A detection device for an aluminum profile mold

CN224772760UActive Publication Date: 2026-09-18FOSHAN CHANCHENG DISTRICT NANZHUANG XINGSHUN PRECISE MOULD CO LTD
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Patent Information

Application Number
CN202521471937.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-15
Publication Date
2026-09-18
Estimated Expiration
2035-07-15

AI Technical Summary

Technical Problem

[0003]现有的铝型材模具进行检测时,通常会通过液压杆对铝型材模具进行挤压,从而来对其强度进行检测,但在实际的使用过程中,通常需要保持铝型材模具处于稳定的状态,会通过夹具来对模具进行夹持固定,但铝型材模具的尺寸不同,在实际的夹持过程中,不能够对尺寸不同的模具进行夹持固定,为此我们提出一种铝型材模具的检测装置

Benefits of technology

1、通过设有的连接夹持机构,能够在对铝型材模具进行强度检测时,能够对铝型材模具进行夹持固定,同时能够对连接夹持机构内部的夹持臂快速的进行更换,能够对不同尺寸的铝型材模具进行夹持固定,整体结构简单,操作方便快捷;

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Abstract

The utility model relates to a kind of detection device of aluminium profile mould in aluminium profile mould detection technical field, comprising: installation base, its bottom is equipped with support rod, its top is equipped with threaded mounting hole;Connecting clamping mechanism, it is in the top end middle part of the installation base by bolt;Fixed limiting frame, it is symmetrically equipped in the top end of the installation base;Connecting down-pressing mechanism, it is in the inside of the fixed limiting frame by bolt;The connecting clamping mechanism includes connecting support leg in the top of installation base by bolt, one end of the connecting support leg is fixedly connected with connection base, by the connecting clamping mechanism equipped, when the strength of aluminium profile mould is detected, aluminium profile mould can be clamped and fixed, while the clamping arm inside connecting clamping mechanism can be quickly replaced, different sizes of aluminium profile mould can be clamped and fixed, overall structure is simple, convenient and fast to operate.
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Description

Technical Field

[0001] This utility model relates to the field of aluminum profile mold testing technology, and in particular to a testing device for aluminum profile molds. Background Technology

[0002] Aluminum profiles are an important material in modern life and production processes. They are alloy materials with aluminum as the main component. Aluminum rods are melted and extruded to obtain aluminum materials with different cross-sectional shapes. During the processing of aluminum profile molds, their strength is usually tested to avoid extrusion deformation during the processing of aluminum profiles.

[0003] Existing methods for testing aluminum profile molds typically involve using hydraulic rods to compress the molds and thus test their strength. However, in actual use, it is usually necessary to keep the aluminum profile molds in a stable state, which is achieved by clamping and fixing the molds. But aluminum profile molds come in different sizes, and it is not possible to clamp and fix molds of different sizes during the actual clamping process. Therefore, we propose a testing device for aluminum profile molds. Utility Model Content

[0004] To address the aforementioned problems, this utility model provides a detection device for aluminum profile molds, which can solve the problems existing in the background art.

[0005] The technical solution of this utility model is: A testing device for aluminum profile molds, comprising: The mounting base has a support rod at the bottom and a threaded mounting hole at the top; A connecting clamping mechanism is bolted to the top center of the mounting base; A fixed limiting frame is symmetrically arranged at the top of the mounting base; A connecting pressing mechanism is bolted to the inner side of the fixed limiting frame. The connecting pressing mechanism includes a connecting mounting frame, the outer side of the bottom surface of the connecting mounting frame is in contact with the inner side of the fixed limiting frame, a controller is bolted to one side of the connecting mounting frame, fixed handles are fixed to both sides of the connecting mounting frame, a hydraulic cylinder is fixed to the top of the connecting mounting frame, a hydraulic rod is fixedly connected to the inside of the top of the connecting mounting frame, a connecting bottom frame is fixedly connected to the output end of the hydraulic rod, a connecting pressing block is movably inserted into the inner side of the connecting bottom frame, a through hole is opened in the upper part of the connecting pressing block, and a fixed positioning mechanism is fixedly connected to both sides of the connecting bottom frame.

[0006] In a further technical solution, the connecting clamping mechanism includes a connecting leg bolted to the top of the mounting base. One end of the connecting leg is fixedly connected to a connecting base. The top of the connecting base is symmetrically provided with connecting handles and connecting guide frames. One end of the connecting guide frame is fixedly connected to a servo motor. The output end of the servo motor is fixedly connected to a bidirectional threaded rod. A movable mounting block is threadedly connected to the outer surface of the bidirectional threaded rod. A connecting clamping assembly is movably inserted into the inner side of the movable mounting block.

[0007] In a further technical solution, the connecting clamping assembly includes a connecting base block, a T-shaped through groove fixedly connected to the top center of the connecting base block, threaded holes symmetrically opened inside the connecting base block and below the T-shaped through groove, a T-shaped mounting block movably inserted into the inner side of the T-shaped through groove, a connecting clamping block fixedly connected to the top of the T-shaped mounting block, a fixing groove opened on one side of the connecting clamping block, and a fixing connecting arm symmetrically provided on one side of the T-shaped mounting block, one end of the fixing connecting arm being connected to the connecting base block by bolts.

[0008] In a further technical solution, the outer side of the end surface of the connecting base block and the inner side of the end of the movable mounting block slide against each other.

[0009] In a further technical solution, the fixed positioning mechanism includes a connecting sleeve, a movable positioning rod is movably connected inside the connecting sleeve, a force-bearing collar is fixedly sleeved on the outer surface of the movable positioning rod, a force-bearing spring is fixedly connected between one side of the force-bearing collar and one end of the inner side of the connecting sleeve, and a connecting pull plate is fixedly connected to the end of the movable positioning rod away from the connecting bottom frame.

[0010] In a further technical solution, the outer surface of the end of the movable positioning rod away from the connecting pull plate is in contact with the inner side of the through hole inside the upper part of the connecting lower pressure block.

[0011] The beneficial effects of this utility model are: 1. With the provided connecting clamping mechanism, the aluminum profile mold can be clamped and fixed when strength testing is performed. At the same time, the clamping arms inside the connecting clamping mechanism can be quickly replaced, and aluminum profile molds of different sizes can be clamped and fixed. The overall structure is simple and the operation is convenient and quick. 2. With the provided connecting pressing mechanism, the pressing blocks of different sizes can be disassembled and replaced when performing strength testing on aluminum profile molds of different sizes, improving the overall practicality and making the operation convenient and quick. Attached Figure Description

[0012] Figure 1 is a schematic diagram of the overall structure of an aluminum profile mold detection device according to an embodiment of the present invention; Figure 2 is a schematic diagram of the connection and clamping mechanism of a detection device for an aluminum profile mold according to an embodiment of the present invention; Figure 3 is a schematic diagram of the connection and clamping assembly structure of an aluminum profile mold detection device according to an embodiment of the present invention; Figure 4 is a schematic diagram of the connection and pressing mechanism of a detection device for an aluminum profile mold according to an embodiment of the present invention; Figure 5 is a schematic diagram of the connection pressure block structure of a detection device for an aluminum profile mold according to an embodiment of the present invention; Figure 6 is a schematic diagram of the fixed positioning mechanism of an aluminum profile mold detection device according to an embodiment of the present invention.

[0013] Explanation of reference numerals in the attached figures: 1. Install the base; 2. Connecting clamping mechanism; 21. Connecting support leg; 22. Connecting base; 23. Connecting handle; 24. Connecting guide frame; 25. Servo motor; 26. Bidirectional threaded rod; 27. Movable mounting block; 28. Connecting clamping assembly; 281. Connecting base block; 282. T-shaped through slot; 283. T-shaped mounting block; 284. Connecting clamping block; 285. Fixing groove; 286. Fixing connecting arm; 3. Fixed limiting frame; 4. Connect the pressing mechanism; 41. Connect the mounting frame; 42. Controller; 43. Fix the handle; 44. Hydraulic cylinder; 45. Hydraulic rod; 46. Connect the base frame; 47. Connect the pressing block; 48. Fix the positioning mechanism; 481. Connecting sleeve; 482. Movable positioning rod; 483. Force-bearing collar; 484. Force-bearing spring; 485. Connecting pull plate. Detailed Implementation

[0014] The embodiments of this utility model will be further described below with reference to the accompanying drawings. Example

[0015] As shown in Figure 1- Figure 6 As shown, a testing device for aluminum profile molds includes: Mounting base 1 has a support rod at its bottom and a threaded mounting hole at its top; The connecting clamping mechanism 2 is bolted to the top center of the mounting base 1; The fixed limiting frame 3 is symmetrically arranged at the top of the mounting base 1; The connecting pressing mechanism 4 is bolted to the inside of the fixed limiting frame 3; The connecting pressing mechanism 4 includes a connecting mounting frame 41. The outer side of the bottom surface of the connecting mounting frame 41 is in contact with the inner side of the fixed limiting frame 3. A controller 42 is bolted to one side of the connecting mounting frame 41. Fixed handles 43 are fixedly provided on both sides of the connecting mounting frame 41. A hydraulic cylinder 44 is fixedly provided on the top of the connecting mounting frame 41. A hydraulic rod 45 is fixedly connected to the inside of the top of the connecting mounting frame 41. A connecting bottom frame 46 is fixedly connected to the output end of the hydraulic rod 45. A connecting pressing block 47 is movably inserted into the inner side of the connecting bottom frame 46. A through hole is opened in the upper part of the connecting pressing block 47. Fixed positioning mechanisms 48 are fixedly connected to both sides of the connecting bottom frame 46.

[0016] The working principle of the above technical solution is as follows: During use, the aluminum profile mold can be clamped and fixed by the connecting clamping mechanism 2, and the aluminum profile mold can be pressed down by the connecting pressing mechanism 4 to perform strength testing on the aluminum profile mold. When it is necessary to clamp and fix aluminum profile molds of different sizes, the clamping components inside the connecting clamping mechanism 2 can be quickly replaced, and the pressing components of the connecting pressing mechanism 4 can be replaced at the same time. This allows for stable strength testing of aluminum profile molds of different sizes, making the operation convenient and quick. The hydraulic rod 45 can be controlled by the controller 42, so that the hydraulic rod 45 can push the connecting bottom frame 46, the connecting pressing block 47, and the fixing and positioning mechanism 48 downward, allowing the fixing and positioning mechanism 48 to press down on the aluminum profile mold for strength testing. The operation is convenient.

[0017] In another embodiment, such as Figure 2 As shown, the connecting clamping mechanism 2 includes a connecting leg 21 bolted to the top of the mounting base 1. One end of the connecting leg 21 is fixedly connected to a connecting base 22. A connecting handle 23 is symmetrically provided on the top of the connecting base 22. A connecting guide frame 24 is symmetrically provided on the top of the connecting base 22. A servo motor 25 is fixedly connected to one end of the connecting guide frame 24. A bidirectional threaded rod 26 is fixedly connected to the output end of the servo motor 25. A movable mounting block 27 is threadedly connected to the outer surface of the bidirectional threaded rod 26. A connecting clamping assembly 28 is movably inserted into the inner side of the movable mounting block 27.

[0018] The servo motor 25 can drive the bidirectional threaded rod 26, allowing the movable mounting block 27 to move inside the connecting guide frame 24 and outside the surface of the bidirectional threaded rod 26, thereby driving the connecting clamping assembly 28 to move, thus clamping and fixing the aluminum profile mold, making the operation convenient and quick.

[0019] In another embodiment, such as Figure 3 As shown, the connecting clamping assembly 28 includes a connecting base block 281. A T-shaped through groove 282 is fixedly connected to the top center of the connecting base block 281. Threaded holes are symmetrically opened inside the connecting base block 281 and below the T-shaped through groove 282. A T-shaped mounting block 283 is movably inserted into the inner side of the T-shaped through groove 282. A connecting clamping block 284 is fixedly connected to the top of the T-shaped mounting block 283. A fixing groove 285 is opened on one side of the connecting clamping block 284. A fixing connecting arm 286 is symmetrically provided on one side of the T-shaped mounting block 283. One end of the fixing connecting arm 286 is connected to the connecting base block 281 by bolts.

[0020] The T-shaped mounting block 283 is easily inserted into the inner side of the T-shaped through groove 282, so that the fixed connecting arm 286 and the connecting base block 281 fit together and are connected and fixed by bolts, thereby enabling quick and stable installation of the T-shaped mounting block 283, the connecting clamp block 284 and the fixed connecting arm 286, which is convenient to operate.

[0021] In another embodiment, such as Figure 2 and Figure 3 As shown, the outer side of the end surface of the connecting base block 281 and the inner side of the end of the movable mounting block 27 slide against each other.

[0022] The end of the connecting base block 281 can be stably engaged inside the end of the movable mounting block 27 for connection and use.

[0023] In another embodiment, such as Figure 6 As shown, the fixed positioning mechanism 48 includes a connecting sleeve 481, a movable positioning rod 482 is movably connected inside the connecting sleeve 481, a force-bearing collar 483 is fixedly sleeved on the outer surface of the movable positioning rod 482, a force-bearing spring 484 is fixedly connected between one side of the force-bearing collar 483 and one end of the inner side of the connecting sleeve 481, and a connecting pull plate 485 is fixedly connected to one end of the movable positioning rod 482 away from the connecting bottom frame 46.

[0024] This allows for easy pulling of the connecting pull plate 485, which in turn moves the movable positioning rod 482 and the force-bearing collar 483, compressing the force-bearing spring 484 for quick adjustment.

[0025] In another embodiment, such as Figure 5 and Figure 6As shown, the outer surface of the end of the movable positioning rod 482 away from the connecting pull plate 485 is in contact with the inner side of the through hole in the upper part of the connecting lower pressure block 47. This allows the outer surface of the movable positioning rod 482 to be stably inserted into the inner side of the through hole in the upper part of the connecting lower pressure block 47, thereby achieving connection and fixation.

[0026] The working principle of this utility model is as follows: During use, the entire assembly is first installed and fixed. When strength testing is required for aluminum profile molds of different sizes, the bolts connecting the fixed connecting arm 286 and the connecting base block 281 are first rotated and disassembled. Then, the T-shaped mounting block 283 is pulled out from the inside of the T-shaped through slot 282. The T-shaped mounting block 283, the connecting clamping block 284, and the fixed connecting arm 286 are disassembled and replaced. During replacement, the T-shaped mounting block 283 is inserted into the inside of the T-shaped through slot 282, so that the fixed connecting arm 286 and the connecting base block 281 fit together and are connected and fixed with bolts. This allows for quick and stable installation of the T-shaped mounting block 283, the connecting clamping block 284, and the fixed connecting arm 286, making the operation convenient. Next, the connecting pull plate 485 is pulled, causing the movable positioning rod 482 and the force-bearing collar 483 to move, thus moving the force spring 484. Compression is generated to allow for rapid adjustment, causing the end of the movable positioning rod 482 to be pulled out from the inside of the connecting pressure block 47, enabling quick disassembly and replacement. After replacement, the servo motor 25 first drives the bidirectional threaded rod 26, causing the movable mounting block 27 to move between the inner side of the connecting guide frame 24 and the outer surface of the bidirectional threaded rod 26, thus moving the connecting clamping assembly 28 as a whole. When the connecting clamping blocks 284 approach each other, the aluminum profile mold is placed inside the fixing groove 285, so that the connecting clamping blocks 284 can clamp and fix the aluminum profile when they move. Then, the controller 42 controls the hydraulic rod 45, so that the hydraulic rod 45 can push the connecting bottom frame 46, the connecting pressure block 47, and the fixing positioning mechanism 48 downward, causing the fixing positioning mechanism 48 to move downward. It can perform pressure testing on aluminum profile molds to test their strength. The overall structure is simple and the operation is convenient and quick.

[0027] The above embodiments merely illustrate specific implementations of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make several modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model.

Claims

1. A testing device for aluminum profile molds, characterized in that, include: Mounting base (1), with a support rod at the bottom and a threaded mounting hole at the top; The connecting clamping mechanism (2) is bolted to the top center of the mounting base (1); A fixed limiting frame (3) is symmetrically arranged at the top of the mounting base (1); The connecting pressing mechanism (4) is bolted to the inside of the fixed limiting frame (3); The connecting pressing mechanism (4) includes a connecting mounting frame (41). The outer side of the bottom surface of the connecting mounting frame (41) is in contact with the inner side of the fixed limiting frame (3). A controller (42) is provided on one side of the connecting mounting frame (41) by bolts. Fixed handles (43) are fixedly provided on both sides of the connecting mounting frame (41). A hydraulic cylinder (44) is fixedly provided on the top of the connecting mounting frame (41). A hydraulic rod (45) is fixedly connected inside the top of the connecting mounting frame (41). A connecting bottom frame (46) is fixedly connected to the output end of the hydraulic rod (45). A connecting pressing block (47) is movably inserted into the inner side of the connecting bottom frame (46). A through hole is opened in the upper part of the connecting pressing block (47). A fixed positioning mechanism (48) is fixedly connected to both sides of the connecting bottom frame (46).

2. The detection device for aluminum profile molds according to claim 1, characterized in that: The connecting clamping mechanism (2) includes a connecting leg (21) bolted to the top of the mounting base (1). One end of the connecting leg (21) is fixedly connected to a connecting base (22). The top of the connecting base (22) is symmetrically provided with connecting handles (23). The top of the connecting base (22) is symmetrically provided with connecting guide frames (24). One end of the connecting guide frame (24) is fixedly connected to a servo motor (25). The output end of the servo motor (25) is fixedly connected to a bidirectional threaded rod (26). The outer surface of the bidirectional threaded rod (26) is threadedly connected to a movable mounting block (27). The inner side of the movable mounting block (27) is movably inserted with a connecting clamping assembly (28).

3. The detection device for aluminum profile molds according to claim 2, characterized in that: The connecting clamping assembly (28) includes a connecting base block (281). A T-shaped through groove (282) is fixedly connected to the top center of the connecting base block (281). Threaded holes are symmetrically opened inside the connecting base block (281) and below the T-shaped through groove (282). A T-shaped mounting block (283) is movably inserted into the inner side of the T-shaped through groove (282). A connecting clamping block (284) is fixedly connected to the top of the T-shaped mounting block (283). A fixing groove (285) is opened on one side of the connecting clamping block (284). A fixing connecting arm (286) is symmetrically provided on one side of the T-shaped mounting block (283). One end of the fixing connecting arm (286) is connected to the connecting base block (281) by bolts.

4. The detection device for aluminum profile molds according to claim 3, characterized in that: The outer side of the end surface of the connecting base block (281) and the inner side of the end of the movable mounting block (27) slide against each other.

5. The detection device for aluminum profile molds according to claim 1, characterized in that: The fixed positioning mechanism (48) includes a connecting sleeve (481), a movable positioning rod (482) is movably connected inside the connecting sleeve (481), a force-bearing collar (483) is fixedly sleeved on the outer surface of the movable positioning rod (482), a force-bearing spring (484) is fixedly connected between one side of the force-bearing collar (483) and one end of the inner side of the connecting sleeve (481), and a connecting pull plate (485) is fixedly connected to one end of the movable positioning rod (482) away from the connecting bottom frame (46).

6. The detection device for aluminum profile molds according to claim 5, characterized in that: The outer surface of the end of the movable positioning rod (482) away from the connecting pull plate (485) is in contact with the inner side of the through hole in the upper part of the connecting lower pressure block (47).