Forming die for standard brick processing

By introducing a material ejection device into the standard brick forming mold, and using an electric telescopic rod to drive a rectangular rod and an L-shaped plate to eject the brick, the problem of narrow gap between the brick and the inner wall of the cavity after forming is solved, and a fast and safe demolding process is achieved.

CN224239914UActive Publication Date: 2026-05-15JIANGXI YUANSHUI WALL MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGXI YUANSHUI WALL MATERIAL CO LTD
Filing Date
2025-04-25
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

The existing standard brick processing molds have a narrow gap between the formed standard brick and the inner wall of the cavity after extrusion molding, which makes it easy to damage the brick during material removal and affects the processing quality.

Method used

A molding die including a concave die and a pressing die was designed, equipped with a material handling device. A rectangular rod and an L-shaped plate are driven by an electric telescopic rod, and a standard brick is ejected from the die by moving the connecting plate, which increases the material handling space and reduces the friction between the brick and the inner wall of the cavity.

Benefits of technology

It enables rapid demolding of standard bricks, improves the safety and convenience of material handling, reduces the risk of brick damage, and enhances processing quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a forming die for standard brick processing, and relates to the technical field of dies, the forming die comprises a female die and a pressing die, the pressing die is arranged above the female die, and one side of the female die is provided with a material taking device which is used for ejecting out a standard brick in a female die cavity and is convenient for personnel to take the standard brick quickly. The material taking device comprises an electric telescopic rod, a connecting device is arranged between the electric telescopic rod and the female die, a rectangular rod is fixedly connected to the output end of the electric telescopic rod, a connecting plate is fixedly connected to one side of the rectangular rod, and an L-shaped plate is fixedly connected to one side of the connecting plate. According to the utility model, by arranging the material taking device, the standard brick in the cavity of the female die can be ejected out, so that the material taking space of the standard brick is increased, and the situation that the molded standard brick is damaged when being taken out by a worker due to a narrow gap between the standard brick and the inner wall of the cavity of the female die is reduced; and the taking safety and convenience of the standard bricks are improved.
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Description

Technical Field

[0001] This utility model relates to the field of mold technology, and in particular to a molding mold for processing standard bricks. Background Technology

[0002] Standard bricks are the most commonly used bricks in construction projects. They are widely used in load-bearing brick walls and also in non-load-bearing infill walls. Standard bricks are widely used in various construction projects because of their fixed size and stable performance. They are one of the important materials to ensure the safety and stability of building structures. In the process of making standard bricks, molding molds are often used for processing.

[0003] Existing standard brick forming molds typically involve fixing the concave mold, then feeding the raw material into multiple cavities inside the concave mold. Subsequently, a press is used to move the die closer to the concave mold, causing the die and the concave mold to merge while simultaneously extruding the raw material inside the cavities. This process fills the cavities with the raw material and shapes it, thus forming the standard brick.

[0004] However, because the raw material adheres tightly to the inner wall of the die cavity after being squeezed by the mold, the gap between the formed standard brick and the inner wall of the cavity is narrow, making it easy for personnel to damage the newly formed standard brick when taking out the material, thus affecting the processing quality of the standard brick. Utility Model Content

[0005] The technical problem this invention aims to solve is that the raw material adheres tightly to the inner wall of the die cavity after being squeezed by the mold, resulting in a narrow gap between the formed standard brick and the inner wall of the cavity. This makes it easy for personnel to damage the newly formed standard brick when handling the material, thus affecting the processing quality of the standard brick.

[0006] The technical solution adopted by this utility model to solve its technical problem is: a forming mold for processing standard bricks, including a concave mold and a pressing mold, wherein the pressing mold is arranged above the concave mold, and a material picking device is provided on one side of the concave mold to eject the standard bricks inside the concave mold cavity for easy and quick picking by personnel.

[0007] The effect achieved by the above components is as follows: First, the die is fixed on the table of the stamping machine. Then, the raw material is put into the multiple cavities inside the die. Then, the stamping machine drives the die to move closer to the die, so that the die and the die merge and squeeze the raw material inside the cavity, so that the raw material fills the cavity and is shaped, thereby achieving the forming of standard bricks.

[0008] Preferably, the material handling device includes an electric telescopic rod, a connecting device is provided between the electric telescopic rod and the die, a rectangular rod is fixedly connected to the output end of the electric telescopic rod, a connecting plate is fixedly connected to one side of the rectangular rod, an L-shaped plate is fixedly connected to one side of the connecting plate, a first rectangular groove is provided on one side of the die, a second rectangular groove is provided on the side of the die near the first rectangular groove, wherein the rectangular rod and the connecting plate are respectively disposed inside the first rectangular groove and the second rectangular groove, and the L-shaped plate is disposed inside the cavity of the die.

[0009] The effect achieved by the above-mentioned components is as follows: By setting up a material handling device, after the standard brick is shaped inside the cavity of the die, the electric telescopic rod is activated, which drives the rectangular rod to move away from the die. This causes the rectangular rod to drive the connecting plate and the L-shaped plate to move away from the die. During the movement, the L-shaped plate pushes the standard brick out of the die cavity, increasing the material handling space for the standard brick. This achieves rapid demolding of the standard brick and reduces the risk of damage to the newly formed standard brick when it is removed due to the narrow gap between the standard brick and the inner wall of the die cavity. This improves the safety and convenience of material handling for the standard brick.

[0010] Preferably, a reinforcing block is fixedly connected to one side of the rectangular rod, and the reinforcing block is fixedly connected to the connecting plate.

[0011] The effect achieved by the above components is that by setting up reinforcing blocks, the connection strength between the connecting plate and the rectangular rod can be increased, reducing the possibility of separation between the rectangular rod and the connecting plate under stress during use.

[0012] Preferably, a leather pad is fixedly connected to one side of the rectangular rod, and the leather pad is fixedly connected to the connecting plate, wherein the leather pad is disposed in the gap between the rectangular rod and the first rectangular groove and the connecting plate and the second rectangular groove.

[0013] The effect achieved by the above components is that by setting up the pad, the pad can cover the gap between the rectangular rod and the first rectangular groove and the connecting plate and the second rectangular groove, reducing the chance of raw materials accidentally falling into the gap when they are put into the cavity mold, causing jamming.

[0014] Preferably, a rubber pad is fixedly connected to the side of the connecting plate away from the rectangular rod.

[0015] The effect achieved by the above components is that by setting rubber pads, the rubber pads can separate the connecting plate from the die, reducing the direct collision between the connecting plate and the die during movement and preventing excessive wear.

[0016] Preferably, the connecting device includes a collar, which is fixedly connected to the die. A threaded hole is provided on one side of the collar, and a bolt is threadedly connected to the inner wall of the threaded hole. A round hole block is fixedly connected to one side of the electric telescopic rod. The surface of the round hole block is slidably connected to the inner wall of the collar, and the size and shape of the bolt surface are adapted to the size and shape of the inner wall of the round hole block.

[0017] The effect achieved by the above components is as follows: by setting up a connecting device, the electric telescopic rod is first moved manually, so that the electric telescopic rod drives the round hole block to move. When the round hole block moves to the position inside the insertion collar, the inner wall of the round hole block coincides with the inner wall of the threaded hole. At this time, the bolt is manually turned into the position inside the threaded hole and the round hole block to fix the position of the round hole block and the electric telescopic rod, thereby completing the assembly and fixation between the material picking device and the die. At the same time, the material picking device can be disassembled and maintained later, which improves the flexibility of use and the convenience of maintenance of the material picking device.

[0018] Preferably, one end of the bolt is fixedly connected to a screw block, and the surface of the screw block is provided with multiple protrusions.

[0019] The effect achieved by the above components is that by setting the tightening block, the contact area of ​​the bolt can be increased, thereby improving the convenience and stability of manual bolt turning.

[0020] Preferably, the surface of the collar is fixedly connected with reinforcing ribs, which are made of steel.

[0021] The effect achieved by the above components is that by setting reinforcing ribs, the strength of the collar can be increased, reducing the possibility of the collar breaking or deforming when subjected to compression.

[0022] The beneficial effects of this utility model are:

[0023] By setting up a material handling device, the standard brick inside the concave mold cavity can be ejected, increasing the material handling space for the standard brick. This reduces the risk of damage to the newly formed standard brick when it is removed due to the narrow gap between the standard brick and the inner wall of the concave mold cavity, thus improving the safety and convenience of material handling for the standard brick. Attached Figure Description

[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0025] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0026] Figure 2 This is a three-dimensional structural diagram of the first rectangular groove of this utility model;

[0027] Figure 3 This is a three-dimensional structural diagram of the L-shaped plate of this utility model;

[0028] Figure 4 This utility model Figure 3 Another perspective view;

[0029] Figure 5 This is a three-dimensional structural diagram of the collar of this utility model.

[0030] Legend: 1. Die; 2. Material handling device; 21. First rectangular groove; 22. Second rectangular groove; 23. Electric telescopic rod; 24. Rectangular rod; 25. Connecting plate; 26. L-shaped plate; 27. Leather pad; 28. Reinforcing block; 29. ​​Rubber pad; 3. Connecting device; 31. Collar; 32. Threaded hole; 33. Bolt; 34. Tightening block; 35. Reinforcing rib; 36. Round hole block; 4. Press mold. Detailed Implementation

[0031] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the present invention, and therefore only show the components relevant to the present invention.

[0032] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0033] Figure 1-5 The mold shown is a standard brick forming mold, including a cavity mold 1 and a pressing mold 4. The pressing mold 4 is set above the cavity mold 1. A material picking device 2 is provided on one side of the cavity mold 1 to eject the standard brick inside the cavity mold 1 for easy and quick handling by personnel. First, the cavity mold 1 is fixed on the table of the stamping machine. Then, the raw material is put into the multiple cavities inside the cavity mold 1. Then, the stamping machine drives the pressing mold 4 to move closer to the cavity mold 1, so that the pressing mold 4 and the cavity mold 1 merge and squeeze the raw material inside the cavity, so that the raw material fills the cavity and is shaped, thereby achieving the forming of the standard brick.

[0034] Figure 2 and Figure 3The material handling device 2 shown includes an electric telescopic rod 23. A connecting device 3 is provided between the electric telescopic rod 23 and the die 1. A rectangular rod 24 is fixedly connected to the output end of the electric telescopic rod 23. A connecting plate 25 is fixedly connected to one side of the rectangular rod 24. An L-shaped plate 26 is fixedly connected to one side of the connecting plate 25. A first rectangular groove 21 is opened on one side of the die 1, and a second rectangular groove 22 is opened on the side of the die 1 near the first rectangular groove 21. The rectangular rod 24 and the connecting plate 25 are respectively disposed inside the first rectangular groove 21 and the second rectangular groove 22. The L-shaped plate 26 is disposed inside the cavity of the die 1. By setting up the material handling device 2, when the target... After the standard brick is shaped inside the cavity of the die 1, the electric telescopic rod 23 is activated. The electric telescopic rod 23 drives the rectangular rod 24 to move away from the die 1. The rectangular rod 24 drives the connecting plate 25 and the L-shaped plate 26 to move away from the die 1. During the movement, the L-shaped plate 26 pushes the standard brick out of the cavity of the die 1, increasing the material removal space for the standard brick. This achieves rapid demolding of the standard brick and reduces the risk of damage to the newly formed standard brick when it is removed due to the narrow gap between the standard brick and the inner wall of the cavity of the die 1. This improves the safety and convenience of removing the standard brick.

[0035] Figure 2 and Figure 3 A reinforcing block 28 is fixedly connected to one side of the rectangular rod 24 shown. The reinforcing block 28 is fixedly connected to the connecting plate 25. By setting the reinforcing block 28, the connection strength between the connecting plate 25 and the rectangular rod 24 can be increased, reducing the possibility of separation between the rectangular rod 24 and the connecting plate 25 under stress during use. A leather pad 27 is fixedly connected to one side of the rectangular rod 24. The leather pad 27 is fixedly connected to the connecting plate 25. The leather pad 27 is set at the gap between the rectangular rod 24 and the first rectangular groove 21 and the connecting plate 25 and the second rectangular groove 22. By setting the leather pad 27, the leather pad 27 can cover the gap between the rectangular rod 24 and the first rectangular groove 21 and the connecting plate 25 and the second rectangular groove 22, reducing the possibility of raw materials accidentally falling into the gap and causing jamming when they are put into the cavity 1.

[0036] Figure 4 A rubber pad 29 is fixedly connected to the side of the connecting plate 25 away from the rectangular rod 24. By setting the rubber pad 29, the rubber pad 29 can separate the connecting plate 25 from the die 1, reducing the direct collision between the connecting plate 25 and the die 1 during the movement process and reducing the possibility of large wear.

[0037] Figure 4 and Figure 5The connecting device 3 shown includes a collar 31, which is fixedly connected to the die 1. A threaded hole 32 is provided on one side of the collar 31, and a bolt 33 is threadedly connected to the inner wall of the threaded hole 32. A round hole block 36 is fixedly connected to one side of the electric telescopic rod 23. The surface of the round hole block 36 is slidably connected to the inner wall of the collar 31. The size and shape of the bolt 33 are adapted to the size and shape of the inner wall of the round hole block 36. By setting the connecting device 3, the electric telescopic rod 23 is first manually moved, so that the electric telescopic rod 23 drives the round hole block 36 to move. When the round hole block 36 moves to the position of being inserted into the collar 31, the inner wall of the round hole block 36 coincides with the inner wall of the threaded hole 32. At this time, the bolt 33 is manually turned into the position of the threaded hole 32 and the round hole block 36 to fix the position of the round hole block 36 and the electric telescopic rod 23, thereby completing the assembly and fixation between the material taking device 2 and the die 1. At the same time, the material taking device 2 can be disassembled and maintained later, which improves the flexibility of use and the convenience of maintenance of the material taking device 2.

[0038] Figure 4 and Figure 5 One end of the bolt 33 shown is fixedly connected to a screwing block 34. The surface of the screwing block 34 is provided with multiple protrusions. By setting the screwing block 34, the contact area of ​​the bolt 33 can be increased, improving the convenience and stability of manual rotation of the bolt 33. The surface of the collar 31 is fixedly connected to a reinforcing rib 35. The reinforcing rib 35 is made of steel. By setting the reinforcing rib 35, the strength of the collar 31 can be increased, reducing the possibility of breakage or deformation of the collar 31 when subjected to compression.

[0039] Working principle: First, the die 1 is fixed on the table of the stamping machine. Then, the raw material is put into the multiple cavities inside the die 1. Then, the stamping machine drives the die 4 to move closer to the die 1. When the die 4 and the die 1 merge, the raw material inside the cavity is squeezed, so that the raw material fills the cavity and is shaped, thereby achieving the forming of standard bricks.

[0040] First, manually move the electric telescopic rod 23, causing it to move the round hole block 36. When the round hole block 36 moves to the position inside the insertion collar 31, the inner wall of the round hole block 36 coincides with the inner wall of the threaded hole 32. At this time, manually turn the bolt 33 into the position inside the threaded hole 32 and the round hole block 36 to fix the position of the round hole block 36 and the electric telescopic rod 23, thereby completing the assembly and fixation between the material taking device 2 and the cavity mold 1. After the standard brick is shaped inside the cavity mold 1, start the electric telescopic rod 23, causing it to move the rectangular rod 24 away from the cavity mold 1. The rectangular rod 24 then moves the connecting plate 25 and the L-shaped plate 26 away from the cavity mold 1. During the movement, the L-shaped plate 26 pushes the standard brick out of the cavity mold 1, increasing the material taking space for the standard brick, thereby achieving rapid demolding of the standard brick.

[0041] Based on the above-described preferred embodiments of this utility model, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the technical concept of this utility model. The technical scope of this utility model is not limited to the contents of the specification, but must be determined according to the scope of the claims.

Claims

1. A standard brick forming mold, comprising a concave mold (1) and a pressing mold (4), characterized in that: The pressing mold (4) is positioned above the die (1). A material handling device (2) is provided on one side of the die (1) to eject standard bricks from the cavity of the die (1) for easy and quick handling by personnel. The material handling device (2) includes an electric telescopic rod (23). A connecting device (3) is provided between the electric telescopic rod (23) and the die (1). A rectangular rod (24) is fixedly connected to the output end of the electric telescopic rod (23). A connecting plate (25) is fixedly connected to one side of the rectangular rod (24). An L-shaped plate (26) is fixedly connected to the die (1). A first rectangular groove (21) is provided on one side of the die (1). A second rectangular groove (22) is provided on the side of the die (1) near the first rectangular groove (21). A rectangular rod (24) and a connecting plate (25) are respectively set inside the first rectangular groove (21) and the second rectangular groove (22). The L-shaped plate (26) is set inside the cavity of the die (1). A reinforcing block (28) is fixedly connected to one side of the rectangular rod (24). The reinforcing block (28) is fixedly connected to the connecting plate (25).

2. The forming mold for standard brick processing according to claim 1, characterized in that: A leather pad (27) is fixedly connected to one side of the rectangular rod (24), and the leather pad (27) is fixedly connected to the connecting plate (25). The leather pad (27) is located in the gap between the rectangular rod (24) and the first rectangular groove (21), the connecting plate (25), and the second rectangular groove (22).

3. The forming mold for standard brick processing according to claim 2, characterized in that: A rubber pad (29) is fixedly connected to the side of the connecting plate (25) away from the rectangular rod (24).

4. The forming mold for standard brick processing according to claim 3, characterized in that: The connecting device (3) includes a collar (31), which is fixedly connected to the die (1). A threaded hole (32) is provided on one side of the collar (31), and a bolt (33) is threadedly connected to the inner wall of the threaded hole (32). A round hole block (36) is fixedly connected to one side of the electric telescopic rod (23). The surface of the round hole block (36) is slidably connected to the inner wall of the collar (31). The size and shape of the bolt (33) are adapted to the size and shape of the inner wall of the round hole block (36).

5. A standard brick forming mold according to claim 4, characterized in that: One end of the bolt (33) is fixedly connected to a screw block (34), and the surface of the screw block (34) is provided with multiple protrusions.

6. A standard brick forming mold according to claim 5, characterized in that: The surface of the collar (31) is fixedly connected with a reinforcing rib (35), which is made of steel.