A quick-change component carbon fiber mold processing fixture

CN224630611UActive Publication Date: 2026-08-14XIAMEN XINPENGFA MASCH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-24
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0004]本实用新型的目的是为了解决现有技术中存在工作者更换定位组件的速度出现降低的问题,而提出的一种可快速更换组件的碳纤维模具加工工装

Benefits of technology

[0012] 1. In this utility model, by setting a clamping device, when the worker needs to quickly change the positioning component, the worker adjusts the limiting device, which contacts the shaping block. Then, the worker starts the first motor, which drives the first conveyor rod. The first conveyor rod rotates and pushes the slider, which drives the second motor. The second motor drives the second conveyor rod, which drives the pressure plate to slide above the limiting device. The second motor drives the second conveyor rod, which rotates and adjusts the pressure plate through the threaded hole. The pressure plate slides down and presses against the limiting device. The main blocks on both sides of the shaping block are restricted by magnetic force and the base, so there will be no loosening during the processing of the shaping block. When the worker needs to change the positioning component, the worker controls the second motor, which drives the second conveyor rod. The second conveyor rod rotates and pushes the pressure plate upward. The pressure plate moves away from the limiting device. The worker pulls the limiting device, which moves away from the shaping block and detaches from the base. The worker then replaces the new limiting device. By setting a clamping device, the worker can effectively and quickly change the positioning component, avoiding the need for the worker to spend a lot of time disassembling different positioning components, thereby improving the speed of changing the positioning component.

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Abstract

This utility model relates to the field of carbon fiber mold processing technology, specifically a carbon fiber mold processing fixture with quick-changeable components. It includes a base, a shaping block placed on the surface of the base, and a clamping device on the surface of the base. The clamping device includes a guide groove formed on the surface of the base, and a slider slidably connected inside the guide groove. A second motor is fixedly connected to one side of the slider, and a second transmission rod is fixedly connected to the drive end of the second motor. A pressure plate is provided above the base, with threaded holes at both ends. The second transmission rod is threadedly connected to the inside of the threaded holes. A drive assembly is provided on the surface of the base, and a limit device is provided on the surface of the base. This utility model, by providing a clamping device, effectively facilitates workers to quickly change positioning components, avoiding the time-consuming disassembly required when changing different positioning components, thereby improving the speed of positioning component replacement.
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Description

Technical Field

[0001] This utility model relates to the field of carbon fiber mold processing technology, and in particular to a carbon fiber mold processing fixture with quick-changeable components. Background Technology

[0002] Carbon fiber mold processing fixtures are auxiliary tools used for the molding of carbon fiber composite materials. They are mainly used for positioning, fixing and processing assistance in the mold making process. Carbon fiber mold processing fixtures are mainly used in scenarios such as the precise manufacturing, dimensional control, molding assistance and positioning and fixing in the processing of carbon fiber composite molds, so as to ensure the mold processing accuracy and production efficiency.

[0003] When workers need to process carbon fiber molds, they place the carbon fiber molds on the processing fixtures so that the processing equipment can process the carbon fiber molds. However, the existing processing fixtures usually use bolts to position the positioning components during use, which makes it necessary for workers to spend a lot of time disassembling them when changing different positioning components, thus reducing the speed at which workers can change positioning components. Utility Model Content

[0004] The purpose of this invention is to solve the problem of reduced speed for workers to change positioning components in the prior art, and to propose a carbon fiber mold processing fixture with quick component replacement.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: a carbon fiber mold processing fixture with quick-changeable components, comprising a base, a shaping block placed on the surface of the base, a pressing device provided on the surface of the base, the pressing device including a guide groove, the guide groove being formed on the surface of the base, a slider slidably connected inside the guide groove, a second motor fixedly connected to one side of the slider, a second transmission rod fixedly connected to the drive end of the second motor, a pressure plate provided above the base, threaded holes formed at both ends of the pressure plate, the second transmission rod being threadedly connected to the inside of the threaded holes, a driving assembly provided on the surface of the base, a limit device provided on the surface of the base, the driving assembly including a first motor, the first motor being fixedly connected to one side of the base, the first motor being located on one side of the slider, the first motor being able to cooperate with the base to achieve the purpose of supporting the first motor.

[0006] Preferably, the drive end of the first motor is fixedly connected to a first transmission rod, the first transmission rod is rotatably connected to the inside of the guide groove, the first transmission rod is threadedly connected to the inside of the slider, and the first transmission rod can cooperate with the first motor to achieve the purpose of driving the first transmission rod to rotate.

[0007] Preferably, the limiting device includes a main block, which is slidably connected to the interior of the base. A storage rod is fixedly connected to the upper surface of the main block. The main block can cooperate with the base to achieve the purpose of storing the main block. The main block has magnetic force and can be magnetically connected to the interior of the base.

[0008] Preferably, an anti-slip rod is fixedly connected to the upper surface of the main block. The anti-slip rod is located on one side of the storage rod and can cooperate with the main block to support the anti-slip rod.

[0009] Preferably, a first limiting block is placed on the upper surface of a portion of the main block. The first limiting block is placed on the surface of the shaping block. The first limiting block can cooperate with a portion of the main block to restrict the left and right sliding and jumping of the shaping block.

[0010] Preferably, a second limiting block is placed on the upper surface of a portion of the main block. The second limiting block is placed on the surface of the shaping block. A movable frame is slidably connected to the surfaces of the first and second limiting blocks. An insert rod is fixedly connected to the surface of the movable frame. The insert rod is inserted into the interior of the first and second limiting blocks and into the interior of the storage rod. A positioning rod is rotatably connected to the interior of the movable frame. The positioning rod is threadedly connected to the interior of the first limiting block. A portion of the main block can cooperate with the second limiting block to restrict the forward and backward sliding and jumping of the shaping block. The positioning rod can cooperate with the movable frame and the storage rod to facilitate the worker in replacing the first limiting block with the second limiting block.

[0011] Compared with the prior art, the advantages and positive effects of this utility model are as follows:

[0012] 1. In this utility model, by setting a clamping device, when the worker needs to quickly change the positioning component, the worker adjusts the limiting device, which contacts the shaping block. Then, the worker starts the first motor, which drives the first conveyor rod. The first conveyor rod rotates and pushes the slider, which drives the second motor. The second motor drives the second conveyor rod, which drives the pressure plate to slide above the limiting device. The second motor drives the second conveyor rod, which rotates and adjusts the pressure plate through the threaded hole. The pressure plate slides down and presses against the limiting device. The main blocks on both sides of the shaping block are restricted by magnetic force and the base, so there will be no loosening during the processing of the shaping block. When the worker needs to change the positioning component, the worker controls the second motor, which drives the second conveyor rod. The second conveyor rod rotates and pushes the pressure plate upward. The pressure plate moves away from the limiting device. The worker pulls the limiting device, which moves away from the shaping block and detaches from the base. The worker then replaces the new limiting device. By setting a clamping device, the worker can effectively and quickly change the positioning component, avoiding the need for the worker to spend a lot of time disassembling different positioning components, thereby improving the speed of changing the positioning component.

[0013] 2. In this utility model, by setting a limiting device, when the worker needs to limit the shaping block, the worker rotates the positioning rod, the positioning rod disengages from the storage rod, the worker pulls the movable frame, the movable frame drives the insertion rod to disengage from the storage rod, the worker pulls the first limiting block upwards, the worker places the second limiting block on the main block, the second limiting block is sleeved on the anti-slip rod and the storage rod, the worker pushes the movable frame, the second limiting block guides the movable frame, the movable frame drives the positioning rod to abut against the surface of the storage rod, the worker rotates the positioning rod, the positioning rod and the storage rod are internally threadedly connected, the positioning rod is inserted into the second limiting block, the positioning rod and the storage rod are internally threadedly connected, the worker removes the first limiting blocks on both sides of the shaping block and replaces them with the second limiting blocks, the worker adjusts the limiting device, the limiting device approaches the shaping block, the shaping block is restricted, the main block and the base are internally magnetically connected. By setting the limiting device, it is possible to effectively facilitate the worker to limit the shaping block, avoid the time-consuming situation when limiting the shaping block, and thus improve the worker's work efficiency. Attached Figure Description

[0014] Figure 1 A three-dimensional structural diagram of a carbon fiber mold processing fixture with quick component replacement is provided for this utility model.

[0015] Figure 2 This utility model proposes a schematic diagram of a clamping device for a carbon fiber mold processing fixture with quick component replacement.

[0016] Figure 3 This invention proposes a carbon fiber mold processing fixture with quick component replacement. Figure 2 Enlarged structural diagram at point A in the middle;

[0017] Figure 4 A schematic diagram of a limiting device for a carbon fiber mold processing fixture with quick component replacement is provided for this utility model.

[0018] Figure 5 This invention proposes a carbon fiber mold processing fixture with quick component replacement. Figure 4 Enlarged structural diagram at point B.

[0019] Legend:

[0020] 1. Base; 2. Shaping block; 3. Pressing device; 31. First motor; 32. First transmission rod; 33. Second motor; 34. Second transmission rod; 35. Slider; 36. Guide groove; 37. Pressure plate; 38. Threaded hole; 4. Limiting device; 41. First limiting block; 42. Positioning rod; 43. Main block; 44. Anti-slip rod; 45. Insert rod; 46. Movable frame; 47. Storage rod; 48. Second limiting block. Detailed Implementation

[0021] Please see Figures 1-5 This utility model provides a technical solution: a carbon fiber mold processing fixture with quick component replacement, including a base 1, a shaping block 2 placed on the surface of the base 1, and a pressing device 3 provided on the surface of the base 1.

[0022] The following section will explain the specific setup and function of the clamping device 3 and the limiting device 4.

[0023] In this embodiment: the pressing device 3 includes a guide groove 36, which is formed on the surface of the base 1. A slider 35 is slidably connected inside the guide groove 36. A second motor 33 is fixedly connected to one side of the slider 35. A second transmission rod 34 is fixedly connected to the drive end of the second motor 33. A pressure plate 37 is provided above the base 1. Threaded holes 38 are provided at both ends of the pressure plate 37. The second transmission rod 34 is threadedly connected to the inside of the threaded holes 38. A driving assembly is provided on the surface of the base 1. A limit device 4 is provided on the surface of the base 1.

[0024] Specifically, the drive component includes a first motor 31, which is fixedly connected to one side of the base 1. The first motor 31 is located on one side of the slider 35 and can cooperate with the base 1 to support the first motor 31.

[0025] Specifically, the drive end of the first motor 31 is fixedly connected to the first transmission rod 32, the first transmission rod 32 is rotatably connected to the inside of the guide groove 36, and the first transmission rod 32 is threadedly connected to the inside of the slider 35.

[0026] In this embodiment, the first transmission rod 32 can cooperate with the first motor 31 to drive the first transmission rod 32 to rotate.

[0027] In this embodiment: the limiting device 4 includes a main block 43, which is slidably connected to the interior of the base 1. A storage rod 47 is fixedly connected to the upper surface of the main block 43. The main block 43 can cooperate with the base 1 to achieve the purpose of storing the main block 43. The main block 43 has magnetic force and can be magnetically connected to the interior of the base 1.

[0028] Specifically, an anti-slip rod 44 is fixedly connected to the upper surface of the main block 43, and the anti-slip rod 44 is located on one side of the storage rod 47.

[0029] In this embodiment, the anti-slip rod 44 can cooperate with the main block 43 to support the anti-slip rod 44.

[0030] Specifically, a first limiting block 41 is placed on the upper surface of part of the main block 43. The first limiting block 41 is placed on the surface of the shaping block 2. The first limiting block 41 can cooperate with part of the main block 43 to restrict the left and right sliding and jumping of the shaping block 2.

[0031] Specifically, a second limiting block 48 is placed on the upper surface of part of the main block 43. The second limiting block 48 is placed on the surface of the shaping block 2. A movable frame 46 is slidably connected to the surfaces of the first limiting block 41 and the second limiting block 48. An insert rod 45 is fixedly connected to the surface of the movable frame 46. The insert rod 45 is inserted into the interior of the first limiting block 41 and the second limiting block 48. The insert rod 45 is also inserted into the interior of the storage rod 47. A positioning rod 42 is rotatably connected inside the movable frame 46. The positioning rod 42 is threadedly connected to the interior of the first limiting block 41.

[0032] In this embodiment: part of the main block 43 can cooperate with the second limiting block 48 to restrict the forward and backward sliding and jumping of the shaping block 2, and the positioning rod 42 can cooperate with the movable frame 46 and the storage rod 47 to facilitate the worker to replace the first limiting block 41 with the second limiting block 48.

[0033] Working principle: By setting up the clamping device 3, when the operator needs to quickly change the positioning component, the operator adjusts the limiting device 4, which contacts the shaping block 2. Then, the operator starts the first motor 31, which drives the first transmission rod 32. The first transmission rod 32 rotates and pushes the slider 35. The slider 35 drives the second motor 33, which drives the second transmission rod 34. The second transmission rod 34 drives the pressure plate 37 to slide above the limiting device 4. The second motor 33 drives the second transmission rod 34, which rotates and adjusts the pressure plate 37 through the threaded hole 38. The pressure plate 37 slides down and presses against the limiting device 4, thus shaping the block. The main blocks 43 on both sides of block 2 are restricted by magnetic force and base 1, preventing loosening during the processing of the shaping block 2. When the worker needs to replace the positioning component, the worker controls the second motor 33, which drives the second conveyor rod 34. The second conveyor rod 34 rotates and pushes the pressure plate 37 upward, moving the pressure plate 37 away from the limiting device 4. The worker then pulls the limiting device 4, causing it to move away from the shaping block 2 and detach from the base 1. The worker then replaces the new limiting device 4. By setting the clamping device 3, the worker can effectively and quickly replace the positioning component, avoiding the need to spend a lot of time on the process when replacing different positioning components. Disassembly improves the speed at which workers can replace positioning components. Furthermore, by setting a limiting device 4, when the worker needs to limit the shaping block 2, the worker rotates the positioning rod 42, disengaging it from the storage rod 47. The worker then pulls the movable frame 46, causing the insertion rod 45 to disengage from the storage rod 47. The worker pulls the first limiting block 41 upwards and places the second limiting block 48 on the main block 43. The second limiting block 48 is fitted onto the anti-slip rod 44 and the storage rod 47. The worker pushes the movable frame 46, and the second limiting block 48 guides the movable frame 46, causing the positioning rod 42 to abut against the surface of the storage rod 47. The worker rotates the positioning rod 42, which is internally threaded to the receiving rod 47. The positioning rod 42 is inserted into the second limiting block 48. The worker removes the first limiting blocks 41 on both sides of the shaping block 2 and replaces them with the second limiting blocks 48. The worker adjusts the limiting device 4, which moves closer to the shaping block 2, thus restricting the shaping block 2. The main block 43 is magnetically connected to the inside of the base 1. By setting the limiting device 4, the worker can effectively limit the shaping block 2, avoiding time-consuming situations when limiting the shaping block 2, thereby improving the worker's work efficiency.

Claims

1. A carbon fiber mold processing tooling of quick change assembly, comprising a base (1), characterized in that: A shaping block (2) is placed on the surface of the base (1); The base (1) is provided with a pressing device (3) on its surface. The pressing device (3) includes a guide groove (36) which is formed on the surface of the base (1). The guide groove (36) is slidably connected to a slider (35). A second motor (33) is fixedly connected to one side of the slider (35). A second transmission rod (34) is fixedly connected to the drive end of the second motor (33). A pressure plate (37) is provided above the base (1). Threaded holes (38) are provided at both ends of the pressure plate (37). The second transmission rod (34) is threadedly connected to the inside of the threaded hole (38). A drive assembly is provided on the surface of the base (1). A limit device (4) is provided on the surface of the base (1).

2. The rapidly replaceable assembly carbon fiber mold processing tooling of claim 1, wherein: The drive assembly includes a first motor (31), which is fixedly connected to one side of the base (1) and is located on one side of the slider (35).

3. The rapidly replaceable assembly carbon fiber mold processing tooling of claim 2, wherein: The first motor (31) is fixedly connected to the drive end of the first transmission rod (32), the first transmission rod (32) is rotatably connected to the inside of the guide groove (36), and the first transmission rod (32) is threadedly connected to the inside of the slider (35).

4. The rapidly replaceable assembly carbon fiber mold processing tooling of claim 1, wherein: The limiting device (4) includes a main block (43), which is slidably connected to the interior of the base (1), and a storage rod (47) is fixedly connected to the upper surface of the main block (43).

5. The rapidly replaceable assembly carbon fiber mold processing tooling of claim 4, wherein: An anti-slip rod (44) is fixedly connected to the upper surface of the main block (43), and the anti-slip rod (44) is located on one side of the storage rod (47).

6. A carbon fiber mold processing tooling with quick change assembly as claimed in claim 5, wherein: A first limiting block (41) is placed on the upper surface of the main block (43), and the first limiting block (41) is placed on the surface of the shaping block (2).

7. A carbon fiber mold processing tooling with quick change assembly as claimed in claim 6, wherein: A second limiting block (48) is placed on the upper surface of the main block (43). The second limiting block (48) is placed on the surface of the shaping block (2). A movable frame (46) is slidably connected to the surfaces of the first limiting block (41) and the second limiting block (48). A plug rod (45) is fixedly connected to the surface of the movable frame (46). The plug rod (45) is inserted into the interior of the first limiting block (41) and the second limiting block (48). The plug rod (45) is inserted into the interior of the storage rod (47). A positioning rod (42) is rotatably connected to the interior of the movable frame (46). The positioning rod (42) is threadedly connected to the interior of the first limiting block (41).