Mud strip conveying mechanism of green brick cutting machine

By designing the clay strip conveying mechanism of the blank cutting machine and using components such as conveyor belts, baffles, and lifting frames, the problem of the existing conveying mechanism being unable to accurately adjust the position of the clay strips was solved, achieving flexible clay strip conveying and position adaptation, and improving production efficiency.

CN223865592UActive Publication Date: 2026-02-03CHONGQING SHENGXUN MASCH MFG CO LTD
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Patent Information

Application Number
CN202520641759.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2026-02-03
Estimated Expiration
2035-04-08

AI Technical Summary

Technical Problem

The existing mud strip conveying mechanism cannot flexibly adjust the precise position of the mud strip stopping on the conveyor according to actual production needs, and cannot meet the needs of different processing environments.

Method used

A conveying mechanism including a conveyor frame, a conveyor belt, a baffle plate, a lifting frame, and an adjustment unit is designed. The conveyor belt is moved by the drive unit, the baffle plate is adjusted by the adjustment unit, and the height of the conveyor frame is controlled by the lifting unit, so as to achieve precise conveying and position adjustment of the mud strips.

Benefits of technology

This technology enables precise stopping of the mud strips during transport and adaptability to different processing environments, simplifying the operation process and improving production efficiency.

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Abstract

The utility model discloses a green brick cutting machine mud strip conveying mechanism in the technical field of conveying mechanisms, which comprises a conveying frame, a notch is arranged at the top of the conveying frame, a conveying belt is arranged in the notch, and the green brick cutting machine mud strip conveying mechanism further comprises a driving unit. The notch is formed in the top of the conveying frame, the conveying belt is arranged in the notch, in the using process, a user aligns one end of the conveying frame to a discharging port of the green brick cutting machine, the conveying belt is controlled by the driving unit to move in the length direction of the conveying belt, and then mud strips produced by the green brick cutting machine move to the surface of the conveying belt; after moving to the barrier plate, a worker needs to take the next mud strip to the surface of the barrier plate and place the next mud strip on a next processing station before moving the next mud strip to the surface of the barrier plate, and before the process, a user can adjust the position of the barrier plate in the length direction of the conveying belt by adjusting a single picker, so that the next mud strip is moved to the surface of the barrier plate. Therefore, the processing position of the next process is adapted.
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Description

Technical Field

[0001] This utility model relates to the field of conveying mechanism technology, specifically to a clay strip conveying mechanism for a blank cutting machine. Background Technology

[0002] The brick cutter is an important piece of equipment in building materials machinery. It is mainly used in brick factories to produce standard bricks, hollow bricks, etc. The brick cutter cuts the clay strips with a certain geometric shape extruded by the spiral extruder into blanks of the same thickness and conforming to certain specifications. It is the equipment used in the final processing step in the brick blank forming process.

[0003] In the brick factory production process, after the clay strips have undergone a series of meticulous processes, they need to be efficiently and stably transported using the crucial clay strip conveying mechanism in the brick cutting machine. However, the currently used clay strip conveying mechanism has revealed some problems that urgently need to be solved in actual operation. Specifically, after the conveying mechanism smoothly transports the clay strips to the end of the conveyor according to the established procedure, the operator needs to manually complete a rather cumbersome operation—carefully moving the clay strips to a specially set placement plate on the side so that they can smoothly enter the next processing stage. Moreover, more importantly, the existing conveying mechanism has certain limitations in its design. It cannot flexibly adjust the precise stopping position of the clay strips on the conveyor according to actual production needs, and cannot meet the needs of different processing environments. Therefore, a new type of clay strip conveying mechanism for brick cutting machines is needed to solve the above problems. Utility Model Content

[0004] The purpose of this utility model is to solve the problem that existing conveying mechanisms have certain limitations in design, which cannot flexibly adjust the precise position of the mud strips stopping on the conveyor according to actual production needs and cannot meet the needs of different processing environments. This utility model provides a conveying mechanism.

[0005] To achieve the above objectives, this utility model specifically adopts the following technical solution:

[0006] A clay strip conveying mechanism for a brick cutting machine includes: a conveying frame, the top of which is provided with a slot, and a conveyor belt is provided inside the slot; and a driving unit, which is used to drive the conveyor belt to move along its own length.

[0007] A baffle plate is provided above the conveyor belt, and an adjustment unit is also included. The adjustment unit is used to adjust the movement of the baffle plate along the length of the conveyor belt.

[0008] Furthermore, the conveyor frame includes a main frame, a lifting frame is provided above the main frame, the slot is opened at the top of the lifting frame, and a lifting unit is also included. The lifting unit is used to install the lifting frame on the surface of the main frame and control the spatial height of the lifting frame.

[0009] Furthermore, the lifting unit includes two insert plates that are fixedly installed at the bottom of the lifting frame. The surfaces of the two insert plates are slidably inserted into the top of the main frame. Two hydraulic rods are fixedly installed on the surface of the main frame. The other ends of the two hydraulic rods are fixedly installed on the surface of the lifting frame. The two hydraulic rods are electrically connected to a controller fixedly installed on the surface of the main frame.

[0010] Furthermore, the drive unit includes two drive wheels that are rotatably mounted on the inner wall of the slot, the conveyor belt is slidably sleeved on the surface of the drive wheels, the surface of the lifting frame is fixedly mounted with a drive motor, the output end of the drive motor is fixedly mounted on the surface of one of the drive wheels and electrically connected to the controller, and the conveyor belt is slidably sleeved on the surfaces of the two drive wheels.

[0011] Furthermore, the adjustment unit includes a guide rail fixedly installed on the surface of the lifting frame, and a plurality of guide blocks are fixedly installed on the bottom of the blocking plate. The plurality of guide blocks are slidably inserted into the inner wall of the guide rail, wherein rollers are rotatably installed on the inner wall of two of the guide blocks, and an abutment bolt is rotatably inserted into the surface of the other guide block.

[0012] Furthermore, one end of the blocking plate is slidably inserted with an extension plate, and the plate also includes a limiting unit, which is used to install the extension plate onto one end of the blocking plate.

[0013] Furthermore, the limiting unit includes two limiting protrusions and a limiting rod respectively disposed on the surfaces of the blocking plate and the extension plate. One end of the limiting rod is slidably inserted into the two limiting protrusions in sequence, and a limiting nut is threaded onto its surface.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] 1. In this utility model, a slot is opened at the top of the conveyor frame, and a conveyor belt is set inside the slot. When in use, the user aligns one end of the conveyor frame with the discharge port of the blank cutter. The drive unit controls the conveyor belt to move along its own length. The clay strips produced by the blank cutter move to the surface of the conveyor belt and are driven forward by the conveyor belt. After moving to the baffle plate, the operator needs to place the next clay strip on the surface of the baffle plate and place it on the surface of the baffle plate before the next clay strip moves to the surface of the baffle plate. Before this, the user can adjust the position of the baffle plate along the length of the conveyor belt by adjusting the single pick to adapt to the processing position of the next process.

[0016] 2. In this utility model, by splitting the conveyor frame into a main frame and a lifting frame set above the main frame, the user can control the lifting of two hydraulic rods through the controller during use, which drives two insert plates to slide on the top of the lifting frame, thereby further realizing the control of the spatial height of the lifting frame and the conveyor belt set inside the lifting frame, so as to adapt to the discharge port of the blank cutting machine of different heights. Attached Figure Description

[0017] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0018] Figure 2 This is a half-sectional view of the present invention;

[0019] Figure 3 This is a half-sectional view of the present invention from another angle;

[0020] Figure 4 This is a partial three-dimensional structural diagram of the present invention from another angle.

[0021] In the diagram: 1. Conveyor frame; 11. Main frame; 12. Lifting frame; 13. Lifting unit; 131. Insert plate; 132. Hydraulic rod; 133. Controller; 2. Groove; 3. Conveyor belt; 4. Drive unit; 41. Drive wheel; 42. Drive motor; 5. Baffle plate; 6. Adjustment unit; 61. Guide rail; 62. Guide block; 63. Roller; 64. Abutment bolt; 7. Extension plate; 8. Limiting unit; 81. Limiting protrusion; 82. Limiting rod; 83. Limiting nut. Detailed Implementation

[0022] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings.

[0023] The clay strip conveying mechanism for the cutting machine provided in this embodiment is mainly used to solve the problem that existing conveying mechanisms have certain design limitations. They cannot flexibly adjust the precise stopping position of the clay strips on the conveyor according to actual production needs, and cannot meet the requirements of different processing environments. The following technical solution is provided, which will be discussed in conjunction with... Figures 1-4 Please provide a detailed explanation:

[0024] The clay strip conveying mechanism of the blank cutting machine includes a conveyor frame 1 with a slot 2 at the top. A conveyor belt 3 is installed inside the slot 2. During operation, the user must first align one end of the conveyor frame 1 with the discharge port of the blank cutting machine. Then, the clay strip produced from the discharge port moves to the surface of the conveyor belt 3. Through the action of the drive unit 4, the conveyor belt 3 can be driven to move along its length, thereby causing the clay strip above it to move synchronously. When the clay strip reaches the surface of the baffle plate 5 located above the conveyor belt 3, it will contact the surface of the baffle plate 5, allowing the operator to remove the clay strip. Before this, the user can adjust the position of the baffle plate 5 along the length of the conveyor belt 3 using the adjustment unit 6 to adapt to the processing position of the next process. The main components of the conveyor frame 1 are: a main frame body 11 with a lifting frame 12 on top, and the slot 2 opened on the surface of the lifting frame 12. During use, the user can control the position of the lifting frame 12 above the main frame body 11 through the lifting unit 13, thereby changing the spatial height of the conveyor belt 3 located inside the slot 2. The main components of the drive unit 4 are... Two drive wheels 41 are rotatably mounted on the inner wall of the slot 2. During use, the user controls the output end of the drive motor 42, which is fixedly mounted on the surface of the lifting frame 12, to rotate via the controller 133. This drives one of the drive wheels 41 to rotate (one end of which is fixedly mounted on the output end of the drive motor 42), thereby driving the conveyor belt 3 that is slidably sleeved on the surfaces of the two drive wheels 41. The main components of the adjustment unit 6 are: a guide rail 61 fixedly mounted on the surface of the lifting frame 12 and several guide blocks 62 fixedly mounted on the bottom of the baffle plate 5. During use, the user slides several guide blocks 62 into the inner wall of the guide rail 61, so that two rollers 63, which are respectively rotatably mounted on the inner wall of two of the guide rails 61, roll on the inner wall of the guide rail 61. This allows the position of the baffle plate 5 on one side of the lifting frame 12 to be adjusted. Finally, the user rotates the abutment bolt 64, which is threadedly inserted into the surface of the other guide rail 61, so that one end of the abutment bolt 64 abuts against the inner wall of the guide rail 61, thereby achieving a relatively stable limit on one side of the lifting frame 12 for the baffle plate 5.

[0025] By opening a slot 2 at the top of the conveyor frame 1 and setting a conveyor belt 3 inside the slot 2, the user aligns one end of the conveyor frame 1 with the discharge port of the blank cutter during use. The drive unit 4 controls the conveyor belt 3 to move along its own length. The clay strips produced by the blank cutter move to the surface of the conveyor belt 3 and are driven forward by the conveyor belt 3. After moving to the baffle plate 5, the operator needs to place the next clay strip on the surface of the baffle plate 5 before it moves to the next processing station. Before this, the user can adjust the position of the baffle plate 5 along the length of the conveyor belt 3 by adjusting the single pick to adapt to the processing position of the next process.

[0026] By splitting the conveyor frame 1 into a main frame 11 and a lifting frame 12 located above the main frame 11, the user can control the lifting of two hydraulic rods 132 via the controller 133 during use, thereby driving two insert plates 131 to slide on the top of the lifting frame 12. This further enables control over the spatial height of the lifting frame 12 and the conveyor belt 3 located inside the lifting frame 12, in order to accommodate the discharge port of the blank cutter at different heights.

[0027] like Figure 2 As shown, in some embodiments, the main components of the lifting unit 13 are two insert plates 131 that are fixedly installed at the bottom of the lifting frame 12. In use, the user controls the extension and retraction of two hydraulic rods 132 that are fixedly installed on the surface of the main frame 11 through the controller 133, which can drive the lifting frame 12 to rise and fall (the other ends of the two hydraulic rods 132 are fixedly installed on the surface of the lifting frame 12).

[0028] like Figure 1 As shown, in some embodiments, when the mud strip is long, the user needs to insert an extension plate 7 into one end of the blocking plate 5 through the limiting unit 8. This expands the space for placing the blocking plate 5, making it easier to retrieve the mud strip later. The main components of the limiting unit 8 are: a limiting rod 82, and limiting protrusions 81 are provided on the surfaces of both the blocking plate 5 and the extension plate 7. In use, the user needs to first insert the extension plate 7 into one end of the blocking plate 5, then insert one end of the limiting rod 82 into the two limiting protrusions 81 in sequence, and finally thread a limiting nut 83 onto the surface of the limiting rod 82 to assemble the extension plate 7 and the blocking plate 5.

[0029] The working process of this utility model:

[0030] First, the user needs to insert the extension plate 7 into one end of the blocking plate 5, insert one end of the limiting rod 82 into the two limiting protrusions 81 in sequence, thread the limiting nut 83 onto the surface of the limiting rod 82, then slide several guide blocks 62 into the inner wall of the guide rail 61 to move the blocking plate 5 to the appropriate position, and finally rotate the abutment bolt 64 so that one end of the abutment bolt 64 abuts against the inner wall of the guide rail 61, thereby effectively limiting the blocking plate 5.

[0031] Secondly, the user needs to align one end of the conveyor frame 1 with the discharge port of the blank cutter, and control the output end of the drive motor 42 to rotate through the controller 133. This will drive the drive wheel 41 to rotate, thereby driving the conveyor belt 3 along its own length. The clay strips produced by the blank cutter will move forward on the surface of the conveyor belt 3 and be blocked after reaching the surface of the baffle plate 5. At this time, the operator needs to place the next clay strip on the surface of the baffle plate 5 before it moves to the next processing station (these clay strips are generally large and are transported in segments, that is, the next segment is not connected to the previous segment). Before this, the user can adjust the position of the baffle plate 5 along the length of the conveyor belt 3 by adjusting the single pick to adapt to the processing position of the next process.

[0032] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A clay strip conveying mechanism for a brick cutting machine, characterized in that, include: The conveyor frame (1) has a slot (2) on its top and a conveyor belt (3) inside the slot (2). It also includes a drive unit (4) for driving the conveyor belt (3) to move along its own length. A baffle plate (5) is provided above the conveyor belt (3), and an adjustment unit (6) is also included. The adjustment unit (6) is used to adjust the baffle plate (5) to move along the length of the conveyor belt (3).

2. The clay strip conveying mechanism for the cutting machine according to claim 1, characterized in that: The conveyor frame (1) includes a main frame (11), a lifting frame (12) is provided above the main frame (11), the slot (2) is opened on the top of the lifting frame (12), and also includes a lifting unit (13), the lifting unit (13) is used to install the lifting frame (12) on the surface of the main frame (11) and control the spatial height of the lifting frame (12).

3. The clay strip conveying mechanism for the blank cutter according to claim 2, characterized in that: The lifting unit (13) includes two insert plates (131) that are fixedly installed at the bottom of the lifting frame (12). The surfaces of the two insert plates (131) are slidably inserted into the top of the main frame (11). Two hydraulic rods (132) are fixedly installed on the surface of the main frame (11). The other ends of the two hydraulic rods (132) are fixedly installed on the surface of the lifting frame (12). The two hydraulic rods (132) are electrically connected to a controller (133) fixedly installed on the surface of the main frame (11).

4. The clay strip conveying mechanism for the cutting machine according to claim 3, characterized in that: The drive unit (4) includes two drive wheels (41) that are rotatably mounted on the inner wall of the slot (2). The conveyor belt (3) is slidably sleeved on the surface of the drive wheels (41). The surface of the lifting frame (12) is fixedly mounted with a drive motor (42). The output end of the drive motor (42) is fixedly mounted on the surface of one of the drive wheels (41) and electrically connected to the controller (133). The conveyor belt (3) is slidably sleeved on the surfaces of the two drive wheels (41).

5. The clay strip conveying mechanism for the blank cutter according to claim 2, characterized in that: The adjustment unit (6) includes a guide rail (61) fixedly installed on the surface of the lifting frame (12). Several guide blocks (62) are fixedly installed at the bottom of the blocking plate (5). Several guide blocks (62) are slidably inserted into the inner wall of the guide rail (61). Rollers (63) are rotatably installed on the inner wall of two guide blocks (62), and abutment bolts (64) are rotatably inserted into the surface of the other guide block (62).

6. The clay strip conveying mechanism for the cutting machine according to claim 1, characterized in that: One end of the blocking plate (5) is slidably connected to an extension plate (7), and also includes a limiting unit (8), which is used to install the extension plate (7) on one end of the blocking plate (5).

7. The clay strip conveying mechanism for a blank cutter according to claim 6, characterized in that: The limiting unit (8) includes two limiting protrusions (81) and a limiting rod (82) respectively disposed on the surfaces of the blocking plate (5) and the extension plate (7). One end of the limiting rod (82) is slidably inserted into the two limiting protrusions (81) in sequence, and a limiting nut (83) is threaded onto its surface.