JP2013047557A - Thrust bearing - Google Patents

Thrust bearing Download PDF

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JP2013047557A
JP2013047557A JP2011186398A JP2011186398A JP2013047557A JP 2013047557 A JP2013047557 A JP 2013047557A JP 2011186398 A JP2011186398 A JP 2011186398A JP 2011186398 A JP2011186398 A JP 2011186398A JP 2013047557 A JP2013047557 A JP 2013047557A
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Prior art keywords
thrust bearing
inner ring
raceway surface
ring
outer ring
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JP2011186398A
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JP2013047557A5 (en
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Masato Miyamoto
真人 宮本
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NSK Ltd
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NSK Ltd
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Priority to JP2011186398A priority Critical patent/JP2013047557A/en
Priority to CN2012100457624A priority patent/CN102966671A/en
Publication of JP2013047557A publication Critical patent/JP2013047557A/en
Publication of JP2013047557A5 publication Critical patent/JP2013047557A5/ja
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Abstract

PROBLEM TO BE SOLVED: To provide a thrust bearing, in which inner and outer rings are prevented from being damaged to achieve a long service life.SOLUTION: The thrust bearing includes: the inner ring having a track surface in the outer peripheral surface thereof and configured to be rotatable; the outer ring having a track surface in the inner peripheral surface thereof and fixed to a housing; a plurality of rolling elements disposed on both track surfaces of the inner ring and the outer ring so as to be rotatable; and a retainer for retaining the plurality of rolling elements in a circumferential direction at regular intervals. In the thrust bearing, at least the inner ring is formed of high cleanliness steel and subjected to special heat treatment.

Description

本発明は、油圧式無段変速機や油圧ポンプ、油圧モータ等に使用されるスラスト軸受に関する。   The present invention relates to a thrust bearing used in a hydraulic continuously variable transmission, a hydraulic pump, a hydraulic motor, and the like.

油圧式無段変速機や油圧ポンプ、油圧モータ等では、軸受としてスラスト軸受が組み込まれている。例えば、コンバインやトラクター、田植え機、芝刈り機等の農業機械では、ギアミッション方式から油圧式無段変速機への移行が進んでいる。このような油圧式無段変速機では、軸の回転力を油圧に変換させる際、または油圧を軸の回転力に変換させる際のピストン圧力を受ける部分に、スラスト軸受が採用されている(例えば特許文献1参照)。   In a hydraulic continuously variable transmission, a hydraulic pump, a hydraulic motor, and the like, a thrust bearing is incorporated as a bearing. For example, in an agricultural machine such as a combine, a tractor, a rice planting machine, and a lawn mower, a shift from a gear mission system to a hydraulic continuously variable transmission is progressing. In such a hydraulic continuously variable transmission, a thrust bearing is employed in a portion that receives piston pressure when converting the rotational force of the shaft into hydraulic pressure or when converting the hydraulic pressure into rotational force of the shaft (for example, Patent Document 1).

特開2003−194183号公報JP 2003-194183 A

近年、油圧式無段変速機の小型化に伴って、それに組み込まれるスラスト軸受も小型化され、高荷重条件下で使用されている。そのため、スラスト軸受では、内外輪の軌道面、特に荷重の加わる内輪の軌道面に剥離が発生しやすく、場合によっては内輪あるいは内外輪が破損することがある。   In recent years, along with miniaturization of hydraulic continuously variable transmissions, thrust bearings incorporated therein have also been miniaturized and used under high load conditions. For this reason, in a thrust bearing, the raceway surfaces of the inner and outer rings, in particular, the raceway surface of the inner ring to which a load is applied, is likely to be peeled off, and the inner ring or the inner and outer rings may be damaged in some cases.

また、油圧式無段変速機に限らず、油圧ポンプや油圧モータにおいても同様の傾向にある。   Further, not only the hydraulic continuously variable transmission but also a hydraulic pump and a hydraulic motor have the same tendency.

本発明は上記事情に鑑みてなされたものであり、その目的は、内外輪の破損を防止し、長寿命のスラスト軸受を提供することにある。   The present invention has been made in view of the above circumstances, and an object of the present invention is to provide a long-life thrust bearing that prevents damage to the inner and outer rings.

上記目的を達成するために、本発明は、外周面に軌道面を有し、回転可能な内輪と、内周面に軌道面を有し、ハウジングに固定される外輪と、内輪の軌道面及び外輪の軌道面に転動自在に配置される複数の転動体と、複数の転動体を円周方向に亘って等間隔に保持する保持器とを備えるスラスト軸受において、少なくとも前記内輪が高清浄度鋼製で、かつ、特殊熱処理が施されていることを特徴とするスラスト軸受を提供する。   In order to achieve the above object, the present invention has a raceway surface on the outer peripheral surface, a rotatable inner ring, an outer ring having a raceway surface on the inner peripheral surface and fixed to the housing, a raceway surface of the inner ring, and In a thrust bearing comprising a plurality of rolling elements that are rotatably arranged on a raceway surface of an outer ring and a cage that holds the plurality of rolling elements at equal intervals in the circumferential direction, at least the inner ring has a high cleanliness. Provided is a thrust bearing made of steel and subjected to special heat treatment.

本発明のスラスト軸受では、少なくとも内輪、好ましくは内外輪が高清浄度鋼製で、更に特殊熱処理が施されており、一般的材料であるSUJ2等と比べて高強度で、軌道面の剥離を抑える効果が高く、破損が抑えられて長寿命となる。   In the thrust bearing of the present invention, at least the inner ring, preferably the inner and outer rings, are made of high cleanliness steel and further subjected to special heat treatment, and have higher strength than the general material SUJ2, etc. The effect of suppressing is high, damage is suppressed, and long life is achieved.

油圧式無段変速機の一例を示す断面図である。It is sectional drawing which shows an example of a hydraulic continuously variable transmission. スラスト軸受の一例を示す断面図である。It is sectional drawing which shows an example of a thrust bearing. 試験1の結果を示すグラフである。6 is a graph showing the results of Test 1. 試験2の結果を示すグラフである。6 is a graph showing the results of Test 2.

以下、油圧式無段変速機を例示して、本発明のスラスト軸受について詳細に説明する。   Hereinafter, the thrust bearing of the present invention will be described in detail by exemplifying a hydraulic continuously variable transmission.

図1は油圧式無段変速機の一例を示す断面図であるが、油圧式無段変速機30は、図示しないエンジンから入力軸31に伝達された回転駆動力を油圧力に変換する可変容量ポンプ32と、油圧力を回転駆動力に戻して出力軸40に伝達する可変容量モータ41とを備えており、入力軸31に伝達された回転駆動力を前進側、後進側の駆動力に無段階に変更して出力軸40から出力したり、この出力を停止したりする。   FIG. 1 is a cross-sectional view showing an example of a hydraulic continuously variable transmission. The hydraulic continuously variable transmission 30 is a variable capacity that converts a rotational driving force transmitted from an engine (not shown) to an input shaft 31 into an oil pressure. A pump 32 and a variable displacement motor 41 that returns the hydraulic pressure to the rotational driving force and transmits it to the output shaft 40 are provided, and the rotational driving force transmitted to the input shaft 31 is not used for the forward driving force and the backward driving force. It changes to a stage and outputs from the output shaft 40, or stops this output.

可変容量ポンプ32は、入力軸31と一体回動するシリンダブロック33と、シリンダブロック33の周方向複数箇所に配置され、ピストン室34内を往復動するノーズピストン35と、ガイドブロック36のガイド面に沿って回動する斜板37とを備えている。可変容量ポンプ32は、斜板37が回動操作することで、ノーズピストン35の往復動ストロークを変化し、ピストン室34が吐出する油量を変化している。斜板37には、スラスト軸受10がノーズピストン35の先端部と接触する位置に配置されており、スラスト軸受10は斜板37と共に回動する。   The variable displacement pump 32 includes a cylinder block 33 that rotates integrally with the input shaft 31, a nose piston 35 that is reciprocated in the piston chamber 34, and a guide surface of the guide block 36. And a swash plate 37 rotating along the axis. The variable displacement pump 32 rotates the swash plate 37 to change the reciprocating stroke of the nose piston 35 and change the amount of oil discharged from the piston chamber 34. The thrust bearing 10 is disposed on the swash plate 37 at a position where the thrust bearing 10 contacts the tip of the nose piston 35, and the thrust bearing 10 rotates together with the swash plate 37.

スラスト軸受10は、図2に示すように、内輪軌道面11を有する内輪12と、外輪軌道面13を有する外輪14とを対向配置し、内輪軌道面11と外輪軌道面13との間に、転動体である複数の玉15を転動自在に配置したものである。さらに、スラスト軸受10は、複数の玉15を円周方向に亘って等間隔に保持する保持器16を備える。   As shown in FIG. 2, the thrust bearing 10 includes an inner ring 12 having an inner ring raceway surface 11 and an outer ring 14 having an outer ring raceway surface 13 facing each other, and between the inner ring raceway surface 11 and the outer ring raceway surface 13, A plurality of balls 15 which are rolling elements are arranged so as to be freely rollable. Furthermore, the thrust bearing 10 includes a cage 16 that holds a plurality of balls 15 at equal intervals in the circumferential direction.

また、内輪12は回転可能であり、内輪軌道面11が形成された面とは反対側の端面21にノーズピストン35の先端部が接触する。一方、外輪14は、斜板37に固定される。そのため、スラスト軸受10はノーズピストン35から受ける高荷重を内輪12で受け、玉15を介して、斜板37に固定された外輪14側へ逃がしている。   The inner ring 12 is rotatable, and the tip of the nose piston 35 contacts the end surface 21 opposite to the surface on which the inner ring raceway surface 11 is formed. On the other hand, the outer ring 14 is fixed to the swash plate 37. Therefore, the thrust bearing 10 receives a high load received from the nose piston 35 by the inner ring 12 and escapes to the outer ring 14 side fixed to the swash plate 37 via the ball 15.

本発明では、少なくとも内輪12、好ましくは内輪12及び外輪14を高清浄度鋼製とし、更に特殊熱処理を施す。高清浄度鋼は酸素含有量が少なく、更には鋼中の介在物の粒径も小さいため、軌道面における内部起点剥離の発生を抑えることができる。酸素含有量は少ないほど好ましく、6ppm以下であることがより好ましい。また、介在物の粒径も小さいほど好ましく、30μm以下であることがより好ましい。   In the present invention, at least the inner ring 12, preferably the inner ring 12 and the outer ring 14, are made of high cleanliness steel and further subjected to special heat treatment. High cleanliness steel has a low oxygen content, and the inclusions in the steel also have a small particle size, so that it is possible to suppress the occurrence of internal origin separation on the raceway surface. The smaller the oxygen content, the better, and more preferably 6 ppm or less. Moreover, the particle size of inclusions is preferably as small as possible, and more preferably 30 μm or less.

また、特殊熱処理では浸炭処理、窒化処理または浸炭窒化処理を行い、高清浄度鋼の硬度を高める。特殊熱処理による硬化により、表面起点剥離を抑えることができる。   Further, in the special heat treatment, carburizing treatment, nitriding treatment or carbonitriding treatment is performed to increase the hardness of the high cleanliness steel. Surface-origin peeling can be suppressed by curing by special heat treatment.

尚、玉15は、一般的なSUJ2鋼等をそのまま使用することができるが、特殊熱処理を施して硬化させることが好ましい。更に、高清浄度鋼製としてもよい。   In addition, although the ball | bowl 15 can use general SUJ2 steel etc. as it is, it is preferable to give a special heat processing and harden. Further, it may be made of high cleanliness steel.

また、転動体を玉15に代えてころを用いたスラストころ軸受とすることもできる。   Moreover, it can also be set as the thrust roller bearing which replaced the rolling element with the ball | bowl 15 and used the roller.

更には、上記のように、内輪12はノーズピストン35から高荷重を受けるため、外輪14よりも肉厚にすることもできる。   Furthermore, since the inner ring 12 receives a high load from the nose piston 35 as described above, it can be made thicker than the outer ring 14.

以下に実施例を挙げて本発明を更に説明するが、本発明はこれにより何ら制限されるものではない。   The present invention will be further described below with reference to examples, but the present invention is not limited thereto.

(試験1)
高清浄度鋼を用いて日本精工株式会社製軸受「6206」の内輪及び外輪を作製し、試験軸受Aとした。また、SUJ2製の内輪及び外輪からなる同軸受を、試験軸受Bとした。尚、試験軸受A、Bとも、玉はSUJ2製で、特殊熱処理を施したものを用い、同種の潤滑剤を封入した。そして、試験軸受A、Bを、等価荷重Pと基本動定格荷重Cとの比(P/C):0.71、速度:3900rpmにて回転させ、寿命を比較した。結果を図3に示すが、高清浄度鋼を用いることにより、軌道面の剥離が抑えられて寿命が5倍以上に延びている。
(Test 1)
An inner ring and an outer ring of a bearing “6206” manufactured by Nippon Seiko Co., Ltd. were produced using high cleanliness steel, and designated as test bearing A. Further, the same bearing composed of the inner and outer rings made of SUJ2 was designated as test bearing B. The test bearings A and B were made of SUJ2 and subjected to special heat treatment, and the same type of lubricant was enclosed. Then, the test bearings A and B were rotated at a ratio (P / C) of the equivalent load P to the basic dynamic load rating C: 0.71, and at a speed of 3900 rpm, and the lifetimes were compared. The result is shown in FIG. 3, and by using high cleanliness steel, peeling of the raceway surface is suppressed and the life is extended five times or more.

(試験2)
日本精工株式会社製軸受「6206」の内輪及び外輪をSUJ2製とし、更に特殊熱処理(浸炭窒化処理)してビッカース硬さ540Hvとし、試験軸受Cとした。また、SUJ2製の内輪及び外輪からなる同軸受を試験軸受Dとした。尚、試験軸受C、Dとも、玉はSUJ2製で、特殊熱処理を施したものを用い、同種の潤滑剤を封入した。そして、試験軸受C、Dを、コンタミ条件下(粒径74〜147μm)、等価荷重Pと基本動定格荷重Cとの比(P/C):0.32、速度:3000rpmにて回転させ、寿命を比較した。結果を図4に示すが、特殊熱処理を施すことにより、軌道面の剥離が抑えられて寿命が2倍以上に延びている。
(Test 2)
An inner ring and an outer ring of a bearing “6206” manufactured by NSK Ltd. were made of SUJ2, and further subjected to special heat treatment (carbonitriding treatment) to obtain a Vickers hardness of 540 Hv, and a test bearing C was obtained. Further, the bearing comprising the inner and outer rings made of SUJ2 was designated as test bearing D. The test bearings C and D were made of SUJ2 and subjected to special heat treatment, and sealed with the same type of lubricant. Then, the test bearings C and D were rotated at a contamination condition (particle diameter 74 to 147 μm), the ratio of the equivalent load P to the basic dynamic load rating C (P / C): 0.32, and the speed: 3000 rpm. Lifespan was compared. The result is shown in FIG. 4, and by performing special heat treatment, peeling of the raceway surface is suppressed, and the life is extended more than twice.

上記の試験1及び試験2から、内輪及び外輪を高清浄度鋼製とし、特殊熱処理を施すことにより、剥離発生が抑えられて長寿命になることがわかる。   From Test 1 and Test 2 described above, it can be seen that the inner ring and the outer ring are made of high cleanliness steel and subjected to special heat treatment to suppress the occurrence of peeling and to have a long life.

10 スラスト軸受
12 内輪
14 外輪
15 玉
16 保持器
30 油圧式無段変速機
DESCRIPTION OF SYMBOLS 10 Thrust bearing 12 Inner ring 14 Outer ring 15 Ball 16 Cage 30 Hydraulic continuously variable transmission

Claims (1)

外周面に軌道面を有し、回転可能な内輪と、内周面に軌道面を有し、ハウジングに固定される外輪と、内輪の軌道面及び外輪の軌道面に転動自在に配置される複数の転動体と、複数の転動体を円周方向に亘って等間隔に保持する保持器とを備えるスラスト軸受において、
少なくとも前記内輪が高清浄度鋼製で、かつ、特殊熱処理が施されていることを特徴とするスラスト軸受。
A raceway surface is provided on the outer circumferential surface, a rotatable inner ring, a raceway surface on the inner circumference surface, an outer ring fixed to the housing, a raceway surface of the inner ring, and a raceway surface of the outer ring are arranged to be rotatable. In a thrust bearing comprising a plurality of rolling elements and a cage that holds the plurality of rolling elements at equal intervals over the circumferential direction,
A thrust bearing, wherein at least the inner ring is made of high cleanliness steel and is subjected to special heat treatment.
JP2011186398A 2011-08-29 2011-08-29 Thrust bearing Pending JP2013047557A (en)

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JP2011186398A JP2013047557A (en) 2011-08-29 2011-08-29 Thrust bearing
CN2012100457624A CN102966671A (en) 2011-08-29 2012-02-24 Thrust bearing

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JP2011186398A JP2013047557A (en) 2011-08-29 2011-08-29 Thrust bearing

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JP2013047557A5 JP2013047557A5 (en) 2014-10-23

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Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0525587A (en) * 1991-07-18 1993-02-02 Nippon Seiko Kk Bearing steel
JPH05196047A (en) * 1991-09-20 1993-08-06 Nippon Seiko Kk Rolling bearing
JPH07217660A (en) * 1994-01-31 1995-08-15 Nippon Seiko Kk Thrust ball bearing
JP2000345982A (en) * 1999-06-03 2000-12-12 Shiro Sawa Turning joint
JP2002220638A (en) * 2001-01-26 2002-08-09 Kawasaki Steel Corp Bearing material
JP2003035656A (en) * 2001-07-25 2003-02-07 Koyo Seiko Co Ltd Method for estimating lifetime of bearing steel
JP2003194183A (en) * 2001-12-27 2003-07-09 Kubota Corp Hydrostatic continuously variable transmission
US20050041899A1 (en) * 2002-02-12 2005-02-24 Toshihisa Ohata Pulley bearing for engine auxiliares
JP2006063402A (en) * 2004-08-27 2006-03-09 Sanyo Special Steel Co Ltd Steel used in parts for machinery superior in rolling fatigue life

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ES285781A1 (en) * 1962-06-08 1963-08-16 Cambi Idraulici Badalini Spa Continuous hydraulic change of energy recovery, particularly adapted for automobile vehicles (Machine-translation by Google Translate, not legally binding)
US7287910B2 (en) * 2001-09-03 2007-10-30 Ntn Corporation Angular ball bearing and rolling bearing
JP2003277882A (en) * 2002-03-26 2003-10-02 Yamaha Motor Co Ltd Iron alloy parts and production method thereof

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0525587A (en) * 1991-07-18 1993-02-02 Nippon Seiko Kk Bearing steel
JPH05196047A (en) * 1991-09-20 1993-08-06 Nippon Seiko Kk Rolling bearing
JPH07217660A (en) * 1994-01-31 1995-08-15 Nippon Seiko Kk Thrust ball bearing
JP2000345982A (en) * 1999-06-03 2000-12-12 Shiro Sawa Turning joint
JP2002220638A (en) * 2001-01-26 2002-08-09 Kawasaki Steel Corp Bearing material
JP2003035656A (en) * 2001-07-25 2003-02-07 Koyo Seiko Co Ltd Method for estimating lifetime of bearing steel
JP2003194183A (en) * 2001-12-27 2003-07-09 Kubota Corp Hydrostatic continuously variable transmission
US20050041899A1 (en) * 2002-02-12 2005-02-24 Toshihisa Ohata Pulley bearing for engine auxiliares
JP2006063402A (en) * 2004-08-27 2006-03-09 Sanyo Special Steel Co Ltd Steel used in parts for machinery superior in rolling fatigue life

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