A pressing tool for casting a tensile composite aluminum corrugated plate and its usage method

By designing a press plate tooling including a clamping mechanism, cleaning mechanism and lifting mechanism, the problems of debris contamination and difficulty in cleaning in tensile composite aluminum press plate casting production are solved, and efficient die-casting and cleaning operations are achieved.

CN116689625BActive Publication Date: 2025-06-10ZHENJIANG YINHAI ALUMINUM
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Patent Information

Application Number
CN202310634186.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-31
Publication Date
2025-06-10
Estimated Expiration
2043-05-31

AI Technical Summary

Technical Problem

The pressure plate tooling produced by tensile composite aluminum press-formed plate casting produces debris during use, resulting in pollution and hygiene problems in the construction environment. There are difficult-to-clean blind spots between the clamping mechanism and the die-casting workbench, which affects the production environment and employee health.

Method used

A press plate tooling including a clamping mechanism, a cleaning mechanism and a lifting mechanism is designed. The clamping mechanism fixes the die-casting plate through a baffle and a clamping member. The cleaning mechanism cleans the outer wall of the workbench through a cleaning push rod connected to the rocker and a ratchet structure. The lifting mechanism lifts the clamping mechanism through a slider and a movable shaft to solve the problem of the clamping mechanism hindering cleaning.

Benefits of technology

Effectively fix the die-cast plate and achieve efficient cleaning. Through the synergy between the ratchet structure and the rocker, the stability and safety of the cleaning mechanism are ensured. The design of the lifting mechanism makes the clamping mechanism no longer hinder the push of the cleaning push rod, improving the cleaning effect and operation convenience.

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Abstract

The present invention discloses a pressing plate tool for casting production of tensile composite aluminum profiled plates and a method of using the same, comprising a pressing plate tool body, a driving motor, a die-casting workbench and a clamping mechanism, wherein the pressing plate tool body comprises a pressing plate and a trunk, the driving motor is located at the top end of the pressing plate tool body and is used to drive the pressing plate to rotate, the die-casting workbench is fixed to the bottom end of the pressing plate tool body, the clamping mechanism is placed on the die-casting workbench, a cleaning mechanism and a lifting mechanism are fixed on the side wall of the die-casting workbench, the clamping mechanism comprises a baffle placed on the outer wall of the top end of the die-casting workbench, a clamping piece fixed on the outer wall of the baffle and a die-casting plate clamped by the clamping piece; the clamping mechanism can clean dust on the outer wall of the die-casting workbench, and in order to solve the problem that the clamping mechanism hinders the cleaning push rod from pushing for cleaning, the present application further provides a lifting mechanism that can lift the clamping mechanism, so that the cleaning push rod can smoothly clean the die-casting workbench.
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Description

Technical Field

[0001] The present invention relates to a pressing tool for casting a tensile composite aluminum profiled plate and a using method thereof. Background Art

[0002] A pressing tool for casting a tensile composite aluminum profiled plate is a pressing machine for manufacturing a tensile composite aluminum profiled plate. After mixing aluminum materials and other materials, they are melted and poured into the tooling. While the aluminum materials are melting, the tooling is reinforced with clamps, and a certain pressure is applied through a hydraulic press or a mechanical press. As the aluminum materials gradually cool and solidify in the tooling, the tooling can gradually loosen the clamps and take out the billet to make the final tensile composite aluminum profiled plate product.

[0003] However, there are still certain drawbacks in the use of a pressing tool for casting a tensile composite aluminum profiled plate. The pressing tool for casting a tensile composite aluminum profiled plate is usually made of strong steel or aluminum, with a certain hardness and wear resistance. Using this tooling can produce high-quality and high-strength tensile composite aluminum profiled plate products. However, debris may be generated during production;

[0004] These debris may include aluminum chips and steel chips, etc., causing pollution and sanitation problems to the construction environment. If not cleaned in time, these debris may accumulate, affecting the production environment and the physical health of employees. However, because there are hard-to-clean dead corners between the clamping mechanism and the die-casting workbench, and the clamping mechanism and the die-casting plate are heavy themselves, it is laborious to disassemble and lift, and cleaning is relatively inconvenient. Therefore, during the production process, it is necessary to strengthen the management and cleaning of the pressing tooling to avoid the debris causing harm to the environment and surrounding personnel. For this reason, we propose a pressing tool for casting a tensile composite aluminum profiled plate and a using method thereof. Summary of the Invention

[0005] In order to overcome the deficiencies of the prior art, the present invention provides a pressing tool for casting a tensile composite aluminum profiled plate and a using method thereof. The clamping mechanism can clamp the die-casting plate and effectively fix it in the clamping structure, maintaining a certain clamping force. The cleaning mechanism can clean the dust on the outer wall of the die-casting workbench, and achieve stability and safety through the rocker connected by the ratchet structure. The lifting mechanism can lift the clamping mechanism, solving the problem that the clamping mechanism hinders the cleaning push rod from pushing for cleaning.

[0006] To solve the above technical problems, the present invention provides the following technical solutions: A pressing tool for casting production of a tensile composite aluminum profiled plate and its use method, including a pressing tool main body, a driving motor, a die-casting workbench, and a clamping mechanism. The pressing tool main body includes a pressing plate and a torso. The driving motor is located at the top of the pressing tool main body for driving the pressing plate to rotate. The die-casting workbench is fixed at the bottom of the pressing tool main body. The clamping mechanism is placed on the die-casting workbench. A cleaning mechanism and a lifting mechanism are fixed on the side wall of the die-casting workbench.

[0007] The clamping mechanism includes a baffle placed on the outer wall of the top of the die-casting workbench, a clamping member fixed on the outer wall of the baffle, and a die-casting plate clamped by the clamping member.

[0008] As a preferred technical solution of the present invention, oval-shaped strip grooves are evenly opened on the baffle.

[0009] As a preferred technical solution of the present invention, the clamping member is an existing clamping component, usually including bolts, nuts, spring pieces, and clamping blocks.

[0010] As a preferred technical solution of the present invention, the cleaning mechanism includes an extension plate fixed on the right side wall of the die-casting workbench, an auxiliary plate fixed on the outer wall of the extension plate, a rocker rotatably connected inside the auxiliary plate, a short connecting rod fixed to the rear end of the rocker passing through the auxiliary plate, a long connecting rod hinged to the other end of the short connecting rod, two groups of mounting plates fixed on the outer wall of the extension plate in the same horizontal direction, a moving shaft movably connected inside the two groups of mounting plates, a fixed sleeve fixed to the outer wall of the moving shaft and hinged to the other end of the long connecting rod on its outer wall, a flat rod fixed to the outer wall of the moving shaft and slidably connected to the mounting plate, and a cleaning push rod fixed to the outer wall of the flat rod.

[0011] As a preferred technical solution of the present invention, the inner end of the rocker connected to the auxiliary plate is a gear, and a ratchet is arranged inside the auxiliary plate.

[0012] As a preferred technical solution of the present invention, the continuous rotation of the rocker drives the moving shaft to reciprocate and push and pull.

[0013] As a preferred technical solution of the present invention, the diameter length of the virtual circle formed by the rotation of the short connecting rod is the same as the length of pushing the cleaning push rod forward, and the length of pushing the cleaning push rod forward is exactly equal to the length of the die-casting workbench.

[0014] As a preferred technical solution of the present invention, the lifting mechanism includes a connecting block fixed on the side wall of the fixed sleeve, a moving plate fixed on the outer wall of the connecting block, a notch opened on the inner wall of the moving plate, a sliding rod embedded in the notch and slidably connected to the notch, a movable shaft fixed on the outer wall of the sliding rod, a connecting plate fixed on the outer wall of the extension plate and internally slidably connected with the movable shaft, a fixed rod fixed on the outer wall of the movable shaft and extending to the position of the die-casting workbench, and a reinforcing rod fixed on the outer wall of the baffle and fixed to the fixed rod.

[0015] As a preferred technical solution of the present invention, there is a height difference between the movable shaft and the baffle, and the fixed rod is arranged in a Z shape.

[0016] The present invention also provides a technical solution, a usage method of a pressing tool for casting production of a tensile composite aluminum profiled plate, and the specific steps are as follows:

[0017] S1. The staff starts the main body of the pressing tool and places the aluminum profiled plate to be processed in the die-casting plate.

[0018] S2. The staff uses the clamping mechanism to clamp and fix the die-casting plate on the die-casting workbench.

[0019] S3. The staff starts to rotate the rocker. Through the coordinated action of components such as the ratchet structure and the connecting rod, the cleaning push rod is driven to advance clockwise forward to complete the cleaning work of the die-casting workbench.

[0020] S4. At the same time, rotating the rocker will also drive the fixed sleeve and the lifting mechanism to move forward. The sliding rod of the lifting mechanism will move upward along the notch, thereby driving the movable shaft fixed on the sliding rod to move upward. Then, through the coordinated action of the connecting plate, the fixed rod and the reinforcing rod, the clamping mechanism is lifted to provide a channel for the cleaning push rod, and the cleaning push rod can smoothly push and complete the cleaning work.

[0021] S5. When the cleaning work is completed, the staff stops rotating the rocker, and the clamping mechanism and the lifting mechanism will automatically reset, and the processed aluminum profiled plate is clamped and supported in place.

[0022] Compared with the prior art, the beneficial effects that the present invention can achieve are:

[0023] The clamping mechanism can clamp the die-casting plate and effectively fix it in the clamping structure, maintaining a certain clamping force. The cleaning mechanism can clean the dust on the outer wall of the die-casting workbench, and the stability and safety are achieved through the rocker connected by the ratchet structure. The lifting mechanism can lift the clamping mechanism, solving the problem that the clamping mechanism hinders the cleaning push rod from pushing and cleaning. The waist-shaped strip-shaped groove opened on the baffle can allow the accumulated debris to fall onto the die-casting workbench to be cleaned, improving the cleaning effect, so that the dead angle between the clamping mechanism and the cleaning of the die-casting workbench can be cleaned as the clamping mechanism is lifted, saving time and effort. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 is a schematic three-dimensional state diagram of the structure of the present invention;

[0025] Figure 2 is a schematic three-dimensional moving state diagram of the structure of the present invention;

[0026] Figure 3 is a schematic front view diagram of the structure of the present invention;

[0027] Figure 4 of the present invention Figure 1 is an enlarged schematic diagram of the structure at position A;

[0028] Figure 5 of the present invention Figure 1 is an enlarged schematic diagram of the structure at position B;

[0029] Figure 6 is a partial three-dimensional state diagram of the cleaning mechanism and the lifting mechanism of the present invention;

[0030] Figure 7 is a partial three-dimensional state diagram of the structure of the present invention;

[0031] Figure 8 is a three-dimensional schematic diagram of the connection structure between the flat rod and the mounting plate of the present invention;

[0032] Figure 9 is a schematic moving state diagram of the cleaning mechanism and the lifting mechanism of the present invention.

[0033] Wherein: 1, the main body of the pressing plate tooling; 2, the driving motor; 3, the die-casting workbench; 4, the clamping mechanism; 41, the baffle; 42, the clamping member; 43, the die-casting plate; 5, the cleaning mechanism; 51, the extension plate; 52, the auxiliary plate; 53, the rocker; 54, the short connecting rod; 55, the long connecting rod; 56, the mounting plate; 57, the moving shaft; 58, the fixed sleeve; 59, the flat rod; 510, the cleaning push rod; 6, the lifting mechanism; 61, the connecting block; 62, the moving plate; 63, the notch; 64, the sliding rod; 65, the movable shaft; 66, the connecting plate; 67, the fixed rod; 68, the reinforcing rod. DETAILED DESCRIPTION OF THE INVENTION

[0034] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments. However, the following embodiments are only the preferred embodiments of the present invention, not all of them. Based on the embodiments in the implementation manner, other embodiments obtained by those skilled in the art without creative labor all belong to the protection scope of the present invention. The experimental methods in the following embodiments are all conventional methods unless otherwise specified. The materials, reagents, etc. used in the following embodiments can all be obtained from commercial channels unless otherwise specified.

[0035] Embodiment:

[0036] As Figure 1 - Figure 9 As shown, this embodiment proposes a pressing tool for the casting production of a tensile composite aluminum profiled plate, including a pressing tool main body 1, a driving motor 2, a die-casting workbench 3 and a clamping mechanism 4. The pressing tool main body 1 includes a pressing plate and a trunk. A C-shaped groove is formed on the trunk for easy holding by the staff. The driving motor 2 is located at the top of the pressing tool main body 1 for driving the pressing plate to rotate. The die-casting workbench 3 is fixed at the bottom end of the pressing tool main body 1. The clamping mechanism 4 is placed on the die-casting workbench 3. The cleaning mechanism 5 and the lifting mechanism 6 are fixed on the side wall of the die-casting workbench 3, and the cleaning mechanism 5 and the lifting mechanism 6 are cooperatively connected.

[0037] The clamping mechanism 4 includes a baffle 41 placed on the outer wall of the top end of the die-casting workbench 3. Oval-shaped strip grooves are evenly formed on the baffle 41. The clamping member 42 is fixed on the outer wall of the baffle 41. The die-casting plate 43 is clamped by the clamping member 42. The clamping member 42 is an existing clamping component, usually including the following parts: bolts, which are used to clamp the die-casting plate 43 and have a certain strength and hardness; nuts, which are parts that cooperate with the bolts and are used to adjust the clamping force so that the die-casting plate 43 can be better fixed in the clamping structure; spring pieces, which are used to press the nuts tightly and maintain the clamping force; clamping blocks, which have a large contact area when clamping the die-casting plate 43 and can better maintain the position of the workpiece to be processed. Through this design, the die-casting plate 43 can be effectively fixed and a certain clamping force can be maintained during use.

[0038] The clamping mechanism 5 is a very important part of the tooling. It can firmly fix the die-casting plate 43 to be processed on the die-casting workbench, enabling the pressing plate to carry out die-casting smoothly. An aluminum profiled plate is placed in the die-casting plate 43. In practical applications, the stability and clamping force of the clamping mechanism are very important parameters. When designing the clamping mechanism, it is necessary to fully consider factors such as the shape and size of the workpiece, as well as the vibration and displacement generated during the processing, so as to determine the appropriate clamping force and clamping method.

[0039] Among them, the cleaning mechanism 5 includes an extension plate 51 fixed on the right side wall of the die-casting workbench 3. An auxiliary plate 52 is fixed on the outer wall of the extension plate 51. A rocker 53 is rotatably connected inside the auxiliary plate 52. The inner end of the rocker 53 connected to the auxiliary plate 52 is a gear wheel. A ratchet wheel is arranged inside the auxiliary plate 52. The connection between the rocker 53 and the auxiliary plate 52 is a connection of an existing ratchet structure. The ratchet teeth are asymmetric and can only rotate smoothly in one direction. When it is necessary to stop rotating, the tooth gap will automatically lock, ensuring the stability and safety of the machine. The gear wheel is a gear with multiple teeth. When the teeth are aligned with the ratchet wheel, the two can communicate and rotate with each other; otherwise, they cannot rotate. The ratchet structure mainly utilizes the blocking effect between the ratchet wheel and the gear wheel to achieve the mutual connection or restriction of the two wheels in a specific direction, enabling the rocker 53 to only rotate clockwise and be self-locked and fixed when stopping rotating, and not easily rotate, thus ensuring the stability and safety of the machine. The rear end of the rocker 53 passes through the auxiliary plate 52 and is fixed to one end of a short connecting rod 54. The other end of the short connecting rod 54 is hinged to one end of a long connecting rod 55. Two groups of mounting plates 56 are fixed on the outer wall of the extension plate 51 in the same horizontal direction. A moving shaft 57 is slidably connected inside the two groups of mounting plates 56. A fixed sleeve 58 fixedly connected to the outer wall of the moving shaft 57 and whose outer wall is hinged to the other end of the long connecting rod 55, a flat rod 59 fixed on the outer wall of the moving shaft 57 and slidably connected to the mounting plate 56, and a cleaning push rod 510 fixed on the outer wall of the flat rod 59;

[0040] When the staff rotates the rocker 53, the rotation of the rocker 53 drives the short connecting rod 54 to rotate. The short connecting rod 54 drives the end of the long connecting rod 55 hinged to the short connecting rod 54 to rotate, and then drives the other end of the long connecting rod 55 to push forward. The other end of the long connecting rod 55 drives the fixed sleeve 58 and the moving shaft 57 to slide forward. As Figure 4 shown in the starting state, during the process of the short connecting rod 54 rotating from 0 degrees to 180 degrees, it is a process of gradually pushing the fixed sleeve 58 forward. During the period when the rocker 53 continuously drives the short connecting rod 54 to rotate from 180 degrees to 360 degrees, it is a process of gradually pulling the fixed sleeve 58 backward to restore. Continuously rotating the rocker 53 will drive the reciprocating push-pull movement of the moving shaft 57. When the moving shaft 57 pushes, it drives the flat rod 59 to push the cleaning push rod 510 to move. A cleaning pad is pasted on the cleaning push rod 510 to clean the dust on the outer wall of the die-casting workbench 3. The diameter length of the virtual circle formed by the rotation of the short connecting rod 54 is the same as the length of the forward movement of the cleaning push rod 510. The length of the forward movement of the cleaning push rod 510 is exactly equal to the length of the die-casting workbench 3. However, the clamping mechanism 4 placed on the die-casting workbench 3 will hinder the pushing of the cleaning push rod 510. Therefore, the present application further provides a lifting mechanism 6 connected in cooperation with the cleaning mechanism 5 for lifting the clamping mechanism 4;

[0041] In summary, the cleaning mechanism 5 is an important part of the die-casting workbench 3. Its main function is to clean the dust on the outer wall of the die-casting workbench 3. The rocker 53 is connected to the auxiliary plate 52 through a ratchet structure, so that the rocker 53 can only rotate clockwise and can be self-locked and fixed when it stops rotating, thus ensuring the stability and safety of the machine. The rotation of the rocker 53 drives the short connecting rod 54 to rotate, and then drives one end of the long connecting rod 55 to push forward. The other end of the long connecting rod 55 is hinged to the fixed sleeve 58. The fixed sleeve 58 and the moving shaft 57 on it will slide forward with the push of the long connecting rod 55. The flat rod 59 will also move forward together with the moving shaft 57. Finally, the push of the moving shaft 57 will drive the cleaning push rod 510 to push forward, thus completing the cleaning of the dust on the outer wall of the die-casting workbench 3.

[0042] The lifting mechanism 6 includes a connecting block 61 fixed on the side wall of the fixed sleeve 58, a moving plate 62 fixed on the outer wall of the connecting block 61, a notch 63 opened on the inner wall of the moving plate 62, a sliding rod 64 embedded in the notch 63 and slidably connected to the notch 63, a movable shaft 65 fixed on the outer wall of the sliding rod 64, a connecting plate 66 fixed on the outer wall of the extension plate 51 and internally slidably connected with the movable shaft 65, a fixed rod 67 fixed on the outer wall of the movable shaft 65 and extending to the position of the die-casting workbench 3, a reinforcing rod 68 fixed on the outer wall of the baffle 41 and fixed to the fixed rod 67. There is a height difference between the movable shaft 65 and the baffle 41. In order to ensure that one end of the fixed rod 67 is fixed to the reinforcing rod 68 and the other end is fixed to the outer wall of the movable shaft 65, the fixed rod 67 is set in a Z shape and the reinforcing rod 68 is set in a concave shape. The two rod ends are fixed on the side wall of the baffle 41 to improve the firmness.

[0043] When the staff starts to rotate the rocker 53, the rocker 53 drives the fixed sleeve 58 to push forward, and the fixed sleeve 58 drives the moving plate 62 to push forward through the connecting block 61. During the forward push of the moving plate 62, the notch 63 is driven to move forward, as Figure 6As shown, the notch 63 is designed in an arc-shaped oval shape, so that the sliding rod 64 is in a continuously rising state during the sliding process along with the notch 63. When the sliding rod 64 moves upward along with the notch 63, it drives the movable shaft 65 to slide upward in the connecting plate 66. The movable shaft 65 then drives the fixed rod 67 fixed thereto to move upward. The fixed rod 67 drives the baffle 41 fixed thereto to move upward through the reinforcing rod 68, further driving the entire clamping mechanism 4 to move upward. It should be noted that the top surface of the flat rod 59 is set as a rectangular plane, and the bottom surface is set as an arc. The arc curvature of the bottom surface is equal to the inner wall curvature of the installation plate 56. The purpose of setting the same curvature is to ensure the smooth movement of the flat rod 59 within the installation plate 56. Setting the top surface as a rectangular plane reduces the thickness of the flat rod 59, enabling it to move at the bottom of the baffle 41. There is a certain distance between the cleaning push rod 510 and the baffle 41. When the cleaning push rod 510 is pushed to the position of the baffle 41, the lifting mechanism 6 just lifts the baffle 41 high enough for the flat rod 59 to drive the cleaning push rod 510 to pass through the bottom of the baffle 41. Therefore, when the rocker 53 is rotated to drive the cleaning push rod 510 to push for cleaning, the lifting mechanism 6 is synchronously driven to lift the baffle 41, solving the drawback that the clamping mechanism 4 hinders the cleaning push rod 510 from pushing for cleaning. It should be noted that the oval-shaped strip grooves evenly opened on the baffle 41 are for the purpose that when the baffle 41 is lifted, the debris accumulated in the strip grooves will fall onto the die-casting workbench 3 to be cleaned.

[0044] In summary, the design concept of this pressing plate tooling is very advanced. It organically combines many existing mechanical components, realizing efficient and stable pressing and cleaning work. The cleaning push rod 510 is lifted and lowered through the lifting mechanism 6, solving the drawback that the clamping mechanism 5 hinders the cleaning push rod 510 from pushing. At the same time, the setting of the strip grooves also greatly improves the cleaning effect. It is worth mentioning that the combined design of the clamping mechanism and the lifting mechanism is also very ingenious, reflecting the superb skills of the designer.

[0045] The usage method of the pressing plate tooling for casting the tensile composite aluminum corrugated plate is as follows:

[0046] S1. The staff starts the main body 1 of the pressing plate tooling and places the aluminum corrugated plate to be processed in the die-casting plate 43.

[0047] S2. The staff uses the clamping mechanism to clamp and fix the die-casting plate 43 on the die-casting workbench 3.

[0048] S3. The staff starts to rotate the rocker 53. Through the coordinated action of components such as the ratchet structure and the connecting rod, the rocker 53 drives the cleaning push rod 510 to advance clockwise forward to complete the cleaning work of the die-casting workbench 3.

[0049] S4. Meanwhile, rotating the rocker 53 will also drive the fixed sleeve 58 and the lifting mechanism 6 to move forward. The slide bar 64 of the lifting mechanism 6 will move upward along the notch 63, thereby driving the movable shaft 65 fixed on the slide bar 64 to move upward. Then, through the coordinated action of the connecting plate 66, the fixed rod 67, and the reinforcing rod 68, the clamping mechanism 4 is lifted to provide a passage for the cleaning push rod 510, and the cleaning push rod 510 can smoothly push and complete the cleaning work.

[0050] S5. When the cleaning work is completed, the operator stops rotating the rocker 53, and the clamping mechanism 8 and the lifting mechanism 6 will automatically reset, and clamp and support the workpiece aluminum profiled plate in place.

[0051] In the present invention, unless otherwise clearly specified and limited, the first feature being "on" or "under" the second feature may include the first and second features being in direct contact, or may include the first and second features not being in direct contact but being in contact through additional features therebetween. Moreover, the first feature being "above", "over", and "on top of" the second feature includes the first feature being directly above and obliquely above the second feature, or merely indicating that the first feature has a higher horizontal height than the second feature. The first feature being "under", "below", and "beneath" the second feature includes the first feature being directly below and obliquely below the second feature, or merely indicating that the first feature has a lower horizontal height than the second feature.

[0052] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not restricted by the above-mentioned embodiments. The above-mentioned embodiments and the descriptions in the specification are only preferred examples of the present invention and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A pressing tool for casting a tensile composite aluminum corrugated plate, comprising a pressing tool main body, a driving motor, a die-casting workbench, and a clamping mechanism. The pressing tool main body includes a pressing plate and a torso. The driving motor is located at the top of the pressing tool main body for driving the pressing plate to rotate. The die-casting workbench is fixed at the bottom of the pressing tool main body. It is characterized in that: The clamping mechanism is placed on the die-casting workbench, and a cleaning mechanism and a lifting mechanism are fixed on the side wall of the die-casting workbench; the clamping mechanism includes a baffle placed on the outer wall of the top of the die-casting workbench and a clamping member fixed on the outer wall of the baffle. The die-casting plate is clamped by the clamping member. The cleaning mechanism includes an extension plate fixed on the right side wall of the die-casting workbench, an auxiliary plate fixed on the outer wall of the extension plate, a rocker rotatably connected inside the auxiliary plate, a short connecting rod fixed to the rear end of the rocker passing through the auxiliary plate, a long connecting rod hinged to the other end of the short connecting rod, two groups of mounting plates fixed on the outer wall of the extension plate in the same horizontal direction, a moving shaft slidably connected inside the two groups of mounting plates, a fixed sleeve fixed to the outer wall of the moving shaft and the outer wall of which is hinged to the other end of the long connecting rod, a flat rod fixed to the outer wall of the moving shaft and slidably connected to the mounting plate, and a cleaning push rod fixed to the outer wall of the flat rod. The lifting mechanism includes a connecting block fixed on the side wall of the fixed sleeve, a moving plate fixed on the outer wall of the connecting block, a notch opened on the inner wall of the moving plate, a sliding rod embedded in the notch and slidably connected to the notch, a movable shaft fixed to the outer wall of the sliding rod, a connecting plate fixed on the outer wall of the extension plate and internally slidably connected with the movable shaft, a fixed rod fixed to the outer wall of the movable shaft and extending to the position of the die-casting workbench, and a reinforcing rod fixed on the outer wall of the baffle and fixed to the fixed rod.

2. A pressing tool for casting a tensile composite aluminum corrugated plate according to claim 1, It is characterized in that: The baffle is evenly provided with oval-shaped strip-shaped grooves.

3. A pressing tool for casting a tensile composite aluminum corrugated plate according to claim 1, It is characterized in that: The clamping member includes a bolt, a nut, a spring piece, and a clamping block.

4. A pressing tool for casting a tensile composite aluminum corrugated plate according to claim 3, It is characterized in that: The inner end of the rocker connected to the auxiliary plate is a gear, and a ratchet is arranged inside the auxiliary plate.

5. A pressing tool for casting a tensile composite aluminum corrugated plate according to claim 4, It is characterized in that: The continuous rotation of the rocker drives the moving shaft to reciprocate and push and pull.

6. A pressing tool for casting a tensile composite aluminum corrugated plate according to claim 5, It is characterized in that: The diameter length of the virtual circle formed by the rotation of the short connecting rod is the same as the length of pushing the cleaning push rod forward, and the length of pushing the cleaning push rod forward is equal to the length of the die-casting workbench.

7. A pressing tool for casting a tensile composite aluminum corrugated plate according to claim 1, It is characterized in that: There is a height difference between the movable shaft and the baffle, and the fixed rod is set in a Z shape.

8. A method for using a pressing tool for casting a tensile composite aluminum corrugated plate according to any one of claims 1-7, It is characterized in that: S1. The staff starts the pressing tool main body and places the aluminum corrugated plate to be processed in the die-casting plate; S2. The staff uses the clamping mechanism to clamp and fix the die-casting plate on the die-casting workbench; S3. Rotate the rocker, which drives the short connecting rod to rotate. The short connecting rod drives the end of the long connecting rod hinged to it to rotate, and then drives the other end of the long connecting rod to push forward. The other end of the long connecting rod drives the fixed sleeve and the moving shaft to slide forward. During the process of the short connecting rod rotating from 0 degrees to 180 degrees, it is a process of gradually pushing the fixed sleeve forward. During the period when the rocker continuously drives the short connecting rod to rotate from 180 degrees to 360 degrees, it is a process of gradually pulling the fixed sleeve backward to restore. Continuously rotating the rocker will drive the reciprocating push-and-pull movement of the moving shaft. When the moving shaft pushes, it drives the flat rod to push the cleaning push rod to move. A cleaning pad is pasted on the cleaning push rod to clean the dust on the outer wall of the die-casting workbench; S4. While the rocker drives the fixed sleeve to push forward, the fixed sleeve drives the moving plate to push forward through the connecting block. During the process of the moving plate pushing forward, it drives the notch to move forward. When the sliding rod slides along with the notch, it is in a continuous rising state. As the sliding rod moves upward along with the notch, it drives the movable shaft to slide upward in the connecting plate. The movable shaft thus drives the fixed rod fixed to it to move upward. The fixed rod drives the baffle plate fixed to it to move upward through the reinforcing rod. When the cleaning push rod is pushed to the position of the baffle plate, the cleaning push rod passes through the bottom of the baffle plate; S5. When the cleaning work is completed, the staff stops rotating the rocker, the clamping mechanism and the lifting mechanism are reset, and the processed aluminum pressing plate is clamped and supported in place.

Citation Information

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