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JP2009103159A - Rolling bearing - Google Patents

Rolling bearing Download PDF

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Publication number
JP2009103159A
JP2009103159A JP2007273381A JP2007273381A JP2009103159A JP 2009103159 A JP2009103159 A JP 2009103159A JP 2007273381 A JP2007273381 A JP 2007273381A JP 2007273381 A JP2007273381 A JP 2007273381A JP 2009103159 A JP2009103159 A JP 2009103159A
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Japan
Prior art keywords
ring
temperature
bearing
space
rolling bearing
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Pending
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JP2007273381A
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Japanese (ja)
Inventor
Hideji Ito
秀司 伊藤
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NTN Corp
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NTN Corp
NTN Toyo Bearing Co Ltd
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Priority to JP2007273381A priority Critical patent/JP2009103159A/en
Publication of JP2009103159A publication Critical patent/JP2009103159A/en
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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
    • F16C33/30Parts of ball or roller bearings
    • F16C33/66Special parts or details in view of lubrication
    • F16C33/6603Special parts or details in view of lubrication with grease as lubricant
    • F16C33/6622Details of supply and/or removal of the grease, e.g. purging grease
    • F16C33/6625Controlling or conditioning the grease supply
    • 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
    • F16C19/22Bearings with rolling contact, for exclusively rotary movement with bearing rollers essentially of the same size in one or more circular rows, e.g. needle bearings
    • F16C19/24Bearings with rolling contact, for exclusively rotary movement with bearing rollers essentially of the same size in one or more circular rows, e.g. needle bearings for radial load mainly
    • F16C19/26Bearings with rolling contact, for exclusively rotary movement with bearing rollers essentially of the same size in one or more circular rows, e.g. needle bearings for radial load mainly with a single row of rollers
    • 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
    • F16C2300/00Application independent of particular apparatuses
    • F16C2300/40Application independent of particular apparatuses related to environment, i.e. operating conditions
    • F16C2300/52Application independent of particular apparatuses related to environment, i.e. operating conditions low temperature, e.g. cryogenic temperature

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Rolling Contact Bearings (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a rolling bearing capable of being used even under an extremely cold environment without degrading lubrication performance. <P>SOLUTION: The rolling bearing 1 includes an inner ring 2; an outer ring 3; and a plurality of rolling bodies 4 rollably arranged between the inner ring 2 and the outer ring 3. A lubricant 6 is filled in a bearing space S1 between the inner ring 2 and the outer ring 3. A temperature-raising device 11 for raising the temperature of the lubricant 6 is provided, For example, the temperature-raising device 11 is made to the one in which a ring-like member 13 for covering an outer side in an axial direction of the bearing space is provided and a heater 12 is mounted to an inner surface in an axial direction of the ring-like member 13. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

この発明は、鉄道車両用軸受や風力発電機用軸受等として極寒環境下で使用するのに適した転がり軸受に関する。   The present invention relates to a rolling bearing suitable for use in an extremely cold environment such as a railway vehicle bearing or a wind power generator bearing.

上記鉄道車両用軸受や風力発電機用軸受は、地域や季節により環境条件が大きく異なる。このような環境条件の違いにより、特に潤滑剤の機能が大きな影響を受ける。鉄道車両用軸受の潤滑剤については、潤滑性能の向上を目的とした研究開発が進んでいる(例えば特許文献1)。ただし、従来の潤滑剤の研究開発は、主に軸受の高速化、高温化に対するものであり、低温対策の研究は十分ではない。現在、マイナス40℃以下の極寒環境化で使用できる潤滑剤はほとんど無い。
特許第2965794号公報
The above-mentioned railway vehicle bearings and wind power generator bearings have greatly different environmental conditions depending on regions and seasons. Such a difference in environmental conditions particularly affects the function of the lubricant. Research and development for the purpose of improving the lubrication performance of lubricants for railway vehicle bearings is in progress (for example, Patent Document 1). However, conventional research and development of lubricants is mainly for higher speeds and higher temperatures of bearings, and research on countermeasures for low temperatures is not sufficient. Currently, there are few lubricants that can be used in extremely cold environments of minus 40 ° C. or lower.
Japanese Patent No. 2965794

上記のような極寒環境下で軸受が使用される場合、軸受に充填されているグリ−ス等の潤滑剤が固体化してしまい、運転起動時における潤滑剤の機能が大きく低下する。さらに、固体化した潤滑剤が軸受の各部品間の摺動を妨げるとともに、潤滑剤を攪拌するための力が膨大となるため、各部品への負荷荷重が増大する。その結果、最悪の事態として、保持器等が破損に至ることもあり得る。このような問題は、潤滑剤がグリ−スである場合、油である場合のいずれについても生じる。   When the bearing is used in the extremely cold environment as described above, the lubricant such as grease filled in the bearing is solidified, and the function of the lubricant at the time of starting the operation is greatly deteriorated. Further, the solidified lubricant prevents sliding between the parts of the bearing, and the force for stirring the lubricant becomes enormous, so that the load applied to each part increases. As a result, the cage or the like may be damaged as a worst case. Such a problem occurs both when the lubricant is grease and when it is oil.

この発明の目的は、極寒環境下でも潤滑性能を低下させずに使用できる転がり軸受を提供することである。   An object of the present invention is to provide a rolling bearing that can be used without deteriorating lubricating performance even in an extremely cold environment.

この発明の転がり軸受は、内輪と、外輪と、これら内輪および外輪間に転動自在に配置された複数の転動体とを備え、前記内輪と外輪との間の軸受空間に潤滑剤が充填された転がり軸受において、前記潤滑剤を昇温させる昇温装置を設けたことを特徴とする。
この構成によれば、極寒環境下であっても、昇温装置により潤滑剤を適正な温度まで昇温、または恒温状態に保つことができるため、常に潤滑性能が良好な状態で軸受を使用できる。
A rolling bearing according to the present invention includes an inner ring, an outer ring, and a plurality of rolling elements that are arranged to freely roll between the inner ring and the outer ring, and a bearing space between the inner ring and the outer ring is filled with a lubricant. In the rolling bearing, a temperature raising device for raising the temperature of the lubricant is provided.
According to this configuration, even in an extremely cold environment, the temperature of the lubricant can be raised to an appropriate temperature or kept at a constant temperature by the temperature raising device, so that the bearing can always be used with good lubrication performance. .

前記昇温装置は、前記軸受空間の軸方向外側を覆うリング状部材を設け、このリング状部材の軸方向内面にヒータを取付けたものとするのが良い。その場合、前記リング状部品は、例えば前記外輪に固定する。
軸受空間の軸方向外側を覆うリング状部材を設け、このリング状部材の軸方向内面にヒータを取付けると、軸受空間に充填されている潤滑剤をヒータにより効果的に加熱することができる。また、リング状部材により、ヒータの熱が軸方向外側に散逸するのを防げる。
It is preferable that the temperature raising device is provided with a ring-shaped member that covers an outer side in the axial direction of the bearing space, and a heater is attached to an inner surface in the axial direction of the ring-shaped member. In that case, the ring-shaped component is fixed to the outer ring, for example.
When a ring-shaped member that covers the outer side in the axial direction of the bearing space is provided and a heater is attached to the inner surface in the axial direction of the ring-shaped member, the lubricant filled in the bearing space can be effectively heated by the heater. Further, the ring-shaped member can prevent the heat of the heater from being dissipated outward in the axial direction.

前記昇温装置は、前記軸受空間、または軸受空間と前記リング状部品間の昇温装置内空間の温度を検知し、その検知結果に応じて前記ヒータをオンオフ切り替える検温切替手段を有するのがよい。検温切替手段は、サ−モスタットであってもよく、また温度検知部とヒータのオンオフ切替部を別に設けたものであってもよい。
上記検温切替手段を有すると、軸受空間または昇温装置内空間の温度変化に応じてヒータをオンオフ切り替えて、上記空間を常に適正温度に維持することができる。
The temperature raising device preferably has temperature detection switching means for detecting a temperature of the bearing space or a space in the temperature raising device between the bearing space and the ring-shaped part and switching the heater on and off according to the detection result. . The thermometry switching means may be a thermostat, or may be one in which a temperature detection unit and a heater on / off switching unit are provided separately.
When the temperature detection switching means is provided, the heater can be switched on and off in accordance with the temperature change of the bearing space or the space inside the temperature raising device, so that the space can always be maintained at an appropriate temperature.

前記リング状部品は、前記軸受空間および前記昇温装置内空間を外部から遮蔽するシ−ル機能を有するのが好ましい。その場合、前記昇温装置内空間に前記潤滑剤を封入してもよい。
リング状部品にシ−ル機能を持たせることにより、軸受内部からの潤滑剤の漏れ、および外部から軸受内部への異物の浸入を防ぐことができる。昇温装置内空間に潤滑剤を封入した場合は、多くの量の潤滑剤を確保することができ、転がり軸受の長時間の使用が可能になる。
The ring-shaped component preferably has a seal function that shields the bearing space and the space inside the temperature raising device from the outside. In that case, the lubricant may be sealed in the space inside the temperature raising device.
By providing the ring-shaped part with a seal function, it is possible to prevent leakage of the lubricant from the inside of the bearing and entry of foreign matter from the outside into the inside of the bearing. When the lubricant is sealed in the space inside the temperature raising device, a large amount of lubricant can be secured, and the rolling bearing can be used for a long time.

前記リング状部品は金属製であり、かつ前記ヒータは電熱式である場合には、前記内輪および外輪における少なくとも前記リング状部品が接触する箇所に絶縁被膜を設けるとよい。あるいは、前記内輪または外輪に軸受外部からの電流を遮断する絶縁被膜を設けてもよい。
リング状部品は金属製であり、かつヒータは電熱式である場合、ヒータに電気を供給する配線から漏洩した電気が内輪や外輪に流れ、内輪や外輪が迷走電流腐食を起こす恐れがある。内輪および外輪における少なくともリング状部品が接触する箇所に絶縁被膜を設けるか、あるいは前記内輪または外輪に軸受外部からの電流を遮断する絶縁被膜を設けることで、上記迷走電流腐食を防ぐことができる。
In the case where the ring-shaped part is made of metal and the heater is an electrothermal type, an insulating film may be provided at least at a position where the ring-shaped part contacts the inner ring and the outer ring. Or you may provide the insulating film which interrupts | blocks the electric current from the bearing outer side in the said inner ring | wheel or an outer ring | wheel.
When the ring-shaped part is made of metal and the heater is an electrothermal type, the electricity leaked from the wiring supplying electricity to the heater flows to the inner ring and the outer ring, and the inner ring and the outer ring may cause stray current corrosion. The stray current corrosion can be prevented by providing an insulating film at least at a location where the ring-shaped parts contact the inner ring and the outer ring, or by providing an insulating film that cuts off the current from the outside of the bearing on the inner ring or the outer ring.

この発明の転がり軸受は、内輪と、外輪と、これら内輪および外輪間に転動自在に配置された複数の転動体とを備え、前記内輪と外輪との間の空間に潤滑剤が充填されたものにおいて、前記潤滑剤を昇温させる昇温装置を設けたため、極寒環境下でも潤滑性能を低下させずに使用できる。   A rolling bearing according to the present invention includes an inner ring, an outer ring, and a plurality of rolling elements that are arranged to freely roll between the inner ring and the outer ring, and a space between the inner ring and the outer ring is filled with a lubricant. Since the temperature raising device for raising the temperature of the lubricant is provided, it can be used without deteriorating the lubricating performance even in an extremely cold environment.

この発明の第1の実施形態を図1および図2と共に説明する。この転がり軸受は、軸受本体1と、この軸受本体1の軸方向両側にそれぞれ設けた昇温装置11とでなる。軸受本体1は、内輪2と、外輪3と、これら内輪2および外輪3間に転動自在に配置された複数の転動体4とを有する。転動体4は円筒ころであり、各転動体4は、リング状の保持器5の円周方向に並ぶ複数のポケット5aにそれぞれ保持されている。外輪3の内周には軸方向に並ぶ一対のつば部3aが設けられ、これら一対のつば部3a間に転動体4が配置されている。内輪2および外輪3の間の軸受空間S1には、潤滑剤6が充填してある。   A first embodiment of the present invention will be described with reference to FIGS. The rolling bearing includes a bearing body 1 and temperature raising devices 11 provided on both sides of the bearing body 1 in the axial direction. The bearing body 1 includes an inner ring 2, an outer ring 3, and a plurality of rolling elements 4 that are arranged between the inner ring 2 and the outer ring 3 so as to be freely rollable. The rolling elements 4 are cylindrical rollers, and each rolling element 4 is held in a plurality of pockets 5 a arranged in the circumferential direction of a ring-shaped cage 5. A pair of flange portions 3a arranged in the axial direction is provided on the inner periphery of the outer ring 3, and the rolling elements 4 are disposed between the pair of flange portions 3a. The bearing space S1 between the inner ring 2 and the outer ring 3 is filled with a lubricant 6.

昇温装置11は、電熱式のヒータ12により前記潤滑剤6を昇温させるものであり、ヒータ12を取付けるリング状部品13を有する。リング状部品13は、軸方向と垂直な垂直部13aと、この垂直部13aの外周端から軸方向内側に延びる外周筒部13bと、前記垂直部13aの内周端から軸方向内側の延びる内周筒部13cとでなる。外周筒部13bは内周筒部13cよりも軸方向内側に長く延びており、外周筒部13bの先端外周側に形成された凸部14を、外輪3の内周面に形成された溝部3bに係合させることにより、リング状部材13が外輪3に固定されている。リング状部品13は上記形状とすることで、前記軸受空間S1の軸方向外側を覆うものとされている。リング状部品13と軸受空間S1との間は昇温装置内空間S2である。   The temperature raising device 11 raises the temperature of the lubricant 6 by an electrothermal heater 12 and has a ring-shaped part 13 to which the heater 12 is attached. The ring-shaped part 13 includes a vertical portion 13a perpendicular to the axial direction, an outer cylindrical portion 13b extending inward in the axial direction from the outer peripheral end of the vertical portion 13a, and an inner portion extending inward in the axial direction from the inner peripheral end of the vertical portion 13a. It consists of the peripheral cylinder part 13c. The outer peripheral cylindrical portion 13b extends longer in the axial direction than the inner peripheral cylindrical portion 13c, and the convex portion 14 formed on the outer peripheral side of the distal end of the outer peripheral cylindrical portion 13b is a groove portion 3b formed on the inner peripheral surface of the outer ring 3. The ring-shaped member 13 is fixed to the outer ring 3 by being engaged with the outer ring 3. The ring-shaped part 13 is configured to cover the outer side in the axial direction of the bearing space S1 by adopting the above shape. A space between the ring-shaped part 13 and the bearing space S1 is a space S2 in the temperature raising device.

ヒータ12は、リング状部材13の垂直部13aの軸方向内面に取付けられる。垂直部13aの形状に合わせて、ヒータ12は円環の一部が途切れたC形の形状とされている。そして、ヒータ12の途切れた箇所に相当するリング状部材垂直部13aの軸方向内面に、温度検知とスイッチング用の検温切替手段が取付けられている。この実施形態では、検温切替手段がサ−モスタット15が取付けられている。このサ−モスタット15は、第1のリ−ド線16を介してヒータ12を電気的に接続される、かつ第2のリ−ド線17を介して外部電源(図示せず)と電気的に接続されている。なお、第2のリ−ド線17は、リング状部材垂直部13aに形成されたリ−ド線孔18を通って、垂直部13aの軸方向内側から外側へ抜けている。   The heater 12 is attached to the inner surface in the axial direction of the vertical portion 13 a of the ring-shaped member 13. In accordance with the shape of the vertical portion 13a, the heater 12 has a C shape with a part of the ring interrupted. And the temperature detection switching means for temperature detection and switching is attached to the axial direction inner surface of the ring-shaped member perpendicular | vertical part 13a equivalent to the location where the heater 12 interrupted. In this embodiment, a thermostat 15 is attached as a temperature detection switching means. The thermostat 15 is electrically connected to the heater 12 via a first lead wire 16 and is electrically connected to an external power source (not shown) via a second lead wire 17. It is connected to the. Note that the second lead wire 17 passes through the lead wire hole 18 formed in the ring-shaped member vertical portion 13a and passes from the axially inner side to the outer side of the vertical portion 13a.

前記サ−モスタット15は、昇温装置内空間S2の温度を検知し、その検知温度が所定の発熱開始温度以下である場合はヒータ12に電流を流し、検知温度が前記発熱開始温度よりも高い所定の発熱停止温度以上になった場合は電流を遮断するように作用する。すなわち、昇温装置内空間S2の温度が一定範囲内にあるときだけヒータ12が発熱するようになっている。例えば、発熱開始温度はマイナス20℃、発熱停止温度はプラス20℃である。発熱開始温度をマイナス20℃とすれば、潤滑剤6が固化する前に昇温させることができる。また、発熱停止温度をプラス20℃とすれば、低温下であっても、軸受が回転し始めることにより、直ぐに常温程度まで上がると考えられる。   The thermostat 15 detects the temperature of the temperature raising device internal space S2, and when the detected temperature is equal to or lower than a predetermined heat generation start temperature, a current is passed through the heater 12, and the detected temperature is higher than the heat generation start temperature. When the temperature exceeds a predetermined heat generation stop temperature, the current is cut off. That is, the heater 12 generates heat only when the temperature of the temperature raising device inner space S2 is within a certain range. For example, the heat generation start temperature is minus 20 ° C., and the heat generation stop temperature is plus 20 ° C. If the heat generation start temperature is −20 ° C., the temperature can be raised before the lubricant 6 is solidified. Further, if the heat generation stop temperature is set to 20 ° C., it is considered that even at a low temperature, when the bearing starts to rotate, the temperature immediately rises to about room temperature.

前記リング状部品13の材質は、例えば金属とされる。リング状部品13が金属製である場合は、図1の部分拡大図に示すように、外輪3における少なくともリング状部品13が接触する箇所に、迷走電流腐食を防止するための絶縁被膜19を設けるのがよい。絶縁被膜19は、樹脂等の絶縁材料を溶射や射出成形により成形することができる。
また、軸受外部から漏洩電流が軸受内に流れることがあり、この場合でも電食を伴うことがある。この対策を潤滑固化対策と同時に行えるようにするため、内輪2の軸側部材との接触あるいは近接する部分、または外輪3のハウジング側部材との接触あるいは近接する部分に樹脂等の絶縁材料を溶射や射出成形により成形することができる(図示省略)。
さらには、上記内輪2または外輪3に絶縁被膜をすること無く、転動体4をセラミック材料等の絶縁体とする方法でもよい。
The material of the ring-shaped component 13 is, for example, metal. When the ring-shaped part 13 is made of metal, as shown in the partially enlarged view of FIG. 1, an insulating film 19 for preventing stray current corrosion is provided at least on the outer ring 3 where the ring-shaped part 13 contacts. It is good. The insulating coating 19 can be formed by thermal spraying or injection molding of an insulating material such as resin.
In addition, a leakage current may flow into the bearing from the outside of the bearing, and even in this case, electric corrosion may occur. In order to be able to perform this countermeasure simultaneously with the lubrication and solidification countermeasure, an insulating material such as a resin is sprayed on the portion of the inner ring 2 in contact with or close to the shaft side member or the portion of the outer ring 3 in contact with or close to the housing side member. Or by injection molding (not shown).
Further, a method may be used in which the rolling element 4 is made of an insulator such as a ceramic material without applying an insulating coating to the inner ring 2 or the outer ring 3.

この転がり軸受は、鉄道車両用軸受や風力発電機用軸受として使用される。使用時に、昇降装置11は、昇温装置内空間S2の温度が発熱開始温度以下になると、ヒータ12に電流を流して、ヒータ12を発熱させる。ヒータ12は潤滑剤6が充填されている軸受空間S1と対向して設けられているため、潤滑剤6が効果的に加熱される。また、ヒータ12が取付けられたリング状部品13が金属である場合は、ヒータ12の熱がリング状部品13を経て効率良くに軸受本体1に伝わる。これにより、潤滑剤6が昇温し、潤滑剤6が固体化されていた場合は流体に戻り、固体化する直前である場合は固体化することが防止される。昇温装置内空間S2の温度が発熱停止温度以上になると、ヒータ12に流れる電流を遮断し、ヒータ12の発熱を停止する。
このように、昇温装置内空間S2の温度変化に応じてヒータ12のオンオフを切り替えることにより、マイナス40℃以下の極寒環境下であっても、潤滑剤6を適正な温度まで昇温、または恒温状態に保つことができる。このため、常に潤滑性能が良好な状態で軸受を使用できる。
This rolling bearing is used as a railway vehicle bearing or a wind power generator bearing. In use, when the temperature of the temperature raising device inner space S <b> 2 becomes equal to or lower than the heat generation start temperature, the lifting / lowering device 11 causes the heater 12 to generate heat by passing a current through the heater 12. Since the heater 12 is provided facing the bearing space S1 filled with the lubricant 6, the lubricant 6 is effectively heated. When the ring-shaped part 13 to which the heater 12 is attached is a metal, the heat of the heater 12 is efficiently transmitted to the bearing body 1 through the ring-shaped part 13. Thereby, when the temperature of the lubricant 6 is raised and the lubricant 6 is solidified, it returns to the fluid, and when it is just before solidification, it is prevented from solidifying. When the temperature of the temperature raising device internal space S2 becomes equal to or higher than the heat generation stop temperature, the current flowing through the heater 12 is cut off and the heat generation of the heater 12 is stopped.
Thus, by switching the heater 12 on and off according to the temperature change in the temperature raising device internal space S2, the temperature of the lubricant 6 can be raised to an appropriate temperature even in an extremely cold environment of minus 40 ° C. or lower, or It can be kept at a constant temperature. For this reason, a bearing can always be used in a state with good lubrication performance.

図3および図4はこの発明の第2の実施形態を示す。この転がり軸受は、第1の実施形態と比べて、昇温装置11のリング状部品13の形状が異なる。第2の実施形態のリング状部品13は、第1の実施形態と異なり、内周筒部13cが軸受空間S1内まで軸方向内側に長く延びており、その先端が内輪2の外周面に近接している。そのため、軸受空間S1および昇温装置内空間S2が外部から遮蔽された状態となっている。すなわち、リング状部品13は、軸受空間S1および昇温装置内空間S2を外部から遮蔽するシ−ル機能を有している。この第2の実施形態では、昇温装置内空間S2にも潤滑剤6が封入されている。また、リング状部品13が金属製である場合は、図3の部分拡大図に示すように、外輪3における少なくともリング状部品13が接触する箇所の他、内輪2におけるリング状部品13が近接する箇所にも、迷走電流腐食を防止するための絶縁被膜19が設けられる。他は第1の実施形態と同じ構成である。   3 and 4 show a second embodiment of the present invention. This rolling bearing is different from the first embodiment in the shape of the ring-shaped component 13 of the temperature raising device 11. Unlike the first embodiment, the ring-shaped component 13 of the second embodiment has an inner peripheral cylindrical portion 13c that extends long inward in the axial direction into the bearing space S1, and the tip thereof is close to the outer peripheral surface of the inner ring 2. is doing. Therefore, the bearing space S1 and the temperature raising device internal space S2 are shielded from the outside. That is, the ring-shaped component 13 has a seal function that shields the bearing space S1 and the temperature raising device internal space S2 from the outside. In the second embodiment, the lubricant 6 is also sealed in the temperature raising device inner space S2. When the ring-shaped part 13 is made of metal, as shown in the partially enlarged view of FIG. 3, the ring-shaped part 13 in the inner ring 2 is close to the outer ring 3 in addition to a portion where the ring-shaped part 13 contacts at least. An insulating coating 19 for preventing stray current corrosion is also provided at the location. The other configuration is the same as that of the first embodiment.

この第2の実施形態の転がり軸受は、リング状部品13に軸受空間S1および昇温装置内空間S2を外部から遮蔽するシ−ル機能を持たせることにより、軸受内部からの潤滑剤6の漏れ、および外部から軸受内部への異物の浸入を防ぐことができる。また、昇温装置内空間S2にも潤滑剤6が封入されているため、多くの量の潤滑剤6を確保することができ、長時間の使用が可能である。   In the rolling bearing according to the second embodiment, the ring-shaped part 13 has a seal function for shielding the bearing space S1 and the temperature raising device inner space S2 from the outside, so that the lubricant 6 leaks from the inside of the bearing. Intrusion of foreign matter from the outside into the bearing can be prevented. Further, since the lubricant 6 is also sealed in the temperature raising device inner space S2, a large amount of the lubricant 6 can be ensured and can be used for a long time.

また、第2の実施形態の転がり軸受は、軸受空間S1および昇温装置内空間S2が外部から遮蔽されているため、潤滑剤6として油も使用できる。潤滑剤6が油であっても、極寒環境下では固体化するため、この発明の適用が有効である。   Further, in the rolling bearing of the second embodiment, since the bearing space S1 and the temperature raising device inner space S2 are shielded from the outside, oil can also be used as the lubricant 6. Even if the lubricant 6 is oil, it is solidified in an extremely cold environment, so that the application of the present invention is effective.

上記各実施形態では、サ−モスタット15により昇温装置内空間S2の温度を検知するが、昇温装置内空間S2の温度を検知する代わりに、軸受空間S1の温度を検知するようにしてもよい。また、検温切替手段をサ−モスタット15としているが、検温切替手段は温度検知部とヒータのオンオフ切替部とが別体とし、温度検知部だけを昇温装置11に設け、オンオフ切替部は昇温装置11の外部に設けた構成としてもよい。   In each of the above-described embodiments, the temperature of the heating device internal space S2 is detected by the thermostat 15, but instead of detecting the temperature of the heating device internal space S2, the temperature of the bearing space S1 may be detected. Good. Further, although the thermostat switching means is a thermostat 15, the temperature detection switching means is a temperature detection unit and a heater on / off switching unit separately, and only the temperature detection unit is provided in the temperature raising device 11, and the on / off switching unit is It is good also as a structure provided in the exterior of the temperature apparatus 11. FIG.

上記各実施形態の軸受本体1の形式は円筒ころ軸受であるが、軸受本体1の形式が玉軸受、あるいは円すいころ軸受である場合にも本発明は適用できる。また、この転がり軸受の用途は、鉄道車両用軸受および風力発電機用軸受に限らず、発電機、汎用モ−タ、自動車等の寒冷地で使用される可能性のあるあらゆる機械類の軸受を対象としている。   The type of the bearing body 1 in each of the above embodiments is a cylindrical roller bearing, but the present invention can also be applied when the type of the bearing body 1 is a ball bearing or a tapered roller bearing. In addition, the rolling bearings are not limited to railway vehicle bearings and wind power generator bearings, but are used for bearings of any machinery that may be used in cold regions such as generators, general-purpose motors, and automobiles. It is targeted.

この発明の第1の実施形態にかかる転がり軸受の断面図である。It is sectional drawing of the rolling bearing concerning 1st Embodiment of this invention. (A)同転がり軸受の昇温装置の正面図、(B)その破断側面図である。(A) The front view of the temperature rising apparatus of the rolling bearing, (B) The fracture | rupture side view. この発明の第2の実施形態にかかる転がり軸受の断面図である。It is sectional drawing of the rolling bearing concerning 2nd Embodiment of this invention. (A)同転がり軸受の昇温装置の正面図、(B)その破断側面図である。(A) The front view of the temperature rising apparatus of the rolling bearing, (B) The fracture | rupture side view.

符号の説明Explanation of symbols

1…軸受本体
2…内輪
3…外輪
4…転動体
6…潤滑剤
11…昇温装置
12…ヒータ
13…リング状部品
15…サ−モスタット
19…絶縁被膜
S1…軸受空間
S2…昇温装置内空間
DESCRIPTION OF SYMBOLS 1 ... Bearing main body 2 ... Inner ring 3 ... Outer ring 4 ... Rolling body 6 ... Lubricant 11 ... Temperature rising device 12 ... Heater 13 ... Ring-shaped component 15 ... Thermostat 19 ... Insulating coating S1 ... Bearing space S2 ... Inside temperature rising device space

Claims (9)

内輪と、外輪と、これら内輪および外輪間に転動自在に配置された複数の転動体とを備え、前記内輪と外輪との間の軸受空間に潤滑剤が充填された転がり軸受において、前記潤滑剤を昇温させる昇温装置を設けたことを特徴とする転がり軸受。   In a rolling bearing comprising an inner ring, an outer ring, and a plurality of rolling elements arranged to roll between the inner ring and the outer ring, the bearing space between the inner ring and the outer ring is filled with a lubricant. A rolling bearing provided with a temperature raising device for raising the temperature of the agent. 請求項1において、前記昇温装置は、前記軸受空間の軸方向外側を覆うリング状部材を設け、このリング状部材の軸方向内面にヒータを取付けたものである転がり軸受。   The rolling bearing according to claim 1, wherein the temperature raising device includes a ring-shaped member that covers an outer side in the axial direction of the bearing space, and a heater is attached to an inner surface in the axial direction of the ring-shaped member. 請求項2において、前記リング状部品は、前記外輪に固定されている転がり軸受。   The rolling bearing according to claim 2, wherein the ring-shaped component is fixed to the outer ring. 請求項2ないし請求項3のいずれか1項において、前記昇温装置は、前記軸受空間、または軸受空間と前記リング状部品間の昇温装置内空間の温度を検知し、その検知結果に応じて前記ヒータをオンオフ切り替える検温切替手段を有する転がり軸受。   4. The temperature raising device according to claim 2, wherein the temperature raising device detects a temperature of the bearing space or a space in the temperature raising device between the bearing space and the ring-shaped part, and according to the detection result. A rolling bearing having temperature detection switching means for switching the heater on and off. 請求項4において、前記切替手段はサーモスタットである転がり軸受。   5. A rolling bearing according to claim 4, wherein the switching means is a thermostat. 請求項2または請求項5において、前記リング状部品は、前記軸受空間および前記昇温装置内空間を外部から遮蔽するシ−ル機能を有する転がり軸受。   6. The rolling bearing according to claim 2, wherein the ring-shaped component has a seal function that shields the bearing space and the space inside the temperature raising device from the outside. 請求項6において、前記昇温装置内空間に前記潤滑剤を封入した転がり軸受。   The rolling bearing according to claim 6, wherein the lubricant is sealed in the space inside the temperature raising device. 請求項1ないし請求項7のいずれか1項において、前記リング状部品は金属製であり、かつ前記ヒータは電熱式であり、前記内輪および外輪における少なくとも前記リング状部品が接触する箇所に絶縁被膜を設けた転がり軸受。   The ring-shaped component according to any one of claims 1 to 7, wherein the ring-shaped component is made of metal, and the heater is an electrothermal type, and an insulating coating is provided at a position where the ring-shaped component contacts at least in the inner ring and the outer ring. Rolling bearing provided with 請求項1ないし請求項7のいずれか1項において、前記内輪または外輪に軸受外部からの電流を遮断する絶縁被膜を設けた転がり軸受。   The rolling bearing according to any one of claims 1 to 7, wherein the inner ring or the outer ring is provided with an insulating coating that blocks current from outside the bearing.
JP2007273381A 2007-10-22 2007-10-22 Rolling bearing Pending JP2009103159A (en)

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CN102287609A (en) * 2011-07-12 2011-12-21 江苏金风风电设备制造有限公司 Low-temperature rotating device and operating method of same
JP5285707B2 (en) * 2010-02-19 2013-09-11 三菱重工業株式会社 Method for starting rotating machine and method for starting wind power generator
CN103390954A (en) * 2012-05-11 2013-11-13 珠海格力电器股份有限公司 Motor, air conditioner and control method of air conditioner
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WO2016079875A1 (en) * 2014-11-21 2016-05-26 株式会社ハーモニック・ドライブ・システムズ Strain wave gearing device
DE102015007593A1 (en) * 2015-06-16 2016-12-22 Audi Ag Wheel bearing for a vehicle, in particular for a motor vehicle
FR3039867A1 (en) * 2015-08-04 2017-02-10 Skf Ab BEARING BOX COMPRISING A BEARING AND HEATING MEANS OF THE BEARING, AND BOGIE COMPRISING SUCH A BOX

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JP5285707B2 (en) * 2010-02-19 2013-09-11 三菱重工業株式会社 Method for starting rotating machine and method for starting wind power generator
US8887868B2 (en) 2010-02-19 2014-11-18 Mitsubishi Heavy Industries, Ltd. Starting method for rotating machine and starting method for wind turbine generator
CN102287609A (en) * 2011-07-12 2011-12-21 江苏金风风电设备制造有限公司 Low-temperature rotating device and operating method of same
CN103390954A (en) * 2012-05-11 2013-11-13 珠海格力电器股份有限公司 Motor, air conditioner and control method of air conditioner
CN103390954B (en) * 2012-05-11 2015-12-16 珠海格力电器股份有限公司 Motor, air conditioner and control method of air conditioner
DE102013001116B4 (en) * 2013-01-23 2015-09-03 Audi Ag Wheel bearing for the rotational mounting of a wheel hub of a vehicle
DE102013007983A1 (en) * 2013-05-10 2014-11-13 Audi Ag Rolling device
DE102013007983B4 (en) * 2013-05-10 2015-09-03 Audi Ag Rolling device
WO2016079875A1 (en) * 2014-11-21 2016-05-26 株式会社ハーモニック・ドライブ・システムズ Strain wave gearing device
JPWO2016079875A1 (en) * 2014-11-21 2017-07-27 株式会社ハーモニック・ドライブ・システムズ Wave gear device
KR101929210B1 (en) * 2014-11-21 2018-12-14 가부시키가이샤 하모닉 드라이브 시스템즈 Strain wave gearing device
TWI656288B (en) * 2014-11-21 2019-04-11 日商和諧驅動系統股份有限公司 Harmonic gear unit
US10508729B2 (en) 2014-11-21 2019-12-17 Harmonic Drive Systems Inc. Strain wave gearing device
DE102015007593A1 (en) * 2015-06-16 2016-12-22 Audi Ag Wheel bearing for a vehicle, in particular for a motor vehicle
DE102015007593B4 (en) * 2015-06-16 2019-04-04 Audi Ag Wheel bearing for a vehicle, in particular for a motor vehicle
FR3039867A1 (en) * 2015-08-04 2017-02-10 Skf Ab BEARING BOX COMPRISING A BEARING AND HEATING MEANS OF THE BEARING, AND BOGIE COMPRISING SUCH A BOX

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