CN224088992U - A bearing machining bracket - Google Patents

A bearing machining bracket

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Publication number
CN224088992U
CN224088992U CN202520388347.1U CN202520388347U CN224088992U CN 224088992 U CN224088992 U CN 224088992U CN 202520388347 U CN202520388347 U CN 202520388347U CN 224088992 U CN224088992 U CN 224088992U
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CN
China
Prior art keywords
bearing
fixed
movable
support
spring
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Application number
CN202520388347.1U
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Chinese (zh)
Inventor
陈书莉
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.)
Cixi Hualu Bearing Co ltd
Original Assignee
Cixi Hualu Bearing Co ltd
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Priority to CN202520388347.1U priority Critical patent/CN224088992U/en
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Publication of CN224088992U publication Critical patent/CN224088992U/en
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Abstract

本实用新型公开了一种轴承加工用支架,涉及轴承加工技术领域,包括支撑台,还包括:可翻转式定位结构,其设置于支撑台上,用于对轴承定位后,进行翻转作业;其中,可翻转式定位结构空腔,所述空腔设置于支撑台的内部,所述支撑台的一侧固定有驱动电机,所述驱动电机的输出轴安装有螺纹杆,所述螺纹杆的外表面螺纹连接有连接板,所述连接板的内部开设有滑槽,所述空腔的内部固定有两组连接轴,所述连接轴的外表面套设有活动架,所述支撑台的顶部安装有两组固定台,通过连接柱拉动加工台,令加工台与轴承分离,并留出空间,此时通过转轴与活动架之间的配合,能够带动限位件进行翻转,进而无需对轴承解除定位便可对其进行翻转。

This utility model discloses a bearing processing bracket, relating to the field of bearing processing technology. It includes a support platform and a flip-type positioning structure mounted on the support platform for positioning the bearing and then flipping it. The flip-type positioning structure has a cavity inside the support platform. A drive motor is fixed to one side of the support platform, and a threaded rod is mounted on the output shaft of the drive motor. A connecting plate is threaded onto the outer surface of the threaded rod, and a groove is formed inside the connecting plate. Two sets of connecting shafts are fixed inside the cavity, and movable frames are fitted onto the outer surfaces of the connecting shafts. Two sets of fixed platforms are mounted on the top of the support platform. By pulling the processing platform with connecting columns, the processing platform is separated from the bearing, creating space. At this time, through the cooperation between the rotating shaft and the movable frame, the limiting component can be flipped, thus allowing the bearing to be flipped without disengaging its positioning.

Description

Support is used in bearing processing
Technical Field
The utility model relates to the technical field of bearing machining, in particular to a support for bearing machining.
Background
A bearing is a mechanical element that limits relative movement to a desired range of movement and reduces friction between moving parts, most bearings facilitate the desired movement by minimizing friction, and bearings can be widely categorized according to the type of operation, allowable movement, or direction of load applied to the part, etc.
Before the bearing is machined, the support is required to be used for positioning the bearing, the positioning structure of the support for bearing machining in the prior art is single, the function of positioning the bearing is only realized, after machining of the other surface of the bearing is finished, the other surface of the bearing is required to be machined, at the moment, after the bearing is unfixed, the bearing is overturned and then is fixed again, and the efficiency of bearing machining is affected.
Disclosure of utility model
The utility model aims to make up the defects of the prior art and provides a bracket for bearing processing.
In order to achieve the above purpose, the utility model provides the following technical scheme that the bracket for bearing processing comprises a supporting table and further comprises:
The turnover type positioning structure is arranged on the supporting table and is used for performing turnover operation after positioning the bearing;
Wherein the cavity is arranged in the supporting table, a driving motor is fixed on one side of the supporting table, a threaded rod is installed on an output shaft of the driving motor, a connecting plate is connected with the outer surface of the threaded rod in a threaded manner, a sliding groove is formed in the connecting plate, two groups of connecting shafts are fixed in the cavity, a movable frame is sleeved on the outer surface of the connecting shafts, two groups of fixed tables are installed at the top of the supporting table, a rotating shaft is rotatably connected to the top of the movable frame, a connecting frame is hinged to the bottom of the movable frame, the end part of the rotating shaft penetrates through the fixed table and is connected with a limiting piece, the bottom cover of supporting bench is equipped with the spliced pole, the top of spliced pole passes the supporting bench and is fixed with the processing platform, the surface mounting of spliced pole has solid fixed ring, the inside of supporting bench is seted up flutedly, the internally mounted of recess has the fixed axle, the surface cover of fixed axle is equipped with moving part and first spring, one side of moving part is fixed with the supporting part, the bottom sliding connection of supporting bench has the movable rod, the top of movable rod is fixed with the extrusion piece, the surface cover of movable rod is equipped with stripper plate and second spring, the bottom of stripper plate is connected with the footboard.
The connecting plate is connected with the cavity in a sliding way, and the end part of the connecting frame is connected with the sliding groove in a sliding way.
The second spring is elastically supported between the extrusion plate and the movable rod, the upper surface of the extrusion plate is in extrusion contact with the fixed ring, and the lower surface of the extrusion plate is in extrusion contact with the extrusion plate.
The top of the movable piece is provided with a slope, and the extrusion piece is in extrusion contact with the slope of the movable piece.
The top of the supporting piece is abutted with the bottom of the processing table, and the first spring is elastically supported between the groove and the movable piece.
When the extrusion plate extrudes the second spring, the extrusion part extrudes the movable part and pushes the movable part to move.
The inner side of the limiting piece is arc-shaped, the limiting piece is in extrusion contact with the bearing, and rubber is adhered to one extruded side of the limiting piece and the bearing.
Compared with the prior art, the support for bearing machining has the following beneficial effects:
1. According to the utility model, the extruding plate is driven to move downwards through the pedal, so that the extruding plate extrudes the second spring and pushes the movable rod to move downwards, the movable member is driven to slide along the inner side of the fixed shaft through the cooperation between the extruding plate and the movable member, the second spring is driven to be separated from the processing table, the limit on the processing table is relieved, meanwhile, the processing table is pulled to be separated from the bearing through the connecting column along with the continuous downward movement of the extruding plate, a space is reserved, and the limiting member can be driven to overturn through the cooperation between the rotating shaft and the movable frame, so that the bearing can be overturned without the need of positioning relief.
2. According to the utility model, through the cooperation between the threaded rod and the connecting plate, the connecting plate is driven to slide along the inner side of the cavity when the driving motor operates, and the connecting frame is driven to pull the movable frame through the cooperation between the connecting frame and the sliding groove, so that the movable frame slides along the outer surface of the connecting shaft, and at the moment, the movable frame drives the rotating shaft to slide along the inner side of the fixed table, so that the limiting piece can be controlled to rapidly position the bearing.
Additional advantages, objects, and features of the utility model will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the utility model.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic cross-sectional view of the top portion of the present utility model;
FIG. 3 is a schematic cross-sectional view of a side face of the present utility model;
FIG. 4 is an enlarged schematic view of the structure of FIG. 3A according to the present utility model;
Fig. 5 is a schematic view of a detachable structure of a movable member according to the present utility model.
In the figure, 1, a supporting table; 2, a cavity, 3, a driving motor, 4, a threaded rod, 5, a connecting plate, 6, a chute, 7, a connecting shaft, 8, a movable frame, 9, a connecting frame, 10, a rotating shaft, 11, a fixed table, 12, a limiting piece, 13, a connecting column, 14, a processing table, 15, a fixed ring, 16, a groove, 17, a fixed shaft, 18, a movable piece, 19, a first spring, 20, a supporting piece, 21, a movable rod, 22, an extrusion piece, 23, an extrusion plate, 24, a second spring, 25 and a pedal.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
As shown in fig. 1 to 5, the present utility model provides a bearing processing bracket, which comprises a supporting table 1, and further comprises:
The turnover type positioning structure is arranged on the supporting table 1 and is used for performing turnover operation after positioning the bearing;
Wherein, but convertible location structure cavity 2, cavity 2 sets up in the inside of brace table 1, one side of brace table 1 is fixed with driving motor 3, threaded rod 4 is installed to driving motor 3's output shaft, threaded rod 4's surface threaded connection has connecting plate 5, spout 6 has been seted up to connecting plate 5's inside, cavity 2's inside is fixed with two sets of connecting shafts 7, the surface cover of connecting shaft 7 is equipped with movable frame 8, two sets of fixed tables 11 are installed at the top of brace table 1, the top rotation of movable frame 8 is connected with pivot 10, the bottom of movable frame 8 articulates there is link 9, the tip of pivot 10 passes fixed table 11 and is connected with locating part 12, the bottom cover of brace table 1 is equipped with spliced pole 13, the top of spliced pole 13 passes brace table 1 and is fixed with processing platform 14, the surface of spliced pole 13 is fixed with solid fixed ring 15, the inside of brace table 1 is seted up flutedly 16, the internally mounted of recess 16 has fixed axle 17, the surface cover of fixed axle 17 is equipped with movable piece 18 and first spring 19, one side of movable piece 18 is fixed with brace 20, the bottom sliding connection of brace table 1 has movable rod 21, movable rod 21 top, the movable rod 21 has the extrusion piece 22 and the bottom of movable rod 21 has the extrusion plate 23, the extrusion plate 23 is equipped with the extrusion plate 25.
Through the cooperation between the threaded rod 4 and the connecting plate 5, the connecting plate 5 is driven to slide along the inner side of the cavity 2 when the driving motor 3 runs, and the connecting frame 9 is driven to pull the movable frame 8 through the cooperation between the connecting frame 9 and the sliding groove 6, so that the movable frame 8 slides along the outer surface of the connecting shaft 7, and at the moment, the movable frame 8 drives the rotating shaft 10 to slide along the inner side of the fixed table 11, so that the limiting part 12 can be controlled to rapidly position the bearing;
The pedal 25 drives the extrusion plate 23 to move downwards, so that the extrusion plate extrudes the second spring 24 and pushes the movable rod 21 to move downwards, the movable member 18 can be driven to slide along the inner side of the fixed shaft 17 and separate from the processing table 14 through the cooperation between the extrusion plate 22 and the movable member 18, the limit of the processing table 14 is relieved, meanwhile, the processing table 14 is pulled to separate from a bearing through the connecting column 13 along with the continuous downward movement of the extrusion plate 23, a space is reserved, and at the moment, the limiting member 12 can be driven to overturn through the cooperation between the rotating shaft 10 and the movable frame 8, and further the processing table 14 can be overturned without the need of positioning the bearing release.
As shown in fig. 2, the connecting plate 5 is slidably connected to the cavity 2, and the end of the connecting frame 9 is slidably connected to the chute 6.
Through the cooperation between connecting plate 5 and cavity 2, will drive connecting plate 5 and slide along the inboard of cavity 2 when threaded rod 4 is rotatory, and through the cooperation between link 9 and the spout 6, can be through the outer surface removal of link 9 pulling movable frame 8 along connecting axle 7, make its control locating part 12 to hold the bearing.
As shown in fig. 3, the second spring 24 is elastically supported between the pressing plate 23 and the movable rod 21, the upper surface of the pressing plate 23 is in pressing contact with the fixed ring 15, and the lower surface of the pressing plate 23 is in pressing contact with the pressing plate 23.
Through the design of the second spring 24, the extrusion plate 23 has good elastic resetting performance, and at this time, because the second spring 24 is in a compressed state, an elastic force is applied to the extrusion plate 23, so that the fixing ring 15 can be pushed by the extrusion plate 23, and the fixing ring drives the processing table 14 to reset through the connecting column 13 and support the bearing.
As shown in FIG. 5, the top of the movable member 18 is provided with a ramp, and the pressing member 22 is in pressing contact with the ramp of the movable member 18.
Through the slope that movable part 18 top set up, when extrusion 22 extrudees movable part 18, will drive movable part 18 and remove along the inboard of fixed axle 17 and control support piece 20 and processing platform 14 separation, conveniently control processing platform 14 and remove downwards, avoid processing platform 14 and rotatory bearing to appear the motion interference.
As shown in fig. 3, the top of the supporting member 20 abuts against the bottom of the processing table 14, and the first spring 19 is elastically supported between the groove 16 and the movable member 18.
Through the design of the first spring 19, the movable member 18 has good elastic resetting performance, and at this time, since the first spring 19 is in a compressed state, an elastic force is applied to the movable member 18, so that the supporting member 20 can be driven to limit the processing table 14.
As shown in fig. 4, when the pressing plate 23 presses the second spring 24, the pressing member 22 presses the movable member 18 and pushes the movable member 18 to move.
By the elastic force of the second spring 24, when the pressing plate 23 presses the second spring 24, the elastic force of the second spring 24 presses the movable rod 21, so that the pressing member 22 can be driven by the movable rod 21 to press the movable member 18.
As shown in fig. 1, the inner side of the limiting piece 12 is arc-shaped, the limiting piece 12 is in extrusion contact with the bearing, and rubber is adhered to one side of the limiting piece 12 extruded by the bearing.
Through the inboard arc of locating part 12, make it and bearing looks adaptation, promote the steadiness of centre gripping, and because the inner wall bonding of locating part 12 has rubber, avoid causing wearing and tearing to the bearing.
Working principle:
Firstly, the bearings are placed between two groups of limiting parts 12, then the driving motor 3 is controlled to run, the connecting plate 5 is driven to slide along the inner side of the cavity 2 through the cooperation between the threaded rod 4 and the connecting plate 5, meanwhile, the connecting frame 9 is driven to pull the movable frame 8 through the cooperation between the connecting frame 9 and the sliding chute 6, the movable frame 8 slides along the outer surface of the connecting shaft 7, at the moment, the movable frame 8 drives the rotating shaft 10 to slide along the inner side of the fixed table 11, the limiting parts 12 position the bearings, after the bearings are processed, the pressing plate 23 is driven to move downwards through the pedal 25, the second spring 24 is pressed and pushed to move downwards through the cooperation between the pressing part 22 and the movable part 18, the movable part 18 is driven to slide along the inner side of the fixed shaft 17 and drive the second spring 24 to be separated from the processing table 14, the limiting is released from the processing table 14, meanwhile, the connecting post 13 is driven to pull the processing table 14 to be separated from the bearings, and the bearings have enough turnover space along the inner side of the rotating shaft 8 can be driven to rotate along the rotating shaft 10, and the bearings are convenient to turn over.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. Support for bearing processing, including brace table (1), characterized by still includes:
The turnover type positioning structure is arranged on the supporting table (1) and is used for performing turnover operation after positioning the bearing;
Wherein, but convertible location structure cavity (2), cavity (2) set up in the inside of brace table (1), one side of brace table (1) is fixed with driving motor (3), threaded rod (4) are installed to the output shaft of driving motor (3), the surface threaded connection of threaded rod (4) has connecting plate (5), spout (6) have been seted up to the inside of connecting plate (5), the inside of cavity (2) is fixed with two sets of connecting axle (7), the surface cover of connecting axle (7) is equipped with movable frame (8), two sets of fixed tables (11) are installed at the top of brace table (1), the top rotation of movable frame (8) is connected with pivot (10), the bottom of movable frame (8) articulates there is connecting frame (9), the tip of pivot (10) passes fixed table (11) and is connected with locating part (12), the bottom cover of brace table (1) is equipped with spliced pole (13), the top of spliced pole (13) is passed brace table (1) and is fixed with processing table (14), the fixed surface (16) of fixed ring (16) are equipped with inside fixed surface (16), the outer surface cover of fixed axle (17) is equipped with movable part (18) and first spring (19), one side of movable part (18) is fixed with support piece (20), the bottom sliding connection of brace table (1) has movable rod (21), the top of movable rod (21) is fixed with extrusion piece (22), the surface cover of movable rod (21) is equipped with stripper plate (23) and second spring (24), the bottom of stripper plate (23) is connected with footboard (25).
2. A support for bearing machining according to claim 1, characterized in that the connecting plate (5) is slidingly connected with the cavity (2), and the end of the connecting frame (9) is slidingly connected with the chute (6).
3. A support for bearing machining according to claim 1, wherein the second spring (24) is elastically supported between the pressing plate (23) and the movable rod (21), the upper surface of the pressing plate (23) is in pressing contact with the fixed ring (15), and the lower surface of the pressing plate (23) is in pressing contact with the pressing plate (23).
4. A support for machining bearings according to claim 1, characterized in that the top of the movable member (18) is provided with a slope, and the pressing member (22) is in pressing contact with the slope of the movable member (18).
5. A support for machining bearings according to claim 1, characterized in that the top of the support member (20) abuts against the bottom of the machining table (14), and the first spring (19) is elastically supported between the recess (16) and the movable member (18).
6. A support for machining a bearing according to claim 4, wherein the pressing member (22) presses the movable member (18) and pushes the movable member (18) to move when the pressing plate (23) presses the second spring (24).
7. The support for machining the bearing, as set forth in claim 1, is characterized in that the inner side of the limiting piece (12) is arc-shaped, the limiting piece (12) is in extrusion contact with the bearing, and rubber is adhered to one side of the limiting piece (12) extruded by the bearing.
CN202520388347.1U 2025-03-06 2025-03-06 A bearing machining bracket Active CN224088992U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202520388347.1U CN224088992U (en) 2025-03-06 2025-03-06 A bearing machining bracket

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202520388347.1U CN224088992U (en) 2025-03-06 2025-03-06 A bearing machining bracket

Publications (1)

Publication Number Publication Date
CN224088992U true CN224088992U (en) 2026-04-07

Family

ID=99303343

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202520388347.1U Active CN224088992U (en) 2025-03-06 2025-03-06 A bearing machining bracket

Country Status (1)

Country Link
CN (1) CN224088992U (en)

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