Pressing mechanism of tile press

By designing a detachable compression wheel structure, using magnetic connections and chute structures, the problem of difficult replacement of compression wheels is solved, rapid replacement and resource saving are achieved, and the processing efficiency of the tile press is improved.

CN223070217UActive Publication Date: 2025-07-08QIANJIANG DUST ABATEMENT EQUIP CO LTD
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Patent Information

Application Number
CN202422083146.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-07-08
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

In the existing compression mechanism, the compression wheels and the surface of the workpiece are frequently worn when in contact with each other, making it difficult to replace quickly, affecting processing efficiency and causing waste of resources.

Method used

A pressing mechanism is designed, in which the pressing wheel is installed on the drive rod in a detachable manner, and the rapid replacement is achieved using magnetic connections and chute structures, including the coordination of the fixing blocks, positioning blocks and magnetic plates in the chute, ensuring that the wheel body can be replaced quickly when worn.

Benefits of technology

The rapid replacement of the compression wheel is achieved, which avoids the replacement of the overall drive rod, improves processing efficiency, reduces resource waste, and ensures the continuity of compression tiles.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of dust removal steel part processing, and discloses a hold-down mechanism of a tile press, which comprises a mounting frame and a hold-down wheel, a first driving rod and a second driving rod which are sequentially distributed from top to bottom are rotationally mounted on the inner side of the mounting frame, and a transmission wheel is fixedly arranged on the outer side of the second driving rod. The wheel has the following advantages and effects that the wheel body is coaxially mounted along the first driving rod through the mounting hole, and the insertion block is moved into the insertion groove, so that the wheel body can be kept fixed on the driving rod, the wheel body is driven by the driving rod to rotate, daily pressing operation is guaranteed, and when the wheel body is abraded, the wheel body is prevented from being damaged. When the wheel body is worn, the insertion block can be moved out of the insertion groove, and the push-pull block and the insertion rod are moved into the insertion cylinder, so that the insertion block can be quickly positioned after being separated from the insertion groove, the wheel body can be conveniently moved out of the driving rod to be replaced, the whole driving rod does not need to be replaced when the wheel body is worn, waste is avoided, wear is treated in time, and the service life of the wheel body is prolonged. And the tile pressing processing efficiency can also be ensured.
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Description

Technical Field

[0001] The utility model relates to the technical field of dust removal steel part processing, and particularly relates to a pressing mechanism of a tile press. Background Art

[0002] In a dust removal system, dust removal steel parts need to be customized according to the shape of specific equipment or pipelines. Therefore, through tile pressing treatment, dust removal steel parts (such as dust removal pipelines, dust removal hoods, etc.) can be formed into specific corrugated shapes, so as to better adapt to the system requirements and improve the dust removal efficiency.

[0003] During the working process of the tile press, the pressing mechanism, through the action of the driving device, cooperates with the pressing wheel and the transmission wheel to realize the pressing and conveying of the steel part, which can help to maintain the stability of the workpiece during the processing and improve the processing quality.

[0004] Currently, when the pressing mechanism is in use, the contact between the pressing wheel and the surface of the workpiece is often frequent and prone to wear. Since the pressing wheel is often connected to the driving rod in an integrally fixed manner such as welding or casting, it is difficult to replace the worn pressing wheel. Content of the Utility Model

[0005] The purpose of the utility model is to provide a pressing mechanism of a tile press, which has the effect of quickly replacing the worn pressing wheel, avoiding affecting the pressing process and causing waste.

[0006] The above technical purpose of the utility model is achieved through the following technical solutions: a pressing mechanism of a tile press, including a mounting frame and a pressing wheel;

[0007] A first driving rod and a second driving rod are rotatably installed inside the mounting frame in a top-down order. A transmission wheel is fixedly arranged on the outside of the second driving rod. The pressing wheel is detachably fixed on the first driving rod;

[0008] The pressing wheel includes a wheel body coaxially arranged with the first driving rod. An installation hole is opened inside the wheel body. The wheel body is slidably matched with the first driving rod through the installation hole. A first chute and a second chute are opened on the outside of the wheel body and are communicated with each other. A fixing block and a positioning block are respectively arranged inside the first chute and the second chute. The bottom end of the fixing block is inserted into the first driving rod, and the fixing block is fixed in the first chute through the positioning block. A resetting member is arranged between the fixing block and the first chute.

[0009] The further setting of the utility model is: the fixing block includes an insertion block slidably arranged on the inner wall of the first chute and a push plate fixedly connected to the side of the insertion block away from the wheel body. A concave slot is opened on the first driving rod. The bottom end of the insertion block is inserted into the first driving rod through the slot.

[0010] By adopting the above technical solution, when it is necessary to remove the wheel body, the insertion block can be pushed upward to separate the insertion block from the slot.

[0011] A further setting of the present utility model is that: a guide rail is provided on the inner wall of the second chute, and a first magnetic plate is also fixedly provided on the inner wall of the second chute.

[0012] By adopting the above technical solution, the positioning block is magnetically fixed by the first magnetic plate so that the positioning block can be kept fixed or moved.

[0013] A further setting of the present utility model is that: the positioning block includes a push-pull block whose outer side is slidably matched with the second chute, a guide block fixedly provided on the outer side of the push-pull block, and a finger groove provided on the outer side of the push-pull block. The push-pull block is slidably connected with the guide rail through the guide block.

[0014] By adopting the above technical solution, the push-pull block can stably slide linearly along the second chute without falling off.

[0015] A further setting of the present utility model is that: the outer side of the push-pull block is magnetically connected with the first magnetic plate.

[0016] By adopting the above technical solution, the push-pull block is magnetically adsorbed by the first magnetic plate, thereby helping the push-pull block to be fixed in the second chute.

[0017] A further setting of the present utility model is that: a socket cylinder is fixedly embedded on the side of the insertion block close to the positioning block, and a second magnetic plate is fixedly provided on the inner wall of the socket cylinder.

[0018] By adopting the above technical solution, after the insertion block is separated from the slot after moving upward, the push-pull block can be moved leftward to fix the insertion block so that the insertion block cannot be reset.

[0019] A further setting of the present utility model is that: an insertion rod is fixedly provided on the outer wall of the push-pull block, and after the insertion rod is inserted into the socket cylinder, it is magnetically connected with the second magnetic plate.

[0020] By adopting the above technical solution, after the insertion block moves upward, the insertion rod is also made of magnetic metal and moves towards the socket cylinder through the push-pull block.

[0021] A further setting of the present utility model is that: a cavity structure is provided inside the insertion block, and a sliding hole communicating with the cavity is provided at the top of the insertion block.

[0022] By adopting the above technical solution, it is connected with the reset member through the sliding hole.

[0023] A further setting of the present utility model is that: the reset member includes a fixing rod whose outer wall is slidably connected with the sliding hole, a sliding cylinder fixedly provided at the bottom end of the cavity, and a spring installed in the sliding cylinder.

[0024] The further setting of the present utility model is that the upper and lower ends of the fixed rod are respectively fixedly connected to the first sliding groove and the spring, and the outer wall of the fixed rod is in sliding contact with the sliding cylinder, and the bottom end of the spring is fixed to the sliding cylinder.

[0025] By adopting the above technical solution, the spring is in a compressed state under normal conditions so that the insertion block can be pressed down and inserted into the insertion slot.

[0026] The beneficial effects of the present utility model are:

[0027] The wheel body is coaxially installed along the first driving rod through the installation hole, and by moving the insertion block into the interior of the insertion slot, the wheel body can be fixed on the driving rod, so that the driving rod drives the wheel body to rotate to ensure the daily pressing operation. When the wheel body is worn, the insertion block can be moved out of the insertion slot, and the push-pull block and the insertion rod can be moved into the insertion cylinder, so that the insertion block can be quickly positioned after being separated from the insertion slot, thus facilitating the removal of the wheel body from the driving rod for replacement. When the wheel body is worn, there is no need to replace the entire driving rod, thereby avoiding waste, promptly dealing with the wear, and also being able to ensure the pressing tile processing efficiency. Description of the Drawings

[0028] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following will briefly introduce the drawings required for description in the embodiments. Obviously, the following described drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0029] Figure 1 It is a schematic structural diagram of a pressing mechanism of a pressing tile machine provided by an embodiment of the present utility model;

[0030] Figure 2 It is a schematic structural diagram of a pressing wheel in an embodiment of the present utility model;

[0031] Figure 3 It is a schematic structural diagram of a fixing block in an embodiment of the present utility model;

[0032] Figure 4 It is a schematic structural diagram of a positioning block in an embodiment of the present utility model.

[0033] In the figure, 1, mounting frame; 2, pressing wheel; 11, first driving rod; 12, second driving rod; 13, transmission wheel; 14, insertion slot; 3, wheel body; 4, installation hole; 5, first sliding groove; 6, second sliding groove; 7, fixing block; 8, positioning block; 9, resetting member; 61, guide rail; 62, first magnetic plate; 71, insertion block; 72, push plate; 73, sliding hole; 74, insertion cylinder; 75, second magnetic plate; 81, push-pull block; 82, guide block; 83, finger groove; 84, insertion rod; 91, fixed rod; 92, sliding cylinder; 93, spring. Detailed implementation manners

[0034] The technical solution of the present utility model will be clearly and completely described below in conjunction with specific embodiments. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0035] The embodiment of the present utility model specifically provides a pressing mechanism for a tile press. Please refer to Figure 1 , which includes a mounting frame 1 and a pressing wheel 2.

[0036] Among them, a first driving rod 11 and a second driving rod 12 are rotatably installed inside the mounting frame 1 and are distributed in sequence from top to bottom. A transmission wheel 13 is fixedly arranged on the outer side of the second driving rod 12. The pressing wheel 2 is detachably fixed on the first driving rod 11. The first driving rod 11 and the second driving rod 12 are installed on the mounting frame 1 in a conventional manner. The first driving rod 11 and the second driving rod 12 are driven to rotate by an external driving component, so that the pressing wheel 2 and the transmission wheel 13 rotate. While conveying the plate member, it can also be folded, achieving the conventional tile pressing operation, which will not be elaborated here;

[0037] Furthermore, please refer to Figure 2 , different from the existing structure, the pressing wheel 2 includes a wheel body 3 coaxially arranged with the first driving rod 11. An installation hole 4 is opened inside the wheel body 3. The wheel body 3 is slidably matched with the first driving rod 11 through the installation hole 4, so that when the wheel body 3 needs to be installed and removed, the first driving rod 11 can be removed first, and then the wheel body 3 can be slid out of the first driving rod 11 through the installation hole 4. A first chute 5 and a second chute 6 are opened on the outer side of the wheel body 3. A fixing block 7 and a positioning block 8 are respectively arranged inside the first chute 5 and the second chute 6. The bottom end of the fixing block 7 is inserted into the first driving rod 11, and the fixing block 7 is kept fixed in the first chute 5 through the positioning block 8. A reset member 9 is arranged between the fixing block 7 and the first chute 5.

[0038] Specifically, please refer to Figure 3 , the fixing block 7 includes an insertion block 71 slidably arranged on the inner wall of the first chute 5 and a push plate 72 fixedly connected to the side of the insertion block 71 away from the wheel body 3. The insertion block 71 is pushed to move in the first chute 5 through the push plate 72. A concave slot 14 is opened on the first driving rod 11. The bottom end of the insertion block 71 is inserted into the first driving rod 11 through the slot 14, so that when the wheel body 3 needs to be removed, the insertion block 71 can be pushed upward to separate the insertion block 71 from the slot 14. The same is true when the wheel body 3 is installed, and only the insertion block 71 needs to be inserted into the slot 14.

[0039] Further, please refer to Figure 2 and Figure 4 , on the inner wall of the second chute 6, a guide rail 61 is provided, and a first magnetic plate 62 is also fixed on the inner wall of the second chute 6. The positioning block 8 is magnetically fixed by the first magnetic plate 62 so that the positioning block 8 can be kept fixed or moved.

[0040] Specifically, the positioning block 8 includes a push-pull block 81 whose outer side is slidably engaged with the second chute 6, a guide block 82 fixed on the outer side of the push-pull block 81, and a finger groove 83 opened on the outer side of the push-pull block 81. The push-pull block 81 is slidably connected with the guide rail 61 through the guide block 82 so that the push-pull block 81 can stably slide linearly along the second chute 6 without falling. The push-pull block is made of magnetic metal and can be magnetically adsorbed and fixed by the first magnetic plate 62. When it is necessary to fix the insert block 71, the push-pull block 81 can be pushed leftward through the finger groove 83 to fix the insert block 71.

[0041] Among them, the outer side of the push-pull block 81 is magnetically connected with the first magnetic plate 62, so as to magnetically adsorb the push-pull block 81 through the first magnetic plate 62, thereby helping the push-pull block 81 to be fixed in the second chute 6.

[0042] During implementation, please refer to Figure 3 and Figure 4 , an insertion cylinder 74 is fixedly embedded on the side of the insert block 71 close to the positioning block 8, and a second magnetic plate 75 is fixed on the inner wall of the insertion cylinder 74. After the insert block 71 moves upward and separates from the insertion slot 14, the push-pull block 81 can be moved leftward to fix the insert block 71, so that the insert block 71 cannot be reset, enabling the wheel body 3 to smoothly slide out of the first driving rod 11 quickly.

[0043] Specifically, an insertion rod 84 is fixed on the outer wall of the push-pull block 81. After the insertion rod 84 is inserted into the insertion cylinder 74, it is magnetically connected with the second magnetic plate 75. After the insert block 71 moves upward, the insertion rod 84 is also made of magnetic metal. When the push-pull block moves towards the insertion cylinder 74, the insertion rod 84 is inserted into the insertion cylinder 74, making the insert block 71 unable to move downward. When the insert block 74 needs to move downward, the push-pull block 81 is reset to separate the insertion rod 84 from the insertion cylinder 74.

[0044] Further, please refer to Figure 2 , the insert block 71 is internally provided with a cavity structure, and a sliding hole 73 communicating with the cavity is opened at the top of the insert block 71, and is connected with a reset member through the sliding hole 73.

[0045] Specifically, the reset member 9 includes a fixing rod 91 whose outer wall is slidably connected with the sliding hole 73, a sliding cylinder 92 whose bottom end is fixed on the cavity, and a spring 93 installed in the sliding cylinder.

[0046] Wherein, the upper and lower ends of the fixed rod 91 are respectively fixedly connected to the first sliding groove 5 and the spring 93, and the outer wall of the fixed rod 91 is in sliding contact with the sliding cylinder 92. The bottom end of the spring 93 is fixed to the sliding cylinder 92. The spring 93 is in a compressed state under normal conditions, so that the insertion block 71 can be pressed down into the insertion slot 14. When the insertion block 71 moves upward, the sliding cylinder 92 can be driven to slide along the fixed rod 91, and through further compression of the spring 93, a downward reset force is provided for the insertion block 71.

[0047] The above are only the preferred embodiments of the present invention, and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A pressing mechanism of a tile press, characterized in that: It includes a mounting bracket (1) and a pressing wheel (2); Inside the mounting bracket (1), a first driving rod (11) and a second driving rod (12) are rotatably mounted in sequence from top to bottom. A transmission wheel (13) is fixedly arranged on the outer side of the second driving rod (12). The pressing wheel (2) is arranged on the first driving rod (11) in a detachable and fixed manner; The pressing wheel (2) includes a wheel body (3) coaxially arranged with the first driving rod (11). An installation hole (4) is formed inside the wheel body (3). The wheel body (3) is in sliding fit with the first driving rod (11) through the installation hole (4). A first chute (5) and a second chute (6) that communicate with each other are formed on the outer side of the wheel body (3). A fixing block (7) and a positioning block (8) are respectively arranged inside the first chute (5) and the second chute (6). The bottom end of the fixing block (7) is inserted into the first driving rod (11), and the fixing block (7) is kept fixed in the first chute (5) through the positioning block (8). A reset member (9) is arranged between the fixing block (7) and the first chute (5).

2. The pressing mechanism of a tile press according to claim 1, characterized in that: The fixing block (7) includes an insertion block (71) slidably arranged on the inner wall of the first chute (5) and a push plate (72) fixedly connected to the side of the insertion block (71) away from the wheel body (3). A concave slot (14) is formed on the first driving rod (11). The bottom end of the insertion block (71) is inserted into the first driving rod (11) through the slot (14).

3. The pressing mechanism of a tile press according to claim 2, characterized in that: A guide rail (61) is formed on the inner wall of the second chute (6), and a first magnetic plate (62) is also fixedly arranged on the inner wall of the second chute (6).

4. The pressing mechanism of a tile press according to claim 3, characterized in that: The positioning block (8) includes a push-pull block (81) whose outer side is in sliding fit with the second chute (6), a guide block (82) fixedly arranged on the outer side of the push-pull block (81), and a finger groove (83) formed on the outer side of the push-pull block (81). The push-pull block (81) is slidably connected to the guide rail (61) through the guide block (82).

5. The pressing mechanism of a tile press according to claim 4, characterized in that: The outer side of the push-pull block (81) is magnetically connected to the first magnetic plate (62).

6. The pressing mechanism of a tile press according to claim 5, characterized in that: A socket (74) is fixedly embedded on the side of the insertion block (71) close to the positioning block (8). A second magnetic plate (75) is fixedly arranged on the inner wall of the socket (74).

7. The pressing mechanism of a tile press according to claim 6, characterized in that: A plug rod (84) is fixedly arranged on the outer wall of the push-pull block (81). After the plug rod (84) is inserted into the socket (74), it is magnetically connected to the second magnetic plate (75).

8. The pressing mechanism of a tile press according to claim 7, characterized in that: A cavity structure is arranged inside the insertion block (71), and a sliding hole (73) communicating with the cavity is formed at the top end of the insertion block (71).

9. The pressing mechanism of a tile press according to claim 8, characterized in that: The reset member (9) includes a fixing rod (91) whose outer wall is in sliding connection with the sliding hole (73), a sliding cylinder (92) whose bottom end is fixedly arranged on the cavity, and a spring (93) installed inside the sliding cylinder.

10. The pressing mechanism of a tile press according to claim 9, characterized in that: The upper and lower ends of the fixing rod (91) are respectively fixedly connected to the first chute (5) and the spring (93). The outer wall of the fixing rod (91) is in sliding contact with the sliding cylinder (92). The bottom end of the spring (93) is fixed to the sliding cylinder (92).