Auxiliary device for observing bearing ring channel

文档序号:1597381 发布日期:2020-01-07 浏览:21次 中文

阅读说明:本技术 用于轴承套圈沟道观察的辅助装置 (Auxiliary device for observing bearing ring channel ) 是由 秦倩 于 2019-09-05 设计创作,主要内容包括:本发明公开了一种用于轴承套圈沟道观察的辅助装置,包括底座,所述底座上设置有放置台,所述放置台上设置有用于放置轴承套圈的定位装置,所述定位装置包括第一滚柱和第二滚柱,所述第一滚柱与第二滚柱均转动设置在放置台上,所述第一滚柱与第二滚柱均沿放置台的长度方向设置,所述第一滚柱与第二滚柱之间间隔设置形成有用于带动轴承套圈转动的滚道,在观察时可以控制轴承套圈转动角度,以避免观察者对于沟道表面的重复观察,增加观察效率,且观察时转动精度较高,操作稳定性较强。(The invention discloses an auxiliary device for observing a bearing ring channel, which comprises a base, wherein a placing table is arranged on the base, a positioning device for placing a bearing ring is arranged on the placing table, the positioning device comprises a first roller and a second roller, the first roller and the second roller are both rotatably arranged on the placing table, the first roller and the second roller are both arranged along the length direction of the placing table, a roller path for driving the bearing ring to rotate is formed between the first roller and the second roller at intervals, the rotating angle of the bearing ring can be controlled during observation so as to avoid repeated observation of an observer on the surface of the channel, the observation efficiency is increased, the rotating precision is higher during observation, and the operation stability is stronger.)

1. An auxiliary device for observing a bearing ring channel is characterized in that: the roller bearing ring placing device comprises a base, a placing table is arranged on the base, a positioning device used for placing a bearing ring is arranged on the placing table, the positioning device comprises a first roller and a second roller, the first roller and the second roller are both rotatably arranged on the placing table, the first roller and the second roller are both arranged along the length direction of the placing table, and a roller path used for driving the bearing ring to rotate is formed between the first roller and the second roller at intervals.

2. The aid for bearing ring channel observation according to claim 1, wherein: the bottom surface slope of base sets up, the one end of placing the platform and being close to ground is provided with the feeler lever that is used for leaning on the bearing outer lane.

3. The aid for bearing ring channel observation according to claim 1, wherein: all to placing the external extension of platform and having the operation knob on first roller and the second roller, it sets up the calibrated scale to place the platform surface along operation knob circumference, be provided with the scale mark on the operation knob, the scale mark aligns the calibrated scale setting.

Technical Field

The invention relates to an auxiliary device for observing a bearing ring channel.

Background

The inner ring and the outer ring of the bearing are important components of the bearing, the inner ring and the outer ring are also called as a ferrule, the quality of the ferrule is an important index of the service life of a finished bearing, the surface roughness of a ferrule channel is an important index representing the quality of the ferrule, the existing method for observing the surface roughness of the ferrule channel is to place the bearing ferrule to be observed on a V-shaped block, then a microscope is arranged below the V-shaped block for observing the roughness of the surface of the channel, the ferrule to be observed is usually touched by hands to rotate in order to observe the roughness of each position of the surface of the channel, and then an observer can observe each position of the channel through the microscope, but the observation is convenient for detecting the position with high randomness and poor controllability, and the manual operation can cause the ferrule to be observed to be deviated, so the operation stability of the observation method is poor, an already observed portion may also be observed, causing repeated observation to reduce observation efficiency.

Disclosure of Invention

Aiming at the defects of the prior art, the invention provides the auxiliary device for observing the channel of the bearing ring, the rotation angle of the bearing ring can be controlled during observation so as to avoid repeated observation of the channel surface by an observer, the observation efficiency is increased, the rotation precision during observation is higher, and the operation stability is stronger.

The invention provides an auxiliary device for observing a bearing ring channel, which comprises a base, wherein a placing table is arranged on the base, a positioning device for placing a bearing ring is arranged on the placing table, the positioning device comprises a first roller and a second roller, the first roller and the second roller are both rotatably arranged on the placing table, the first roller and the second roller are both arranged along the length direction of the placing table, and a raceway for driving the bearing ring to rotate is formed between the first roller and the second roller at intervals.

The beneficial effect who so sets up is: by adopting the scheme, when the surface roughness of the bearing ring channel needs to be observed, the bearing ring needing to be observed is placed on the raceway between the first roller and the second roller, then a microscope is placed on the channel of the ring for observing burrs and scratches on the surface of the channel to obtain the surface roughness of the bearing ring to be observed, and because the first roller and the second roller are both rotatably disposed on the placing table, so that the first roller or the second roller can be operated to rotate the ring when observing, and the rotation angle of the first roller or the second roller can be controlled when observing so as to obtain the position of the channel surface to be observed, therefore, the device has stronger controllability, and the ferrule cannot deviate when the device drives the ferrule to rotate through the roller, so the device has higher operation stability compared with the device which directly rotates the ferrule manually.

The invention is further provided with a base, the bottom surface of the base is obliquely arranged, and one end of the placing table close to the ground is provided with a contact rod for contacting the outer ring of the bearing.

The beneficial effect who so sets up is: adopt above-mentioned scheme, because the channel of bearing inner race is at the internal perisporium of bearing inner race, so when the vertical channel of placing on the raceway of bearing inner race the inconvenient channel of observing the bearing inner race of microscope, thereby set up the base into the bearing inner race slope that the slope made needs to observe, and then the channel of bearing inner race is conveniently observed to microscope, and adopt the conflict pole to support the bearing inner race that needs the observation, make the bearing inner race can not squint, because the channel of bearing inner race is at the periphery wall of bearing inner race, so vertical placing or the slope is placed the channel that the microscope can all observe the bearing inner race.

The invention is further provided that the first roller and the second roller are provided with operating rotating buttons extending outwards from the placing table, the outer surface of the placing table is provided with a dial along the circumferential direction of the operating handle, the operating rotating buttons are provided with scale marks, and the scale marks are arranged in alignment with the dial.

The beneficial effect who so sets up is: adopt above-mentioned scheme, the operation knob has made things convenient for the first roller of observer or second ball to rotate, and set up the scale mark on the operation knob, and the scale mark has aimed at the calibrated scale of placing the platform surface, so when the operation knob rotates, can audio-visually see operation knob pivoted turned angle at every turn, so in after the operation knob has rotated the steel ball at every turn, turned angle's record has avoided the observer to carry out repeated observation to the steel ball surface that has observed, has increased observation efficiency.

Drawings

FIG. 1 is a schematic overall structure diagram of an embodiment of the present invention;

FIG. 2 is an enlarged view of a portion A of FIG. 1 in accordance with an embodiment of the present invention;

FIG. 3 is a side view of the overall structure of an embodiment of the present invention;

fig. 4 is an enlarged view of a portion B of fig. 3 according to an embodiment of the present invention.

Detailed Description

As can be seen from FIGS. 1 to 4, the invention discloses an auxiliary device for observing a bearing ring channel, which comprises a base 1, wherein a placing table 2 is arranged on the base 1, a positioning device 3 for placing a bearing ring is arranged on the placing table 2, the positioning device 3 comprises a first roller 31 and a second roller 32, the first roller 31 and the second roller 32 are both rotatably arranged on the placing table 2, the first roller 31 and the second roller 32 are both arranged along the length direction of the placing table 2, and a raceway 33 for driving the bearing ring to rotate is formed between the first roller 31 and the second roller 32 at intervals. The beneficial effect who so sets up is: by adopting the scheme, when the surface roughness of the bearing ring channel needs to be observed, the bearing ring needing to be observed is placed on the raceway 33 between the first roller 31 and the second roller 32, a microscope was then placed on the channel of the ring to observe burrs and scratches on the surface of the channel to obtain the surface roughness of the bearing ring to be observed, and because both the first roller 31 and the second roller 32 are rotatably provided on the placing table 2, the first roller 31 or the second roller 32 can be operated to rotate the ferrule when viewed, and the rotation angle of the first roller 31 or the second roller 32 can be controlled at the time of observation to obtain the position of the surface of the channel desired to be observed, therefore, the device has stronger controllability, and the ferrule cannot deviate when the device drives the ferrule to rotate through the roller, so the device has higher operation stability compared with the device which directly rotates the ferrule manually.

The bottom surface of the base 1 is obliquely arranged, and one end, close to the ground, of the placing table 2 is provided with a collision rod 4 used for abutting against a bearing outer ring 5. The beneficial effect who so sets up is: adopt above-mentioned scheme, because the channel of bearing inner race 5 is at the internal perisporium of bearing inner race 5, so when bearing inner race 5 vertically places on raceway 33 the inconvenient channel of observing bearing inner race 5 of microscope, thereby set up base 1 into the slope and make the bearing inner race 5 slope that needs observe, and then the microscope conveniently observes the channel of bearing inner race 5, and adopt to support the bearing inner race 5 that needs observe by feeler lever 4, make bearing inner race 5 can not squint, because the channel of bearing inner race 6 is at the periphery wall of bearing inner race 6, so vertically place or the slope places the channel that the microscope can all observe bearing inner race 6.

The first roller 31 and the second roller 32 are provided with an operating knob 34 extending outward of the placing table 2, the dial 21 is provided on the outer surface of the placing table 2 along the circumferential direction of the operating handle, and the operating knob 34 is provided with scale marks 341, the scale marks 341 being provided in alignment with the dial 21. The beneficial effect who so sets up is: adopt above-mentioned scheme, operation knob 34 has made things convenient for the first roller 31 of observer or second ball to rotate, and set up scale mark 341 on operation knob 34, scale mark 341 has aimed at the calibrated scale 21 of placing platform 2 surface, so when operation knob 34 rotates, can audio-visually see operation knob 34 angle of rotation at every turn, so after operation knob 34 has rotated the steel ball at every turn, angle of rotation's record has avoided the observer to carry out repeated observation to the steel ball surface that has observed, observation efficiency has been increased.

The above-mentioned embodiments are only preferred embodiments of the present invention, and therefore, the scope of the present invention should not be limited by the above-mentioned embodiments, and therefore, equivalent changes, such as equivalent products using similar processes and similar structures, made by the claims of the present invention, are also included in the scope of the present invention.

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