Forming structure for triangular ridge tile

By designing an automated forming structure, including conveyor frame, support box and electric push rod, the problems of excessive manual operations and low efficiency in the forming and conveying of triangular ridge tile are solved, and an efficient and safe production process is achieved.

CN222958864UActive Publication Date: 2025-06-10XINXIANG XINYU CAIWA TECH CO LTD
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Patent Information

Application Number
CN202420555415.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-03-21
Publication Date
2025-06-10
Estimated Expiration
2034-03-21

AI Technical Summary

Technical Problem

The forming structure of triangular ridge tiles requires more manual operation and low production efficiency. The conveying process after forming is prone to deformation and damage of the ridge tiles, which requires secondary repair.

Method used

A molding structure is designed, including a conveyor frame, support box, electric push rod, one, conveyor plate and electric push rod, two. Through the coordinated work of these components, an automated forming and conveying process is realized.

Benefits of technology

It improves the production efficiency of triangular ridge tiles, reduces manual operation, prevents deformation and damage of ridge tiles during the transportation process, and reduces the need for secondary repair.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a forming structure for a triangular ridge tile, and relates to the technical field of tile processing. The conveyor comprises a conveyor rack, a supporting box, a first electric push rod, a conveying plate and a second electric push rod, a conveying belt is movably connected to the outer side of the conveyor rack, a matched belt is fixed to the outer side of the conveying belt, the conveying plate is movably connected to the outer side of the matched belt, and the supporting box is arranged at the end, away from the matched belt, of the conveying plate. The end, close to the conveying plate, of the supporting box fixedly communicates with an output frame, second electric push rods are arranged on the two sides between the conveying plate and the output frame, and a first electric push rod is fixed to the end, away from the output frame, of the supporting box. By arranging the conveyor rack, the supporting box, the first electric push rod, the conveying plate and the second electric push rod, the triangular ridge tile forming structure solves the problems that a large amount of manpower is needed in forming operation of a triangular ridge tile forming structure, production efficiency is low, and ridge tiles are prone to being damaged when conveyed.
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Description

Technical Field

[0001] The utility model belongs to the technical field of tile processing, and particularly relates to a forming structure for triangular ridge tiles. Background Technique

[0002] Ridge tiles, generally speaking, are the tiles on the roof ridge. In terms of adaptability, they can be understood as tiles that can drain water on both sides of the same part. Among them, triangular ridge tiles are the most commonly used in ridge tiles. When triangular ridge tiles are laid on a house, they can drain water well, ensuring that there is no water leakage on the roof ridge and providing good waterproof performance. When triangular ridge tiles are produced, a forming mechanism is used to form the ridge tiles, and after firing, the ridge tiles are formed. However, there are still the following disadvantages in actual use:

[0003] The forming structure of triangular ridge tiles directly uses a mold to form the ridge tiles one by one. During the forming process, it is necessary to manually put the material into the mold, and then compact it and take it out to complete the forming. During operation, a large amount of manual labor is required, and the production efficiency is low;

[0004] After the forming structure of triangular ridge tiles completes the forming, it is necessary to wait for the ridge tiles to dry to a certain extent before they can be transported. During transportation, the ridge tiles are easily deformed and need secondary repair. It is not convenient to transport the formed ridge tiles. Content of the Utility Model

[0005] The purpose of the utility model is to provide a forming structure for triangular ridge tiles. By setting a conveyor frame, a support box, a first electric push rod, a conveying plate and a second electric push rod, the problems that the forming operation of the forming structure of triangular ridge tiles requires a large amount of manual labor, the production efficiency is low, and the ridge tiles are easily damaged during transportation are solved.

[0006] To solve the above technical problems, the utility model is realized through the following technical solutions:

[0007] The utility model is a forming structure for triangular ridge tiles, including a conveyor frame, a support box, a first electric push rod, a conveying plate and a second electric push rod. The outer side of the conveyor frame is movably connected with a conveyor belt, the outer side of the conveyor belt is fixed with a matching belt, the outer side of the matching belt is movably connected with a conveying plate, one end of the conveying plate away from the matching belt is provided with a support box, one end of the support box close to the conveying plate is fixedly communicated with an output frame, and the second electric push rods are arranged on both sides between the conveying plate and the output frame. One end of the support box away from the output frame is fixed with a first electric push rod. During operation, the conveyor belt is supported on the conveyor frame, the triangular ridge tiles are conveyed through the matching belt, the raw materials of the triangular ridge tiles are conveyed through the support box, the raw materials of the triangular ridge tiles in the first electric push rod are extruded by driving the first electric push rod, the raw materials of the triangular ridge tiles are conveyed through the conveying plate, and the cutting steel wire rope is driven to move by the second electric push rod to cut the raw materials of the ridge tiles.

[0008] Further, a cam divider is provided on one side of the conveyor frame. The output end of the cam divider is fixed to the input end of the conveyor frame. A drive motor is fixed to the end of the cam divider away from the conveyor frame. The output end of the drive motor is fixed to the input end of the cam divider. The conveyor frame drives the conveyor belt to move through the cam divider.

[0009] Further, a pressing plate is movably connected inside the support box. A handle is fixed to the center of the top of the pressing plate. An activity hole is provided at one end of the support box close to the first electric push rod. The support box conveys the triangular ridge tile raw materials in the support box through the pressing plate.

[0010] Further, the telescopic end of the first electric push rod is movably connected through the activity hole. A push plate is fixed to the telescopic end of the first electric push rod. The push plate is movably connected inside the support box. The first electric push rod drives the push plate to move, and drives the push plate to drive the triangular ridge tile materials in the support box to be conveyed.

[0011] Further, a fixing plate is fixed to the upper part of one side of the support box. Rotating bars are symmetrically rotatably connected to the top of the fixing plate along the longitudinal center line. Restricting frames are symmetrically fixed to the upper part of the side of the support box away from the fixing plate. The ends of the two rotating bars away from the fixing plate are respectively rotatably connected to the restricting frames. The support box rotatably connects the rotating bars through the fixing plate, and rotates the rotating bars onto the restricting frames through the rotating bars, and restricts the rotating bars through the restricting frames.

[0012] Further, a support rod is fixed to the bottom of the conveying plate. The telescopic ends of the two second electric push rods are fixed with lifting blocks. A cutting steel wire rope is commonly fixed to the upper part between the two lifting blocks. The cutting steel wire rope is arranged between the output frame and the conveying plate. The conveying plate is supported by the support rod, and the second electric push rod drives the cutting steel wire rope to lift and lower.

[0013] The utility model has the following beneficial effects:

[0014] By setting the support box, the first electric push rod, the conveying plate and the second electric push rod, the utility model solves the problems that the forming operation of the forming structure of the triangular ridge tile requires a large amount of manual labor and the production efficiency is low. The first electric push rod works intermittently, drives the push plate to extrude the ridge tile raw materials and outputs them to the conveying plate through the output frame. When the first electric push rod stops working, the second electric push rod is started. The second electric push rod drives the lifting block to raise the cutting steel wire rope. The cutting steel wire rope rises until the triangular ridge tile is cut by the cutting steel wire rope, and then drives it to descend below the output frame, conveys it to the conveying plate, and then conveys it to the matching belt through the conveying plate, so that when producing triangular ridge tiles, continuous and rapid production can be carried out, and the production efficiency is higher.

[0015] The utility model solves the problem that the formed structure of the triangular ridge tile is easy to damage the ridge tile when transporting the ridge tile by setting a conveyor frame and a conveying plate. The conveyor frame is matched with a belt to cooperate with the movement of the conveyor belt to transport the formed triangular ridge tile. The conveyor belt has the same shape as that inside the triangular ridge tile. When transporting the triangular ridge tile, the ridge tile can be well supported to prevent damage, and the safety of transporting the ridge tile by the formed structure of the triangular ridge tile can be better ensured. Description of the Drawings

[0016] Figure 1 It is a three-dimensional assembly structure diagram of a forming structure for triangular ridge tiles;

[0017] Figure 2 It is a three-dimensional structure diagram of the conveyor frame;

[0018] Figure 3 It is a three-dimensional structure diagram of the support box;

[0019] Figure 4 It is a three-dimensional structure diagram of the electric push rod I;

[0020] Figure 5 It is a three-dimensional structure diagram of the conveying plate;

[0021] Figure 6 It is a three-dimensional structure diagram of the electric push rod II.

[0022] Reference Signs:

[0023] 1, conveyor frame; 101, conveyor belt; 102, mating belt; 103, cam divider; 104, drive motor; 2, support box; 201, movable hole; 202, fixing plate; 203, rotating bar; 204, limiting frame; 205, pressing plate; 206, handle; 207, output frame; 3, electric push rod I; 301, pushing plate; 4, conveying plate; 401, support rod; 5, electric push rod II; 501, lifting block; 502, cutting wire rope. Detailed Embodiment

[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model.

[0025] Please refer to Figure 1-6As shown in the figure, the utility model is a forming structure for triangular ridge tiles, including a conveyor frame 1, a support box 2, a first electric push rod 3, a conveying plate 4 and a second electric push rod 5. The outer side of the conveyor frame 1 is movably connected with a conveyor belt 101. When the conveyor frame 1 is driven to work, it drives the conveyor belt 101 to move. Through the movement of the conveyor belt 101, it drives the matching belt 102 to move. The outer side of the conveyor belt 101 is fixed with the matching belt 102. The matching belt 102 cooperates with the movement of the conveyor belt 101 to convey the formed triangular ridge tiles. The conveyor belt 101 has the same shape as that inside the triangular ridge tiles. When conveying the triangular ridge tiles, it can provide good support for the ridge tiles to prevent damage. The outer side of the matching belt 102 is movably connected with a conveying plate 4. The conveying plate 4 is used to convey the formed ridge tiles. One end of the conveying plate 4 far away from the matching belt 102 is provided with a support box 2. The support box 2 accommodates the raw materials of the triangular ridge tiles. One end of the support box 2 close to the conveying plate 4 is fixedly communicated with an output frame 207. The output frame 207 guides the triangular ridge tile materials in the support box 2 to the conveying plate 4 when outputting. Electric push rods 5 are arranged on both sides between the conveying plate 4 and the output frame 207. The electric push rods 5 drive the cutting steel wire rope 502 to lift and cut the triangular ridge tiles. One end of the support box 2 far away from the output frame 207 is fixed with a first electric push rod 3. The first electric push rod 3 drives the cutting steel wire rope 502 to lift and lower.

[0026] As shown in Figure 1 and 2 , a cam divider 103 is arranged on one side of the conveyor frame 1. The output end of the cam divider 103 is fixed to the input end of the conveyor frame 1. One end of the cam divider 103 far away from the conveyor frame 1 is fixed with a driving motor 104. The output end of the driving motor 104 is fixed to the input end of the cam divider 103. During operation, the driving motor 104 drives the cam divider 103 to work. After the power of the driving motor 104 is divided by the cam divider 103, it drives the conveyor frame 1 to work intermittently, and through the intermittent work of the conveyor frame 1, it intermittently drives the matching belt 102 to move.

[0027] As shown in Figure 1 and 3 , a pressing plate 205 is movably connected inside the support box 2. The center of the top of the pressing plate 205 is fixed with a handle 206. An activity hole 201 is opened at one end of the support box 2 close to the first electric push rod 3. The support box 2 presses on the side ridge tile raw materials through the pressing plate 205 to limit the ridge tile raw materials, and drives the ridge tiles to move by pulling through the handle 206.

[0028] As shown in Figure 1 and 4As shown, the telescopic end of the first electric push rod 3 is movably connected through the movable hole 201. A push plate 301 is fixed to the telescopic end of the first electric push rod 3. The push plate 301 is movably connected in the support box 2. The first electric push rod 3 drives the push plate 301 to move, and through the push plate 301, the raw material of the ridge tile is pushed in the support box 2, and the raw material of the ridge tile is extruded into the output frame 207.

[0029] As shown in Figure 1 and 3 As shown, a fixed plate 202 is fixed to the upper part of one side of the support box 2. Rotating bars 203 are symmetrically and rotatably connected to the top of the fixed plate 202 along the longitudinal center line. Limiting frames 204 are symmetrically fixed to the upper part of the side of the support box 2 away from the fixed plate 202. One ends of the two rotating bars 203 away from the fixed plate 202 are respectively rotatably connected to the limiting frames 204. The support box 2 rotatably connects the rotating bars 203 thereto through the fixed plate 202, and through the rotating bars 203 being stuck into the limiting frames 204, the pressing plate 205 is restricted in the support box 2.

[0030] As shown in Figure 1 and 5 As shown in 6, a support rod 401 is fixed to the bottom of the conveying plate 4. The telescopic ends of the two second electric push rods 5 are fixed with lifting blocks 501. A cutting steel wire rope 502 is commonly fixed to the upper part between the two lifting blocks 501. The cutting steel wire rope 502 is arranged between the output frame 207 and the conveying plate 4. The conveying plate 4 is fixed to the support table surface through the support rod 401, and the support rod 401 is supported on the workbench surface. Driven by the second electric push rod 5, the lifting block 501 drives the cutting steel wire rope 502 to rise, cutting the triangular ridge tile blank.

[0031] The specific working principle of the present utility model is as follows: During work, first rotate the rotating bar 203, through the rotating bar 203 leaving the limiting frame 204 and leaving the top of the support box 2, pull the handle 206, remove the pressing plate 205, then place the raw material of the ridge tile into the support box 2, then put the pressing plate 205 back on the top of the support box 2, and then rotate the rotating bar 203 again, rotate the rotating bar 203 to be stuck in the limiting frame 204, restrict the pressing plate 205 well, and start working. Start the first electric push rod 3. The first electric push rod 3 works intermittently, driving the push plate 301 to extrude the raw material of the ridge tile and output it through the output frame 207 onto the conveying plate 4. When the first electric push rod 3 stops working, start the second electric push rod 5. The second electric push rod 5 drives the lifting block 501 to raise the cutting steel wire rope 502. The cutting steel wire rope 502 rises until the cutting steel wire rope 502 cuts the triangular ridge tile, and then drives it to descend below the output frame 207, convey it onto the conveying plate 4, and then convey it onto the matching belt 102 through the conveying plate 4. The conveying belt 101 and the matching belt 102 are driven by the cam divider 103 to convey the triangular ridge tile.

[0032] The above are only the preferred embodiments of the present utility model and do not limit the present utility model. Any modification to the technical solutions recorded in the foregoing embodiments, any equivalent replacement of some technical features, and any modification, equivalent replacement, or improvement made shall fall within the protection scope of the present utility model.

Claims

1. A molding structure for triangular ridge tiles, comprising a conveyor frame (1), a support box (2), a first electric push rod (3), a conveying plate (4) and a second electric push rod (5), characterized in that: The outer side of the conveyor frame (1) is movably connected to a conveying belt (101), the outer side of the conveying belt (101) is fixedly connected to a matching belt (102), the outer side of the matching belt (102) is movably connected to a conveying plate (4), the end of the conveying plate (4) away from the matching belt (102) is provided with a support box (2), the end of the support box (2) close to the conveying plate (4) is fixedly connected to an output frame (207), both sides between the conveying plate (4) and the output frame (207) are provided with electric push rods (5), and the end of the support box (2) away from the output frame (207) is fixedly connected to an electric push rod (3).

2. A forming structure for a triangular ridge tile according to claim 1, characterized in that: A cam divider (103) is provided on one side of the conveyor frame (1), an output end of the cam divider (103) is fixed to an input end of the conveyor frame (1), a drive motor (104) is fixed to one end of the cam divider (103) away from the conveyor frame (1), and an output end of the drive motor (104) is fixed to an input end of the cam divider (103).

3. The forming structure for triangular ridge tiles according to claim 1, characterized in that: A pressure plate (205) is movably connected inside the support box (2), a handle (206) is fixed at the center of the top of the pressure plate (205), and a movable hole (201) is opened at one end of the support box (2) close to the electric push rod (3).

4. A forming structure for a triangular ridge tile according to claim 1, characterized in that: The telescopic end of the electric push rod 1 (3) is movably connected to the movable hole (201), and a push plate (301) is fixed to the telescopic end of the electric push rod 1 (3), and the push plate (301) is movably connected to the support box (2).

5. The forming structure for triangular ridge tiles according to claim 1, characterized in that: A fixing plate (202) is fixed to the upper portion of one side of the support box (2); a rotating bar (203) is symmetrically connected to the top of the fixing plate (202) for rotation along the longitudinal center line; a limiting frame (204) is symmetrically fixed to the upper portion of the side of the support box (2) away from the fixing plate (202); and one end of the two rotating bars (203) away from the fixing plate (202) is respectively connected to the limiting frame (204) for rotation.

6. A forming structure for a triangular ridge tile according to claim 1, characterized in that: A support rod (401) is fixed to the bottom of the conveying plate (4), a lifting block (501) is fixed to the telescopic ends of the two electric push rods (5), a cutting wire rope (502) is fixed to the upper part between the two lifting blocks (501), and the cutting wire rope (502) is arranged between the output frame (207) and the conveying plate (4).