A mechanism for forming a thick steel plate conversion structure
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUAXING STEEL STRUCTURE
- Filing Date
- 2025-08-12
- Publication Date
- 2026-07-21
Smart Images

Figure CN224525788U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of forming and processing technology, and in particular to a forming and processing mechanism for thick steel plate conversion structures. Background Technology
[0002] In the industrial manufacturing sector, the processing and forming technology of thick steel plates plays a crucial role and is widely used. As modern engineering projects continue to expand in scale, the requirements for structural strength, stability, and load-bearing capacity are becoming increasingly stringent. Thick steel plates, due to their high strength, good toughness, and durability, have become the preferred material for many large-scale structures. However, the direct application of thick steel plates has many limitations; their original shapes and dimensions are insufficient to meet the diverse needs of complex projects. Therefore, they must be processed and formed into specific structural shapes.
[0003] When using existing steel plate forming and processing equipment, it is necessary to change the corresponding molds when processing steel plates of different shapes. The mold changing process is cumbersome and complicated, requires professional technicians to operate, and consumes a lot of time and manpower. At the same time, the overall structure is relatively complex, the purchase investment is large, and the maintenance cost is high during subsequent use.
[0004] Therefore, it is necessary to provide a thick steel plate conversion structure processing and forming mechanism to solve the above-mentioned technical problems. Utility Model Content
[0005] The purpose of this utility model is to provide a thick steel plate conversion structure processing and forming mechanism to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following solution to the above technical problems: a thick steel plate conversion structure processing and forming mechanism, comprising a support plate, a fixed seat and an outer plate fixed on the top side of the support plate, an arc groove provided on the side of the fixed seat, a forming pressure block that cooperates with the arc groove provided inside the outer plate, a pressure adjusting component for moving and adjusting the mold base provided outside the outer plate, and a clamping component for quickly replacing the forming pressure block provided on the mold base.
[0007] As a further embodiment of this utility model, the mounting assembly includes a T-shaped groove formed inside the mold base, the forming block is slidably inserted into the T-shaped groove, a protruding post is fixed on the top side of the mold base, a limiting plate is rotatably connected to the protruding post, and two limiting plates are provided and the two limiting plates are symmetrically distributed.
[0008] As a further embodiment of this utility model, a threaded hole is provided on the top side of the forming block, and a locking bolt adapted to the threaded hole is threadedly connected to the limiting plate.
[0009] As a further embodiment of this utility model, the pressure regulating assembly includes a liquid cylinder a fixed on the outer wall of the outer peripheral plate, a connecting rod fixed on the side of the mold base and inserted inside the liquid cylinder a, and a piston plate a fixed at the end of the connecting rod and tightly fitted with the inner wall of the liquid cylinder a.
[0010] As a further embodiment of this utility model, a liquid cylinder b that communicates with the interior of the liquid cylinder a is fixed on the outer wall of the liquid cylinder a, an electric push rod is fixed on the top side of the support plate, and a piston plate b that fits tightly against the inner wall of the liquid cylinder b is fixed on the output end of the electric push rod.
[0011] As a further embodiment of this utility model, a bracket plate is fixed to the top side of the support plate, and the electric push rod is fixed to the top of the bracket plate.
[0012] As a further embodiment of this utility model, a plurality of symmetrically distributed support legs are fixed on the bottom side of the support plate, and a handle is fixed on the top of the forming block.
[0013] Compared with the prior art, the beneficial effects of this utility model are: 1. By moving the limiting plate away from the forming block, the locking limit on the forming block is released. By directly pulling the forming block upward, the forming block can be easily installed and removed from the mold base, making it easy to replace the forming block and facilitate the inspection and maintenance of the forming block, thus improving the efficiency of replacement and inspection and maintenance. 2. The output end of the electric push rod drives the piston plate b to move inside the liquid cylinder b, thereby pressing the liquid in the liquid cylinder b into the liquid cylinder a, so that the liquid cylinder a has hydraulic pressure. At the same time, the area of the piston plate a is set to be many times that of the piston plate b. Therefore, by applying Pascal's principle, the thrust on the connecting rod is amplified, so that the forming pressure block is brought closer to the fixed seat. Thus, the steel plate is efficiently pressed and formed by the cooperation of the forming pressure block and the arc groove. By amplifying the pressure, the efficiency of the forming process is improved. Attached Figure Description
[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments: Figure 1 The overall three-dimensional structure of this utility model Figure 1 ; Figure 2 This is a schematic diagram of the overall side view structure of this utility model; Figure 3 This is a partial structural diagram of the voltage regulating component of this utility model; Figure 4 This is a cross-sectional view of the voltage regulating component of this utility model; Figure 5This is a partial structural diagram of the card-mounting component of this utility model.
[0015] The attached diagram lists the components represented by each number as follows: 1. Mounting assembly; 101. T-slot; 102. Limiting plate; 103. Locking bolt; 104. Protruding post; 105. Handle; 106. Threaded hole; 2. Pressure regulating assembly; 201. Connecting rod; 202. Piston plate a; 203. Liquid cylinder a; 204. Electric push rod; 205. Liquid cylinder b; 206. Support plate; 3. Mold base; 4. Fixed base; 5. Arc groove; 6. Forming block; 7. Outer plate; 8. Support plate; 9. Support leg rod. Detailed Implementation
[0016] The present invention will be further described below with reference to the embodiments.
[0017] Please see Figure 1-5 This utility model provides a thick steel plate conversion structure processing and forming mechanism, including a support plate 8, a fixing seat 4 and an outer plate 7 fixed on the top side of the support plate 8, an arc groove 5 provided on the side of the fixing seat 4, a forming pressure block 6 that cooperates with the arc groove 5 provided inside the outer plate 7, a pressure adjusting component 2 for moving and adjusting the mold base 3 provided outside the outer plate 7, and a clamping component 1 for quickly replacing the forming pressure block 6 provided on the mold base 3; in use, the steel plate is placed between the mold base 3 and the fixing seat 4, and then... The pressure regulating component 2 pushes the mold base 3 to move, thereby driving the forming block 6 closer to the fixed seat 4. The forming block 6 and the arc groove 5 work together to efficiently press and shape the steel plate. By amplifying the pressure, the efficiency of the forming process is improved, while reducing energy waste. The clamping component 1 allows the forming block 6 to be easily installed and removed from the mold base 3, making it easy to replace and maintain the forming block 6, thus improving the efficiency of replacement and maintenance.
[0018] Further as Figure 1 and Figure 5 As shown, it is worth noting that the mounting assembly 1 includes a T-shaped groove 101 inside the mold base 3. The forming block 6 is slidably inserted into the T-shaped groove 101. A protrusion 104 is fixed on the top side of the mold base 3. A limiting plate 102 is rotatably connected to the protrusion 104. There are two limiting plates 102, and the two limiting plates 102 are symmetrically distributed. In actual operation, the limiting plate 102 is moved away from the forming block 6, thereby releasing the locking limit on the forming block 6. By directly pulling the forming block 6 upward, the forming block 6 can be easily installed and removed from the mold base 3, which makes it easy to replace the forming block 6 and facilitates the inspection and maintenance of the forming block 6, thereby improving the efficiency of replacement and inspection and maintenance.
[0019] Further as Figure 5 As shown, it is worth noting that a threaded hole 106 is provided on the top side of the forming block 6, and a locking bolt 103 that matches the threaded hole 106 is threadedly connected to the limiting plate 102. In actual operation, by installing the locking bolt 103 on the limiting plate 102, the stability of the limiting plate 102 in limiting the forming block 6 that is clamped inside the mold base 3 is improved.
[0020] Further as Figure 1 and Figure 3 As shown, it is worth noting that the pressure regulating assembly 2 includes a liquid cylinder a203 fixed to the outer wall of the outer peripheral plate 7, a connecting rod 201 inserted into the liquid cylinder a203 fixed to the side of the mold base 3, a piston plate a202 that fits tightly against the inner wall of the liquid cylinder a203 fixed to the end of the connecting rod 201, a liquid cylinder b205 communicating with the inside of the liquid cylinder a203 fixed to the outer wall of the liquid cylinder a203, an electric push rod 204 fixed to the top side of the support plate 8, and a piston plate b that fits tightly against the inner wall of the liquid cylinder b205 fixed to the output end of the electric push rod 204; in specific operation, through The electric push rod 204 is activated, and its output end drives the piston plate b to move inside the liquid cylinder b205. This forces the liquid in the liquid cylinder b205 into the liquid cylinder a203, creating hydraulic pressure inside the liquid cylinder a203. Since the area of the piston plate a202 is several times that of the piston plate b, Pascal's principle amplifies the thrust on the connecting rod 201, causing the forming block 6 to approach the fixed seat 4. The forming block 6 and the arc-shaped groove 5 then work together to efficiently press and shape the steel plate. By amplifying the pressure, the efficiency of the forming process is improved.
[0021] This solution has the following working process: The steel plate is placed between the mold base 3 and the fixed base 4. The output end of the electric push rod 204 drives the piston plate b to move inside the liquid cylinder b205, thereby pressing the liquid in the liquid cylinder b205 into the liquid cylinder a203 through the piston plate b, so that the liquid cylinder a203 has hydraulic pressure. At the same time, the area of the piston plate a202 is set to be many times that of the piston plate b. Therefore, by Pascal's principle, the thrust on the connecting rod 201 is amplified, so that the forming block 6 is brought closer to the fixed base 4. Thus, the steel plate is efficiently pressed and formed by the cooperation of the forming block 6 and the arc groove 5. By amplifying the pressure, the efficiency of the forming process is improved. By moving the limiting plate 102, the limiting plate 102 is moved away from the forming block 6, thereby releasing the locking limit of the forming block 6. By directly pulling the forming block 6 upward, the forming block 6 can be easily installed and removed from the mold base 3, so that the forming block 6 can be easily replaced and inspected and maintained.
[0022] Further as Figure 3As shown, it is worth noting that a bracket plate 206 is fixed on the top side of the support plate 8, and an electric push rod 204 is fixed on the top of the bracket plate 206.
[0023] Further as Figure 1 , Figure 2 and Figure 3 As shown, it is worth noting that multiple symmetrically distributed support legs 9 are fixed on the bottom side of the support plate 8, and a handle 105 is fixed on the top of the forming block 6. In actual operation, the forming block 6 can be easily pulled out and replaced by using the handle 105, which is convenient for operation.
[0024] In summary: The pressure regulating component 2 moves the mold base 3, which in turn moves the forming block 6 closer to the fixed base 4. The forming block 6 and the arc groove 5 work together to efficiently press and shape the steel plate. By amplifying the pressure, the efficiency of the forming process is improved, while reducing energy waste. The clamping component 1 allows the forming block 6 to be easily installed and removed from the mold base 3, making it easy to replace and maintain the forming block 6, thus improving the efficiency of replacement and maintenance.
[0025] The electric linear actuator 204 can be purchased from the market. The electric linear actuator 204 is equipped with a power supply. It is a mature technology in this field and has been fully disclosed. Therefore, it will not be described again in the specification.
Claims
1. A thick steel plate conversion structure processing and forming mechanism, comprising a support plate (8), characterized in that, The top side of the support plate (8) is fixed with a fixing seat (4) and an outer plate (7). The side of the fixing seat (4) is provided with an arc groove (5). The inner side of the outer plate (7) is provided with a forming pressure block (6) that cooperates with the arc groove (5). The outer side of the outer plate (7) is provided with a pressure regulating component (2) that pushes the mold base (3) to move and adjust. The mold base (3) is provided with a clamping component (1) that can quickly replace the forming pressure block (6).
2. The thick steel plate conversion structure processing and forming mechanism according to claim 1, characterized in that, The mounting assembly (1) includes a T-shaped groove (101) opened inside the mold base (3), the forming block (6) is slidably inserted into the T-shaped groove (101), a protruding post (104) is fixed on the top side of the mold base (3), and a limiting plate (102) is rotatably connected to the protruding post (104). There are two limiting plates (102), and the two limiting plates (102) are symmetrically distributed.
3. The thick steel plate conversion structure processing and forming mechanism according to claim 2, characterized in that, The top side of the forming block (6) is provided with a threaded hole (106), and the limiting plate (102) is threaded with a locking bolt (103) that is compatible with the threaded hole (106).
4. The thick steel plate conversion structure processing and forming mechanism according to claim 1, characterized in that, The pressure regulating assembly (2) includes a liquid cylinder a (203) fixed on the outer wall of the outer peripheral plate (7), a connecting rod (201) inserted into the liquid cylinder a (203) is fixed on the side of the mold base (3), and a piston plate a (202) that fits tightly against the inner wall of the liquid cylinder a (203) is fixed at the end of the connecting rod (201).
5. The thick steel plate conversion structure processing and forming mechanism according to claim 4, characterized in that, A liquid cylinder b (205) communicating with the inside of the liquid cylinder a (203) is fixed on the outer wall of the liquid cylinder a (203). An electric push rod (204) is fixed on the top side of the support plate (8). A piston plate b that fits tightly against the inner wall of the liquid cylinder b (205) is fixed on the output end of the electric push rod (204).
6. The thick steel plate conversion structure processing and forming mechanism according to claim 5, characterized in that, A bracket plate (206) is fixed on the top side of the support plate (8), and the electric push rod (204) is fixed on the top of the bracket plate (206).
7. The thick steel plate conversion structure processing and forming mechanism according to claim 1, characterized in that, Multiple symmetrically distributed support rods (9) are fixed on the bottom side of the support plate (8), and a handle (105) is fixed on the top of the molding block (6).