Broken bridge aluminum rolling machining device based on intelligent manufacturing and machining

Through the intelligently manufactured broken bridge aluminum roll processing device, the combination of cylinders and electric pressure rollers can achieve the shaping and position adjustment of broken bridge aluminum, solving the problem of uneven stress and ensuring the quality and accuracy of the finished product.

CN120362294AInactive Publication Date: 2025-07-25JIANGSU GUORUN NEW MATERIALS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510364552.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2025-07-25
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing broken bridge aluminum rolling processing equipment is prone to uneven stress due to irregular position during processing, which affects the quality and dimensional accuracy of the finished product.

Method used

A broken bridge aluminum rolling processing device based on intelligent manufacturing is designed. Through the cooperation of the cylinder driving hollow plate and the electric pressure roller, the shape and position adjustment of the broken bridge aluminum is achieved, and the discharge device and the compacting device are combined to ensure uniform pressure distribution and stable discharge.

Benefits of technology

It effectively avoids deformation and shaking of broken bridge aluminum during processing and discharge, ensures the straightness and parallelism of the finished product, and improves the cutting accuracy and the compliance of the finished product size.

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Abstract

The invention relates to the technical field of machining devices, and discloses a broken bridge aluminum rolling machining device based on intelligent manufacturing and machining, the broken bridge aluminum rolling machining device comprises a machining table, the top of the machining table is fixedly connected with a shell, the top of the shell is fixedly connected with an air cylinder, and the output end of the air cylinder is fixedly connected with a hollowed-out plate. The broken bridge aluminum can be shaped step by step through rolling, the deformation trend of a profile during cooling shrinkage can be offset through the uniform pressure of the electric compression roller, bending or distortion is reduced, warping or cracking in later use is avoided, meanwhile, the broken bridge aluminum can be corrected before pressure is applied to the broken bridge aluminum, and the broken bridge aluminum can be fixed conveniently. The situation that the whole section bar of the broken bridge aluminum deforms and bends due to uneven stress of the broken bridge aluminum in the rolling process is avoided, the pressure distribution of the electric pressing roller is more uniform through position straightening, and it is ensured that the size of a finished product meets the design requirement.
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Description

Technical Field

[0001] The present invention relates to the technical field of processing devices, and particularly to a broken bridge aluminum roll pressing processing device based on intelligent manufacturing processing. Background Art

[0002] Broken bridge aluminum is an aluminum alloy material with good heat insulation performance and is widely used in fields such as building doors and windows, curtain walls, etc. With the continuous development of the construction industry and the increasing requirements of people for building energy conservation and comfort, the demand for broken bridge aluminum continues to increase. In order to meet market demand, improving the processing efficiency and quality of broken bridge aluminum has become the key to the development of the industry.

[0003] The patent with the publication number CN217528685U relates to a roll pressing processing device for processing broken bridge aluminum, belonging to the technical field of roll pressing. It includes a processing plate, and two symmetrically arranged first fixing blocks are fixedly connected to the upper surface of the processing plate. A first sliding rod and a second sliding rod are respectively rotatably connected to the upper surfaces of the two first fixing blocks. It can achieve the function of adjusting dimensions through the mutual cooperation of the processing plate, the first fixing blocks, the first sliding rod, the first roller, the first slider, the first rotating rod, the second roller, the limiting block, the motor, the threaded rod, the first auxiliary plate, the third rotating rod, and the second auxiliary plate, so as to process broken bridge aluminum of various dimensions. The device can achieve the effect of adjusting dimensions through the mutual cooperation of the limiting plate, the rectangular block, the connecting rod, the fourth roller, the bidirectional threaded rod, the spring, and the second slider. The two adjustments cooperate with each other to process broken bridge aluminum of various dimensions. By setting the first sprocket and the second sprocket, it can play a role in accelerating the output of materials. However, during the use of this device, during the reprocessing of broken bridge aluminum, due to the incorrect placement position of the broken bridge aluminum, it is prone to cause uneven stress on the broken bridge aluminum and affect the finished product. Therefore, a broken bridge aluminum roll pressing processing device based on intelligent manufacturing processing is proposed to solve the above-mentioned problems. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to provide a broken bridge aluminum roll pressing processing device based on intelligent manufacturing processing for the deficiencies in the above-mentioned prior art.

[0005] To solve the above technical problems, the technical solution adopted by the present invention is as follows: A broken bridge aluminum roll pressing processing device based on intelligent manufacturing processing, which includes a processing table. A housing is fixedly connected to the top of the processing table. A cylinder is fixedly connected to the top of the housing. The output end of the cylinder is fixedly connected to a hollow plate. An electric pressing roller is fixedly connected to the bottom of the hollow plate. A fixed table is fixedly connected to the top of the processing table. A moving plate one is rotatably connected to the central axis of the electric pressing roller. A fixed rod one is fixedly connected to the inner wall of the fixed table. A Z-shaped plate is slidably connected to the circumferential surface of the fixed rod one through a spring. A triangular plate is fixedly connected to the front part of the Z-shaped plate. A positioning plate is fixedly connected to the inner wall of the triangular plate. A discharging device for assisting discharging is arranged on the top of the processing table. A pressing and fixing device for avoiding unstable discharging process is arranged on the inner wall of the housing. A pressing strip is fixedly connected to the inner wall of the moving plate one. A placing table is fixedly connected to the top of the processing table. The top of the processing table is slidably connected to the bottom of the Z-shaped plate. The front part of the triangular plate is in contact with the bottom of the pressing strip, which can apply pressure to the broken bridge aluminum, and then the broken bridge aluminum can be gradually shaped by roll pressing. The uniform pressure of the electric pressing roller can offset the deformation trend of the profile during cooling and shrinkage, reduce bending or twisting, and avoid warping or cracking during later use. At the same time, before applying pressure to the broken bridge aluminum, the position of the broken bridge aluminum can be straightened to avoid uneven stress on the broken bridge aluminum during roll pressing, resulting in deformation and bending of the overall profile of the broken bridge aluminum. By straightening the position, the pressure distribution of the electric pressing roller is more uniform, ensuring that the finished product size meets the design requirements.

[0006] Preferably, the discharging device includes a fixed block fixedly connected to the top of the fixed table. A sliding rod is slidably connected to the inner wall of the fixed block through a spring. A second moving plate is fixedly connected to the right side of the sliding rod. An angled plate is fixedly connected to the inner wall of the second moving plate. An inclined plate is fixedly connected to the inner wall of the Z-shaped plate. A rotating rod is rotatably connected to the inner wall of the sliding rod. A second fixed rod is fixedly connected to the inner wall of the housing. A telescopic plate is fixedly connected to the circumferential surface of the second fixed rod. A support plate is fixedly connected to the circumferential surface of the telescopic plate. An elastic telescopic rod is fixedly connected to the top of the processing table. An arc-shaped block is fixedly connected to the top of the elastic telescopic rod. The circumferential surface of the rotating rod is rotatably connected to the inner wall of the telescopic plate. The front part of the angled plate is in contact with the rear part of the inclined plate. The top of the fixed table is in contact with the bottom of the second moving plate. The inner wall of the fixed table is in contact with the surface of the arc-shaped block. During the processing of broken bridge aluminum, the second fixed rod rotates to drive the support plate to rotate, so that during the discharging process after the broken bridge aluminum is processed, the bottom of the broken bridge aluminum can be supported, avoiding the situation that when the broken bridge aluminum moves inside the device and only a single electric pressure roller is in contact with the broken bridge aluminum, the broken bridge aluminum sways and falls to the ground or droops freely during discharging due to insufficient balance of left and right forces, which is likely to cause deformation of the broken bridge aluminum and affect the product quality. At the same time, it can limit the rotating rod, so as to further provide a supporting force for the support plate, making the support plate support more stably, and avoiding the situation that the support plate is not stable enough to support the broken bridge aluminum and causes it to fall to the ground during the process of taking out the broken bridge aluminum.

[0007] Preferably, the pressing device includes a rotating plate rotatably connected to the inner wall of the housing through a torsion spring. A third fixed rod is fixedly connected to the inner wall of the housing. A sliding plate is slidably connected to the circumferential surface of the third fixed rod through a spring. A rotating roller is rotatably connected to the front part of the sliding plate. An inclined straight plate is fixedly connected to the bottom of the sliding plate. A connecting rod is slidably connected to the inner wall of the housing through a spring. A pressure receiving plate is fixedly connected to the inner wall of the connecting rod. An inclined block is fixedly connected to the top of the pressure receiving plate. A guide plate is fixedly connected to the circumferential surface of the connecting rod. The right side of the rotating plate is in contact with the front part of the sliding plate. The bottom of the inclined straight plate is in contact with the top of the inclined block. During the discharging process, the sliding plate moves downward to drive the rotating roller to move downward, so that during the discharging process, the tail of the broken bridge aluminum can be slightly clamped, thereby offsetting the gravity, inertia or conveying vibration of the aluminum material during the discharging process, avoiding deformation problems such as bending and torsion caused by the free drooping or swinging of the profile, ensuring the straightness and parallelism of the finished product, and at the same time helping to strictly align the positioning systems of subsequent cutting, punching and other equipment, ensuring that the processing holes, cuttings match the profile structure, so as to improve the cutting accuracy.

[0008] The present invention adopts the above technical solutions and can bring the following beneficial effects:

[0009] 1. The broken bridge aluminum roll forming processing device based on intelligent manufacturing processing can apply pressure to the broken bridge aluminum through the coordinated operation among the processing table, the housing, the cylinder, the hollow plate, the electric pressing roller, the fixed table, the first moving plate, the first fixing rod, the Z-shaped plate, the triangular plate, the positioning plate, the pressing strip and the placing table. Furthermore, the broken bridge aluminum can be gradually shaped through roll forming. Also, the uniform pressure of the electric pressing roller can offset the deformation tendency of the profile during cooling shrinkage, reduce bending or twisting, and avoid warping or cracking during later use. At the same time, before applying pressure to the broken bridge aluminum, the position of the broken bridge aluminum can be adjusted to avoid uneven stress on the broken bridge aluminum during roll forming, which may cause deformation and bending of the overall profile of the broken bridge aluminum. By adjusting the position, the pressure distribution of the electric pressing roller becomes more uniform, ensuring that the finished product size meets the design requirements.

[0010] 2. The broken bridge aluminum roll forming processing device based on intelligent manufacturing processing can, through the coordinated operation among the fixed block, the sliding rod, the second moving plate, the beveled plate, the inclined plate, the rotating rod, the second fixing rod, the telescopic plate, the support plate, the elastic telescopic rod and the arc-shaped block, drive the support plate to rotate when the second fixing rod rotates during the processing of the broken bridge aluminum. Thus, during the process of discharging the processed broken bridge aluminum, the bottom of the broken bridge aluminum can be supported to avoid the situation where when the broken bridge aluminum moves inside the device and only a single electric pressing roller contacts the broken bridge aluminum, the broken bridge aluminum sways and drops to the ground or droops freely during discharging due to insufficient balance of the left and right forces, which may easily cause deformation of the broken bridge aluminum and affect the product quality. At the same time, the rotating rod can be limited, so that further support force can be provided for the support plate, making the support plate more stable in support and avoiding the situation where the broken bridge aluminum falls to the ground due to insufficiently stable support of the support plate during the process of taking out the broken bridge aluminum.

[0011] 3. The broken bridge aluminum roll forming processing device based on intelligent manufacturing processing can, through the coordinated operation among the rotating plate, the third fixing rod, the sliding plate, the rotating roller, the straight inclined plate, the connecting rod, the pressure receiving plate, the inclined block and the guiding plate, drive the rotating roller to move downward when the sliding plate moves downward during the discharging process. Thus, during the discharging process, the tail of the broken bridge aluminum can be slightly clamped, further offsetting the gravity, inertia or conveying vibration of the aluminum material during the discharging process, avoiding deformation problems such as bending and torsion caused by free drooping or swinging of the profile, ensuring the straightness and parallelism of the finished product, and at the same time facilitating strict alignment with the positioning system of subsequent cutting, punching and other equipment, ensuring that the processing hole positions and cuttings match the profile structure, thereby improving the cutting accuracy. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0013] Figure 2This is a half-sectional view of the outer shell structure of the present invention;

[0014] Figure 3 This is a half-sectional view of the discharging device of the present invention;

[0015] Figure 4 This is the present invention Figure 3 Enlarged view of the structure at A in;

[0016] Figure 5 This is a half-sectional view of the support plate structure of the present invention;

[0017] Figure 6 This is a half-sectional view of the pressing and fixing device of the present invention;

[0018] Figure 7 This is a half-sectional view of the sliding plate structure of the present invention;

[0019] Figure 8 This is a half-sectional view of the guide plate structure of the present invention.

[0020] In the figure: 1. Processing table; 2. Outer shell; 3. Cylinder; 4. Hollow plate; 5. Electric pressing roller; 6. Fixed table; 7. First moving plate; 8. First fixed rod; 9. Z-shaped plate; 10. Triangular plate; 11. Positioning plate; 12. Pressing strip; 13. Placing table; 14. Discharging device; 141. Fixed block; 142. Sliding rod; 143. Second moving plate; 144. Bevel plate; 145. Inclined plate; 146. Rotating rod; 147. Second fixed rod; 148. Telescopic plate; 149. Support plate; 1410. Elastic telescopic rod; 1411. Arc angle block; 15. Pressing and fixing device; 151. Rotating plate; 152. Third fixed rod; 153. Sliding plate; 154. Rotating roller; 155. Inclined straight plate; 156. Connecting rod; 157. Pressure receiving plate; 158. Inclined block; 159. Guide plate. Detailed implementation manners

[0021] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0022] Please refer to Figures 1-8, an embodiment of the present invention is: a broken bridge aluminum roll pressing processing device based on intelligent manufacturing processing, including a processing table 1, a housing 2 is fixedly connected to the top of the processing table 1, a cylinder 3 is fixedly connected to the top of the housing 2, the output end of the cylinder 3 is fixedly connected to a hollow plate 4, and an electric pressing roller 5 is fixedly connected to the bottom of the hollow plate 4. When starting the processing of broken bridge aluminum, the broken bridge aluminum is inserted into the interior of the device from the right side of the housing 2, so that the broken bridge aluminum is placed at the position of the conveying area. At this time, the cylinder 3 is started, and the cylinder 3 drives the hollow plate 4 to move downward. The hollow plate 4 moves downward to drive the electric pressing roller 5 to move downward. At this time, the electric pressing roller 5 is started and rotates, so that pressure can be applied to the broken bridge aluminum, and then the broken bridge aluminum can be gradually shaped by roll pressing. The uniform pressure of the electric pressing roller 5 can also offset the deformation tendency of the profile during cooling shrinkage, reduce bending or twisting, and avoid warping or cracking in later use. A fixed table 6 is fixedly connected to the top of the processing table 1. The central axis of the electric pressing roller 5 is rotatably connected to a moving plate 7. A fixed rod 8 is fixedly connected to the inner wall of the fixed table 6. A Z-shaped plate 9 is slidably connected to the circumferential surface of the fixed rod 8 through a spring. A triangular plate 10 is fixedly connected to the front part of the Z-shaped plate 9. A positioning plate 11 is fixedly connected to the inner wall of the triangular plate 10. A discharging device 14 for assisting discharging is arranged on the top of the processing table 1. A pressing and fixing device 15 for avoiding unstable discharging process is arranged on the inner wall of the housing 2. A pressing strip 12 is fixedly connected to the inner wall of the moving plate 7. A placing table 13 is fixedly connected to the top of the processing table 1. The top of the processing table 1 is slidably connected to the bottom of the Z-shaped plate 9. The front part of the triangular plate 10 is in contact with the bottom of the pressing strip 12. At the same time, the downward movement of the electric pressing roller 5 drives the moving plate 7 to move downward. The downward movement of the moving plate 7 drives the pressing strip 12 to move downward. During the downward movement of the pressing strip 12, it will contact the triangular plate 10 backward and generate a squeezing force on the triangular plate 10, causing the triangular plate 10 to move backward. The backward movement of the triangular plate 10 drives the Z-shaped plate 9 to move backward. The backward movement of the Z-shaped plate 9 drives the positioning plate 11 to move backward. Thus, before applying pressure to the broken bridge aluminum, the position of the broken bridge aluminum can be straightened, avoiding uneven stress on the broken bridge aluminum during roll pressing, resulting in deformation and bending of the overall profile of the broken bridge aluminum. By straightening the position, the pressure distribution of the electric pressing roller 5 is more uniform, ensuring that the finished product size meets the design requirements.

[0023] The discharging device 14 includes a fixed block 141 which is fixedly connected to the top of the fixed table 6. A sliding rod 142 is slidably connected to the inner wall of the fixed block 141 through a spring. A second moving plate 143 is fixedly connected to the right side of the sliding rod 142. An inclined plate 144 is fixedly connected to the inner wall of the second moving plate 143. An inclined plate 145 is fixedly connected to the inner wall of the Z-shaped plate 9. A rotating rod 146 is rotatably connected to the inner wall of the sliding rod 142. A second fixed rod 147 is fixedly connected to the inner wall of the housing 2. A telescopic plate 148 is fixedly connected to the circumferential surface of the second fixed rod 147. A support plate 149 is fixedly connected to the circumferential surface of the telescopic plate 148. During the processing of broken bridge aluminum, the triangular plate 10 moves backward to drive the inclined plate 145 to move backward. When the inclined plate 145 moves backward, it will contact the inclined plate 144 and generate a squeezing force for the inclined plate 144 to move leftward through the inclined surface, thereby forcing the inclined plate 144 to move leftward. The leftward movement of the inclined plate 144 drives the second moving plate 143 to move leftward. The leftward movement of the second moving plate 143 drives the sliding rod 142 to move leftward. The movement of the sliding rod 142 drives the rotating rod 146 to move. The movement of the rotating rod 146 will generate a squeezing force on the telescopic plate 148, causing the telescopic plate 148 to rotate clockwise and compress. The rotation of the telescopic plate 148 drives the second fixed rod 147 to rotate. The rotation of the second fixed rod 147 drives the support plate 149 to rotate. Thus, during the discharging process after the processing of broken bridge aluminum is completed, the bottom of the broken bridge aluminum can be supported, avoiding the situation that when the broken bridge aluminum moves inside the device and only a single electric pressure roller 5 contacts the broken bridge aluminum, the broken bridge aluminum shakes and falls to the ground and droops freely during discharging due to insufficient balance of the left and right forces, which is likely to cause the problem that the broken bridge aluminum deforms and affects the product quality. An elastic telescopic rod 1410 is fixedly connected to the top of the processing table 1. An arc-shaped block 1411 is fixedly connected to the top of the elastic telescopic rod 1410. The circumferential surface of the rotating rod 146 is rotatably connected to the inner wall of the telescopic plate 148. The front part of the inclined plate 144 is in contact with the rear part of the inclined plate 145. The top of the fixed table 6 is in contact with the bottom of the second moving plate 143. The inner wall of the fixed table 6 is in contact with the surface of the arc-shaped block 1411. At the same time, during the rotation of the rotating rod 146, the rotating rod 146 will contact the arc-shaped block 1411 and generate a downward squeezing force on the arc-shaped block 1411, causing the arc-shaped block 1411 to move downward. At this time, the rotating rod 146 continues to rotate and crosses over the arc-shaped block 1411. After crossing over the arc-shaped block 1411, the arc-shaped block 1411 is reset by the elastic force of the elastic telescopic rod 1410, thereby being able to limit the rotating rod 146, further providing a support force for the support plate 149, making the support plate 149 support more stably, and avoiding the situation that the support plate 149 is not stable enough during the process of taking out the broken bridge aluminum, resulting in the broken bridge aluminum falling to the ground.

[0024] Working principle: When processing the broken bridge aluminum, the broken bridge aluminum is inserted into the interior of the device from the right side of the outer shell 2, so that the broken bridge aluminum is placed at the position of the conveying area. At this time, the air cylinder 3 is started. The start of the air cylinder 3 drives the hollow plate 4 to move downward. The downward movement of the hollow plate 4 drives the electric pressure roller 5 to move downward. At this time, the electric pressure roller 5 is started and rotates, so that pressure can be applied to the broken bridge aluminum. Furthermore, the broken bridge aluminum can be gradually shaped by roll pressing. The uniform pressure of the electric pressure roller 5 can also offset the deformation tendency of the profile during cooling shrinkage, reduce bending or twisting, and avoid warping or cracking during later use. At the same time, the downward movement of the electric pressure roller 5 drives the first moving plate 7 to move downward. The downward movement of the first moving plate 7 drives the pressing strip 12 to move downward. During the downward movement of the pressing strip 12, it will contact the triangular plate 10 backward and exert a squeezing force on the triangular plate 10 to make the triangular plate 10 move backward. The backward movement of the triangular plate 10 drives the Z-shaped plate 9 to move backward. The backward movement of the Z-shaped plate 9 drives the positioning plate 11 to move backward. Thus, before applying pressure to the broken bridge aluminum, the position of the broken bridge aluminum can be adjusted to avoid uneven stress on the broken bridge aluminum during roll pressing, resulting in deformation and bending of the overall profile of the broken bridge aluminum. By adjusting the position, the pressure distribution of the electric pressure roller 5 is made more uniform, ensuring that the finished product size meets the design requirements.

[0025] During the processing of broken bridge aluminum, the triangular plate 10 moves backward to drive the inclined plate 145 to move backward. When the inclined plate 145 moves backward, it will contact the bevel plate 144, and generate a squeezing force to the left on the bevel plate 144 through the inclined surface, thereby forcing the bevel plate 144 to move to the left. The leftward movement of the bevel plate 144 drives the second moving plate 143 to move to the left. The leftward movement of the second moving plate 143 drives the sliding rod 142 to move to the left. The movement of the sliding rod 142 drives the rotating rod 146 to move. The movement of the rotating rod 146 generates a squeezing force on the telescopic plate 148, causing the telescopic plate 148 to rotate clockwise and compress. The rotation of the telescopic plate 148 drives the second fixed rod 147 to rotate. The rotation of the second fixed rod 147 drives the support plate 149 to rotate. Thus, during the process of discharging the processed broken bridge aluminum, the bottom of the broken bridge aluminum can be supported, avoiding the situation that when the broken bridge aluminum moves inside the device and only a single electric pressure roller 5 contacts the broken bridge aluminum, the broken bridge aluminum shakes and falls to the ground or droops freely during discharging due to insufficient balance of the left and right forces, which is likely to cause deformation of the broken bridge aluminum and affect the product quality. At the same time, during the rotation of the rotating rod 146, the rotating rod 146 will contact the arc angle block 1411 and generate a downward squeezing force on the arc angle block 1411, causing the arc angle block 1411 to move downward. At this time, the rotating rod 146 continues to rotate and crosses the arc angle block 1411. After passing the position of the arc angle block 1411, the arc angle block 1411 is reset by the elastic force of the elastic telescopic rod 1410, so as to be able to limit the rotating rod 146, further providing a support force for the support plate 149, making the support plate 149 support more stably, and avoiding the situation that the support plate 149 is not stable enough during the process of taking out the broken bridge aluminum, resulting in the broken bridge aluminum falling to the ground.

[0026] Please refer to Figures 1-8On the basis of the above embodiment, in another embodiment of the present invention, the pressing device 15 includes a rotating plate 151, which is rotatably connected to the inner wall of the shell 2 through a torsion spring, and the inner wall of the shell 2 is fixedly connected to a fixed rod 3 152, and the circumferential surface of the fixed rod 3 152 is slidably connected to a sliding plate 153 through a spring, and the front part of the sliding plate 153 is rotatably connected to a rotating roller 154. During the discharging process, the support plate 149 rotates to contact the rotating plate 151 and pushes the rotating plate 151 to rotate clockwise. The rotating plate 151 rotates to contact the sliding plate 153 and applies a downward force to the sliding plate 153, so that the sliding plate 153 moves downward. The downward movement of the sliding plate 153 drives the rotating roller 154 to move downward, so that the tail of the broken bridge aluminum can be slightly clamped during the discharging process, thereby offsetting the gravity, inertia or conveying vibration of the aluminum material during the discharging process, avoiding deformation problems such as bending and torsion caused by free sagging or swinging of the profile, and ensuring the straightness and parallelism of the finished product. The bottom of the sliding plate 153 is fixedly connected with an inclined straight plate 155, the inner wall of the housing 2 is slidably connected with a connecting rod 156 through a spring, the inner wall of the connecting rod 156 is fixedly connected with a pressure plate 157, the top of the pressure plate 157 is fixedly connected with an inclined block 158, the circumferential surface of the connecting rod 156 is fixedly connected with a guide plate 159, the right side of the rotating plate 151 contacts the front part of the sliding plate 153, the bottom of the inclined straight plate 155 contacts the top of the inclined block 158, and the sliding plate 153 moves downward. The inclined straight plate 155 is driven to move downward, and the downward movement of the inclined straight plate 155 will contact the inclined block 158 and exert pressure on the inclined block 158 to force the inclined block 158 to move forward. The movement of the inclined block 158 drives the pressure plate 157 to move, and the movement of the pressure plate 157 drives the connecting rod 156 to move, and the movement of the connecting rod 156 drives the guide plate 159 to move, which helps to strictly align the positioning system of subsequent cutting, punching and other equipment to ensure that the processing hole position, the incision and the profile structure match, so as to improve the cutting accuracy.

[0027] Working principle: During the discharging process, the rotation of the support plate 149 will contact the rotating plate 151 and push the rotating plate 151 to rotate clockwise. The rotation of the rotating plate 151 will contact the sliding plate 153 and apply a downward moving force to the sliding plate 153, causing the sliding plate 153 to move downward. The downward movement of the sliding plate 153 drives the rotating roller 154 to move downward, so that during the discharging process, the tail of the broken bridge aluminum can be slightly clamped, thereby offsetting the gravity, inertia or conveying vibration of the aluminum material during the discharging process, avoiding deformation problems such as bending and torsion caused by the free sagging or swinging of the profile, ensuring the straightness and parallelism of the finished product. At the same time, the downward movement of the sliding plate 153 drives the inclined straight plate 155 to move downward. The downward movement of the inclined straight plate 155 will contact the inclined block 158 and apply a pressure to the inclined block 158 to force the inclined block 158 to move forward. The movement of the inclined block 158 drives the pressure receiving plate 157 to move. The movement of the pressure receiving plate 157 drives the connecting rod 156 to move. The movement of the connecting rod 156 drives the guide plate 159 to move, which helps to strictly align the positioning systems of subsequent cutting, punching and other equipment, ensure that the processing hole positions and cuttings match the profile structure, and improve the cutting accuracy.

[0028] The present invention provides a broken bridge aluminum roll pressing processing device based on intelligent manufacturing processing. There are many methods and ways to specifically implement this technical solution. The above description is only the preferred implementation manner of the present invention. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the principle of the present invention, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present invention. Each component not clearly defined in this embodiment can be realized by using the prior art.

Claims

1. A broken bridge aluminum roll pressing processing device based on intelligent manufacturing processing, comprising a processing table (1), characterized in that: The top is fixedly connected with a housing (2), the top of the housing (2) is fixedly connected with a cylinder (3), the output end of the cylinder (3) is fixedly connected with a hollow plate (4), the bottom of the hollow plate (4) is fixedly connected with an electric pressure roller (5), the top of the processing table (1) is fixedly connected with a fixed table (6), the central axis of the electric pressure roller (5) is rotationally connected with a first moving plate (7), the inner wall of the fixed table (6) is fixedly connected with a first fixed rod (8), the circumferential surface of the first fixed rod (8) is slidably connected with a Z-shaped plate (9) through a spring, the front part of the Z-shaped plate (9) is fixedly connected with a triangular plate (10), the inner wall of the triangular plate (10) is fixedly connected with a positioning plate (11), a discharging device (14) for assisting discharging is arranged on the top of the processing table (1), a pressing and fixing device (15) for preventing the discharging process from being unstable is arranged on the inner wall of the housing (2), a pressing strip (12) is fixedly connected to the inner wall of the first moving plate (7), and a placing table (13) is fixedly connected to the top of the processing table (1).

2. The bridge aluminum roller pressing processing device based on intelligent manufacturing processing according to claim 1, characterized in that: The top of the processing table (1) is slidably connected with the bottom of the Z-shaped plate (9), and the front part of the triangular plate (10) is in contact with the bottom of the pressing strip (12).

3. The bridge aluminum roll pressing device based on intelligent manufacturing processing according to claim 2, wherein: The discharging device (14) includes a fixed block (141), the fixed block (141) is fixedly connected to the top of the fixed table (6), the inner wall of the fixed block (141) is slidably connected with a sliding rod (142) through a spring, the right side of the sliding rod (142) is fixedly connected with a second moving plate (143), an inclined angle plate (144) is fixedly connected to the inner wall of the second moving plate (143), and an inclined plate (145) is fixedly connected to the inner wall of the Z-shaped plate (9).

4. The bridge-cut aluminum roll forming device based on intelligent manufacturing processing according to claim 3, characterized in that: A rotating rod (146) is rotationally connected to the inner wall of the sliding rod (142), a second fixed rod (147) is fixedly connected to the inner wall of the housing (2), a telescopic plate (148) is fixedly connected to the circumferential surface of the second fixed rod (147), a supporting plate (149) is fixedly connected to the circumferential surface of the telescopic plate (148), an elastic telescopic rod (1410) is fixedly connected to the top of the processing table (1), and an arc angle block (1411) is fixedly connected to the top of the elastic telescopic rod (1410).

5. An aluminum alloy bridge roller press processing device based on intelligent manufacturing processing according to claim 4, characterized in that: The circumferential surface of the rotating rod (146) is rotationally connected with the inner wall of the telescopic plate (148), the front part of the inclined angle plate (144) is in contact with the rear part of the inclined plate (145), the top of the fixed table (6) is in contact with the bottom of the second moving plate (143), and the inner wall of the fixed table (6) is in contact with the surface of the arc angle block (1411).

6. The profile rolling processing device for broken bridge aluminum based on intelligent manufacturing processing according to claim 5, wherein: The compaction device (15) includes a rotating plate (151). The rotating plate (151) is rotatably connected to the inner wall of the housing (2) by a torsion spring. A third fixed rod (152) is fixedly connected to the inner wall of the housing (2). A sliding plate (153) is slidably connected to the circumferential surface of the third fixed rod (152) by a spring. A rotating roller (154) is rotatably connected to the front part of the sliding plate (153). An inclined straight plate (155) is fixedly connected to the bottom of the sliding plate (153).

7. An aluminum alloy bridge roller press processing device based on intelligent manufacturing processing according to claim 6, characterized in that: A connecting rod (156) is slidably connected to the inner wall of the housing (2) by a spring. A pressure receiving plate (157) is fixedly connected to the inner wall of the connecting rod (156). An inclined block (158) is fixedly connected to the top of the pressure receiving plate (157). A guiding plate (159) is fixedly connected to the circumferential surface of the connecting rod (156).

8. An aluminum alloy bridge roller press processing device based on intelligent manufacturing processing according to claim 7, characterized in that: The right side of the rotating plate (151) is in contact with the front part of the sliding plate (153). The bottom of the inclined straight plate (155) is in contact with the top of the inclined block (158).

Citation Information

Patent Citations

  • Rolling machining device for broken bridge aluminum machining

    CN217528685U