore, the radial size of the protrusion 50b in the first embodiment is preferably within 0.1 mm to 0.14 mm.

図6から図9に図示されるように、上記突部50は芯金30とスリンガー40を組み合わせる圧入治具70を用いて形成される。
この圧入治具70は、芯金30とスリンガー40とを軸方向から同心上に嵌め合わせ、スリンガー40の円筒部42の摺接面42aに芯金30に取付けた弾性シール部材36のシールリップ38を圧入装着するためのものである。図6に図示されるように、この圧入治具70は、概略、軸部72と、拡径軸部74と、当接面76と、傾斜面78と、突起部位80から構成されている。軸部72は芯金30とスリンガー40とを軸方向から同心上に嵌め合わせるために、スリンガー40の円筒部42に挿入可能に、この円筒部42の軸径と略同径に形成されている。拡径軸部74はスリンガー40の円筒部42の嵌合面42bにおける径に対し、スリンガー40の板厚の厚み以上に拡径した軸部72として形成されている。図8及び図9に図示されるように、この拡径軸部74は、芯金30に取り付けられたシールリップ38のうち主リップ38a、補助リップ38bをスリンガー40の摺動面に案内する案内面として構成されている。上記した軸部72と拡径軸部74は同心上に形成されているため段差部が形成される。この段差部が当接面76として構成されている。この当接面76は、圧入治具70の軸部72がスリンガー40の円筒部42に挿入され、スリンガー40の円筒部42の端面がこの当接面76に当てがわれることでスリンガー40を軸方向上に固定する部位である。傾斜面78は芯金30に取り付けられたシールリップ38のうち主リップ38a、補助リップ38bを順次拡径して拡径軸部74の径まで外径方向に弾性変形させて拡径させる面である。図7に図示されるように、突起部位80は当接面76に形成されており、スリンガー40の円筒部42の端面に突部50を形成するためのものである。この突起部位80は、スリンガー40端面に対向する方向に突出して形成されている。そして、スリンガー40の円筒部42の端面が当接面76に当てがわれる際、この突起部位80によって突部50が加工形成される。なお本実施例1における突起部位80が本発明の「加工部位」に相当する。
As shown in FIGS. 6 to 9, the protrusion 50 is formed using a press-fitting jig 70 that combines the core metal 30 and the slinger 40.
The press-fitting jig 70 fits the core metal 30 and the slinger 40 concentrically from the axial direction, and seals the lip 38 of the elastic seal member 36 attached to the core metal 30 on the sliding contact surface 42a of the cylindrical portion 42 of the slinger 40. For press fitting. As shown in FIG. 6, the press-fitting jig 70 is generally composed of a shaft portion 72, a diameter-expanded shaft portion 74, a contact surface 76, an inclined surface 78, and a protruding portion 80. The shaft portion 72 is formed to have substantially the same diameter as the shaft diameter of the cylindrical portion 42 so as to be inserted into the cylindrical portion 42 of the slinger 40 in order to fit the core metal 30 and the slinger 40 concentrically from the axial direction. . The diameter-expanded shaft portion 74 is formed as a shaft portion 72 whose diameter is larger than the thickness of the thickness of the slinger 40 with respect to the diameter of the fitting surface 42 b of the cylindrical portion 42 of the slinger 40. As shown in FIGS. 8 and 9, the diameter-expanded shaft portion 74 is a guide for guiding the main lip 38 a and the auxiliary lip 38 b of the seal lip 38 attached to the core metal 30 to the sliding surface of the slinger 40. It is configured as a surface. Since the above-described shaft portion 72 and the diameter-expanded shaft portion 74 are formed concentrically, a step portion is formed. This step portion is configured as a contact surface 76. The abutting surface 76 is formed by inserting the shaft portion 72 of the press-fitting jig 70 into the cylindrical portion 42 of the slinger 40 and applying the end surface of the cylindrical portion 42 of the slinger 40 to the abutting surface 76 so that the slinger 40 is pivoted. It is a part fixed in the direction. The inclined surface 78 is a surface in which the main lip 38a and the auxiliary lip 38b among the seal lips 38 attached to the core metal 30 are sequentially expanded in diameter and elastically deformed to the diameter of the expanded diameter shaft portion 74 in the outer diameter direction. is there. As shown in FIG. 7, the protruding portion 80 is formed on the contact surface 76, and is for forming the protrusion 50 on the end surface of the cylindrical portion 42 of the slinger 40. The protruding portion 80 is formed so as to protrude in a direction facing the end surface of the slinger 40. Then, when the end surface of the cylindrical portion 42 of the slinger 40 is applied to the contact surface 76, the protruding portion 50 is processed and formed by the protruding portion 80. The protruding portion 80 in Example 1 corresponds to the “processed portion” of the present invention.

上記構成により、芯金30とスリンガー40とを軸方向から組み合わせる組立て工程は以下のとおりである。図6に図示されるように、先ず圧入治具70の軸部72をスリンガー40の円筒部42に挿入する。図7に図示されるように、このときスリンガー40の円筒部42の端面を圧入治具70の当接面76に向けて挿入して当てがいスリンガー40を固定する。ここで、圧入治具70の当接面76にはスリンガー40の円筒部42の端面に突部50を形成する突起部位80が設けられている。この突起部位80の押圧加工によってスリンガー40の円筒部42の端面に突部50を加工形成する。図8及び図9に図示されるように、芯金30に取付けた弾性シール部材36のシールリップ38を傾斜面78に沿わせて、拡径軸部74の径まで外径方向に弾性変形させたあとスリンガー40の円筒部42の摺接面42aに案内して圧入装着する。こうして、転がり軸受用密封装置組立体20が組立てられる。
上述のように、芯金30とスリンガー40を組み合わせた転がり軸受用密封装置組立体20を組立てる方法について説明したが、以下に説明するように、芯金30とスリンガー40を別々に転がり軸受装置10に嵌合させてもよい。すなわち、スリンガー40を、転がり軸受10の内輪12に仮組みし、上述の治具70とはことなる形状の治具(例えば軸部72が存在せず、拡径軸部74と当接面76と、傾斜面78と、突起部位80から構成される)を、突部50を形成させつつも、スリンガー40とともに軸方向内側に内側に押し込んで、スリンガー40を内輪12に対して位置決めし、その後、芯金30の環状平板部34に治具を用いて軸方向内側に押し込み位置決めする。この方法により、結果的には、上述の転がり軸受用密封装置組立体20を、直接的に転がり軸受10に組付けることができる。この方法は、後述の実施例2についても、同様に適用可能である。
With the above configuration, the assembly process for combining the cored bar 30 and the slinger 40 from the axial direction is as follows. As shown in FIG. 6, first, the shaft portion 72 of the press-fitting jig 70 is inserted into the cylindrical portion 42 of the slinger 40. As shown in FIG. 7, at this time, the end surface of the cylindrical portion 42 of the slinger 40 is inserted toward the contact surface 76 of the press-fitting jig 70 to fix the applied slinger 40. Here, the contact surface 76 of the press-fitting jig 70 is provided with a protruding portion 80 that forms the protruding portion 50 on the end surface of the cylindrical portion 42 of the slinger 40. The protrusion 50 is processed and formed on the end surface of the cylindrical portion 42 of the slinger 40 by pressing the protruding portion 80. As shown in FIGS. 8 and 9, the seal lip 38 of the elastic seal member 36 attached to the core metal 30 is elastically deformed in the outer diameter direction to the diameter of the enlarged diameter shaft portion 74 along the inclined surface 78. After that, it is guided and attached to the sliding contact surface 42a of the cylindrical portion 42 of the slinger 40. In this way, the rolling bearing sealing device assembly 20 is assembled.
As described above, the method for assembling the rolling bearing sealing device assembly 20 in which the cored bar 30 and the slinger 40 are combined has been described. However, as will be described below, the cored bar 30 and the slinger 40 are separately assembled into the rolling bearing unit 10. You may make it fit. That is, the slinger 40 is temporarily assembled to the inner ring 12 of the rolling bearing 10, and a jig having a shape different from the above-described jig 70 (for example, the shaft portion 72 does not exist, the diameter-expanded shaft portion 74 and the contact surface 76 are present. And the slanted surface 78 and the projecting portion 80), while the projecting portion 50 is formed, the slinger 40 is pushed inward in the axial direction together with the slinger 40 to position the slinger 40 with respect to the inner ring 12, and thereafter Then, the annular flat plate portion 34 of the metal core 30 is pushed and positioned inward in the axial direction using a jig. As a result, the above-described rolling bearing sealing device assembly 20 can be directly assembled to the rolling bearing 10 by this method. This method can be similarly applied to Example 2 described later.

この実施例1に係る転がり軸受用密封装置組立体20によれば、芯金30の弾性シール部材36は、その先端のシールリップ38がスリンガー40の円筒部42に構成される摺接面42aに対し径方向の弾性力が付与されて摺接する構成である。そして、スリンガー40の円筒部42に構成される摺接面42aにおける環状平板部44が配設される軸方向端面とは反対側の端面の周方向の少なくとも一部には、スリンガー40の円筒部42に構成される摺接面42a側の径方向に向けて突出する突部50aが形成されている。この突部50aによって、芯金30の弾性シール部材36のシールリップ38がスリンガー40の円筒部42の摺接面42aから軸方向に離脱することが抑制される。   According to the rolling bearing sealing device assembly 20 according to the first embodiment, the elastic seal member 36 of the cored bar 30 has the sliding lip 38 formed on the cylindrical portion 42 of the slinger 40 with the seal lip 38 at the tip thereof. On the other hand, the elastic force in the radial direction is applied to make sliding contact. The cylindrical portion of the slinger 40 is provided at least in the circumferential direction of the end surface opposite to the axial end surface where the annular flat plate portion 44 is disposed in the sliding contact surface 42a formed on the cylindrical portion 42 of the slinger 40. The protrusion part 50a which protrudes toward the radial direction by the side of the slidable contact surface 42a comprised in 42 is formed. The protrusion 50 a prevents the seal lip 38 of the elastic seal member 36 of the core metal 30 from being detached from the sliding contact surface 42 a of the cylindrical portion 42 of the slinger 40 in the axial direction.

また転がり軸受用密封装置組立体20は、転がり軸受装置10の内輪12、12と外輪14との間の開口端に円滑に圧入するために、スリンガー40の円筒部42の端面における摺接面42aの裏面側の面には全周に面取り加工46が施されている。ここで、突部50を形成するためのスリンガー40の円筒部42の端面への加工は、突部50aが摺接面42a側に形成されることに伴い裏面側にも突部50bが形成される加工である。しかし、裏面側に突出して形成される突部50bの大きさは面取り加工46が施された径方向深さより浅く突出する大きさとして形成されている。そのため、転がり軸受用密封装置組立体20は、転がり軸受装置10の内輪12、12と外輪14との間の開口端に円滑に圧入できると共に、スリンガー40の円筒部42に構成される摺接面42a側の径方向に向けて突出する突部50aを形成することができる。   Further, the rolling bearing sealing device assembly 20 has a sliding contact surface 42a on the end surface of the cylindrical portion 42 of the slinger 40 in order to smoothly press fit the opening end between the inner rings 12, 12 and the outer ring 14 of the rolling bearing device 10. A chamfering process 46 is applied to the entire surface of the back surface side of. Here, in the processing of the end surface of the cylindrical portion 42 of the slinger 40 for forming the protrusion 50, the protrusion 50b is also formed on the back surface side as the protrusion 50a is formed on the sliding contact surface 42a side. Processing. However, the size of the protrusion 50b that protrudes to the back surface side is formed so as to protrude shallower than the radial depth on which the chamfering process 46 is performed. Therefore, the rolling bearing sealing device assembly 20 can be smoothly press-fitted into the opening end between the inner rings 12 and 12 and the outer ring 14 of the rolling bearing device 10, and the sliding contact surface formed on the cylindrical portion 42 of the slinger 40. The protrusion 50a which protrudes toward the radial direction on the 42a side can be formed.

また、芯金30とスリンガー40とを軸方向から組み合わせる圧入治具70には、スリンガー40の円筒部42の端面に突部50を形成することのできる突起部位80が設けられている。そのため、芯金30とスリンガー40の組み合わせとともに、スリンガー40の円筒部42の端面に突部50を形成することができるため、加工コスト、製造コストの抑制を図ることができる。   Further, the press-fitting jig 70 that combines the core metal 30 and the slinger 40 from the axial direction is provided with a protruding portion 80 that can form the protrusion 50 on the end surface of the cylindrical portion 42 of the slinger 40. Therefore, since the protrusion 50 can be formed on the end surface of the cylindrical portion 42 of the slinger 40 together with the combination of the core metal 30 and the slinger 40, the processing cost and the manufacturing cost can be suppressed.

次に、この発明の実施例2に係る転がり軸受用密封装置組立体220を図10から図14にしたがって説明する。この実施例2は、図10から図12に図示されるように、スリンガー240の円筒部242に構成される摺接面242a側の径方向に向けて突出する突部250aの形状が実施例1と異なっている。実施例2における突部250は、スリンガー240の円筒部242の端面において周方向に直交する平歯状の突起部位280に押圧されて摺接面242a側、嵌合面242b側双方に山形に突出する突部250a、250bとしてかしめ形成されている。図13、図14に図示されるように、実施例2における圧入治具270の当接面276に形成される突起部位280は、スリンガー240の円筒部242の端面に向かって平歯状の突起部位280が突出形成されている。この平歯状の突起部位280は、スリンガー240の円筒部242の周方向に直交する方向で形成されている。なお、スリンガー240の円筒部242の端面における突部250の形状、及び圧入治具270の突起部位280以外の形状は実施例1と共通であり、突部250の形成方法も実施例1と共通であるため、詳細な説明は省略する。この実施例2は、実施例1と同様の作用効果を得ることができるとともに、圧入治具270の突起部位280は平歯状のものであり複雑な形状をしておらず、圧入治具270の製作が容易である。   Next, a rolling bearing sealing device assembly 220 according to Embodiment 2 of the present invention will be described with reference to FIGS. As shown in FIGS. 10 to 12, in the second embodiment, the shape of the protrusion 250a protruding in the radial direction on the sliding contact surface 242a side formed in the cylindrical portion 242 of the slinger 240 is the first embodiment. Is different. In the second embodiment, the projecting portion 250 is pressed by a spur-shaped projection portion 280 orthogonal to the circumferential direction on the end surface of the cylindrical portion 242 of the slinger 240 and protrudes in a mountain shape on both the sliding contact surface 242a side and the fitting surface 242b side. The protrusions 250a and 250b are formed by caulking. As shown in FIGS. 13 and 14, the protruding portion 280 formed on the contact surface 276 of the press-fitting jig 270 according to the second embodiment is a spur-shaped protrusion toward the end surface of the cylindrical portion 242 of the slinger 240. A region 280 is formed to protrude. The spur-shaped projection portion 280 is formed in a direction orthogonal to the circumferential direction of the cylindrical portion 242 of the slinger 240. The shape of the protrusion 250 on the end surface of the cylindrical portion 242 of the slinger 240 and the shape other than the protrusion portion 280 of the press-fitting jig 270 are the same as in the first embodiment, and the method for forming the protrusion 250 is also the same as in the first embodiment. Therefore, detailed description is omitted. In the second embodiment, the same operational effects as those of the first embodiment can be obtained, and the protruding portion 280 of the press-fitting jig 270 has a flat tooth shape and does not have a complicated shape. Is easy to manufacture.

次に、この発明の実施例3に係る転がり軸受用密封装置組立体320を図15から図19にしたがって説明する。この実施例3では、図15から図17に図示されるように、スリンガー340の円筒部342に構成される摺接面342a側の径方向に向けて突出する突部350の形状が実施例1及び実施例2と異なっている。実施例3における突部350は、スリンガー340の円筒部342の端面において周方向の複数箇所に摺接面342a側に山形状に屈曲する突部350として形成されている。
図18から図19に図示されるように、この突部350は、次のように形成される。先ず、スリンガー340の円筒部342の端面形状は、面取り加工346が施されると共に嵌合面342bから摺接面342aに向かって更に薄肉状の薄肉部位347が加工されている。圧入治具370の当接面376に形成される突起部位380は、スリンガー340の円筒部342の端面に向かって三角錐状に突出形成されている。突部350は、この突起部位380の押圧加工によって薄肉状の薄肉部位347が摺接面342a側にかしめ形成される。なお、スリンガー340の円筒部342の端面における突部350の形状、及び圧入治具370の突起部位380以外の形状は実施例1及び実施例2と共通であり、突部350の形成方法も実施例1及び実施例2と共通であるため、詳細な説明は省略する。この実施例3は、実施例1及び実施例2と同様の作用効果を得ることができる。また、嵌合面342b側へ突部350は形成されない。そのため、スリンガー340の嵌合面342bに形成された面取り加工346の部位への影響を考慮することなく突部350の形状を設定できるという利点がある。
Next, a rolling bearing sealing device assembly 320 according to Embodiment 3 of the present invention will be described with reference to FIGS. In the third embodiment, as shown in FIGS. 15 to 17, the shape of the protrusion 350 protruding in the radial direction on the sliding contact surface 342 a side formed in the cylindrical portion 342 of the slinger 340 is the first embodiment. And different from the second embodiment. The protrusions 350 according to the third embodiment are formed as protrusions 350 that are bent in a mountain shape toward the sliding contact surface 342 a at a plurality of locations in the circumferential direction on the end surface of the cylindrical portion 342 of the slinger 340.
As shown in FIGS. 18 to 19, the protrusion 350 is formed as follows. First, as for the end surface shape of the cylindrical portion 342 of the slinger 340, the chamfering process 346 is performed and the thinner part 347 is further processed from the fitting surface 342b toward the sliding contact surface 342a. The protruding portion 380 formed on the contact surface 376 of the press-fitting jig 370 is formed so as to project in a triangular pyramid shape toward the end surface of the cylindrical portion 342 of the slinger 340. The protrusion 350 is formed by caulking a thin-walled thin portion 347 on the sliding contact surface 342a side by pressing the protruding portion 380. The shape of the protrusion 350 on the end surface of the cylindrical portion 342 of the slinger 340 and the shape other than the protruding portion 380 of the press-fitting jig 370 are the same as those in the first and second embodiments, and the method for forming the protrusion 350 is also implemented. Since it is common with Example 1 and Example 2, detailed description is abbreviate | omitted. The third embodiment can obtain the same effects as the first and second embodiments. Further, the protrusion 350 is not formed on the fitting surface 342b side. Therefore, there is an advantage that the shape of the protrusion 350 can be set without considering the influence on the part of the chamfering process 346 formed on the fitting surface 342b of the slinger 340.

次に、この発明の実施例4に係る転がり軸受用密封装置組立体420を図20から図23にしたがって説明する。この実施例4では、図20及び図21に図示されるように、突部350がスリンガー440の円筒部442の全周に形成された構成である。
ここで、一般に芯金30とスリンガー440とが分離しないように、両環状部材を組合わせた後、スリンガー440の端面を摺接面442a側に向けて折り曲げ加工することで断面U字状に形成して分離防止をすることも考えられる。しかしながら、両環状部材を組合わせた後に、スリンガー440端面の折り曲げ加工は難しく、加工コストの増大につながるおそれがある。また、折り曲げ加工を施すと摺接面442aの面精度に影響が生じ密封性能(シール性能)が低下するおそれがあると考えられていた。本実施例4はこのような、この折り曲げ加工の困難性と摺接面442aの面精度への影響を考慮して以下のように突部450を形成するものである。先ず、スリンガー440の円筒部442の端面形状は、実施例3と同様に、面取り加工446と共に端部を薄肉部位447に加工する。
ここで、本実施例4におけるスリンガー440端面は、次のような形状に設定される。図22に図示されるように、スリンガー440の板厚は0.6mmである。この円筒部442の薄肉部位447の板厚tは、0.1mmの〜0.2mmの板厚として設定される。また、軸方向長さLは、t×1.5の長さで設定される。よってLは、0.15〜0.3mmの範囲で形成されている。図22及び図23に図示されるように、圧入治具470の当接面476には、スリンガー440の円筒部442の端部の薄肉部位447に対応する位置には、突起部位480として拡径軸部474の径まで漸次拡径する傾斜面が形成されている。突部450は、この突起部位480の傾斜面の押圧加工によって薄肉部位447が摺接面442a側折り曲げ加工されて形成される。本実施例4では、この折り曲げ加工によって形成される突部450は、摺接面442aから0.1mm以上の高さG(図21参照)を有して形成されている。なお、スリンガー440の円筒部442の端部の薄肉部位447の設定、突部450の形状、圧入治具470の突起部位480の傾斜面の形状は一例であって、スリンガー440全体の大きさ、板厚、材質等によって適宜の寸法に設定されるものである。なお、スリンガー440の円筒部442の端面における突部450の形状、及び圧入治具470の突起部位480以外の形状は実施例1から実施例3と共通であり、突部450の形成方法も実施例1から実施例3と共通であるため、詳細な説明は省略する。この実施例4は、実施例1から実施例3と同様の作用効果を得ることができる。また、スリンガー440の円筒部442の端面全周に突部450を形成することができる。また、スリンガー440の円筒部442の端部に形成された薄肉部位447を押圧加工によって折り曲げ加工を施すため、加工の際に摺接面442aに大きな荷重がかからない。そのため、摺接面442aの面精度に影響が生じにくく密封性能(シール性能)の低下を防ぐことができる。
Next, a rolling bearing sealing device assembly 420 according to Embodiment 4 of the present invention will be described with reference to FIGS. In the fourth embodiment, as shown in FIGS. 20 and 21, the protrusion 350 is formed on the entire circumference of the cylindrical portion 442 of the slinger 440.
Here, after the two annular members are combined so that the core metal 30 and the slinger 440 are not generally separated, the end surface of the slinger 440 is bent toward the slidable contact surface 442a to form a U-shaped cross section. It is also possible to prevent separation. However, after combining both annular members, it is difficult to bend the end surface of the slinger 440, which may increase the processing cost. Further, it has been considered that when the bending process is performed, the surface accuracy of the sliding contact surface 442a is affected and the sealing performance (sealing performance) may be deteriorated. In the fourth embodiment, the projection 450 is formed as described below in consideration of the difficulty in bending and the influence on the surface accuracy of the sliding contact surface 442a. First, the end surface shape of the cylindrical portion 442 of the slinger 440 is processed into a thin portion 447 together with the chamfering process 446 in the same manner as in the third embodiment.
Here, the end surface of the slinger 440 in the fourth embodiment is set to the following shape. As shown in FIG. 22, the thickness of the slinger 440 is 0.6 mm. The plate thickness t of the thin portion 447 of the cylindrical portion 442 is set as a plate thickness of 0.1 mm to 0.2 mm. The axial length L is set to a length of t × 1.5. Therefore, L is formed in the range of 0.15 to 0.3 mm. As shown in FIGS. 22 and 23, the contact surface 476 of the press-fitting jig 470 has a diameter expanded as a protruding portion 480 at a position corresponding to the thin portion 447 at the end of the cylindrical portion 442 of the slinger 440. An inclined surface that gradually expands to the diameter of the shaft portion 474 is formed. The protrusion 450 is formed by bending the thin portion 447 on the sliding contact surface 442a side by pressing the inclined surface of the protrusion portion 480. In the fourth embodiment, the protrusion 450 formed by the bending process is formed with a height G (see FIG. 21) of 0.1 mm or more from the sliding contact surface 442a. The setting of the thin portion 447 at the end of the cylindrical portion 442 of the slinger 440, the shape of the protrusion 450, and the shape of the inclined surface of the protrusion portion 480 of the press-fitting jig 470 are examples, and the overall size of the slinger 440, Appropriate dimensions are set according to the plate thickness, material, and the like. The shape of the protrusion 450 on the end surface of the cylindrical portion 442 of the slinger 440 and the shape other than the protruding portion 480 of the press-fitting jig 470 are the same as those in the first to third embodiments, and the method for forming the protrusion 450 is also implemented. Since it is common with Example 1 to Example 3, detailed description is abbreviate | omitted. In the fourth embodiment, the same effects as those of the first to third embodiments can be obtained. Further, the protrusion 450 can be formed on the entire circumference of the end surface of the cylindrical portion 442 of the slinger 440. Further, since the thin portion 447 formed at the end of the cylindrical portion 442 of the slinger 440 is bent by pressing, a large load is not applied to the sliding contact surface 442a during the processing. Therefore, the surface accuracy of the slidable contact surface 442a is hardly affected, and a decrease in sealing performance (sealing performance) can be prevented.

以上、本発明の実施形態を実施例1から実施例4について説明したが、本発明の転がり軸受用密封装置組立体は、本実施の形態に限定されず、この発明の要旨を逸脱しない範囲内において、種々なる形態で実施することもできる。
例えば、実施例1から実施例3において突部50、250、350は、芯金30とスリンガー40、240、340を組み合わせる圧入治具70、270、370を用いて形成する例を示した。しかしながらこれに限定されるものではなく、円筒部42、242、342の端面をポンチ等の先端が鋭利な工具によって軸方向から手動で押圧加工することによって形成する構成であってもよい。
Although the embodiment of the present invention has been described with respect to the first to fourth embodiments, the rolling bearing sealing device assembly of the present invention is not limited to the present embodiment, and does not depart from the gist of the present invention. However, the present invention can be implemented in various forms.
For example, in the first to third embodiments, the protrusions 50, 250, and 350 are formed using press-fitting jigs 70, 270, and 370 that combine the core metal 30 and the slinger 40, 240, and 340. However, the present invention is not limited to this, and the end surfaces of the cylindrical portions 42, 242 and 342 may be formed by manually pressing from the axial direction with a tool having a sharp tip such as a punch.

10 転がり軸受装置
12 内輪
12a 内輪軌道面
14 外輪
14a 外輪軌道面
16 転動体
18 保持器
20 転がり軸受用密封装置組立体
30 芯金
32 円筒部
34 環状平板部
36 弾性シール部材
38 シールリップ
38a 主リップ
38b 補助リップ
38c サイドリップ
40 スリンガー
42 円筒部
42a 摺接面
42b 嵌合面
44 環状平板部
44a 摺接面
46 面取り加工
50 突部
50a 突部
50b 突部
70 圧入治具
72 軸部
74 拡径軸部
76 当接面
78 傾斜面
80 突起部位
220 転がり軸受用密封装置組立体
240 スリンガー
242 円筒部
242a 摺接面
242b 嵌合面
250 突部
250a 突部
250b 突部
270 圧入治具
276 当接面
280 突起部位
320 転がり軸受用密封装置組立体
340 スリンガー
342 円筒部
342a 摺接面
342b 嵌合面
346 面取り加工
347 薄肉部位
350 突部
370 圧入治具
376 当接面
380 突起部位
420 転がり軸受用密封装置組立体
440 スリンガー
442 円筒部
442a 摺接面
446 面取り加工
447 薄肉部位
450 突部
470 圧入治具
474 拡径軸部
476 当接面
480 突起部位
DESCRIPTION OF SYMBOLS 10 Rolling bearing apparatus 12 Inner ring 12a Inner ring raceway surface 14 Outer ring 14a Outer ring raceway surface 16 Rolling body 18 Cage 20 Rolling bearing sealing device assembly 30 Core metal 32 Cylindrical part 34 Annular flat plate part 36 Elastic seal member 38 Seal lip 38a Main lip 38b Auxiliary lip 38c Side lip 40 Slinger 42 Cylindrical portion 42a Sliding contact surface 42b Fitting surface 44 Annular flat plate portion 44a Sliding contact surface 46 Chamfering 50 Projection 50a Projection 50b Projection 70 Press fitting jig 72 Shaft 74 Expanding shaft Portion 76 Contact surface 78 Inclined surface 80 Projection site 220 Rolling bearing sealing device assembly 240 Slinger 242 Cylindrical portion 242a Sliding contact surface 242b Fitting surface 250 Projection 250a Projection 250b Projection 270 Press-fit jig 276 Contact surface 280 Protruding part 320 Rolling bearing sealing device assembly 340 Slinger 342 Cylindrical portion 34 2a Sliding contact surface 342b Fitting surface 346 Chamfering process 347 Thin portion 350 Projection portion 370 Press fitting jig 376 Contact surface 380 Projection portion 420 Rolling bearing sealing device assembly 440 Slinger 442 Cylindrical portion 442a Sliding contact surface 446 Chamfering processing 447 Thin wall Part 450 Projection 470 Press-fit jig 474 Expanded shaft part 476 Abutment surface 480 Projection part

Claims (3)

転がり軸受の内輪と外輪との間の開口端に組立体として介挿される密封装置組立体が、先端にシールリップを有する弾性シール部材を取付けた第1の環状部材と、該第1の環状部材の弾性シール部材のシールリップと摺接する摺接面を有する第2の環状部材とからなり、該両環状部材が軸方向から組み合わされて組立てられる転がり軸受用密封装置組立体であって、
前記第1の環状部材及び第2の環状部材は、円筒部と、該円筒部の端部から径方向に延出した環状平板部と、によって断面L型に一体形成され、前記両環状部材の円筒部、環状平板部のそれぞれが互いに対向する位置に配置構成されて断面矩形状に組み合わされており、
前記第1の環状部材の弾性シール部材は、その先端のシールリップが前記第2の環状部材の円筒部に構成される摺接面に対し径方向の弾性力が付与されて摺接する構成とされており、
前記第2の環状部材の円筒部に構成される摺接面における前記環状平板部が配設される軸方向端面とは反対側の端面の周方向の少なくとも一部には、前記第2の環状部材の円筒部に構成される摺接面側の径方向に向けて突出する突部が形成されており、
該突部により前記第1の環状部材の弾性シール部材のシールリップが前記第2の環状部材の円筒部の摺接面から軸方向に離脱することが抑制されることを特徴とする転がり軸受用密封装置組立体。
A sealing device assembly inserted as an assembly at an opening end between an inner ring and an outer ring of a rolling bearing includes a first annular member having an elastic seal member having a seal lip attached to a tip, and the first annular member A rolling bearing sealing device assembly comprising a second annular member having a sliding contact surface in sliding contact with a sealing lip of the elastic sealing member, the annular members being assembled in combination from the axial direction,
The first annular member and the second annular member are integrally formed in a cross-sectional L shape by a cylindrical portion and an annular flat plate portion extending in a radial direction from an end portion of the cylindrical portion, Each of the cylindrical portion and the annular flat plate portion are arranged and configured at positions facing each other and combined in a rectangular cross section,
The elastic seal member of the first annular member is configured so that the seal lip at the tip thereof is in sliding contact with a sliding contact surface formed on the cylindrical portion of the second annular member by applying a radial elastic force. And
At least part of the circumferential direction of the end surface opposite to the axial end surface on which the annular flat plate portion is disposed in the sliding contact surface formed in the cylindrical portion of the second annular member is the second annular member. A protrusion is formed that protrudes in the radial direction on the slidable contact surface side configured in the cylindrical portion of the member,
For the rolling bearing, the protrusion prevents the seal lip of the elastic seal member of the first annular member from detaching in the axial direction from the sliding surface of the cylindrical portion of the second annular member. Sealing device assembly.
請求項1に記載の転がり軸受用密封装置組立体であって、
前記突部が形成される第2の環状部材の円筒部の端面における前記摺接面の裏面側の面には全周に面取り加工が施されており、
前記突部を形成するための第2の環状部材の円筒部の端面への加工は、該突部の前記摺接面側への形成に伴い裏面側にも突部が形成される加工であり、該裏面側に突出して形成される突部の大きさは前記面取り加工が施された径方向深さより浅く突出する大きさとして形成されていることを特徴とする転がり軸受用密封装置組立体。
The rolling bearing sealing device assembly according to claim 1,
A chamfering process is performed on the entire circumference of the surface on the back surface side of the sliding contact surface in the end surface of the cylindrical portion of the second annular member where the protrusion is formed,
The processing of the second annular member for forming the protrusion on the end surface of the cylindrical portion is a process in which the protrusion is also formed on the back surface side as the protrusion is formed on the sliding surface side. The rolling device sealing device assembly is characterized in that the size of the projecting portion projecting on the back surface side is formed as a size projecting shallower than the radial depth subjected to the chamfering process.
請求項1又は請求項2に記載の転がり軸受用密封装置組立体であって、
前記第1の環状部材と第2の環状部材とを軸方向から組み合わせて組立てるに際して、
該組立てる際の挿入方向に対して傾斜面を有する圧入治具を第2の環状部材の円筒部の端面に当てがい、第1の環状部材に取付けた弾性シール部材のシールリップを第2の環状部材の円筒部の摺接面に圧入装着し、
前記圧入治具の前記第2の環状部材の円筒部の端面に当てがう端面には該円筒部の端面に突部を形成することのできる加工部位が設けられており、前記第2の環状部材の円筒部の摺接面に前記第1の環状部材に取付けた弾性シール部材のシールリップを圧入装着するに際して、圧入治具を第2の環状部材の円筒部の端面に当てがう際に、圧入治具に設けた加工部位により前記突部を加工形成することを特徴とする転がり軸受用密封装置組立体。
A rolling bearing sealing device assembly according to claim 1 or 2,
When assembling the first annular member and the second annular member in combination from the axial direction,
A press-fitting jig having an inclined surface with respect to the insertion direction at the time of assembly is applied to the end surface of the cylindrical portion of the second annular member, and the seal lip of the elastic seal member attached to the first annular member is attached to the second annular member. Press fit on the sliding surface of the cylindrical part of the member,
The end surface of the press-fitting jig applied to the end surface of the cylindrical portion of the second annular member is provided with a processing part capable of forming a protrusion on the end surface of the cylindrical portion, and the second annular member When press fitting the seal lip of the elastic seal member attached to the first annular member on the sliding surface of the cylindrical portion of the member, when applying the press fitting jig to the end surface of the cylindrical portion of the second annular member A rolling bearing sealing device assembly, wherein the protrusion is processed and formed by a processing portion provided in a press-fitting jig.
JP2010065937A 2010-03-23 2010-03-23 Sealing device assembly for rolling bearing Pending JP2011196503A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015102162A (en) * 2013-11-25 2015-06-04 株式会社ジェイテクト Bearing seal installation method
JP2015117733A (en) * 2013-12-17 2015-06-25 日本精工株式会社 Temporary shaft for linear motion guide device and linear motion guide device
JP2017180552A (en) * 2016-03-29 2017-10-05 内山工業株式会社 Bearing sealing device
CN108019434A (en) * 2017-12-31 2018-05-11 无锡华洋滚动轴承有限公司 Sealing ring press-in device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015102162A (en) * 2013-11-25 2015-06-04 株式会社ジェイテクト Bearing seal installation method
JP2015117733A (en) * 2013-12-17 2015-06-25 日本精工株式会社 Temporary shaft for linear motion guide device and linear motion guide device
JP2017180552A (en) * 2016-03-29 2017-10-05 内山工業株式会社 Bearing sealing device
CN108019434A (en) * 2017-12-31 2018-05-11 无锡华洋滚动轴承有限公司 Sealing ring press-in device
CN108019434B (en) * 2017-12-31 2023-09-12 无锡华洋滚动轴承有限公司 Sealing ring pressing-in device

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