Reinforcing structure of synthetic diamond cubic press
By designing a six-sided pressing machine reinforcement structure that includes a pressing mechanism, a support base, a clamping part, a reinforcement mechanism and a locking mechanism, and using pneumatic rods and reinforcement rings to automatically adapt to terrain changes, the problem of manual adjustment of the six-sided pressing machine on uneven ground is solved, thereby improving the stability and convenience of the equipment.
Patent Information
- Application Number
- CN202422816779.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-19
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-11-19
AI Technical Summary
The existing six-sided top press needs to be manually adjusted to stabilize the guide frame when placed on uneven ground. It cannot adapt to changes and requires manual intervention for each reinforcement.
A reinforcement structure of a synthetic diamond six-sided top press was designed, including a top pressing mechanism, a support seat, a clamping piece, a reinforcement mechanism and a locking mechanism. Pneumatic rods and reinforcement rings were used to automatically adapt to terrain changes, and the stability of the support seat was adjusted by the extension and retraction of the pneumatic rods.
The automatic adaptability and stability of the six-sided top press on uneven ground are achieved, which reduces the need for manual adjustment and improves the stability and ease of use of the equipment.
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Figure CN223393404U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of six-sided top presses, in particular to a reinforcement structure of a synthetic diamond six-sided top press. Background Art
[0002] The six-sided top press is the most widely used large-cavity press in China. This press has the advantages of strong self-centering, low cost, and easy operation. The six-sided top press is required for production when processing synthetic diamonds. However, when the six-sided top press is placed on an uneven ground, the equipment will be unstable. The six-sided top press will vibrate during use, resulting in a larger vibration amplitude of the equipment, which will cause damage to the six-sided top press.
[0003] In the prior art, patent (CN219784671U) proposes a reinforcement structure for a synthetic diamond six-sided top press, including a base, the upper end of the base is fixedly connected to a fixing frame, the fixing frame is fixedly connected to the six-sided top press body, the lower end of the base is fixedly connected to a guide frame, the inside of the guide frame is slidably connected to a bracket, the bracket is in contact with the base, and a slider is fixedly connected to the bracket. The utility model is provided with threaded rods, guide frames, brackets and other components. By rotating the threaded rod, the threaded rod and the bracket undergo threaded motion, thereby causing the bracket to slide in the guide frame. The position of the bracket can be adjusted, and the support point of the base can be adjusted, thereby making the placement of the six-sided top press body more stable, solving the problem of unstable placement of the equipment when the six-sided top press is placed on uneven ground.
[0004] However, in the above-mentioned prior art, the six-sided top press needs to adjust the guide frame for stability when it is placed, and cannot be adaptively changed. Each reinforcement requires manual adjustment by the staff. Utility Model Content
[0005] The purpose of the utility model is to provide a reinforcement structure of a synthetic diamond six-sided top press, which solves the problem in the prior art that the six-sided top press needs to adjust the guide frame for stability when placed, cannot be adaptively changed, and requires manual adjustment by staff each time it is reinforced.
[0006] To achieve the above-mentioned objectives, the utility model provides a reinforcement structure of a synthetic diamond six-sided pressing machine, comprising a pressing mechanism, a support seat, a plurality of clamping members, a reinforcement mechanism and a locking mechanism, wherein the locking mechanism is fixedly connected to the support seat and is located on the inner side of the support seat, each of the clamping members is fixedly connected to the support seat and is located on the peripheral side of the support seat, the support seat is detachably connected to the pressing mechanism and is located below the pressing mechanism, the reinforcement mechanism comprises a plurality of side seats, a plurality of pneumatic rods and a reinforcement ring, the upper end of each of the pneumatic rods is rotatably connected to the corresponding side seat and is respectively located on one side of the corresponding side seat, the lower end of each of the pneumatic rods is rotatably connected to the reinforcement ring and is located on the inner side of the reinforcement ring, and each of the side seats is fixedly connected to the support seat and is located on the peripheral side of the support seat.
[0007] Wherein, the pressing mechanism includes a pressing machine body and a base frame, the pressing machine body is fixedly connected to the base frame and is located above the base frame, and the base frame is detachably connected to the support seat and is located above the support seat.
[0008] Wherein, the support seat includes a seat body and a plurality of blocks, each of the blocks is fixedly connected to the seat body and is located below the seat body, and the seat body is detachably connected to the base frame and is located below the base frame.
[0009] Each of the clamping members includes a fixed frame and a clamping plate, the clamping plate is slidably connected to the fixed frame and is located on the inner side of the fixed frame, and the fixed frame is fixedly connected to the base and is located on the peripheral side of the base.
[0010] Among them, the locking mechanism includes a locking plate, multiple locking columns and a bracket. The bracket is rotatably connected to the locking plate and is located below the locking plate. Each locking column is fixedly connected to the locking plate and is located above the locking plate. The locking plate is fixedly connected to the base body and is located on the inner wall of the base body.
[0011] The utility model provides a reinforcement structure for a synthetic diamond six-sided top press. The side seats currently provided provide installation and rotation conditions for the corresponding pneumatic rods. After the top pressing mechanism is placed on the support seat, each pneumatic rod is adaptively telescopically changed, thereby reinforcing the stability of the support seat. This design structure is convenient for production and solves the problem that the six-sided top press needs to adjust the guide frame for stability when it is placed, cannot be adaptively changed, and requires manual adjustment by staff for each reinforcement. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art.
[0013] Figure 1 The utility model is a schematic diagram of the overall structure of the reinforcement structure of a synthetic diamond six-sided top press.
[0014] Figure 2 This is a front view of a reinforcement structure of a synthetic diamond six-sided top press of the utility model.
[0015] Figure 3 This utility model Figure 2 AA line section view.
[0016] Figure 4 This utility model Figure 3 A magnified view of the local structure at point B.
[0017] 101-pressing mechanism, 102-support seat, 103-clamping piece, 104-reinforcement mechanism, 105-locking mechanism, 106-side seat, 107-pneumatic rod, 108-reinforcement ring, 109-pressing machine body, 110-base, 111-seat body, 112-block, 113-fixing frame, 114-clamping plate, 115-locking disk, 116-locking column, 117-bracket. DETAILED DESCRIPTION
[0018] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, but should not be understood as limiting the present invention.
[0019] See also Figures 1-4 ,in Figure 1 This is a schematic diagram of the overall structure of the reinforcement structure of a synthetic diamond six-sided top press of the utility model. Figure 2 This is a front view of the reinforcement structure of a synthetic diamond six-sided top press of the utility model. Figure 3 This utility model Figure 2 AA line section view, Figure 4 This utility model Figure 3 A magnified view of the local structure at point B.
[0020] The utility model provides a reinforcement structure of a synthetic diamond six-sided top press, including a top pressing mechanism 101, a support seat 102, a plurality of clamping members 103, a reinforcement mechanism 104 and a locking mechanism 105, wherein the reinforcement mechanism 104 includes a plurality of side seats 106, a plurality of pneumatic rods 107 and a reinforcement ring 108, the top pressing mechanism 101 includes a top pressing machine body 109 and a base frame 110, the support seat 102 includes a seat body 111 and a plurality of clamping blocks 112, each of the clamping members 103 includes a fixed frame 113 and a clamping plate 114, and the locking mechanism 105 includes a locking disk 115, a plurality of locking columns 116 and a bracket 117.
[0021] According to this specific embodiment, the locking mechanism 105 is fixedly connected to the support seat 102, each of the clamping members 103 is fixedly connected to the support seat 102, the support seat 102 is detachably connected to the top pressing mechanism 101, the upper end of each of the pneumatic rods 107 is rotatably connected to the corresponding side seat 106, the lower end of each of the pneumatic rods 107 is rotatably connected to the reinforcement ring 108, each of the side seats 106 is fixedly connected to the support seat 102, the top pressing machine body 109 is fixedly connected to the base frame 110, the base frame 110 is detachably connected to the support seat 102, each of the clamping blocks 112 is fixedly connected to the seat body 111, the seat body 111 is detachably connected to the base frame 110, and the clamping plate 1 14 is slidably connected to the fixed frame 113, the fixed frame 113 is fixedly connected to the base body 111, the bracket 117 is rotatably connected to the locking plate 115, each of the locking columns 116 is fixedly connected to the locking plate 115, and the locking plate 115 is fixedly connected to the base body 111. The side seat 106 currently provided provides installation and rotation conditions for the corresponding pneumatic rod 107. It only needs to place the pressing mechanism 101 on the support seat 102, and each pneumatic rod 107 will be adaptively telescopically changed to strengthen the stability of the support seat 102. This design structure is easy to produce and solves the problem that the six-sided pressing machine needs to adjust the guide frame for stability when placed, cannot be adaptively changed, and requires manual adjustment by staff for each reinforcement.
[0022] Among them, the locking mechanism 105 is located on the inner side of the support seat 102, each of the clamping parts 103 is located on the peripheral side of the support seat 102, and the support seat 102 is located below the pressing mechanism 101. The upper end of each pneumatic rod 107 is located on one side of the corresponding side seat 106, and the lower end of each pneumatic rod 107 is located on the inner side of the reinforcement ring 108. Each of the side seats 106 is located on the peripheral side of the support seat 102. Each of the pneumatic rods 107 is a pneumatic telescopic rod commonly seen on the market. When the pressing machine body 109 vibrates, the high-frequency vibration will not cause the pneumatic rod 107 to shrink. When it is first used, the reinforcement ring 108 is in contact with the ground, and each of the pneumatic rods 107 slowly adapts to the changes in the terrain, and then the pressing machine body 109 can be started to work.
[0023] Secondly, the top press body 109 is located above the base frame 110, and the base frame 110 is located above the support seat 102. Each of the blocks 112 is located below the seat body 111, and the seat body 111 is located below the base frame 110. The top press body 109 is the main working area, and is stably placed above the seat body 111 through the base frame 110. The bottom of the base frame 110 has multiple grooves that are compatible with the locking columns 116. Therefore, when the base frame 110 is placed above the locking plate 115, it will have a locking and limiting effect on the base frame 110, thereby preventing the base frame 110 from rotating.
[0024] At the same time, the holding plate 114 is located on the inner side of the fixing frame 113, and the fixing frame 113 is located on the peripheral side of the base body 111, and the bracket 117 is located below the locking plate 115, and each locking post 116 is located above the locking plate 115, and the locking plate 115 is located on the inner wall of the base body 111. A limited stopper is provided on the outer side of each holding plate 114. After the base frame 110 is aligned with the corresponding locking post 116 and placed on the base body 111, the base frame 110 is restricted by the locking post 116 to avoid its own rotation, and then pushes each holding plate 114 to slide on the inner side of the corresponding fixing frame 113, thereby clamping the base frame 110. When the base frame 110 is on the ground, the bracket 117 can adaptively deflect according to the changes in the terrain, so as to better fit the ground. Under the pressure of the top press body 109, the seat 111 sinks and applies pressure to each of the pneumatic rods 107. On the premise that the reinforcement ring 108 is in contact with the ground, the ground height of each position corresponding to the multiple pneumatic rods 107 is different. On the premise of keeping the overall equipment stable, the stability of the reinforcement ring 108 and the seat 111 can be better maintained. This design only requires the top press body 109 and the base frame 110 to be placed, and the mutual cooperation of the multiple pneumatic rods 107 can achieve the stability of the seat 111, thereby maintaining and reinforcing the base frame 110.
[0025] In this embodiment, each of the pneumatic rods 107 is a pneumatic telescopic rod commonly found on the market. When the top press body 109 vibrates, the high-frequency vibration will not cause the pneumatic rod 107 to contract. At the beginning of use, the reinforcement ring 108 is in contact with the ground, and each of the pneumatic rods 107 slowly adapts to the changes in the terrain. Then the top press body 109 can be started to work. The top press body 109 is the main working area, and is stably placed above the seat body 111 through the base frame 110. The bottom of the base frame 110 has a plurality of grooves that are mutually adapted to the locking columns 116. Therefore, when the base frame 110 is placed above the locking plate 115, the base frame 110 will have a locking and limiting effect, thereby preventing the base frame 110 from rotating. A limiting baffle is provided on the outer side of each of the holding plates 114. After the base frame 110 is aligned with the corresponding locking columns 116 and is placed on the seat body 111, the base frame 110 The locking column 116 restricts its own rotation, and then pushes each of the holding plates 114 to slide inside the corresponding fixing frame 113, thereby clamping the base frame 110. When facing uneven ground, the bracket 117 can adaptively deflect according to changes in the terrain, so as to better fit the ground. Under the pressure of the top press body 109, the seat body 111 sinks and applies pressure to each of the pneumatic rods 107. On the premise that the reinforcement ring 108 is in contact with the ground, the ground height corresponding to each position of the multiple pneumatic rods 107 is different. On the premise of maintaining the stability of the overall equipment, the reinforcement ring 108 and the base body 111 can be better maintained. This design only requires the top press body 109 and the base frame 110 to be placed. The stability of the base body 111 can be achieved through the mutual cooperation of the multiple pneumatic rods 107, thereby maintaining and reinforcing the base frame 110.
[0026] The above disclosure is merely one or more preferred embodiments of the present application and is not intended to limit the scope of the present application. A person skilled in the art will understand that all or part of the processes of the above embodiments and equivalent changes made in accordance with the claims of the present application are still within the scope of the present application.
Claims
1. A reinforcement structure for a synthetic diamond six-sided pressing machine, comprising a pressing mechanism, a support base, a plurality of clamping members, and a locking mechanism, wherein the locking mechanism is fixedly connected to the support base and is located on the inner side of the support base, each of the clamping members is fixedly connected to the support base and is located on the peripheral side of the support base, the support base is detachably connected to the pressing mechanism and is located below the pressing mechanism, and is characterized in that: It also includes a reinforcement mechanism, which includes multiple side seats, multiple pneumatic rods and reinforcement rings. The upper end of each pneumatic rod is rotatably connected to the corresponding side seat and is located on one side of the corresponding side seat. The lower end of each pneumatic rod is rotatably connected to the reinforcement ring and is located on the inner side of the reinforcement ring. Each side seat is fixedly connected to the support seat and is located on the circumferential side of the support seat.
2. The reinforcement structure of the synthetic diamond six-sided top press according to claim 1, characterized in that: The pressing mechanism includes a pressing machine body and a base frame. The pressing machine body is fixedly connected to the base frame and is located above the base frame. The base frame is detachably connected to the support seat and is located above the support seat.
3. The reinforcement structure of the synthetic diamond six-sided top press according to claim 2, characterized in that: The support seat includes a seat body and a plurality of clamping blocks, each of the clamping blocks is fixedly connected to the seat body and is located below the seat body, and the seat body is detachably connected to the base frame and is located below the base frame.
4. The reinforcement structure of the synthetic diamond six-sided top press according to claim 3, characterized in that: Each of the clamping members includes a fixing frame and a clamping plate. The clamping plate is slidably connected to the fixing frame and is located on the inner side of the fixing frame. The fixing frame is fixedly connected to the base and is located on the peripheral side of the base.
5. The reinforcement structure of the synthetic diamond six-sided top press according to claim 4, characterized in that: The locking mechanism includes a locking plate, a plurality of locking posts and a bracket. The bracket is rotatably connected to the locking plate and is located below the locking plate. Each locking post is fixedly connected to the locking plate and is located above the locking plate. The locking plate is fixedly connected to the base body and is located on the inner wall of the base body.
Citation Information
Patent Citations
Reinforcing structure of synthetic diamond cubic press
CN219784671U