CN221020345U - Spring end face polishing device - Google Patents

Spring end face polishing device Download PDF

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Publication number
CN221020345U
CN221020345U CN202322682836.1U CN202322682836U CN221020345U CN 221020345 U CN221020345 U CN 221020345U CN 202322682836 U CN202322682836 U CN 202322682836U CN 221020345 U CN221020345 U CN 221020345U
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CN
China
Prior art keywords
frame
mounting
polishing
groups
spring end
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CN202322682836.1U
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Chinese (zh)
Inventor
陈松
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Chongqing Xingjin Machinery Manufacturing Co ltd
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Chongqing Xingjin Machinery Manufacturing Co ltd
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Priority to CN202322682836.1U priority Critical patent/CN221020345U/en
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Abstract

The utility model provides a spring end face polishing device which comprises a frame, wherein a collecting frame is arranged at the bottom of the frame, rotatable mounting rings are arranged on the frame, a plurality of groups of mounting cylinders are arranged on the mounting rings at intervals, two ends of each mounting cylinder are in a through shape, a driving mechanism for controlling the mounting rings to rotate is also arranged on the frame, a supporting table fixedly connected with the frame through a supporting frame is arranged in each mounting ring, two groups of polishing assemblies are arranged on the supporting table, the two groups of polishing assemblies are oppositely arranged on the inner side and the outer side of each mounting ring, a feed box is also arranged on each supporting table, and the opening at the bottom of each feed box is aligned with one group of mounting cylinders. The whole polishing process of this polishing device is high-efficient quick, and need not to break the work of polishing, need not the manual loading and unloading spring of staff simultaneously, the effectual work efficiency who improves spring production and processing.

Description

Spring end face polishing device
Technical Field
The utility model relates to the technical field of spring processing, in particular to a spring end face polishing device.
Background
The end face of the compression spring needs to be ground, the perpendicularity of the compression spring is guaranteed through grinding the two ends of the compression spring, the end face of the compression spring is kept in contact with other parts, the two ends of the ground spring are changed into line contact or surface contact from upper and lower point contact, the stress area of the spring and a contact surface is increased, and the contact surface is prevented from being scratched.
According to the utility model, the end surface polishing device for the spring is provided, and the spring body can be kept suspended in the accommodating hole, so that the upper end and the lower end of the spring body can be synchronously polished by the polishing mechanism when the accommodating hole is positioned right below the polishing wheel.
However, when the existing spring end face polishing device is used, a plurality of unground springs are required to be manually placed into the accommodating holes by a worker, the springs are required to be taken out one by one after polishing, the springs are inconvenient and fast to be loaded and unloaded, and the working efficiency of spring processing can be reduced due to the fact that the springs are manually loaded and unloaded.
Disclosure of utility model
Aiming at the defects in the prior art, the utility model provides a spring end surface polishing device, which aims to solve the technical problems that the traditional spring end surface polishing device provided in the background art is inconvenient and rapid to load and unload a spring, and the working efficiency of spring processing is reduced due to the adoption of a mode of manually loading and unloading the spring.
In order to achieve the above purpose, the utility model provides a spring end face polishing device, comprising:
A frame;
The mounting rings are rotatably arranged on the rack along the axis of the mounting rings, a plurality of groups of mounting cylinders are arranged on the mounting rings at intervals, and two ends of each mounting cylinder are communicated;
the driving mechanism is arranged on the frame to control the mounting ring to rotate; and
The supporting table is arranged in the mounting ring and fixedly connected with the frame through a supporting frame, two groups of polishing assemblies are arranged on the supporting table, and the two groups of polishing assemblies are oppositely arranged on the inner side and the outer side of the mounting ring.
In a preferred embodiment, one side of the mounting ring is provided with an annular track, the frame is provided with a support ring, and the annular track is rotatably arranged in the support ring along the axis of the annular track.
In a preferred embodiment, the driving mechanism comprises:
The transmission gear is rotatably arranged on the frame along the axis of the transmission gear;
The toothed ring is arranged in the annular track and meshed with the transmission gear; and
And the transmission assembly is arranged on the frame and used for driving the transmission gear to rotate.
In a preferred embodiment, the transmission assembly comprises:
The driving motor is fixedly arranged on the frame; and
And the synchronous wheels are provided with two groups and are respectively and coaxially connected with the output shaft of the driving motor and the transmission gear, and the two groups of synchronous wheels are connected through a synchronous belt.
In a preferred embodiment, the polishing assembly comprises a mounting frame, wherein the mounting frame in one group of polishing assemblies is fixedly arranged on the supporting table, two groups of mounting frames are connected through a connecting frame, and two groups of mounting frames are provided with openings which are oppositely arranged.
In a preferred embodiment, the polishing assembly further comprises a plurality of groups of driving rollers which are arranged in parallel at intervals, the plurality of groups of driving rollers are rotatably arranged in the mounting frame along the axis of the driving rollers, a group of polishing abrasive belts are sleeved on the plurality of groups of driving rollers, one section of each polishing abrasive belt is exposed out of the opening, a driving motor is further arranged on the mounting frame, and an output shaft of the driving motor is connected with one group of driving rollers.
In a preferred embodiment, a feed box is provided on the support table, the feed box bottom opening is aligned with one of the sets of mounting cylinders, and a collection frame is provided at the bottom of the frame.
Compared with the prior art, the utility model has the following beneficial effects:
The device is when using, place the spring in the feed box, drop to the installation section of thick bamboo through feed box bottom opening, drive the collar through actuating mechanism and rotate, carry out the bearing through the spring in the supporting bench to the installation section of thick bamboo, avoid the spring to drop, until a set of installation section of thick bamboo that is equipped with the spring removes to between two sets of polishing components, polish the both ends of spring through two sets of polishing components, after polishing, continue control collar and rotate, make the spring drop to collect in the collection frame, whole polishing process is high-efficient quick, and need not to break the work of polishing, need not the manual loading and unloading spring of staff simultaneously, the effectual work efficiency that improves spring production and processing.
Drawings
In order to more clearly illustrate the embodiments of the present utility model, the drawings that are required to be used in the embodiments will be briefly described. Throughout the drawings, the elements or portions are not necessarily drawn to actual scale.
FIG. 1 is a schematic perspective view of a spring end surface polishing device provided by the utility model;
FIG. 2 is a schematic view of the back surface structure of a spring end surface grinding device according to the present utility model;
FIG. 3 is a cross-sectional view of a spring end face grinding apparatus of the present utility model;
FIG. 4 is a schematic view of a polishing assembly of a spring end polishing apparatus according to the present utility model;
reference numerals:
101. A frame; 102. a support ring; 103. a collection frame;
201. A mounting ring; 202. a mounting cylinder; 203. an endless track; 204. a toothed ring;
301. A transmission gear; 302. a driving motor; 303. a synchronizing wheel; 304. a synchronous belt;
401. A support table; 402. a support frame; 403. a mounting frame; 404. a connecting frame; 405. a driving roller; 406. polishing an abrasive belt; 407. a drive motor;
501. And a feed box.
Detailed Description
Embodiments of the technical scheme of the present utility model will be described in detail below with reference to the accompanying drawings. The following examples are only for more clearly illustrating the technical aspects of the present utility model, and thus are merely examples, and are not intended to limit the scope of the present utility model.
Examples:
As shown in fig. 1 and 2, the utility model provides a spring end surface polishing device, which comprises a frame 101, wherein a mounting ring 201 is arranged on the frame 101, an annular track 203 is arranged on one side of the mounting ring 201, a support ring 102 is arranged on the frame 101, and the annular track 203 is rotatably arranged in the support ring 102 along the axis of the annular track. The frame 101 is also provided with a driving mechanism for controlling the rotation of the mounting ring 201.
The driving mechanism comprises a transmission gear 301 which is rotatably arranged on the machine frame 101 along the axis of the driving mechanism, a toothed ring 204 is arranged in the annular track 203, the toothed ring 204 is meshed with the transmission gear 301, a transmission assembly which drives the transmission gear 301 to rotate is arranged on the machine frame 101, the transmission assembly comprises a driving motor 302 which is fixedly arranged on the machine frame 101, synchronous wheels 303 are respectively arranged on the output shaft of the driving motor 302 and the transmission gear 301, and the two synchronous wheels 303 are connected through a synchronous belt 304.
One group of synchronizing wheels 303 can be started to rotate by controlling the driving motor 302, the synchronizing wheels 303 can drive the transmission gear 301 to rotate through the synchronous belt 304 in the rotating process, and the transmission gear 301 can drive the mounting ring 201 to rotate through the cooperation with the toothed ring 204 in the rotating process.
As shown in fig. 3, in this embodiment, a plurality of groups of mounting cylinders 202 are arranged on the mounting ring 201 at intervals, both ends of the mounting cylinders 202 are all in a through shape, a supporting table 401 is arranged in the mounting ring 201, the supporting table 401 is fixedly connected with the frame 101 through a supporting frame 402, a feeding box 501 is arranged on the supporting table 401, and an opening at the bottom of the feeding box 501 is aligned with one group of mounting cylinders 202.
The springs to be polished are conveyed into the feed box 501 through the conveying equipment, the springs fall into the uppermost group of mounting cylinders 202 through the opening at the bottom of the feed box 501, the springs are always ensured to be positioned in the mounting cylinders 202 under the bearing of the supporting table 401, and the mounting ring 201 can drive the springs to move in the rotating process.
As shown in fig. 3 and 4, in this embodiment, two sets of polishing components are disposed on the supporting table 401, the two sets of polishing components are relatively disposed on the inner side and the outer side of the mounting ring 201, the polishing components include mounting frames 403, wherein the mounting frames 403 in one set of polishing components are fixedly disposed on the supporting table 401, the two sets of mounting frames 403 are connected by a connecting frame 404, and the two sets of mounting frames 403 are provided with openings that are relatively disposed. The polishing assembly further comprises a plurality of groups of driving rollers 405 which are arranged in parallel at intervals, the driving rollers 405 are rotatably arranged in the mounting frame 403 along the axes of the driving rollers 405, a group of polishing abrasive belts 406 are sleeved on the driving rollers 405, one section of each polishing abrasive belt 406 is exposed out of the opening, a driving motor 407 is further arranged on the mounting frame 403, and the output shaft of each driving motor 407 is connected with one group of driving rollers 405.
When the uppermost group of mounting cylinders 202 moves between the two groups of polishing assemblies, the two ends of the spring can be contacted with the two groups of polishing abrasive belts 406 by utilizing the self-adaptive deformation of the spring, and then the driving motor 407 is controlled to start to drive the driving roller 405 to rotate, so that the polishing abrasive belts 406 move to polish the two ends of the spring simultaneously. In addition, it will be appreciated that in some embodiments, the grinding assembly may alternatively be used to grind with a grinding wheel, and the end face of the spring may be quickly ground by rotating the grinding wheel with a motor.
As shown in fig. 1, in this embodiment, the bottom of the stand 101 is provided with a collecting frame 103, after polishing the end face of the spring through two sets of polishing components, the mounting ring 201 is continuously controlled to rotate, the spring can fall into the collecting frame 103 to collect under the action of self gravity, the whole polishing process does not need to manually assemble and disassemble the spring, and a large number of springs can be polished without stopping, so that the working efficiency of spring processing is effectively improved.
The utility model has the specific use mode and beneficial effects that:
When the device is used, the spring is placed in the feed box 501, falls into the mounting cylinder 202 through the opening at the bottom of the feed box 501, drives the synchronous wheel 303 to rotate through the driving motor 302, and then controls the transmission gear 301 to rotate under the action of the synchronous belt 304, so that the transmission gear 301 and the toothed ring 204 are matched to drive the mounting ring 201 to rotate to drive the spring to move, the spring in the mounting cylinder 202 is supported through the supporting table 401, the spring is prevented from falling until the group of mounting cylinders 202 with the spring moves between two groups of polishing assemblies, the driving motor 407 drives the driving roller 405 to rotate, so that the polishing abrasive belt 406 moves to polish the two ends of the spring, the mounting ring 201 is continuously controlled to rotate after polishing is finished, the spring falls into the collecting frame 103 to be collected, the whole polishing process is efficient and rapid, intermittent polishing work is not needed, and meanwhile, a worker does not need to manually load and unload the spring, and the work efficiency of spring production and processing is effectively improved.
While the fundamental and principal features of the utility model and advantages of the utility model have been shown and described, it will be apparent to those skilled in the art that the utility model is not limited to the details of the foregoing exemplary embodiments.

Claims (7)

1. A spring end face grinding device is characterized by comprising:
a frame (101);
The mounting ring (201) is rotatably arranged on the frame (101) along the axis of the mounting ring, a plurality of groups of mounting cylinders (202) are arranged on the mounting ring (201) at intervals, and two ends of each mounting cylinder (202) are in a through shape;
The driving mechanism is arranged on the frame (101) to control the rotation of the mounting ring (201); and
The support table (401) is arranged in the mounting ring (201) and is fixedly connected with the frame (101) through a support frame (402), two groups of polishing assemblies are arranged on the support table (401), and the two groups of polishing assemblies are oppositely arranged on the inner side and the outer side of the mounting ring (201).
2. A spring end face grinding apparatus as defined in claim 1, wherein: one side of the mounting ring (201) is provided with an annular track (203), the stand (101) is provided with a support ring (102), and the annular track (203) is rotatably arranged in the support ring (102) along the axis of the annular track.
3. A spring end face grinding apparatus as set forth in claim 2 wherein said drive mechanism comprises:
a transmission gear (301) rotatably provided on the frame (101) along the axis thereof;
a toothed ring (204) disposed within the annular track (203) and meshed with the drive gear (301); and
And the transmission assembly is arranged on the frame (101) to drive the transmission gear (301) to rotate.
4. A spring end face grinding apparatus as set forth in claim 3 wherein said drive assembly includes:
a driving motor (302) fixedly arranged on the frame (101); and
And the synchronous wheels (303) are provided with two groups and are respectively and coaxially connected with the output shaft of the driving motor (302) and the transmission gear (301), and the two groups of synchronous wheels (303) are connected through a synchronous belt (304).
5. A spring end face grinding apparatus as defined in claim 1, wherein: the polishing assembly comprises mounting frames (403), wherein the mounting frames (403) in one group of polishing assemblies are fixedly arranged on the supporting table (401), the two groups of mounting frames (403) are connected through a connecting frame (404), and the two groups of mounting frames (403) are provided with openings which are oppositely arranged.
6. The spring end face grinding device of claim 5, wherein: the polishing assembly further comprises a plurality of groups of driving rollers (405) which are arranged in parallel at intervals, the driving rollers (405) are arranged in the mounting frame (403) in a rotatable mode along the axes of the driving rollers (405), a group of polishing abrasive belts (406) are sleeved on the driving rollers (405), one section of each polishing abrasive belt (406) is exposed out of the opening, a driving motor (407) is further arranged on the mounting frame (403), and an output shaft of each driving motor (407) is connected with one group of driving rollers (405).
7. A spring end face grinding apparatus as defined in claim 1, wherein: a feed box (501) is arranged on the supporting table (401), an opening at the bottom of the feed box (501) is aligned with one group of mounting cylinders (202), and a collecting frame (103) is arranged at the bottom of the stand (101).
CN202322682836.1U 2023-10-08 2023-10-08 Spring end face polishing device Active CN221020345U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322682836.1U CN221020345U (en) 2023-10-08 2023-10-08 Spring end face polishing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322682836.1U CN221020345U (en) 2023-10-08 2023-10-08 Spring end face polishing device

Publications (1)

Publication Number Publication Date
CN221020345U true CN221020345U (en) 2024-05-28

Family

ID=91137047

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322682836.1U Active CN221020345U (en) 2023-10-08 2023-10-08 Spring end face polishing device

Country Status (1)

Country Link
CN (1) CN221020345U (en)

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