Turnover device for capacitor shell processing
By designing a capacitor casing processing device that includes extrusion, flipping, and lifting positioning mechanisms, the operational difficulty and manpower consumption issues during capacitor casing clamping are solved, achieving automated horizontal maintenance and convenient clamping.
Patent Information
- Application Number
- CN202520280007.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-02-21
AI Technical Summary
Existing capacitor casing processing equipment requires manual horizontal holding during clamping, which is difficult and labor-intensive.
A capacitor casing processing device was designed, which includes a pressing mechanism, a flipping mechanism, and a lifting and positioning mechanism. The lifting and positioning mechanism enables the capacitor casing to accurately reach the clamping position and maintain a horizontal state, and the hydraulic cylinder and drive motor are used to achieve automatic clamping.
It reduces the difficulty of operation, saves manpower, and improves the automation level and ease of operation of capacitor shell clamping.
Smart Images

Figure CN223785018U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to capacitor production technical field especially relates to a kind of turnover device for capacitor shell processing. BACKGROUND
[0002] Capacitor is a kind of device that accommodates electric charge, which is composed of two conductors close to each other with an insulating medium in between. After the capacitor plastic shell is formed, it needs to be further extruded. When the plastic shell is extruded, it needs to be turned over to fully extrude each surface of the capacitor shell.
[0003] After searching, the utility model patent with patent authorization announcement No. CN221125739U discloses a kind of turnover device for capacitor plastic shell production, including object table, the top side of the object table is fixedly equipped with the support plate with the shape of U-shaped arrangement, the center position of the top end of the support plate is fixedly equipped with hydraulic rod, the output end of the hydraulic rod is fixedly equipped with pressure block, the upper side of the object table is oppositely equipped with two limit plates, and the two limit plates are located in support plate.
[0004] However, the above-mentioned device still has some shortcomings in actual use. The most obvious one is that when clamping the capacitor shell to be processed, the operator needs to first put the capacitor shell on the outside of the clamping head on one side, and then manually keep it in a horizontal state to facilitate subsequent precise clamping of the capacitor shell. This process not only consumes a lot of manpower, but also has certain operation difficulty when manually keeping it in a horizontal state.
[0005] Therefore, it is necessary to invent a kind of turnover device for capacitor shell processing to solve the above-mentioned problems. UTILITY MODEL CONTENTS
[0006] The utility model aims to provide a kind of turnover device for capacitor shell processing, which can make the capacitor shell accurately reach the clamping station between the two clamping heads and continuously keep it in a horizontal state, reducing the operation difficulty and effectively saving manpower, making it more convenient to use in practice. To solve the problem of clamping the capacitor shell to be processed, the operator needs to first put the capacitor shell on the outside of the clamping head on one side, and then manually keep it in a horizontal state to facilitate subsequent precise clamping of the capacitor shell. This process not only consumes a lot of manpower, but also has certain operation difficulty when manually keeping it in a horizontal state.
[0007] According to one aspect of the present disclosure, the following technical solution is provided: a kind of turnover device for capacitor shell processing, comprising:
[0008] extrusion mechanism, the extrusion mechanism is used to extrude capacitor shell for extruding processing.
[0009] A turnover mechanism is arranged for clamping and turning the capacitor shell.
[0010] The lifting positioning mechanism comprises a C-shaped frame, a sliding shaft, a limiting block, a lower pushing block, a placing seat, a positioning groove, an upper pushing block and a guide rod.
[0011] The C-shaped frame is fixedly arranged on the inner side of the U-shaped frame, the sliding shaft penetrates through the C-shaped frame and is in sliding connection with the C-shaped frame, the limiting block is fixedly arranged on the rear end of the sliding shaft, the lower pushing block is fixedly sleeved on the outer side of the sliding shaft, the placing seat is attached to the top of the C-shaped frame, the positioning groove is arranged on the top of the placing seat, the upper pushing block and the guide rod are in sliding penetration through the top of the C-shaped frame in the vertical direction and are fixedly connected with the placing seat, and the top end of the lower pushing block and the bottom end of the upper pushing block are provided with inclined surfaces and are attached to each other.
[0012] According to the capacitor shell processing turnover device provided in the at least one embodiment of the present disclosure, the pressing mechanism comprises a base and a mounting frame, and the mounting frame is fixedly arranged on the top of the base.
[0013] According to the capacitor shell processing turnover device provided in the at least one embodiment of the present disclosure, the pressing mechanism further comprises a hydraulic cylinder A and a pressing plate, the hydraulic cylinder A is fixedly arranged on the top of the mounting frame and the output shaft thereof is in sliding penetration through the mounting frame and extends to the inner side of the mounting frame, and the pressing plate is fixedly arranged on the bottom end of the output shaft of the hydraulic cylinder A.
[0014] According to the capacitor shell processing turnover device provided in the at least one embodiment of the present disclosure, the turnover mechanism comprises a U-shaped frame, a driving motor and a hydraulic cylinder B, the U-shaped frame is fixedly arranged on the top of the base and located on the inner side of the mounting frame, the driving motor is fixedly arranged on the left side of the U-shaped frame, and the hydraulic cylinder B is fixedly arranged on the right side of the U-shaped frame and the output shaft thereof is in sliding penetration through the outer wall of the driving motor and extends to the inner side of the U-shaped frame.
[0015] According to the capacitor shell processing turnover device provided in the at least one embodiment of the present disclosure, the turnover mechanism further comprises two clamping heads, one clamping head is fixedly arranged on the right end of the output shaft of the driving motor, and the other clamping head is rotatably sleeved on the left end of the output shaft of the hydraulic cylinder B through a bearing.
[0016] The technical effects and advantages of the present application are as follows:
[0017] The utility model discloses a lifting positioning mechanism is set up, in order to the capacitor shell is placed to the positioning groove inside positioning, then the sliding axle is pulled to the front, until the limit block and C-shaped frame back fit, the sliding axle is driven to drive the lower push block synchronous forward movement in the process of being pulled, the lower push block is pushed when moving forward to the upper push block, and then makes the upper push block drive the placing seat to move up, and the capacitor shell in the positioning groove inside is driven to move up to the clamping station when the placing seat moves up, after the clamping of the capacitor shell of turnover mechanism is completed, the sliding axle is loosened, at this moment, under the action of gravity, the placing seat drives the upper push block to move down, and the lower push block is driven to reset the sliding axle and limit block under the upper push block push, compared with the same type equipment of prior art, the utility model discloses can make the capacitor shell accurate reach the clamping station between two chucks, and make it keep horizontal state continuously, reduce the operation difficulty and effectively save manpower, and it is more convenient when actually using. BRIEF DESCRIPTION OF DRAWINGS
[0018] The accompanying drawings illustrate exemplary embodiments of the present disclosure and together with the general description of the disclosure given above, and the detailed description of the embodiments below, serve to explain the principles of the present disclosure.
[0019] Figure 1 It is the overall structure schematic drawing of the turnover device for capacitor shell processing according to one embodiment of the present disclosure.
[0020] Figure 2 It is the extrusion mechanism and turnover mechanism structure schematic drawing of the turnover device for capacitor shell processing according to one embodiment of the present disclosure.
[0021] Figure 3 It is the lifting positioning mechanism structure schematic drawing of the turnover device for capacitor shell processing according to one embodiment of the present disclosure.
[0022] The reference signs in the drawings are specifically as follows:
[0023] 1, extrusion mechanism, 11, base, 12, mounting frame, 13, hydraulic cylinder A, 14, pressing plate,
[0024] 2, turnover mechanism, 21, U-shaped frame, 22, drive motor, 23, hydraulic cylinder B, 24, chuck,
[0025] 3, lifting positioning mechanism, 31, C-shaped frame, 32, sliding axle, 33, limit block, 34, lower push block, 35, placing seat, 36, positioning groove, 37, upper push block, 38, guide rod. DETAILED DESCRIPTION
[0026] For descriptive purposes, the disclosure can use spatially relative terms, such as "below", "beneath", "lower", "under", "above", "upper" and the like, to describe the relative relationship between one component and another component as the figure(s) illustrate. The spatially relative terms are intended to encompass different orientations of the device in use, operation and / or manufacture, for example, the component described as "below" or "beneath" another component or feature can subsequently be positioned "above" the other component or feature as a result of the device being turned over. Thus, the exemplary term "below" can encompass both an orientation of above and below. Moreover, the device can be otherwise oriented (e.g., rotated 90 degrees or at other orientations) and the spatially relative descriptors used herein interpreted accordingly.
[0027] Figure 1 is a schematic diagram of the overall structure of a turnover device for capacitor shell processing according to an embodiment of the disclosure.
[0028] Figure 2 is a schematic diagram of the structure of a pressing mechanism 1 and a turnover mechanism 2 of a turnover device for capacitor shell processing according to an embodiment of the disclosure.
[0029] Figure 3 is a schematic diagram of the structure of a lifting positioning mechanism 3 of a turnover device for capacitor shell processing according to an embodiment of the disclosure.
[0030] As shown in Figures 1-3 , the turnover device for capacitor shell processing of the disclosure can include a pressing mechanism 1, a turnover mechanism 2 and a lifting positioning mechanism 3 and the like.
[0031] As shown in Figure 2 , in the disclosure, the pressing mechanism 1 includes a base 11, a mounting frame 12, a hydraulic cylinder A 13 and a pressing plate 14, wherein the mounting frame 12 is fixedly arranged on the top of the base 11, the hydraulic cylinder A 13 is fixedly arranged on the top of the mounting frame 12 and its output shaft slides through the mounting frame 12 and extends to the inside of the mounting frame 12, and the pressing plate 14 is fixedly arranged on the bottom end of the output shaft of the hydraulic cylinder A 13.
[0032] Thus, in order to make the hydraulic cylinder A 13 drive the pressing plate 14 to descend, and then make the pressing plate 14 press the clamped capacitor shell.
[0033] As shown in Figure 2As shown, in a preferred embodiment, the flipping mechanism 2 includes a U-shaped frame 21, a drive motor 22, a hydraulic cylinder B23, and a clamp 24. The U-shaped frame 21 is fixedly mounted on the top of the base 11 and located inside the mounting bracket 12. The drive motor 22 is fixedly mounted on the left side of the U-shaped frame 21. The hydraulic cylinder B23 is fixedly mounted on the right side of the U-shaped frame 21, and its output shaft slides through the outer wall of the drive motor 22 and extends to the inner side of the U-shaped frame 21. Two clamps 24 are provided: one clamp 24 is fixedly mounted on the right end of the output shaft of the drive motor 22, and the other clamp 24 is rotatably sleeved on the left end of the output shaft of the hydraulic cylinder B23 via a bearing.
[0034] Therefore, after the capacitor casing reaches the clamping position between the two clamps 24, the hydraulic cylinder B23 drives the right clamp 24 to move continuously to the left. As the right clamp 24 moves continuously, it contacts the right end of the capacitor casing and then pushes the capacitor casing to move continuously to the left along the inner wall of the positioning groove 36. Then the left clamp 24 contacts the left end of the capacitor casing. At this time, as the right clamp 24 continues to move to the left, the left end of the capacitor casing is sleeved on the outside of the left clamp 24, and the right end of the capacitor casing is sleeved on the outside of the right clamp 24. When it is necessary to flip the capacitor casing, the drive motor 22 drives the left clamp 24 to rotate. The left clamp 24 rotates synchronously with the capacitor casing and the right clamp 24 by pressure and friction.
[0035] like Figure 3 As shown in this disclosure, the lifting and positioning mechanism 3 includes a C-shaped frame 31, a sliding shaft 32, a limiting block 33, a pushing block 34, a placement seat 35, a positioning groove 36, an upward pushing block 37, and a guide rod 38. The C-shaped frame 31 is fixedly disposed inside the U-shaped frame 21. The sliding shaft 32 passes through the C-shaped frame 31 and is slidably connected to it. The limiting block 33 is fixedly disposed at the rear end of the sliding shaft 32. The pushing block 34 is fixedly sleeved on the outer side of the sliding shaft 32. The placement seat 35 is attached to the top of the C-shaped frame 31. The positioning groove 36 is opened at the top of the placement seat 35. The upward pushing block 37 and the guide rod 38 slide vertically through the top of the C-shaped frame 31 and are fixedly connected to the placement seat 35. The top end of the pushing block 34 and the bottom end of the upward pushing block 37 are both provided with inclined surfaces and are attached to each other.
[0036] Thus, in order to facilitate the capacitor shell to be placed into the positioning groove 36 for positioning, then the sliding shaft 32 is pulled forward until the limiting block 33 is attached to the back of the C-shaped frame 31, the sliding shaft 32 is pulled to drive the lower push block 34 to move forward synchronously, the lower push block 34 moves forward to push the upper push block 37, and then the upper push block 37 drives the placement seat 35 to move upward, the placement seat 35 moves upward to drive the capacitor shell inside the positioning groove 36 to move upward to the clamping station synchronously, after the turnover mechanism 2 completes the clamping of the capacitor shell, the sliding shaft 32 is loosened, at this time, under the action of gravity, the placement seat 35 drives the upper push block 37 to move downward, and the lower push block 34 drives the sliding shaft 32 and the limiting block 33 to reset under the pushing of the upper push block 37. Compared with the same type of existing equipment, the capacitor shell can be accurately guided to the clamping station between the two clamping heads 24, and it can be continuously maintained in a horizontal state, which reduces the operation difficulty and effectively saves manpower, and is more convenient to use.
[0037] In addition, it also needs to be explained that the contents not described in detail in the specification belong to the prior art known to those skilled in the art.
[0038] Those skilled in the art should understand that the above embodiments are only for clearly illustrating the present disclosure, and are not intended to limit the scope of the present disclosure. Based on the above disclosure, other changes or modifications can also be made by those skilled in the art, and these changes or modifications are still within the scope of the present disclosure.
Claims
1. An apparatus for turning over a capacitor case for processing, characterized by comprising: The utility model relates to a capacitor shell extruding device, including: extruding mechanism for extruding capacitor shell; turnover mechanism for clamping and turning capacitor shell; and lifting positioning mechanism including C-shaped frame, sliding shaft, limit block, push-down block, placing seat, positioning groove, push-up block and guide rod; the C-shaped frame is fixedly arranged in the inside of U-shaped frame, the sliding shaft penetrates through the C-shaped frame and is slidably connected with the C-shaped frame, the limit block is fixedly arranged at the rear end of the sliding shaft, the push-down block is fixedly sleeved and arranged on the outside of the sliding shaft, the placing seat is attached to the top of the C-shaped frame, the positioning groove is arranged on the top of the placing seat, the push-up block and the guide rod are slidably penetrated through the top of the C-shaped frame in the vertical direction and are fixedly connected with the placing seat, and the top end of the push-down block and the bottom end of the push-up block are provided with inclined surfaces and are attached to each other. The extruding mechanism includes a base and a mounting frame, and the mounting frame is fixedly arranged on the top of the base.
2. The turnover device for processing of capacitor housings according to claim 1, characterized in that: The extruding mechanism further includes a hydraulic cylinder A and a pressing plate, the hydraulic cylinder A is fixedly arranged on the top of the mounting frame, the output shaft of the hydraulic cylinder A is slidably penetrated through the mounting frame and extends to the inside of the mounting frame, and the pressing plate is fixedly arranged on the bottom end of the output shaft of the hydraulic cylinder A.
3. The turnover apparatus for processing of capacitor housings according to claim 2, characterized in that: The turnover mechanism includes a U-shaped frame, a drive motor and a hydraulic cylinder B, the U-shaped frame is fixedly arranged on the top of the base and located in the inside of the mounting frame, the drive motor is fixedly arranged on the left side of the U-shaped frame, and the hydraulic cylinder B is fixedly arranged on the right side of the U-shaped frame, and the output shaft of the hydraulic cylinder B is slidably penetrated through the outer wall of the drive motor and extends to the inside of the U-shaped frame.
4. The turnover apparatus for processing of a capacitor housing according to claim 3, characterized in that: The turnover mechanism further includes two chuck heads, one of the chuck heads is fixedly arranged on the right end of the output shaft of the drive motor, and the other chuck head is rotatably sleeved on the left end of the output shaft of the hydraulic cylinder B through a bearing.
5. The apparatus according to claim 4, wherein:
Citation Information
Patent Citations
Turnover device for capacitor plastic shell production
CN221125739U