JP2006112454A - Bearing device with sensor - Google Patents

Bearing device with sensor Download PDF

Info

Publication number
JP2006112454A
JP2006112454A JP2004297726A JP2004297726A JP2006112454A JP 2006112454 A JP2006112454 A JP 2006112454A JP 2004297726 A JP2004297726 A JP 2004297726A JP 2004297726 A JP2004297726 A JP 2004297726A JP 2006112454 A JP2006112454 A JP 2006112454A
Authority
JP
Japan
Prior art keywords
sensor
encoder
speed
magnet
bearing device
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP2004297726A
Other languages
Japanese (ja)
Inventor
Ikunori Sakatani
郁紀 坂谷
Tomoyuki Yanagisawa
知之 柳沢
Teruhiko Fujisaki
輝彦 藤崎
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
NSK Ltd
Original Assignee
NSK Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by NSK Ltd filed Critical NSK Ltd
Priority to JP2004297726A priority Critical patent/JP2006112454A/en
Publication of JP2006112454A publication Critical patent/JP2006112454A/en
Pending legal-status Critical Current

Links

Images

Classifications

    • 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
    • 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
    • F16C33/80Labyrinth sealings
    • 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
    • F16C41/00Other accessories, e.g. devices integrated in the bearing not relating to the bearing function as such
    • F16C41/007Encoders, e.g. parts with a plurality of alternating magnetic poles
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C19/00Bearings with rolling contact, for exclusively rotary movement
    • F16C19/02Bearings with rolling contact, for exclusively rotary movement with bearing balls essentially of the same size in one or more circular rows
    • F16C19/04Bearings with rolling contact, for exclusively rotary movement with bearing balls essentially of the same size in one or more circular rows for radial load mainly
    • F16C19/06Bearings with rolling contact, for exclusively rotary movement with bearing balls essentially of the same size in one or more circular rows for radial load mainly with a single row or balls

Abstract

<P>PROBLEM TO BE SOLVED: To provide a bearing device with a sensor, capable of reducing the size by shortening the dimension in the axial direction, improving deflection accuracy of an encoder and reducing cost. <P>SOLUTION: This bearing device 10 with the sensor is provided with a rolling bearing 11 having an outer ring 13, an inner ring 14 and a plurality of rolling elements 15 arranged between the outer ring 13 and the inner ring 14 and with a speed detecting device 12 having the encoder 19 for speed pulse generation, a speed detecting element 20 for speed pulse detection and a magnet 21 for magnetic flux generation. The speed detecting device 12 is arranged between the outer ring 13 and the inner ring 14. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、例えば鉄道車両や自動車等に組み込まれる転がり軸受の回転速度を検出するセンサを備えたセンサ付軸受装置に関する。   The present invention relates to a sensor-equipped bearing device that includes a sensor that detects the rotational speed of a rolling bearing incorporated in, for example, a railway vehicle or an automobile.

従来のこの種のセンサ付軸受装置としては、例えば図4に示すものが知られている(例えば特許文献1参照)。   As this type of conventional bearing device with a sensor, for example, the one shown in FIG. 4 is known (see, for example, Patent Document 1).

このセンサ付軸受装置は、外輪101と内輪102との間に複数の転動体103が保持器104を介して円周方向に転動可能に配設され、外輪101の軸方向一端部の内周面に形成された周溝105aに密封装置106が装着された転がり軸受107と、該転がり軸受107の軸方向他端部側に配置された速度検出装置108とを備えている。   In this sensor-equipped bearing device, a plurality of rolling elements 103 are arranged between an outer ring 101 and an inner ring 102 so as to be able to roll in the circumferential direction via a cage 104, and the inner circumference of one axial end portion of the outer ring 101 is arranged. A rolling bearing 107 in which a sealing device 106 is mounted in a circumferential groove 105 a formed on the surface, and a speed detection device 108 disposed on the other axial end side of the rolling bearing 107 are provided.

この速度検出装置108は、速度パルス発生面を軸方向外方に向けて配置された多極磁石製エンコーダ110と、該エンコーダ110に対して軸方向に対向して配置された速度センサ111とを備える。エンコーダ110は、内輪102の端部外周面に金属スクリーン109を介して取り付けられ、速度センサ111はセンサキャリヤ112内に収容された状態で保持装置113によって保持される。保持装置113は、外輪101の軸方向他端部の内周面に形成された周溝105bに溶接等によって固定される。
特開平7−311212号公報
The speed detector 108 includes a multipolar magnet encoder 110 disposed with a speed pulse generation surface facing outward in the axial direction, and a speed sensor 111 disposed facing the encoder 110 in the axial direction. Prepare. The encoder 110 is attached to the outer peripheral surface of the end portion of the inner ring 102 via a metal screen 109, and the speed sensor 111 is held by a holding device 113 while being housed in the sensor carrier 112. The holding device 113 is fixed to a circumferential groove 105b formed on the inner circumferential surface of the other axial end portion of the outer ring 101 by welding or the like.
Japanese Patent Laid-Open No. 7-311212

ところで、上記特許文献1に記載のセンサ付軸受装置においては、エンコーダ110及び速度センサ111が転がり軸受107の軸方向の端面から突出して配置されているため、軸方向寸法が長くなり、小型化を妨げる原因になる。   By the way, in the sensor-equipped bearing device described in Patent Document 1, since the encoder 110 and the speed sensor 111 are disposed so as to protrude from the axial end face of the rolling bearing 107, the axial dimension becomes longer and the size reduction is achieved. It becomes a cause to hinder.

また、多極磁石製のエンコーダ110は、内輪102の端部外周面に圧入等によって取り付けられた金属スクリーン109を介して固定されているため、エンコーダ110の端面振れ等が発生し、エンコーダ110の振れ精度を向上させることが難しいという問題がある。   Further, since the encoder 110 made of a multipolar magnet is fixed via a metal screen 109 attached to the outer peripheral surface of the end portion of the inner ring 102 by press-fitting or the like, the end face shake of the encoder 110 occurs, and the encoder 110 There is a problem that it is difficult to improve runout accuracy.

更に、金属スクリーン109、センサキャリヤ112及び保持装置113等の多数の部品が必要となるため、その分コストが増加するという問題がある。   Further, since a large number of parts such as the metal screen 109, the sensor carrier 112, and the holding device 113 are required, there is a problem that the cost increases accordingly.

本発明はこのような不都合を解消するためになされたものであり、その目的は、軸方向寸法を短くして小型化を図ることができるセンサ付軸受装置を提供することにある。更に、本発明の目的は、エンコーダの振れ精度の向上を図ることができ、コスト低減を図ることができるセンサ付軸受装置を提供することにある。   The present invention has been made in order to eliminate such inconveniences, and an object of the present invention is to provide a sensor-equipped bearing device that can be reduced in size by reducing the axial dimension. Furthermore, an object of the present invention is to provide a sensor-equipped bearing device that can improve the deflection accuracy of the encoder and can reduce the cost.

本発明の上記目的は、下記構成によって達成される。
(1) 固定輪と、回転輪と、該固定輪と該回転輪間に配置された複数の転動体とを有する転がり軸受と、速度パルス発生用のエンコーダと速度パルス検出用の速度検出素子と磁束発生用の磁石とを有する速度検出装置と、を備えるセンサ付軸受装置であって、
前記速度検出装置は、前記固定輪と前記回転輪との間に設けられることを特徴とするセンサ付軸受装置。
(2) 前記エンコーダは、円周方向に凹凸状に形成されることを特徴とする(1)に記載のセンサ付軸受装置。
(3) 前記エンコーダは、前記回転輪の一部に直接設けられることを特徴とする(2)に記載のセンサ付軸受装置。
(4) 前記速度検出素子は、前記磁石と一体に固着されることを特徴とする(1)〜(3)のいずれかに記載のセンサ付軸受装置。
(5) 前記速度検出素子と前記磁石とは、樹脂でモールドされることを特徴とする(4)に記載のセンサ付軸受装置。
(6) 前記速度検出装置は、さらに磁気バイパス用の磁気回路を有することを特徴とする(1)〜(5)のいずれかに記載のセンサ付軸受装置。
The above object of the present invention is achieved by the following configurations.
(1) a rolling bearing having a fixed wheel, a rotating wheel, and a plurality of rolling elements disposed between the fixed wheel and the rotating wheel, an encoder for generating a speed pulse, and a speed detecting element for detecting a speed pulse; A speed detecting device having a magnet for generating magnetic flux, and a sensor-equipped bearing device,
The speed detecting device is provided between the fixed wheel and the rotating wheel.
(2) The sensor-equipped bearing device according to (1), wherein the encoder is formed in an uneven shape in a circumferential direction.
(3) The sensor-equipped bearing device according to (2), wherein the encoder is directly provided on a part of the rotating wheel.
(4) The sensor-equipped bearing device according to any one of (1) to (3), wherein the speed detection element is fixed integrally with the magnet.
(5) The sensor-equipped bearing device according to (4), wherein the speed detection element and the magnet are molded with resin.
(6) The sensor-equipped bearing device according to any one of (1) to (5), wherein the speed detection device further includes a magnetic circuit for magnetic bypass.

本発明のセンサ付軸受装置によれば、速度検出装置としての、速度パルス発生用のエンコーダと、速度パルス検出用の速度検出素子と、磁束発生用の磁石とが、固定輪と回転輪との間に設けられるので、軸方向寸法が短くなって小型化を図ることができる。   According to the sensor-equipped bearing device of the present invention, a speed pulse generating encoder, a speed pulse detecting speed detecting element, and a magnetic flux generating magnet as a speed detecting device include a fixed ring and a rotating ring. Since it is provided in between, the axial dimension is shortened, and the size can be reduced.

また、エンコーダを円周方向に凹凸状に形成して回転輪の一部に直接設けることにより、エンコーダの振れ精度の向上を図ることができると共に、部品点数が削減されて低コスト化を図ることができ、しかも高価な磁石は速度検出素子側の一部分に磁束発生用の磁石を使用すれば足りるため、更なる低コスト化を図ることができる。   Also, by forming the encoder in an uneven shape in the circumferential direction and providing it directly on a part of the rotating wheel, it is possible to improve the deflection accuracy of the encoder and reduce the number of parts and reduce the cost. In addition, an expensive magnet can be obtained by using a magnet for generating a magnetic flux as a part of the speed detecting element side, so that further cost reduction can be achieved.

更に、速度検出素子を磁石と一体に固着して両者を樹脂でモールドすることにより、モールド部分を固定輪に圧入や接着等の手段により取り付けて組み立てることができるので、組立性が向上して更なる低コスト化を図ることができる。
また、磁気バイパス用の磁気回路を設けることで、磁束発生用の磁石の体積を小さくすることができるので、更なる低コスト化を図ることができる。
Furthermore, by fixing the speed detection element integrally with the magnet and molding both with resin, the mold part can be attached to the fixed ring by means of press-fitting or bonding, so that the assemblability is improved and further improved. The cost can be reduced.
Moreover, since the volume of the magnetic flux generating magnet can be reduced by providing a magnetic circuit for magnetic bypass, further cost reduction can be achieved.

以下、本発明のセンサ付軸受装置に係る各実施形態について、図面を参照して詳細に説明する。   Hereinafter, each embodiment concerning the bearing device with a sensor of the present invention is described in detail with reference to drawings.

(第1実施形態)
まず、図1及び図2を参照して、本発明の第1実施形態であるセンサ付軸受装置について説明する。
図1に示すように、本実施形態のセンサ付軸受装置10は、転がり軸受11と速度検出装置12とを備える。転がり軸受11は、固定輪である外輪13と、回転輪である内輪14と、外輪13の外輪軌道面13aと内輪14の内輪軌道面14aとの間に転動可能に配置された複数の転動体15と、複数の転動体15を円周方向に所定の間隔で保持する複数のポケットを有する保持器16と、外輪13の軸方向一端部の内周面に形成された周溝17に装着される密封装置18とを有する。また、速度検出装置12は、転動体15に対して密封装置18と反対側の軸方向他端部で外輪13の内周面と内輪14の外周面との間に設けられる。
(First embodiment)
First, with reference to FIG.1 and FIG.2, the bearing apparatus with a sensor which is 1st Embodiment of this invention is demonstrated.
As shown in FIG. 1, the sensor-equipped bearing device 10 of the present embodiment includes a rolling bearing 11 and a speed detection device 12. The rolling bearing 11 includes a plurality of rolling wheels disposed so as to be able to roll between an outer ring 13 that is a fixed ring, an inner ring 14 that is a rotating ring, and an outer ring raceway surface 13 a of the outer ring 13 and an inner ring raceway surface 14 a of the inner ring 14. Attached to a moving body 15, a cage 16 having a plurality of pockets for holding the plurality of rolling elements 15 at predetermined intervals in the circumferential direction, and a circumferential groove 17 formed on an inner circumferential surface of one end portion in the axial direction of the outer ring 13 And the sealing device 18 to be operated. The speed detection device 12 is provided between the inner peripheral surface of the outer ring 13 and the outer peripheral surface of the inner ring 14 at the other axial end opposite to the sealing device 18 with respect to the rolling element 15.

外輪13と内輪14は、略同一な軸方向寸法を有しており、各軌道面13a,14aは、各軸方向中心に対して密封装置18が配置される軸方向一端部寄りに形成される。即ち、外輪13と内輪14では、各軌道面13a,14aの中心から密封装置18が配置される軸方向一端部の端面までの軸方向寸法Lが、各軌道面13a,14aの中心から軸方向他端部の端面までの軸方向寸法Lより短く設定されており、軸方向他端部における外輪13の内周面と内輪14の外周面との間には、速度検出装置12を設けるための空間が確保される。 The outer ring 13 and the inner ring 14 have substantially the same axial dimension, and each raceway surface 13a, 14a is formed near one axial end where the sealing device 18 is disposed with respect to each axial center. . That is, the outer ring 13 and the inner ring 14, the raceway surfaces 13a, the axial dimension L 1 from the center of the 14a to the end surface of one axial end of the sealing device 18 is arranged, axially from the center of each raceway surfaces 13a, 14a is set shorter than the axial dimension L 2 to the end face of the direction other end, between the inner and outer circumferential surfaces of the inner ring 14 of the outer ring 13 in the other axial end portion is provided with a speed detection device 12 Space is secured.

速度検出装置12は、速度パルス発生用のエンコーダ19と、速度パルス検出用の速度検出素子20と、磁束発生用の磁石21と、速度検出素子20及び磁石21をモールドする樹脂22と、速度検出素子20からの検出信号を外部へ送信するリード23とを備える。   The speed detection device 12 includes an encoder 19 for generating a speed pulse, a speed detecting element 20 for detecting a speed pulse, a magnet 21 for generating a magnetic flux, a resin 22 for molding the speed detecting element 20 and the magnet 21, and speed detection. And a lead 23 for transmitting a detection signal from the element 20 to the outside.

エンコーダ19は内輪14の軸方向他端部の外周面に例えば切削加工等によって円周方向に沿って等間隔で凹凸形状を直接加工することにより形成され、加工後の凹凸部には研磨処理が施されている。   The encoder 19 is formed on the outer peripheral surface of the other end portion in the axial direction of the inner ring 14 by directly processing the concave and convex shape at equal intervals along the circumferential direction by, for example, cutting, and the processed concave and convex portion is subjected to a polishing process. It has been subjected.

速度検出素子20は、磁石21と接着等により一体に固定されている。速度検出素子20及び磁石21は全体が射出成形やポッティングにより樹脂22でモールドされてリング状のセンサユニット24を構成しており、該センサユニット24は速度検出素子20をエンコーダ19に対して径方向に対向させた状態で外輪13の軸方向他端部の内周面に圧入や接着等により取り付けられている。   The speed detection element 20 is integrally fixed to the magnet 21 by adhesion or the like. The speed detection element 20 and the magnet 21 are entirely molded with a resin 22 by injection molding or potting to form a ring-shaped sensor unit 24. The sensor unit 24 moves the speed detection element 20 in the radial direction with respect to the encoder 19. Is attached to the inner peripheral surface of the other end portion in the axial direction of the outer ring 13 by press-fitting or bonding.

このように取り付けられたセンサユニット24では、樹脂22によって形成される軸方向内側面22aがエンコーダ19より軸方向内方に位置しており、軸方向内側面22a寄りのセンサユニット24の内周面と、これに対向するエンコーダ19近傍の内輪14の外周面との間にラビリンスシール25を構成する。   In the sensor unit 24 attached in this way, the axial inner side surface 22a formed by the resin 22 is positioned axially inward from the encoder 19, and the inner peripheral surface of the sensor unit 24 near the axial inner side surface 22a. And a labyrinth seal 25 is formed between the inner ring 14 and the outer peripheral surface in the vicinity of the encoder 19 facing the encoder 19.

なお、樹脂22としては、例えばエンジニアリングプラスチックであるPPS,66ナイロン,46ナイロン等を使用することができ、この場合、ガラスファイバー等を入れて強度を向上させるようにしてもよい。また、磁石21としては、例えばネオジやフェライト磁石の金属磁石やプラスチック磁石等を使用することができる。   As the resin 22, for example, PPS, 66 nylon, 46 nylon or the like, which is an engineering plastic, can be used. In this case, glass fiber or the like may be added to improve the strength. Moreover, as the magnet 21, for example, a metal magnet such as neodymium or ferrite magnet, a plastic magnet, or the like can be used.

リード23は、センサユニット24の樹脂22内で屈曲した後、一部が樹脂22から軸方向外方に突出してコネクタのピン23aとされており、ピン23aの周辺部は雌コネクタが固定できるように樹脂22でコネクタ26の形状に形成されている(図2参照)。これにより、コネクタを別途に設ける必要をなくして、低コスト化が図られている。   After the lead 23 is bent in the resin 22 of the sensor unit 24, a part of the lead 23 protrudes axially outward from the resin 22 to form a connector pin 23a, and a female connector can be fixed to the peripheral portion of the pin 23a. The resin 22 is formed into the shape of the connector 26 (see FIG. 2). This eliminates the need to provide a separate connector, thereby reducing the cost.

そして、速度検出装置12における磁束は、磁石21→内輪14→転動体15→外輪13→磁石21と流れ、内輪14が回転すると、エンコーダ19が回転して速度検出素子20を透過する磁束が変化し、この磁束の変化量に基づいて回転速度を検出することができる。また、図1に示した磁石の配置を逆(N極が上側)にしても、磁束の流れが逆になるだけで、同様の効果を得ることができる。   The magnetic flux in the speed detection device 12 flows in the order of the magnet 21 → the inner ring 14 → the rolling element 15 → the outer ring 13 → the magnet 21. When the inner ring 14 rotates, the magnetic flux transmitted through the speed detection element 20 changes as the encoder 19 rotates. The rotational speed can be detected based on the amount of change in the magnetic flux. Further, even if the arrangement of the magnets shown in FIG. 1 is reversed (N pole is on the upper side), the same effect can be obtained only by reversing the flow of magnetic flux.

従って、本実施形態のセンサ付軸受装置10では、転がり軸受11の外輪13と内輪14との間に、速度検出装置12としての、速度パルス発生用のエンコーダ19と、速度パルス検出用の速度検出素子20と、磁束発生用の磁石21とが設けられるので、軸方向寸法が短くなって小型化を図ることができる。   Accordingly, in the sensor-equipped bearing device 10 of the present embodiment, the speed pulse generating encoder 19 as the speed detection device 12 and the speed detection for speed pulse detection are provided between the outer ring 13 and the inner ring 14 of the rolling bearing 11. Since the element 20 and the magnet 21 for generating magnetic flux are provided, the axial dimension can be shortened and the size can be reduced.

また、エンコーダ19は、内輪14の端部外周面に例えば切削加工等によって円周方向に沿って凹凸形状を直接加工し、加工後の凹凸部に研磨処理を施すことで形成されるので、内輪軌道面14aとエンコーダ19の外周面との同軸度の精度が高くなってエンコーダ19の外周面の振れを略ゼロにすることができ、これにより、エンコーダ19の振れ精度を向上することができる。   Further, the encoder 19 is formed by directly processing the uneven shape on the outer peripheral surface of the end portion of the inner ring 14 along the circumferential direction by, for example, cutting, and polishing the processed uneven portion. The accuracy of the coaxiality between the raceway surface 14a and the outer peripheral surface of the encoder 19 is increased, and the deflection of the outer peripheral surface of the encoder 19 can be made substantially zero, whereby the deflection accuracy of the encoder 19 can be improved.

更に、エンコーダ19は内輪14の端部外周面に凹凸形状を直接加工することで形成されるので、部品点数が削減されて低コスト化を図ることができ、しかも高価な磁石は速度検出素子20側の一部分に磁束発生用の磁石21を使用すれば足りるため、更なる低コスト化を図ることができる。   Furthermore, since the encoder 19 is formed by directly processing the concavo-convex shape on the outer peripheral surface of the end portion of the inner ring 14, the number of parts can be reduced and the cost can be reduced. Since it is sufficient to use a magnet 21 for generating magnetic flux in a part of the side, further cost reduction can be achieved.

また、速度検出素子20を磁石21と一体に固着して両者を樹脂22でモールドすることによりリング状のセンサユニット24を構成しているので、該センサユニット24を外輪13の端部内周面に圧入や接着等の手段により取り付けて組み立てることができ、これにより、組立性が向上して更なる低コスト化を図ることができる。   Further, since the speed detection element 20 is fixed integrally with the magnet 21 and is molded with the resin 22 to form a ring-shaped sensor unit 24, the sensor unit 24 is attached to the inner peripheral surface of the end of the outer ring 13. It can be assembled by means such as press-fitting or adhesion, thereby improving the assemblability and further reducing the cost.

(第2実施形態)
次に、図3を参照して、本発明の第2実施形態であるセンサ付軸受装置について説明する。なお、第1実施形態と同等部分については、同一符号を付して説明を省略或いは簡略化する。
(Second Embodiment)
Next, a sensor-equipped bearing device according to a second embodiment of the present invention will be described with reference to FIG. In addition, about the part equivalent to 1st Embodiment, the same code | symbol is attached | subjected and description is abbreviate | omitted or simplified.

図3に示すように、本実施形態のセンサ付軸受装置30は、転がり軸受31と速度検出装置32とを備える。転がり軸受31は、固定輪である外輪33と、回転輪である内輪34と、外輪33の外輪軌道面33aと内輪34の内輪軌道面34aとの間に転動可能に配置される複数の転動体15と、保持器16と、密封装置18とを有し、第1実施形態と同様、外輪33と内輪34は、各軌道面33a,34aの中心から密封装置18が配置される軸方向一端部の端面までの軸方向寸法Lが、各軌道面33a,34aの中心から速度検出装置32が設けられる軸方向他端部の端面までの軸方向寸法Lより短く設定されている。 As shown in FIG. 3, the sensor-equipped bearing device 30 according to the present embodiment includes a rolling bearing 31 and a speed detection device 32. The rolling bearing 31 includes a plurality of rolling wheels disposed so as to be able to roll between an outer ring 33 that is a fixed ring, an inner ring 34 that is a rotating ring, and an outer ring raceway surface 33 a of the outer ring 33 and an inner ring raceway surface 34 a of the inner ring 34. The moving body 15, the cage 16, and the sealing device 18 are provided. As in the first embodiment, the outer ring 33 and the inner ring 34 have one axial end where the sealing device 18 is disposed from the center of the raceway surfaces 33 a and 34 a. the axial dimension L 1 to the end face of the section is set shorter than the axial dimension L 2 to the end face of the other axial end portion of the raceway surface 33a, the speed detecting device 32 from the center of 34a is provided.

また、外輪33の軸方向他端部には段部33bが設けられており、端面側の内周面は拡径される。一方、内輪34の軸方向他端部にも段部34bが設けられており、端面側の外周面は縮径される。そして、外輪33の拡径された大径側外周面33cと内輪34の縮径された小径側内周面34cとの間に、速度検出装置32が設けられる。また、内輪34の段部34bは、外輪33の段部33bより軸方向内方に形成されており、内輪34の段差面34dは、外輪33の段差面33dより軸方向内方に位置している。   Moreover, the step part 33b is provided in the axial direction other end part of the outer ring | wheel 33, and the inner peripheral surface by the side of an end surface is diameter-expanded. On the other hand, a step 34b is also provided at the other axial end of the inner ring 34, and the outer peripheral surface on the end surface side is reduced in diameter. A speed detection device 32 is provided between the large-diameter outer peripheral surface 33c of the outer ring 33 whose diameter has been increased and the small-diameter inner peripheral surface 34c of the inner ring 34 whose diameter has been reduced. The step 34b of the inner ring 34 is formed axially inward from the step 33b of the outer ring 33, and the step surface 34d of the inner ring 34 is located axially inward from the step surface 33d of the outer ring 33. Yes.

速度検出装置32は、速度パルス発生用のエンコーダ19と、速度パルス検出用の速度検出素子20と、磁束発生用の磁石21と、速度検出素子20及び磁石21をモールドすると共に、コネクタ26を構成する樹脂22と、速度検出素子20からの検出信号を外部へ送信するリード23と、磁気バイパス用の磁気回路を形成する磁性体35とを備える。   The speed detection device 32 molds the speed pulse generation encoder 19, the speed detection element 20 for speed pulse detection, the magnet 21 for magnetic flux generation, the speed detection element 20 and the magnet 21, and constitutes the connector 26. Resin 22, a lead 23 that transmits a detection signal from the speed detection element 20 to the outside, and a magnetic body 35 that forms a magnetic circuit for magnetic bypass.

エンコーダ19は内輪34の軸方向他端部の大径側外周面34cに例えば切削加工等によって円周方向に沿って等間隔で凹凸形状を直接加工することにより形成され、加工後の凹凸部には研磨処理が施されている。   The encoder 19 is formed by directly processing a concavo-convex shape at equal intervals along the circumferential direction, for example, by cutting or the like, on the large-diameter outer peripheral surface 34c of the other end portion in the axial direction of the inner ring 34. Is polished.

速度検出素子20と磁石21は、接着等により互いに一体に固定された後、磁性体35を芯金とした状態で射出成形やポッティングによって樹脂モールドされて円筒状のセンサユニット36を構成している。   The speed detection element 20 and the magnet 21 are integrally fixed to each other by bonding or the like, and then resin-molded by injection molding or potting in a state where the magnetic body 35 is used as a metal core to constitute a cylindrical sensor unit 36. .

磁性体35は円筒部35aと該円筒部35aの端部から径方向内方に延びる円環板部35bとによって断面L字形のリング形状とされており、円筒部35aによって樹脂22の外周面を覆うと共に、円環板部35bによって樹脂22の軸方向内側面を覆うように樹脂22と一体に成形され、磁性体35の円筒部35aは磁石21に磁気的に導通している。なお、磁性体35としては、例えば鉄やマルテンサイト系のステンレス鋼、フェライト系のステンレス鋼等を使用することができる。   The magnetic body 35 is formed in a ring shape having an L-shaped cross section by a cylindrical portion 35a and an annular plate portion 35b extending radially inward from the end portion of the cylindrical portion 35a, and the cylindrical portion 35a defines the outer peripheral surface of the resin 22. The cylindrical portion 35a of the magnetic body 35 is magnetically connected to the magnet 21. The cylindrical portion 35a of the magnetic body 35 is integrally formed with the resin 22 so as to cover the inner surface in the axial direction of the resin 22 with the annular plate portion 35b. As the magnetic body 35, for example, iron, martensitic stainless steel, ferritic stainless steel, or the like can be used.

そして、センサユニット36は速度検出素子20をエンコーダ19に対して径方向に対向させた状態で外輪33の軸方向他端部の大径側内周面33cに磁性体35の円筒部35aを圧入や接着すること等により取り付けられている。   The sensor unit 36 press-fits the cylindrical portion 35a of the magnetic body 35 into the large-diameter inner peripheral surface 33c at the other end in the axial direction of the outer ring 33 with the speed detection element 20 facing the encoder 19 in the radial direction. It is attached by bonding or the like.

このように取り付けられたセンサユニット36では、磁性体35の円環板部35bの軸方向内側面がエンコーダ19より軸方向内方に位置し、また、磁性体35の円筒部35aを段部33bの段差面33dに当接させた際、磁性体35の円環板部35bの内径部が段部34bの段差面34dと所定の隙間を持って対向しており、これにより、センサユニット36の樹脂22及び円環板部35bの内径部と内輪34の段部34bとの間にラビリンスシール37を構成している。   In the sensor unit 36 attached in this way, the inner surface in the axial direction of the annular plate portion 35b of the magnetic body 35 is positioned axially inward from the encoder 19, and the cylindrical portion 35a of the magnetic body 35 is replaced with the step portion 33b. When the abutting step 33d is brought into contact with the stepped surface 33d, the inner diameter portion of the annular plate portion 35b of the magnetic body 35 faces the stepped surface 34d of the stepped portion 34b with a predetermined gap. A labyrinth seal 37 is formed between the inner diameter portion of the resin 22 and the annular plate portion 35 b and the step portion 34 b of the inner ring 34.

そして、速度検出装置32における磁束の磁路38(破線で示す)は、磁石21→内輪34→磁性体35→磁石21と流れ、内輪34が回転すると、エンコーダ19が回転して速度検出素子20を透過する磁束が変化し、この磁束の変化量に基づいて回転速度を検出することができる。また、第1実施形態と同じく、磁石の向きを逆にしても同様の効果が得られる。   A magnetic path 38 (shown by a broken line) of the magnetic flux in the speed detection device 32 flows in the order of the magnet 21 → the inner ring 34 → the magnetic body 35 → the magnet 21, and when the inner ring 34 rotates, the encoder 19 rotates and the speed detection element 20. The magnetic flux passing through the magnetic flux changes, and the rotational speed can be detected based on the amount of change in the magnetic flux. Similar to the first embodiment, the same effect can be obtained even if the direction of the magnet is reversed.

従って、本実施形態では、センサユニット36に磁気バイパス用の磁気回路を形成する磁性体35を設けているので、磁束を有効に利用することが可能になって速度検出素子20を透過する磁束を大きくすることができ、これにより、磁石21の体積を小さくすることができて、更なる低コスト化を図ることができる。   Therefore, in this embodiment, since the magnetic body 35 that forms the magnetic circuit for magnetic bypass is provided in the sensor unit 36, the magnetic flux can be used effectively, and the magnetic flux transmitted through the speed detection element 20 can be reduced. Thus, the volume of the magnet 21 can be reduced, and further cost reduction can be achieved.

また、磁束が磁気バイパス用の磁気回路を経由するので、転動体15を通過する磁束が減少して外輪33及び内輪34の軌道面に鉄粉等が集まるのを防止することができる。   Further, since the magnetic flux passes through the magnetic circuit for magnetic bypass, it is possible to prevent the magnetic flux passing through the rolling element 15 from being reduced and collect iron powder or the like on the raceway surfaces of the outer ring 33 and the inner ring 34.

更に、磁性体35の円筒部35aを外輪33の端部内周面の段部33bに圧入等により固定することができるので、樹脂22のクリープによるゆるみを防止することができる。
その他の構成及び作用は第1実施形態と同様であるので、説明を省略する。
Furthermore, since the cylindrical portion 35a of the magnetic body 35 can be fixed to the stepped portion 33b on the inner circumferential surface of the end portion of the outer ring 33 by press fitting or the like, loosening due to creep of the resin 22 can be prevented.
Since other configurations and operations are the same as those in the first embodiment, description thereof is omitted.

なお、本発明は本実施形態に限定されるものではなく、本発明の要旨を逸脱しない範囲において適宜変更可能である。
例えば、本実施形態では、樹脂に速度検出素子のみをモールドした場合を示すが、これに限定されず、樹脂に温度検出素子や振動検出素子を一体にモールドして温度や振動を検出するようにしてもよい。
In addition, this invention is not limited to this embodiment, In the range which does not deviate from the summary of this invention, it can change suitably.
For example, in this embodiment, the case where only the speed detection element is molded on the resin is shown, but the present invention is not limited to this, and the temperature detection element and the vibration detection element are integrally molded on the resin to detect the temperature and vibration. May be.

また、本実施形態は、内輪を回転輪とした場合を示すが、外輪を回転輪とした場合にも本発明を適用することができる。
更に、本実施形態では、エンコーダの凹凸部を切削加工によって形成した場合を示すが、必ずしもこのようにする必要ななく、エンコーダの凹凸部をプレス加工や鍛造等で形成することで、より低コスト化を図ることができる。
また、本発明は、玉軸受に限定するものではなく、円すいころ軸受や円筒ころ軸受でも良い。
Moreover, although this embodiment shows the case where an inner ring | wheel is used as a rotating wheel, this invention is applicable also when an outer ring | wheel is used as a rotating wheel.
Furthermore, in this embodiment, although the case where the uneven part of the encoder is formed by cutting is shown, it is not always necessary to do this, and by forming the uneven part of the encoder by pressing or forging, the cost can be reduced. Can be achieved.
Further, the present invention is not limited to a ball bearing, and may be a tapered roller bearing or a cylindrical roller bearing.

その他、転がり軸受及び速度検出装置の各部材の材質、形状、寸法、形態、数、配置箇所等は本発明を達成できるものであれば任意であり、限定されない。   In addition, the material, shape, dimensions, form, number, arrangement location, etc. of each member of the rolling bearing and the speed detection device are arbitrary and are not limited as long as the present invention can be achieved.

本発明の第1実施形態であるセンサ付軸受装置を説明するための要部断面図である。It is principal part sectional drawing for demonstrating the bearing apparatus with a sensor which is 1st Embodiment of this invention. 速度検出装置を図1の矢印II方向から見た図である。It is the figure which looked at the speed detection apparatus from the arrow II direction of FIG. 本発明の第2実施形態であるセンサ付軸受装置を説明するための要部断面図である。It is principal part sectional drawing for demonstrating the bearing apparatus with a sensor which is 2nd Embodiment of this invention. 従来のセンサ付軸受装置を説明するための要部断面図である。It is principal part sectional drawing for demonstrating the conventional bearing apparatus with a sensor.

符号の説明Explanation of symbols

10,30 センサ付軸受装置
11,31 転がり軸受
12,32 速度検出装置
13,33 外輪(固定輪)
14,34 内輪(回転輪)
15 転動体
19 エンコーダ
20 速度検出素子
21 磁石
22 樹脂
35 磁性体(磁気バイパス用の磁気回路)
10, 30 Bearing device with sensor 11, 31 Rolling bearing 12, 32 Speed detector 13, 33 Outer ring (fixed ring)
14,34 Inner ring (rotating wheel)
DESCRIPTION OF SYMBOLS 15 Rolling body 19 Encoder 20 Speed detection element 21 Magnet 22 Resin 35 Magnetic body (Magnetic circuit for magnetic bypass)

Claims (6)

固定輪と、回転輪と、該固定輪と該回転輪間に配置された複数の転動体とを有する転がり軸受と、速度パルス発生用のエンコーダと速度パルス検出用の速度検出素子と磁束発生用の磁石とを有する速度検出装置と、を備えるセンサ付軸受装置であって、
前記速度検出装置は、前記固定輪と前記回転輪との間に設けられることを特徴とするセンサ付軸受装置。
A rolling bearing having a fixed wheel, a rotating wheel, and a plurality of rolling elements disposed between the fixed wheel and the rotating wheel; a speed pulse generating encoder; a speed pulse detecting speed detecting element; and a magnetic flux generating A sensor-equipped bearing device comprising: a speed detection device having a magnet;
The speed detecting device is provided between the fixed wheel and the rotating wheel.
前記エンコーダは、円周方向に凹凸状に形成されることを特徴とする請求項1に記載のセンサ付軸受装置。   The sensor-equipped bearing device according to claim 1, wherein the encoder is formed in an uneven shape in a circumferential direction. 前記エンコーダは、前記回転輪の一部に直接設けられることを特徴とする請求項2に記載のセンサ付軸受装置。   The sensor-equipped bearing device according to claim 2, wherein the encoder is directly provided on a part of the rotating wheel. 前記速度検出素子は、前記磁石と一体に固着されることを特徴とする請求項1〜3のいずれかに記載のセンサ付軸受装置。   The sensor-equipped bearing device according to claim 1, wherein the speed detection element is fixed integrally with the magnet. 前記速度検出素子と前記磁石とは、樹脂でモールドされることを特徴とする請求項4に記載のセンサ付軸受装置。   The sensor-equipped bearing device according to claim 4, wherein the speed detection element and the magnet are molded with resin. 前記速度検出装置は、さらに磁気バイパス用の磁気回路を有することを特徴とする請求項1〜5のいずれかに記載のセンサ付軸受装置。   The sensor-equipped bearing device according to claim 1, wherein the speed detection device further includes a magnetic circuit for magnetic bypass.
JP2004297726A 2004-10-12 2004-10-12 Bearing device with sensor Pending JP2006112454A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2004297726A JP2006112454A (en) 2004-10-12 2004-10-12 Bearing device with sensor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2004297726A JP2006112454A (en) 2004-10-12 2004-10-12 Bearing device with sensor

Publications (1)

Publication Number Publication Date
JP2006112454A true JP2006112454A (en) 2006-04-27

Family

ID=36381147

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2004297726A Pending JP2006112454A (en) 2004-10-12 2004-10-12 Bearing device with sensor

Country Status (1)

Country Link
JP (1) JP2006112454A (en)

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2008120694A1 (en) * 2007-03-29 2008-10-09 Jtekt Corporation Rotation speed detection device and rolling bearing device using the same
WO2008132844A1 (en) * 2007-04-25 2008-11-06 Ntn Corporation Bearing device adapted for use in wheel and equipped with rotation speed detection device, and method of assembling the bearing device
WO2008139738A1 (en) * 2007-05-16 2008-11-20 Ntn Corporation Bearing for wheel with rotational speed detector
JP2009030760A (en) * 2007-07-30 2009-02-12 Ntn Corp Wheel bearing device with rotating speed detector
JP2009036220A (en) * 2007-07-31 2009-02-19 Ntn Corp Bearing device for wheel with rotating speed detection device
JP2009036335A (en) * 2007-08-03 2009-02-19 Ntn Corp Wheel bearing device with rotating speed detection device
JP2016035295A (en) * 2014-08-04 2016-03-17 ダイベア株式会社 Rolling bearing device with sensor

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2008120694A1 (en) * 2007-03-29 2008-10-09 Jtekt Corporation Rotation speed detection device and rolling bearing device using the same
WO2008132844A1 (en) * 2007-04-25 2008-11-06 Ntn Corporation Bearing device adapted for use in wheel and equipped with rotation speed detection device, and method of assembling the bearing device
WO2008139738A1 (en) * 2007-05-16 2008-11-20 Ntn Corporation Bearing for wheel with rotational speed detector
JP2009030760A (en) * 2007-07-30 2009-02-12 Ntn Corp Wheel bearing device with rotating speed detector
JP2009036220A (en) * 2007-07-31 2009-02-19 Ntn Corp Bearing device for wheel with rotating speed detection device
JP2009036335A (en) * 2007-08-03 2009-02-19 Ntn Corp Wheel bearing device with rotating speed detection device
JP2016035295A (en) * 2014-08-04 2016-03-17 ダイベア株式会社 Rolling bearing device with sensor

Similar Documents

Publication Publication Date Title
CN108071674B (en) Bearing unit comprising an impulse ring and device comprising at least one such bearing unit
JP6323046B2 (en) Rolling bearing unit with rotational speed detector
US20100027927A1 (en) Sensor attaching sealing device and vehicle rolling bearing using the same
WO2007086363A1 (en) Rolling bearing with rotation sensor
JP2006112454A (en) Bearing device with sensor
JP2006177897A (en) Bearing device for wheel with rotation speed detector
JP2008175645A (en) Bearing device for wheel with rotational speed detector
JP4628049B2 (en) Wheel bearing device with rotation speed detector
JP2005114507A (en) Encoder having cylindrical cover
JP2008116267A (en) Magnetized pulsar ring
WO2006115162A1 (en) Bearing having rotary sensor
JP2006125594A (en) Bearing device with sensor
JP2007315765A (en) Rotation sensor and bearing with rotation sensor
JP5061652B2 (en) Magnetized pulsar ring and sensor-equipped rolling bearing device using the same
JP2003130075A (en) Rolling bearing unit with tone wheel
JP2009030712A (en) Bearing with sensor
JP5321115B2 (en) Rolling bearing with rotation sensor
JP4859409B2 (en) Bearing with rotation sensor
JPH1123597A (en) Bearing provided with rotating speed sensor
JP2007327575A (en) Wheel supporting rolling bearing
JP2008094243A (en) Bearing device for wheel
JP2008224228A (en) Fixing structure of magnetized pulsar ring and rolling bearing device equipped with sensor using this
JP2007040375A (en) Rolling bearing device with sensor
JP2006329770A (en) Magnetic encoder, its manufacturing method, and roller bearing device
JP2008128268A (en) Rolling bearing device with sensor

Legal Events

Date Code Title Description
RD04 Notification of resignation of power of attorney

Free format text: JAPANESE INTERMEDIATE CODE: A7424

Effective date: 20060327