JP2015161405A - Roller bearing with seal - Google Patents

Roller bearing with seal Download PDF

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Publication number
JP2015161405A
JP2015161405A JP2014039259A JP2014039259A JP2015161405A JP 2015161405 A JP2015161405 A JP 2015161405A JP 2014039259 A JP2014039259 A JP 2014039259A JP 2014039259 A JP2014039259 A JP 2014039259A JP 2015161405 A JP2015161405 A JP 2015161405A
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Prior art keywords
seal
ring
outer ring
peripheral surface
seal holder
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Japanese (ja)
Inventor
裕樹 坂口
Hiroki Sakaguchi
裕樹 坂口
洋平 柏倉
Yohei Kashiwakura
洋平 柏倉
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NSK Ltd
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NSK Ltd
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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
    • F16C33/7886Sealings of ball or roller bearings with a diaphragm, disc, or ring, with or without resilient members mounted outside the gap between the inner and outer races, e.g. sealing rings mounted to an end face or outer surface of a race
    • 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
    • F16C33/783Details of the sealing or parts thereof, e.g. geometry, material of the mounting region
    • 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
    • F16C19/34Bearings 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 both radial and axial load
    • F16C19/38Bearings 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 both radial and axial load with two or more rows 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
    • F16C23/00Bearings for exclusively rotary movement adjustable for aligning or positioning
    • F16C23/06Ball or roller bearings
    • F16C23/08Ball or roller bearings self-adjusting
    • F16C23/082Ball or roller bearings self-adjusting by means of at least one substantially spherical surface
    • F16C23/086Ball or roller bearings self-adjusting by means of at least one substantially spherical surface forming a track for rolling elements
    • 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
    • F16C33/7803Sealings of ball or roller bearings with a diaphragm, disc, or ring, with or without resilient members suited for particular types of rolling bearings
    • F16C33/7806Sealings of ball or roller bearings with a diaphragm, disc, or ring, with or without resilient members suited for particular types of rolling bearings for spherical roller bearings

Abstract

PROBLEM TO BE SOLVED: To provide a roller bearing including a seal capable of measuring a bearing clearance when the bearing is fixed to various types of machinery and being used at a position requiring that the bearing can be moved in an axial direction or at a free side position.SOLUTION: An axial end surface 12d of an outer racing 12 is formed with a salient part 12p protruded at a seal holder 21. An outer circumferential part and an inner circumferential part of the seal holder 21 are formed with an outer circumferential protrusion 21h and an inner circumferential protrusion 21i protruded at the outer racing 12 in an axial direction. Under a state in which a seal 25 is arranged at the inner circumferential surface of the salient 12p of the outer racing 12, the seal holder 21 is inserted in an axial direction toward the outer racing 12 to cause the seal 25 to be fastened and fixed to the outer racing 12 by the inner circumferential protrusion 21i and the outer circumferential surface of the salient 12p of the outer racing 12 and the inner circumferential surface of the protrusion 21h at the outer circumferential side of the seal holder 21 are fitted and fixed.

Description

本発明は密封装置付き転がり軸受に関する。   The present invention relates to a rolling bearing with a sealing device.

鉱山設備で使用されるコンベア等の機械は、山岳地帯や砂漠地帯など過酷な環境で使用される。そのため、これらの機械に使用される軸受は、密封装置(シール)を設けることにより、耐久性や寿命を向上することが望まれる。シール部材を設けた従来の軸受としては、外輪の両端部のシールケースにオイルシールを固定することで、両端側からの水や異物を防止可能な軸受が提案されている(例えば特許文献1参照)。   Machines such as conveyors used in mining equipment are used in harsh environments such as mountainous areas and desert areas. Therefore, it is desired that the bearings used in these machines be improved in durability and life by providing a sealing device (seal). As a conventional bearing provided with a seal member, there has been proposed a bearing capable of preventing water and foreign matters from both ends by fixing oil seals to seal cases at both ends of an outer ring (see, for example, Patent Document 1). ).

また、鉱山設備で使用されるコンベア等の機械は、重荷重・衝撃荷重条件下で使用されることが多い。そのため、このような機械には、負荷容量の大きい自動調心ころ軸受が使用される。シールを備えた従来の自動調心ころ軸受としては、外輪の両端に芯金を嵌着することにより装着されたオイルシールによって、両端側からの水や異物を防止可能な軸受が提案されている(例えば特許文献2参照)。   Further, machines such as conveyors used in mining equipment are often used under heavy load and impact load conditions. Therefore, a self-aligning roller bearing having a large load capacity is used in such a machine. As a conventional self-aligning roller bearing provided with a seal, there has been proposed a bearing capable of preventing water and foreign matters from both ends by an oil seal mounted by fitting a cored bar to both ends of the outer ring. (For example, refer to Patent Document 2).

特開2002−339997号公報JP 2002-339997 A 実公平4−29130号公報Japanese Utility Model Publication No. 4-29130

ところで、上記特許文献1の軸受では、シールケースが軸方向で外輪に固定されていないため、軸受の軸方向両側に軸受押さえが必要となる。このため、自由側位置での使用が困難であるという問題があった。また、軸受押さえが使用されるために軸受を軸方向で移動させることが困難であり、例えば鉱山設備で使用されるコンベアや振動篩など、軸が熱膨張などにより伸縮する装置での使用が困難であるという問題があった。   By the way, in the bearing of the said patent document 1, since the seal case is not fixed to the outer ring | wheel in the axial direction, the bearing holding | suppressing is needed on the axial direction both sides of a bearing. For this reason, there was a problem that it was difficult to use at the free side position. In addition, since the bearing retainer is used, it is difficult to move the bearing in the axial direction. For example, it is difficult to use in a device in which the shaft expands and contracts due to thermal expansion, such as a conveyor or a vibrating screen used in mining equipment. There was a problem of being.

また、軸受を鉱山設備で使用される機械に取付ける際に、軸受の取付状態を確認するためには、外輪軌道面ところの間の隙間にシックネスゲージ等を挿入することにより軸受すきまを測定する必要がある。ここで、上記特許文献2の軸受では、オイルシールを予め軸受に取付けた後、顧客に提供する必要があるため、軸受すきまの測定が困難であるという問題があった。   In addition, when installing a bearing on a machine used in mining equipment, it is necessary to measure the bearing clearance by inserting a thickness gauge or the like into the gap between the outer ring raceway surfaces in order to check the mounting condition of the bearing. There is. Here, the bearing of Patent Document 2 has a problem that it is difficult to measure the bearing clearance because the oil seal needs to be provided to the customer after being attached to the bearing in advance.

本発明は上記事情に鑑みてなされたものであり、軸受を各種機械に取付ける際に軸受すきまを測定可能であると共に、軸受を軸方向に移動可能である必要がある位置や自由側位置で使用することが可能な密封装置付き転がり軸受を提供することを目的とする。   The present invention has been made in view of the above circumstances, and is capable of measuring the bearing clearance when the bearing is mounted on various machines and used at a position where the bearing needs to be movable in the axial direction or at a free side position. It is an object of the present invention to provide a rolling bearing with a sealing device that can be used.

本発明の上記目的は、下記の構成により達成される。
(1) 内周面に軌道面を有する外輪と、
外周面に軌道面を有する内輪と、
前記外輪及び前記内輪の軌道面間に転動自在に設けられた複数のころと、
前記外輪の軸方向端部に固定されたシールホルダと、前記シールホルダに装着されたシールと、を有する密封装置と、
を備える密封装置付き転がり軸受であって、
前記外輪の軸方向端面には、軸方向において前記シールホルダ側に突出する凸部が形成され、
前記シールホルダの外周側部及び内周側部には、軸方向において前記外輪側に突出する外周側突部及び内周側突部が形成され、
前記外輪の凸部の内周面に前記シールを配置した状態で、前記シールホルダを前記外輪に向かって軸方向に挿入し、嵌合することによって、前記シールは前記シールホルダの内周側突部によって前記外輪に固定され、且つ、前記外輪の凸部の外周面と前記シールホルダの外周側突部の内周面とが嵌合固定される
ことを特徴とする密封装置付き転がり軸受。
(2) 前記シールは、前記シールホルダの内周面に嵌合固定されることによって装着される
ことを特徴とする(1)に記載の密封装置付き転がり軸受。
(3) 内周面に軌道面を有する外輪と、
外周面に軌道面を有する内輪と、
前記外輪及び前記内輪の軌道面間に転動自在に設けられた複数のころと、
前記内輪の軸方向端部に固定されたシールホルダと、前記シールホルダに装着されたシールと、を有する密封装置と、
を備える密封装置付き転がり軸受であって、
前記内輪の軸方向端面には、軸方向において前記シールホルダ側に突出する凸部が形成され、
前記シールホルダの外周側部及び内周側部には、軸方向において前記内輪側に突出する外周側突部及び内周側突部が形成され、
前記内輪の凸部の外周面に前記シールを配置した状態で、前記シールホルダを前記内輪に向かって軸方向に挿入し、嵌合することによって、前記シールは前記シールホルダの外周側突部によって前記内輪に固定され、且つ、前記内輪の凸部の内周面と前記シールホルダの内周側突部の外周面とが嵌合固定される
ことを特徴とする密封装置付き転がり軸受。
(4) 前記シールは、前記シールホルダの外周面に嵌合固定されることによって装着される
ことを特徴とする(3)に記載の密封装置付き転がり軸受。
(5) 前記転がり軸受は自動調心転がり軸受であり、
前記外輪の軌道面は、前記外輪の内周面に、単一の中心を有する球状凹面として設けられており、
前記内輪の軌道面は、前記外輪の軌道面と対向するように、前記内輪の外周面に二列設けられており、
前記複数のころは、前記内輪及び前記外輪の各軌道面間に転動自在に二列設けられた球面ころである
ことを特徴とする(1)〜(4)の何れか1つに記載の密封装置付き転がり軸受。
The above object of the present invention can be achieved by the following constitution.
(1) an outer ring having a raceway surface on the inner peripheral surface;
An inner ring having a raceway surface on the outer peripheral surface;
A plurality of rollers provided in a freely rollable manner between the raceways of the outer ring and the inner ring;
A sealing device having a seal holder fixed to an axial end of the outer ring, and a seal attached to the seal holder;
A rolling bearing with a sealing device comprising:
On the axial end surface of the outer ring, a convex portion protruding toward the seal holder in the axial direction is formed,
On the outer circumferential side and inner circumferential side of the seal holder, an outer circumferential projection and an inner circumferential projection that protrude toward the outer ring in the axial direction are formed,
With the seal disposed on the inner peripheral surface of the convex portion of the outer ring, the seal is inserted into the outer ring in the axial direction and fitted, so that the seal protrudes toward the inner peripheral side of the seal holder. A rolling bearing with a sealing device, which is fixed to the outer ring by a portion, and an outer peripheral surface of a convex portion of the outer ring and an inner peripheral surface of an outer peripheral side protrusion of the seal holder are fitted and fixed.
(2) The rolling bearing with a sealing device according to (1), wherein the seal is mounted by being fitted and fixed to an inner peripheral surface of the seal holder.
(3) an outer ring having a raceway surface on the inner peripheral surface;
An inner ring having a raceway surface on the outer peripheral surface;
A plurality of rollers provided in a freely rollable manner between the raceways of the outer ring and the inner ring;
A sealing device having a seal holder fixed to an axial end of the inner ring, and a seal attached to the seal holder;
A rolling bearing with a sealing device comprising:
On the axial end surface of the inner ring, a convex portion protruding toward the seal holder in the axial direction is formed,
On the outer circumferential side and inner circumferential side of the seal holder, an outer circumferential projection and an inner circumferential projection that protrude toward the inner ring in the axial direction are formed,
With the seal disposed on the outer peripheral surface of the convex portion of the inner ring, the seal holder is inserted in the axial direction toward the inner ring and fitted, whereby the seal is formed by the outer peripheral side protrusion of the seal holder. A rolling bearing with a sealing device, which is fixed to the inner ring, and an inner peripheral surface of a convex portion of the inner ring and an outer peripheral surface of an inner peripheral side protrusion of the seal holder are fitted and fixed.
(4) The rolling bearing with a sealing device according to (3), wherein the seal is mounted by being fitted and fixed to an outer peripheral surface of the seal holder.
(5) The rolling bearing is a self-aligning rolling bearing,
The raceway surface of the outer ring is provided as a spherical concave surface having a single center on the inner peripheral surface of the outer ring,
The inner ring raceway surface is provided in two rows on the outer circumferential surface of the inner ring so as to face the outer ring raceway surface,
The plurality of rollers are spherical rollers provided in two rows so as to be able to roll between the raceway surfaces of the inner ring and the outer ring, according to any one of (1) to (4). Rolling bearing with sealing device.

本発明の密封装置付き転がり軸受によれば、シールホルダによってシールを容易且つ強固に固定することが可能であるので、軸受と密封装置を別体にして顧客に納品することができる。これにより、軸受を各種機械に取付ける際に、軸受すきまを測定した後、密封装置を固定することが可能となる。
また、密封装置が強固に固定されるので、軸受を軸方向に移動可能である必要がある位置や自由側位置で使用することが可能となり、密封装置の軸方向移動を規制する構造、例えば、ハウジングを径方向内側に延出させて密封装置20の軸方向移動を規制する構造が不要となる。
According to the rolling bearing with a sealing device of the present invention, since the seal can be easily and firmly fixed by the seal holder, the bearing and the sealing device can be separated and delivered to the customer. This makes it possible to fix the sealing device after measuring the bearing clearance when mounting the bearing on various machines.
Further, since the sealing device is firmly fixed, it becomes possible to use the bearing at a position where it is necessary to be able to move in the axial direction or a free side position, and a structure that restricts the axial movement of the sealing device, for example, A structure that restricts the axial movement of the sealing device 20 by extending the housing radially inward becomes unnecessary.

本発明の第1実施形態に係る密封装置付き自動調心ころ軸受の断面図である。It is sectional drawing of the self-aligning roller bearing with a sealing device which concerns on 1st Embodiment of this invention. 密封装置付き自動調心ころ軸受の要部断面図である。It is principal part sectional drawing of the self-aligning roller bearing with a sealing device. 本発明の第2実施形態に係る密封装置付き自動調心ころ軸受の断面図である。It is sectional drawing of the self-aligning roller bearing with a sealing device which concerns on 2nd Embodiment of this invention. 本発明の第3実施形態に係る密封装置付き自動調心ころ軸受の断面図である。It is sectional drawing of the self-aligning roller bearing with a sealing device which concerns on 3rd Embodiment of this invention.

以下、本発明の各実施形態に係る密封装置付き転がり軸受について、図1〜4を用いて説明する。   Hereinafter, a rolling bearing with a sealing device according to each embodiment of the present invention will be described with reference to FIGS.

(第1実施形態)
以下、本発明の第1実施形態に係る密封装置付き転がり軸受について、図1を用いて説明する。図1に示すように、第1実施形態に係る自動調心ころ軸受1は、例えば、外径540mm、内径320mm、幅176mの寸法を有するものであり、内輪11と外輪12との間に、球面ころ13,13が二列に複数配置されている。各列の球面ころ13は、保持器16により、周方向の間隔が一定に保持されている。保持器16は、金属製であり、外輪案内で使用される
(First embodiment)
Hereinafter, a rolling bearing with a sealing device according to a first embodiment of the present invention will be described with reference to FIG. As shown in FIG. 1, the self-aligning roller bearing 1 according to the first embodiment has dimensions of an outer diameter of 540 mm, an inner diameter of 320 mm, and a width of 176 m, for example, and between the inner ring 11 and the outer ring 12, A plurality of spherical rollers 13, 13 are arranged in two rows. The spherical rollers 13 in each row are held at a constant circumferential interval by a cage 16. The cage 16 is made of metal and is used for outer ring guidance.

内輪11の外周面11cには二列の軌道面11b,11bが形成される。内輪11の内周面11fは、テーパ状に形成されている。   Two rows of raceway surfaces 11 b and 11 b are formed on the outer peripheral surface 11 c of the inner ring 11. The inner peripheral surface 11f of the inner ring 11 is formed in a tapered shape.

外輪12は、内周面12cに球状凹面である軌道面12aを有し、この軌道面12aの曲率中心が自動調心ころ軸受1の中心に一致しており、自動調心ころ軸受1の自動調心性が確保されている。   The outer ring 12 has a raceway surface 12a which is a spherical concave surface on the inner peripheral surface 12c, and the center of curvature of the raceway surface 12a coincides with the center of the self-aligning roller bearing 1, and Alignment is ensured.

各列に配置された球面ころ13は、たる形の転動面13aを有し、内輪11の軌道面11bと外輪12の軌道面12aとの間で転動する。   The spherical rollers 13 arranged in each row have a barrel-shaped rolling surface 13 a and roll between the raceway surface 11 b of the inner ring 11 and the raceway surface 12 a of the outer ring 12.

密封装置20は、外輪12の軸方向端面12d(軸方向端部)に固定された環状のシールホルダ21と、シールホルダ21に装着されたシール26と、から構成されている。シール26は、第一芯金25及び第二芯金29からなる芯金を覆って構成されている。第一芯金25は内周側へと延びる略円筒形状であり、外輪12に加締め固定された第一芯金25と、第一芯金25の径方向内側端部よりも軸方向内側に配置され、径方向内側に延びる断面略直線状の第二芯金29と、に分割されている。   The sealing device 20 includes an annular seal holder 21 fixed to the axial end surface 12 d (axial end) of the outer ring 12 and a seal 26 attached to the seal holder 21. The seal 26 is configured to cover a core bar composed of a first core bar 25 and a second core bar 29. The first metal core 25 has a substantially cylindrical shape extending to the inner peripheral side, and is axially inner than the first metal core 25 swaged and fixed to the outer ring 12 and the radially inner end of the first metal core 25. The second cored bar 29 is arranged and extends inward in the radial direction.

シール26はゴムなどの弾性体によって形成されており、第一芯金25の軸方向外側面に固定される断面略直線形状の第一延出部22と、第二芯金29の軸方向外側面に固定される断面略直線形状の第二延出部23と、第一延出部22及び第二延出部23に連続すると共に、第一芯金25の径方向内側端部及び第二芯金29の径方向外側端部を接続する接続部24と、を有する。ここで、第一芯金25の径方向内側端部が、第二芯金29の径方向外側端部よりも径方向外側に位置しているので、シール26の接続部24は、軸方向内側に向かうにしたがって径方向内側に傾斜する断面略直線形状とされている。   The seal 26 is formed of an elastic body such as rubber, and the first extending portion 22 having a substantially linear cross section fixed to the outer surface in the axial direction of the first metal core 25 and the outer side in the axial direction of the second metal core 29. The second extending portion 23 having a substantially linear cross section fixed to the side surface, the first extending portion 22 and the second extending portion 23 are continuous with each other, and the radially inner end portion of the first cored bar 25 and the second extending portion 23. And a connecting portion 24 for connecting a radially outer end portion of the cored bar 29. Here, since the radially inner end of the first cored bar 25 is positioned more radially outward than the radially outer end of the second cored bar 29, the connecting portion 24 of the seal 26 is axially inner. It is set as the cross-sectional substantially linear shape which inclines in radial direction as it goes to.

また、シール26は、第二延出部23の径方向内側端部に接続されると共に、第二芯金29の径方向内側端部に軸方向に固定されるリップ部28を有する。リップ部28は、径方向内側端部が内輪11の外周面11cに弾性的に摺接して外輪12と内輪11との間をシールしている。なお、リップ部28を確実に内輪11の外周面11cに摺接させる必要があることから、リップ部28の外周面に締付ばね27を装着し、その締付ばね27の弾性力によりリップ部28を内輪11の外周面11c側へ付勢するようにしている。このリップ部28が内輪11の外周面11cに摺接することにより軸受空間が密封され、外部からの液体や異物の浸入を防止できると共に、軸受空間内に封入された潤滑剤の流出を防止することができる。   The seal 26 has a lip portion 28 that is connected to the radially inner end portion of the second extending portion 23 and is fixed to the radially inner end portion of the second core metal 29 in the axial direction. The radially inner end of the lip portion 28 is in sliding contact with the outer peripheral surface 11 c of the inner ring 11 to seal between the outer ring 12 and the inner ring 11. Since it is necessary to make the lip portion 28 slidably contact the outer peripheral surface 11 c of the inner ring 11, a tightening spring 27 is attached to the outer peripheral surface of the lip portion 28, and the lip portion is applied by the elastic force of the tightening spring 27. 28 is urged toward the outer peripheral surface 11 c of the inner ring 11. The lip portion 28 is in sliding contact with the outer peripheral surface 11c of the inner ring 11, so that the bearing space is sealed, so that liquid and foreign matter can be prevented from entering from the outside, and the lubricant enclosed in the bearing space can be prevented from flowing out. Can do.

ここで、図2も参照し、外輪12の軸方向端面12dには、軸方向においてシールホルダ21側(軸方向外側)に突出する凸部12pが形成され、この凸部12pの内周面には、軸方向端面12dと滑らかに接続する断面半円形状のシール溝12qが凹設される。   Here, referring also to FIG. 2, the axial end surface 12d of the outer ring 12 is formed with a convex portion 12p protruding in the axial direction toward the seal holder 21 (axially outer side), and on the inner peripheral surface of the convex portion 12p. Is provided with a semicircular seal groove 12q that is smoothly connected to the axial end face 12d.

また、シールホルダ21の外周側端部及び内周側端部には、軸方向において外輪12側(軸方向内側)に突出する外周側突部21h及び内周側突部21iが形成される。外周側突部21hの内周面は、外輪12の凸部12pの外周面と嵌合する。内周側突部21iの内周面21jは、外周側に向かうにしたがって軸方向内側に傾斜する傾斜面とされており、その先端部21kによって、後述する第一芯金25の直線部25bを外輪12に加締めることが可能である。   In addition, an outer peripheral side protrusion 21h and an inner peripheral protrusion 21i that protrude toward the outer ring 12 (in the axial direction) in the axial direction are formed at the outer peripheral end and the inner peripheral end of the seal holder 21. The inner peripheral surface of the outer peripheral protrusion 21 h is fitted with the outer peripheral surface of the convex portion 12 p of the outer ring 12. The inner peripheral surface 21j of the inner peripheral projection 21i is an inclined surface that is inclined inward in the axial direction toward the outer peripheral side, and a straight portion 25b of the first core metal 25 described later is formed by the tip 21k. It is possible to crimp the outer ring 12.

シール溝12qに固定される第一芯金25は、当該シール溝12qに対応する断面半円形状を有する基部25aと、基部25aから内周側に延びて外輪12の軸方向端面12dと当接する直線部25bと、直線部25bから内周側に延びるにしたがって軸方向外側に傾斜して、内周側突部21iの内周面21jと隙間を介して対向する傾斜部25cと、を有する。   The first cored bar 25 fixed to the seal groove 12q is in contact with the base portion 25a having a semicircular cross section corresponding to the seal groove 12q and the axial end surface 12d of the outer ring 12 extending from the base portion 25a to the inner peripheral side. The linear portion 25b has an inclined portion 25c that is inclined outward in the axial direction as extending from the linear portion 25b toward the inner peripheral side, and is opposed to the inner peripheral surface 21j of the inner peripheral side protruding portion 21i through a gap.

そして、シールホルダ21及びシール26の外輪12への固定は、外輪12の凸部12pのシール溝12qに第一芯金25を配置した状態で、シールホルダ21を外輪12に向かって軸方向に挿入することにより行われる。これにより、シールホルダ21の内周側突部21iの先端部21kによって第一芯金25の直線部25bが外輪12の軸方向端面12dに加締められ、シール26は外輪12に固定される。同時に、シールホルダ21の外周側突部21hの内周面は、外輪12の凸部12pの外周面に嵌合固定され、シールホルダ21(密封装置20)と外輪12が互いに強固に固定される。このように、本実施形態においてシールホルダ21はシール26の加締め治具としての機能も有する。このとき、シールホルダ21は、外輪12の外周面12eよりも外周側に延在せず、且つ、内輪11の軸方向端面よりも軸方向外側に延在しないので、自動調心ころ軸受1の径方向寸法及び軸方向寸法の増加が抑制される。   Then, the seal holder 21 and the seal 26 are fixed to the outer ring 12 in a state where the first metal core 25 is disposed in the seal groove 12q of the convex portion 12p of the outer ring 12, and the seal holder 21 is axially directed toward the outer ring 12. This is done by inserting. As a result, the straight portion 25 b of the first metal core 25 is crimped to the axial end surface 12 d of the outer ring 12 by the tip 21 k of the inner peripheral projection 21 i of the seal holder 21, and the seal 26 is fixed to the outer ring 12. At the same time, the inner peripheral surface of the outer peripheral projection 21h of the seal holder 21 is fitted and fixed to the outer peripheral surface of the convex portion 12p of the outer ring 12, and the seal holder 21 (sealing device 20) and the outer ring 12 are firmly fixed to each other. . Thus, in this embodiment, the seal holder 21 also has a function as a caulking jig for the seal 26. At this time, the seal holder 21 does not extend outward from the outer peripheral surface 12 e of the outer ring 12 and does not extend outward in the axial direction from the axial end surface of the inner ring 11. An increase in the radial dimension and the axial dimension is suppressed.

この構成により、外輪12、ひいては自動調心ころ軸受1にシールホルダ21及びシール26が強固に固定されるため、軸受押さえを使用する必要がなくなる。これにより、構造を簡略化できるほか、装置の自由側位置や、軸受を軸方向に移動可能である必要がある位置でも、自動調心ころ軸受1の密封性を維持しながら使用することが可能となる。すなわち、密封装置20の軸方向移動を規制する構造、例えば、ハウジングを径方向内側に延出させて密封装置20の軸方向移動を規制する構造が不要となる。   With this configuration, the seal holder 21 and the seal 26 are firmly fixed to the outer ring 12 and, consequently, the self-aligning roller bearing 1, so that it is not necessary to use a bearing retainer. As a result, the structure can be simplified and can be used while maintaining the sealing performance of the self-aligning roller bearing 1 even at a position where the apparatus is free or where the bearing needs to be movable in the axial direction. It becomes. That is, a structure for restricting the axial movement of the sealing device 20, for example, a structure for restricting the axial movement of the sealing device 20 by extending the housing radially inward becomes unnecessary.

また、前述したように、内輪11の内周面11fはテーパ状に形成されているが、軸方向の軸受の押し込み量が多いと内輪11が膨張する結果、軸受すきまが減少してしまう。しかし、本実施形態の密封自動調心ころ軸受1によれば、シールホルダ21によってシール26を容易且つ強固に固定することが可能であるので、軸受本体と密封装置20を別体にして顧客に納品することができる。したがって、各種機械への取付け前に軸受の取付状態を確認する目的で軸受すきまを測定することが可能となる。そして、軸受すきまの測定値が適切な値となるように軸方向に軸受を押し込むことにより、適切な取り付けが可能となり、メンテナンス性が向上する。   Further, as described above, the inner peripheral surface 11f of the inner ring 11 is formed in a taper shape. However, if the amount of axial bearing pressing is large, the inner ring 11 expands, resulting in a decrease in bearing clearance. However, according to the self-aligning self-aligning roller bearing 1 of the present embodiment, the seal 26 can be easily and firmly fixed by the seal holder 21, so the bearing body and the sealing device 20 are separated from each other to the customer. Can deliver. Therefore, it is possible to measure the bearing clearance for the purpose of confirming the mounting state of the bearing before mounting on various machines. Then, by pressing the bearing in the axial direction so that the measured value of the bearing clearance becomes an appropriate value, it is possible to perform appropriate installation and improve maintainability.

また、シールホルダ21を固定することによりシール26の位置も固定されるため、密封性能をさらに向上することも可能となる。   Further, since the position of the seal 26 is fixed by fixing the seal holder 21, the sealing performance can be further improved.

なお、内輪11、外輪12、及び球面ころ13の少なくとも一つの表面層は、残留オーステナイト量(γR vol%)が20〜45vol%で、浸炭または浸炭窒化処理された材料により形成されることが好ましい。または、内輪11、外輪12、及び球面ころ13の少なくとも一つの表面層は、残留オーステナイト量(γR vol%)が20〜45vol%で、C;0.1〜1.2重量%、Cr;1〜3重量%を含有し、さらにMoを2.0重量%以下であって且つCr含有量の1/3以上含有するとともに、浸炭または浸炭窒化処理された表面層の表面硬さ(Hv)が残留オーステナイト量に対し、−4.7×(γR vol%)+920≦Hv≦−4.7×(γR vol%)+1020の範囲にある合金鋼から形成されることが好ましい。または、内輪11、外輪12、及び球面ころ13の少なくとも一つの表面層は、残留オーステナイト量(γR vol%)が20〜45vol%で、C;0.1〜1.2重量%、Cr;1〜3重量%を含有し、さらにMoを2.0重量%以下であって且つCr含有量の1/3以上含有するとともに、浸炭または浸炭窒化処理された表面層の表面硬さ(Hv)が残留オーステナイト量に対し、−4.7×(γR vol%)+920≦Hv≦−4.7×(γR vol%)+1020の範囲にある合金鋼から形成されることが好ましい。内輪11、外輪12、及び球面ころ13の少なくともいずれかの表面層をこれらの材料により形成することにより、自動調心ころ軸受1の耐久性をさらに向上し、長寿命とすることができる。なお、これらの材料は内輪11、外輪12、及び球面ころ13のいずれの表面層にも使用することが望ましいが、破損しやすい部位のみに使用する場合であっても十分な効果を得ることができ、例えば、自動調心ころ軸受1が外輪回転である場合には、内輪11の表面層のみにこれらの材料が使用されるものであってもよい。   In addition, at least one surface layer of the inner ring 11, the outer ring 12, and the spherical roller 13 is preferably formed of a carburized or carbonitrided material having a retained austenite amount (γR vol%) of 20 to 45 vol%. . Alternatively, at least one surface layer of the inner ring 11, the outer ring 12, and the spherical roller 13 has a retained austenite amount (γR vol%) of 20 to 45 vol%, C; 0.1 to 1.2 wt%, Cr; 1 The surface hardness (Hv) of the surface layer that is carburized or carbonitrided with Mo of 2.0 wt% or less and 1/3 or more of the Cr content. It is preferably formed from an alloy steel in a range of −4.7 × (γR vol%) + 920 ≦ Hv ≦ −4.7 × (γR vol%) + 1020 with respect to the amount of retained austenite. Alternatively, at least one surface layer of the inner ring 11, the outer ring 12, and the spherical roller 13 has a retained austenite amount (γR vol%) of 20 to 45 vol%, C; 0.1 to 1.2 wt%, Cr; 1 The surface hardness (Hv) of the surface layer that is carburized or carbonitrided with Mo of 2.0 wt% or less and 1/3 or more of the Cr content. It is preferably formed from an alloy steel in a range of −4.7 × (γR vol%) + 920 ≦ Hv ≦ −4.7 × (γR vol%) + 1020 with respect to the amount of retained austenite. By forming the surface layer of at least one of the inner ring 11, the outer ring 12 and the spherical roller 13 with these materials, the durability of the self-aligning roller bearing 1 can be further improved and the life can be extended. Although these materials are desirably used for any of the surface layers of the inner ring 11, the outer ring 12, and the spherical roller 13, it is possible to obtain a sufficient effect even when used only in a portion that is easily damaged. For example, when the self-aligning roller bearing 1 is rotating the outer ring, these materials may be used only for the surface layer of the inner ring 11.

なお、本実施形態では、シールホルダ21の外周側突部21hの内周面は、直接に外輪12の凸部12pの外周面に嵌合するが、これらの間にゴム製のリング状部材を配置する構成としてもよい。   In the present embodiment, the inner peripheral surface of the outer peripheral projection 21h of the seal holder 21 is directly fitted to the outer peripheral surface of the convex portion 12p of the outer ring 12, but a rubber ring-shaped member is interposed therebetween. It is good also as a structure to arrange.

(第2実施形態)
以下、本発明の第2実施形態に係る密封装置付き転がり軸受について、図3を用いて説明する。第1実施形態と同様の構成を有する部分については同様の符号を付し、説明を省略する。
(Second Embodiment)
Hereinafter, a rolling bearing with a sealing device according to a second embodiment of the present invention will be described with reference to FIG. Parts having the same configuration as in the first embodiment are denoted by the same reference numerals, and description thereof is omitted.

図3に示すように、第2実施形態に係る自動調心ころ軸受1は、外輪12の軸方向端面12dと、シールホルダ21と、の間において、Oリング30をさらに備えている。このOリング30は、外輪12の凸部12pよりも外周側に配置されている。このようにOリング30を配置することによって密封性をさらに向上でき、液体や異物が自動調心ころ軸受1の外輪12の外周側から軸受内へ浸入することを防止することができる。なお、必要に応じて、外輪12の軸方向端面12d又は、これと対向するシールホルダ21の端面に、Oリング30を固定するためのOリング溝(不図示)を設けても構わない。   As shown in FIG. 3, the self-aligning roller bearing 1 according to the second embodiment further includes an O-ring 30 between the axial end surface 12 d of the outer ring 12 and the seal holder 21. The O-ring 30 is disposed on the outer peripheral side of the convex portion 12p of the outer ring 12. By arranging the O-ring 30 in this way, the sealing performance can be further improved, and liquid and foreign matter can be prevented from entering the bearing from the outer peripheral side of the outer ring 12 of the self-aligning roller bearing 1. If necessary, an O-ring groove (not shown) for fixing the O-ring 30 may be provided on the axial end surface 12d of the outer ring 12 or the end surface of the seal holder 21 facing the outer ring 12.

(第3実施形態)
以下、本発明の第3実施形態に係る密封装置付き転がり軸受について、図4を用いて説明する。第1実施形態と同様の構成を有する部分については同様の符号を付し、説明を省略する。
(Third embodiment)
Hereinafter, a rolling bearing with a sealing device according to a third embodiment of the present invention will be described with reference to FIG. Parts having the same configuration as in the first embodiment are denoted by the same reference numerals, and description thereof is omitted.

図4に示すように、本実施形態においては上述の実施形態と異なり、外輪12の凸部12pの内周面にシール溝12q(図2参照)が形成されない。また、第一芯金25は、断面半円形状の基部25a(図2参照)を有さない。一方、シールホルダ21(内周側突部21i)の内周面には、第一芯金25及びシール26が嵌合固定されている。したがって、シールホルダ21にシール26(第一芯金25)が一体となるように装着されるので、取り扱い性を向上させることが可能となる。   As shown in FIG. 4, in this embodiment, unlike the above-described embodiment, the seal groove 12 q (see FIG. 2) is not formed on the inner peripheral surface of the convex portion 12 p of the outer ring 12. Moreover, the 1st metal core 25 does not have the base 25a (refer FIG. 2) of cross-sectional semicircle shape. On the other hand, a first cored bar 25 and a seal 26 are fitted and fixed to the inner peripheral surface of the seal holder 21 (inner peripheral side protruding portion 21i). Therefore, since the seal 26 (first core metal 25) is attached to the seal holder 21 so as to be integrated, it is possible to improve the handleability.

そして、シールホルダ21及びシール26の外輪12への固定は、予めシール26(第一芯金25)をシールホルダ21に装着した上で、シールホルダ21を外輪12に向かって挿入することにより行われる。これにより、外輪12の凸部12pに内周面に第一芯金25を配置した状態となり、さらにシールホルダ21の内周側突部21iの先端部21kによって第一芯金25の直線部25bが外輪12の軸方向端面12dに嵌合され、シール26は外輪12に固定される。同時に、シールホルダ21の外周側突部21hの内周面は、外輪12の凸部12pの外周面に嵌合固定され、シールホルダ21(密封装置20)と外輪12が互いに強固に固定される。   Then, the seal holder 21 and the seal 26 are fixed to the outer ring 12 by attaching the seal 26 (first core metal 25) to the seal holder 21 in advance and then inserting the seal holder 21 toward the outer ring 12. Is called. As a result, the first cored bar 25 is disposed on the inner peripheral surface of the convex part 12p of the outer ring 12, and the straight part 25b of the first cored bar 25 is further formed by the tip 21k of the inner peripheral side protruding part 21i of the seal holder 21. Is fitted to the axial end surface 12 d of the outer ring 12, and the seal 26 is fixed to the outer ring 12. At the same time, the inner peripheral surface of the outer peripheral projection 21h of the seal holder 21 is fitted and fixed to the outer peripheral surface of the convex portion 12p of the outer ring 12, and the seal holder 21 (sealing device 20) and the outer ring 12 are firmly fixed to each other. .

したがって、本実施形態によれば、シール21及びシール26(第一芯金25)の取り扱い性を向上させることが可能であると共に、第1実施形態と同様の効果を奏することが可能である。   Therefore, according to the present embodiment, the handleability of the seal 21 and the seal 26 (first core metal 25) can be improved, and the same effects as those of the first embodiment can be achieved.

なお、本実施形態においても、第2実施形態と同様に密封性向上のため、外輪12の軸方向端面12dや、これと対向するシールホルダ21の端面に、Oリングを配設しても構わない。   In the present embodiment as well, an O-ring may be provided on the axial end surface 12d of the outer ring 12 or the end surface of the seal holder 21 facing the outer ring 12 in order to improve the sealing performance as in the second embodiment. Absent.

また、上述した第1〜第3実施形態において、シール26の緊迫力が低すぎると軸の追従性が悪くなるおそれがある。また、シール26が、軸受空間内の潤滑剤の圧力に耐えられなくなり、密封性能を確保できないおそれがある。一方、シール26の緊迫力が高すぎると、リップ部28と内輪11の外周面11cとの間で摩耗が生じやすくなる。このため、シール26の緊迫力は10〜100Nが好ましく、30〜80Nであるとさらに好ましい。   In the first to third embodiments described above, if the tension force of the seal 26 is too low, the followability of the shaft may be deteriorated. Further, the seal 26 cannot withstand the pressure of the lubricant in the bearing space, and there is a possibility that the sealing performance cannot be secured. On the other hand, if the tension of the seal 26 is too high, wear tends to occur between the lip portion 28 and the outer peripheral surface 11 c of the inner ring 11. For this reason, the tension force of the seal 26 is preferably 10 to 100N, and more preferably 30 to 80N.

尚、本発明は、前述した実施形態に限定されるものではなく、適宜変更、改良等が可能である。   In addition, this invention is not limited to embodiment mentioned above, A change, improvement, etc. are possible suitably.

例えば、前述した実施形態では、シールホルダ21は、外輪12の軸方向端部に固定されていたが、内輪11の軸方向端部に固定しても構わない(不図示)。この場合、密封装置20は内周側及び外周側が反転した状態となり、シール26のリップ28は、外輪12の内周面12cに摺接することになる。また、内輪11の軸方向端面には、軸方向においてシールホルダ21側に突出する凸部が形成され、シールホルダ21の外周側端部及び内周側端部には、軸方向において内輪側(軸方向内側)に突出する外周側突部及び内周側突部が形成される。そして、内輪11の凸部の外周面にシール26を配置した状態で、シールホルダ21を内輪11に向かって軸方向に挿入することによって、シール11はシールホルダ21の外周側突部によって内輪11に加締め固定され、且つ、内輪11の凸部の内周面とシールホルダ21の内周側突部の外周面とが嵌合固定される。このような構成によっても、前述の実施形態と同様の効果を得ることが可能である。   For example, in the above-described embodiment, the seal holder 21 is fixed to the axial end of the outer ring 12, but may be fixed to the axial end of the inner ring 11 (not shown). In this case, the sealing device 20 is in an inverted state on the inner peripheral side and the outer peripheral side, and the lip 28 of the seal 26 comes into sliding contact with the inner peripheral surface 12 c of the outer ring 12. Further, a convex portion that protrudes toward the seal holder 21 in the axial direction is formed on the axial end surface of the inner ring 11, and the outer peripheral side end and the inner peripheral side end of the seal holder 21 have an inner ring side ( An outer peripheral protrusion and an inner peripheral protrusion that protrude inward in the axial direction are formed. Then, with the seal 26 disposed on the outer peripheral surface of the convex portion of the inner ring 11, the seal holder 21 is inserted in the axial direction toward the inner ring 11, so that the seal 11 is inserted into the inner ring 11 by the outer peripheral side protrusion of the seal holder 21. And the inner peripheral surface of the convex portion of the inner ring 11 and the outer peripheral surface of the inner peripheral side protrusion of the seal holder 21 are fitted and fixed. Even with such a configuration, it is possible to obtain the same effects as those of the above-described embodiment.

また、この場合であっても、第3実施形態と同様に、シール26及び第一芯金25が、シールホルダ21の外周面に嵌合固定されることによって予め装着される構成とし、取り扱い性の向上を図っても構わない。   Even in this case, similarly to the third embodiment, the seal 26 and the first metal core 25 are configured to be mounted in advance by being fitted and fixed to the outer peripheral surface of the seal holder 21, and are easy to handle. It may be possible to improve.

また、前述した実施形態では、内輪11の内周面11fがテーパ状に形成されていたが、内周面11fは円筒状に形成されていてもよい。   In the above-described embodiment, the inner peripheral surface 11f of the inner ring 11 is formed in a tapered shape, but the inner peripheral surface 11f may be formed in a cylindrical shape.

また、前述した実施形態における密封装置は、自動調心ころ軸受以外の軸受、例えば円筒ころ軸受、円すいころ軸受、又は上述した軸受を2以上組み合わせた組み合わせ軸受の両端部に取り付けることもでき、これらも本発明の権利範囲に属する。また、本発明に係る密封装置付き転がり軸受は、産業用機械、例えば鉱山設備用機械の自由側だけではなく、固定側にも使用できる。   Further, the sealing device in the embodiment described above can be attached to both ends of a bearing other than the self-aligning roller bearing, for example, a cylindrical roller bearing, a tapered roller bearing, or a combination bearing in which two or more of the above-described bearings are combined. Are also within the scope of the present invention. Moreover, the rolling bearing with a sealing device according to the present invention can be used not only on the free side of industrial machines, for example, mining equipment machines, but also on the fixed side.

1 自動調心ころ軸受
11 内輪
11b 内輪軌道面
11c 内輪外周面
11f 内輪内周面
12 外輪
12a 外輪軌道面
12c 外輪内周面
12d 外輪軸方向端面
12e 外輪外周面
12p 凸部
12q シール溝
13 球面ころ
13a 転動面
16 保持器
16a 環状体
16b 柱部
20 密封装置
21h 外周側突部
21i 内周側突部
21j 内周面
21k 先端部
22 第一延出部
23 第二延出部
24 接続部
25 第一芯金
25a 基部
25b 直線部
25c 傾斜部
26 シール
27 締付ばね
28 リップ部
29 第二芯金
DESCRIPTION OF SYMBOLS 1 Spherical roller bearing 11 Inner ring 11b Inner ring raceway surface 11c Inner ring outer peripheral surface 11f Inner ring inner peripheral surface 12 Outer ring 12a Outer ring raceway surface 12c Outer ring inner peripheral surface 12d Outer ring axial end surface 12e Outer ring outer peripheral surface 12p Protruding part 12q Seal groove 13 Spherical roller 13a Rolling surface 16 Cage 16a Annulus 16b Column 20 Sealing device 21h Outer peripheral projection 21i Inner peripheral projection 21j Inner peripheral surface 21k Tip 22 First extension 23 Second extension 24 Connection 25 First cored bar 25a Base 25b Straight line 25c Inclined part 26 Seal 27 Clamping spring 28 Lip part 29 Second cored bar

Claims (5)

内周面に軌道面を有する外輪と、
外周面に軌道面を有する内輪と、
前記外輪及び前記内輪の軌道面間に転動自在に設けられた複数のころと、
前記外輪の軸方向端部に固定されたシールホルダと、前記シールホルダに装着されたシールと、を有する密封装置と、
を備える密封装置付き転がり軸受であって、
前記外輪の軸方向端面には、軸方向において前記シールホルダ側に突出する凸部が形成され、
前記シールホルダの外周側部及び内周側部には、軸方向において前記外輪側に突出する外周側突部及び内周側突部が形成され、
前記外輪の凸部の内周面に前記シールを配置した状態で、前記シールホルダを前記外輪に向かって軸方向に挿入し、嵌合することによって、前記シールは前記シールホルダの内周側突部によって前記外輪に固定され、且つ、前記外輪の凸部の外周面と前記シールホルダの外周側突部の内周面とが嵌合固定される
ことを特徴とする密封装置付き転がり軸受。
An outer ring having a raceway surface on the inner peripheral surface;
An inner ring having a raceway surface on the outer peripheral surface;
A plurality of rollers provided in a freely rollable manner between the raceways of the outer ring and the inner ring;
A sealing device having a seal holder fixed to an axial end of the outer ring, and a seal attached to the seal holder;
A rolling bearing with a sealing device comprising:
On the axial end surface of the outer ring, a convex portion protruding toward the seal holder in the axial direction is formed,
On the outer circumferential side and inner circumferential side of the seal holder, an outer circumferential projection and an inner circumferential projection that protrude toward the outer ring in the axial direction are formed,
With the seal disposed on the inner peripheral surface of the convex portion of the outer ring, the seal is inserted into the outer ring in the axial direction and fitted, so that the seal protrudes toward the inner peripheral side of the seal holder. A rolling bearing with a sealing device, which is fixed to the outer ring by a portion, and an outer peripheral surface of a convex portion of the outer ring and an inner peripheral surface of an outer peripheral side protrusion of the seal holder are fitted and fixed.
前記シールは、前記シールホルダの内周面に嵌合固定されることによって装着される
ことを特徴とする請求項1に記載の密封装置付き転がり軸受。
The rolling bearing with a sealing device according to claim 1, wherein the seal is mounted by being fitted and fixed to an inner peripheral surface of the seal holder.
内周面に軌道面を有する外輪と、
外周面に軌道面を有する内輪と、
前記外輪及び前記内輪の軌道面間に転動自在に設けられた複数のころと、
前記内輪の軸方向端部に固定されたシールホルダと、前記シールホルダに装着されたシールと、を有する密封装置と、
を備える密封装置付き転がり軸受であって、
前記内輪の軸方向端面には、軸方向において前記シールホルダ側に突出する凸部が形成され、
前記シールホルダの外周側部及び内周側部には、軸方向において前記内輪側に突出する外周側突部及び内周側突部が形成され、
前記内輪の凸部の外周面に前記シールを配置した状態で、前記シールホルダを前記内輪に向かって軸方向に挿入し、嵌合することによって、前記シールは前記シールホルダの外周側突部によって前記内輪に固定され、且つ、前記内輪の凸部の内周面と前記シールホルダの内周側突部の外周面とが嵌合固定される
ことを特徴とする密封装置付き転がり軸受。
An outer ring having a raceway surface on the inner peripheral surface;
An inner ring having a raceway surface on the outer peripheral surface;
A plurality of rollers provided in a freely rollable manner between the raceways of the outer ring and the inner ring;
A sealing device having a seal holder fixed to an axial end of the inner ring, and a seal attached to the seal holder;
A rolling bearing with a sealing device comprising:
On the axial end surface of the inner ring, a convex portion protruding toward the seal holder in the axial direction is formed,
On the outer circumferential side and inner circumferential side of the seal holder, an outer circumferential projection and an inner circumferential projection that protrude toward the inner ring in the axial direction are formed,
With the seal disposed on the outer peripheral surface of the convex portion of the inner ring, the seal holder is inserted in the axial direction toward the inner ring and fitted, whereby the seal is formed by the outer peripheral side protrusion of the seal holder. A rolling bearing with a sealing device, which is fixed to the inner ring, and an inner peripheral surface of a convex portion of the inner ring and an outer peripheral surface of an inner peripheral side protrusion of the seal holder are fitted and fixed.
前記シールは、前記シールホルダの外周面に嵌合固定されることによって装着される
ことを特徴とする請求項3に記載の密封装置付き転がり軸受。
The rolling bearing with a sealing device according to claim 3, wherein the seal is mounted by being fitted and fixed to an outer peripheral surface of the seal holder.
前記転がり軸受は自動調心転がり軸受であり、
前記外輪の軌道面は、前記外輪の内周面に、単一の中心を有する球状凹面として設けられており、
前記内輪の軌道面は、前記外輪の軌道面と対向するように、前記内輪の外周面に二列設けられており、
前記複数のころは、前記内輪及び前記外輪の各軌道面間に転動自在に二列設けられた球面ころである
ことを特徴とする請求項1〜4の何れか1項に記載の密封装置付き転がり軸受。
The rolling bearing is a self-aligning rolling bearing;
The raceway surface of the outer ring is provided as a spherical concave surface having a single center on the inner peripheral surface of the outer ring,
The inner ring raceway surface is provided in two rows on the outer circumferential surface of the inner ring so as to face the outer ring raceway surface,
5. The sealing device according to claim 1, wherein the plurality of rollers are spherical rollers provided in two rows so as to be able to roll between the raceway surfaces of the inner ring and the outer ring. Rolling bearing with.
JP2014039259A 2014-02-28 2014-02-28 Roller bearing with seal Pending JP2015161405A (en)

Priority Applications (1)

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Applications Claiming Priority (1)

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Publications (1)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113898668A (en) * 2021-11-19 2022-01-07 洛阳Lyc轴承有限公司 Sealed self-aligning roller bearing
US20230096497A1 (en) * 2021-09-23 2023-03-30 Bal Seal Engineering, Llc Integrated seal and bearing assembly and related methods
CN113898668B (en) * 2021-11-19 2024-04-26 洛阳轴承集团股份有限公司 Sealed aligning roller bearing

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20230096497A1 (en) * 2021-09-23 2023-03-30 Bal Seal Engineering, Llc Integrated seal and bearing assembly and related methods
CN113898668A (en) * 2021-11-19 2022-01-07 洛阳Lyc轴承有限公司 Sealed self-aligning roller bearing
CN113898668B (en) * 2021-11-19 2024-04-26 洛阳轴承集团股份有限公司 Sealed aligning roller bearing

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