Adjustable pressing plate for radiator core processing

By introducing structures such as racks, support plates, hydraulic chambers, and auxiliary support components into the radiator core processing device, the problem of loosening of the jacking strip was solved, achieving stable support and adsorption for larger flat tubes and improving the stability of the device.

CN120828092BActive Publication Date: 2025-12-05JIANGSU LIYE PRECISION TECH CO LTD
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Patent Information

Application Number
CN202511302591.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-12
Publication Date
2025-12-05
Estimated Expiration
2045-09-12

AI Technical Summary

Technical Problem

When using existing radiator core processing equipment on larger flat tubes, the jacking plate is prone to loosening, affecting the stability of the equipment.

Method used

An adjustable pressure plate device is adopted, which uses a structure such as a toothed rod, support plate, hydraulic chamber, transmission rod and auxiliary support components to achieve stable support and adsorption of the top plate and prevent loosening.

Benefits of technology

Using larger-sized flat tubes improves the stability and effectiveness of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a heat radiator core processing adjustable pressing plate and relates to the technical field of heat radiator core processing. The heat radiator core processing adjustable pressing plate comprises a connecting seat, an adjusting bolt is rotationally connected to the side surface of the connecting seat, a top driving strip plate one and a top driving strip plate two are both assembled on the outer side of the adjusting bolt through threads, and the top driving strip plate one and the top driving strip plate two are slidingly connected with the connecting seat; and the side surface of the top driving strip plate one is assembled with a gear rod. The heat radiator core processing adjustable pressing plate is used for preventing the top driving strip plate from loosening and making the use of the device more stable in the case when the device is used for large-sized flat tubes by rotating the adjusting bolt, moving the top driving strip plate one and the top driving strip plate two away, expanding the gap between the top driving strip plate one and the top driving strip plate two, and cooperating with the gear rod, a supporting plate one, a gear, a hydraulic chamber one, a transmission rod one, a transmission rod two, a torsional spring rod and a supporting plate two.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of radiator core processing, in particular to an adjustable pressing plate for radiator core processing. BACKGROUND

[0002] The automobile radiator is composed of an inlet chamber, an outlet chamber and a radiator core, and the radiator core is generally composed of a radiator strip and a radiator pipe. The radiator pipe is filled with refrigerant, and the heat is dissipated through the large surface area of the radiator strip. However, the radiator strip is very soft, and the radiator strip and the radiator pipe are alternately placed. The entire core processing process is complicated and prone to damage to the radiator strip. The radiator strip and the radiator pipe of the radiator core need to be manually pressed and bundled during reprocessing.

[0003] A kind of adjustable pressing plate for radiator core processing is disclosed in Chinese patent CN219054149U granted and announced on May 23, 2023, wherein, including end fixed bolt, connecting seat, detachable sliding support, top bar plate and adjusting assembly, the connecting seat includes support seat, the end section of support seat is concave letter type structure, the recess inside support seat is provided with sliding connection plate at both ends, top bar plate is uniformly provided with sliding connection between the two sliding connection plates, one side of support seat is provided with detachable sliding support slidably connected with top bar plate, the other side of support seat is provided with adjusting assembly for sliding top bar plate, both ends of top bar plate are provided with end fixed bolt for fixing it.

[0004] In the above application file, by adopting the mode of manually rotating the handle to drive the top bar plate to move, the gap between the top bar plates is adjusted. However, after expanding the gap between the top bar plates, the top bar plates are relatively loose when using large-sized flat tubes, which affects the use of the device. SUMMARY

[0005] In view of the deficiencies of the prior art, the present application provides an adjustable pressing plate for radiator core processing, which solves the problems raised in the above background art. To achieve the above purpose, the present application is implemented by the following technical scheme: an adjustable pressing plate for radiator core processing, comprising:

[0006] A connecting seat is rotatably connected with an adjusting bolt on the side surface of the connecting seat;

[0007] A top bar plate one and a top bar plate two are both threaded on the outside of the adjusting bolt, and the top bar plate one and the top bar plate two are slidably connected with the connecting seat;

[0008] The side of the top driving strip plate one is equipped with a gear rod, the top of the connecting seat is rotationally connected with a supporting plate one, the top of the supporting plate one is drivingly connected with a gear, the side of the top driving strip plate one is rotationally connected with a supporting plate two through the setting of a torsion spring rod, the gear rod and the supporting plate two are equipped with a transmission part for transmission, the top driving strip plate two and the connecting seat are equipped with a supporting assembly for supporting the top driving strip plate two, and the top driving strip plate two and the connecting seat are equipped with an auxiliary supporting assembly for assisting in supporting the top driving strip plate two.

[0009] Preferably, the transmission part comprises a hydraulic chamber one equipped in and penetrating through the gear rod, the side of the hydraulic chamber one is slidingly connected with a transmission rod one through the setting of a piston, and the other end of the hydraulic chamber one is slidingly connected with a transmission rod two through the setting of a piston. Through the setting of the device, when a large flat pipe is used, the top driving strip plate can be prevented from loosening, so that the use of the device is more stable in this case.

[0010] Preferably, the gear is located at the side of the gear rod and is in meshing state with the gear rod.

[0011] Preferably, the transmission rod two is located at the side of the supporting plate two and is in fixed state with the supporting plate two.

[0012] Preferably, the supporting assembly comprises a bevel gear one equipped outside the adjusting bolt, the top of the connecting seat is rotationally connected with a rotating rod one and a rotating rod two, the top of the rotating rod one is fixedly connected with a bevel gear two, the outside of the rotating rod one is equipped with a chain wheel one, the outside of the chain wheel one is equipped with a chain, the outside of the rotating rod two is equipped with a chain wheel two, and the top of the rotating rod two is fixedly connected with a limiting cam. Through the setting of the supporting assembly, the limiting cam is rotated to between the top driving strip plate two and the connecting seat for auxiliary support, so that the stability of the device in use is further improved;

[0013] The auxiliary supporting assembly comprises a hydraulic chamber two equipped at the side of the top driving strip plate two, one end of the hydraulic chamber two is slidingly connected with a force rod two through the setting of a piston, the other end of the hydraulic chamber two is slidingly connected with a supporting rod through the setting of a piston, and the side of the force rod two is equipped with a spring. Through the setting of the auxiliary supporting assembly, in this case, the supporting rod is moved to the inner wall bottom side of the connecting seat to further assist in supporting the top driving strip plate two, so that the use of the device is more stable.

[0014] Preferably, the bevel gear two is located at the side of the bevel gear one and is in meshing state with the bevel gear one.

[0015] Preferably, the chain is equipped at the outside of the chain wheel two away from the one end of the chain wheel one.

[0016] Preferably, the auxiliary adsorption assembly comprises a suction cup and an electric telescopic rod switch assembled on one side of the support plate, one side of the support plate is provided with an air pressure bin, the side of the air pressure bin is slidably connected with an air pressure rod through a piston, the inner wall side of the connecting seat is provided with an electric telescopic rod body, and the side of the electric telescopic rod body is provided with a moving rod. Through the setting of the auxiliary adsorption assembly, the suction cup stably adsorbs the top driving strip plate one, and the stability of the device during use is further improved.

[0017] Preferably, the air pressure rod is in the shape of 'L', and the side away from the air pressure bin extends to the bottom thereof.

[0018] Preferably, in the enabled state of the auxiliary adsorption assembly, the moving rod and the air pressure rod are in contact with each other.

[0019] The application provides a heat dissipation core processing adjustable pressing plate.

[0020] (1) The heat dissipation core processing adjustable pressing plate, by rotating the adjusting bolt, the top driving strip plate one and the top driving strip plate two move away from each other, thereby expanding the gap between them, and cooperating with the toothed rod, the support plate one, the gear, the hydraulic bin one, the transmission rod one, the transmission rod two, the torsional spring rod and the support plate two, it can prevent the top driving strip plate from loosening when using a larger flat tube, making the device more stable in this case.

[0021] (2) The heat dissipation core processing adjustable pressing plate, when the adjusting bolt rotates, cooperates with the bevel gear one, the rotating rod one, the rotating rod two, the bevel gear two, the chain wheel one, the chain and the chain wheel two, so that the limiting cam rotates to the position between the top driving strip plate two and the connecting seat, and assists in supporting, further improving the stability of the device in this case.

[0022] (3) The heat dissipation core processing adjustable pressing plate, when the limiting cam rotates to the position between the top driving strip plate two and the connecting seat and assists in supporting, the limiting cam can extrude the stressed rod two, cooperate with the hydraulic bin two and the spring, so that the support rod can be moved to the inner wall bottom side of the connecting seat in this case, further assisting in supporting the top driving strip plate two, making the device more stable.

[0023] (4) The heat dissipation core processing adjustable pressing plate, when the support plate one rotates to the side of the top driving strip plate one and supports it, cooperates with the electric telescopic rod switch, the air pressure bin, the air pressure rod, the electric telescopic rod body and the moving rod, so that the suction cup stably adsorbs the top driving strip plate one, further improving the stability of the device during use. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1The schematic diagram of the three-dimensional structure of the overall appearance of the present application from another perspective;

[0025] Figure 2 The schematic diagram of the three-dimensional structure of the overall appearance of the present application from another perspective;

[0026] Figure 3 The schematic diagram of the three-dimensional structure of the partial parts of the present application;

[0027] Figure 4 The schematic diagram of the three-dimensional structure of the present application from another perspective; Figure 3 The schematic diagram of the enlarged structure at A in the present application;

[0028] Figure 5 The schematic diagram of the three-dimensional structure of the support assembly of the present application;

[0029] Figure 6 The schematic diagram of the three-dimensional structure of the present application from another perspective; Figure 5 The schematic diagram of the enlarged structure at B in the present application;

[0030] Figure 7 The schematic diagram of the three-dimensional structure of the auxiliary support assembly of the present application;

[0031] Figure 8 The schematic diagram of the three-dimensional structure of the present application from another perspective; Figure 7 The schematic diagram of the enlarged structure at C in the present application;

[0032] Figure 9 The schematic diagram of the three-dimensional structure of the auxiliary adsorption assembly of the present application.

[0033] In the figure:

[0034] 100, connecting seat; 200, adjusting bolt; 300, top driving strip plate one; 400, top driving strip plate two; 501, toothed rod; 502, support plate one; 503, gear; 504, hydraulic chamber one; 505, transmission rod one; 506, transmission rod two; 507, torsional spring rod; 508, support plate two;

[0035] 600, support assembly; 601, bevel gear one; 602, rotating rod one; 603, rotating rod two; 604, bevel gear two; 605, chain wheel one; 606, chain; 607, chain wheel two; 608, limiting cam;

[0036] 700, auxiliary support assembly; 701, hydraulic chamber two; 702, force receiving rod two; 703, support rod; 704, spring;

[0037] 800, auxiliary adsorption assembly; 801, suction cup; 802, electric telescopic rod switch; 803, air pressure chamber; 804, air pressure rod; 805, electric telescopic rod main body; 806, moving rod. DETAILED DESCRIPTION

[0038] Clearly, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application.

[0039] Embodiment one, please refer to Figures 1-4 A heat sink core processing adjustable pressing plate, comprising:

[0040] The connecting seat 100 is rotatably connected with an adjusting bolt 200 on the side surface thereof;

[0041] The top driving strip plate one 300 and the top driving strip plate two 400 are both assembled on the outside of the adjusting bolt 200 through threads, and the top driving strip plate one 300 and the top driving strip plate two 400 are slidably connected with the connecting seat 100;

[0042] The side surface of the top driving strip plate one 300 is assembled with a toothed rod 501, the top of the connecting seat 100 is rotatably connected with a support plate one 502, the top of the support plate one 502 is drivingly connected with a gear 503, the gear 503 is located on the side surface of the toothed rod 501, and is in meshing state with the toothed rod 501. Figure 3 As shown in FIG. 1, the adjusting bolt 200 is rotated clockwise, the top driving strip plate one 300 and the top driving strip plate two 400 assembled on the outside of the adjusting bolt 200 through threads are moved due to the connecting seat 100 slidably connected therewith, the top driving strip plate one 300 and the top driving strip plate two 400 move away from each other, thereby expanding the gap therebetween; at this time, the toothed rod 501 assembled on the side surface of the top driving strip plate one 300 moves together with the top driving strip plate one 300, and Figure 4 As shown in FIG. 1, the toothed rod 501 drives the gear 503 meshing therewith to rotate clockwise by a certain angle, so that the gear 503 drives the support plate one 502 drivingly connected therewith to rotate, thereby supporting the connecting seat 100 and the top driving strip plate one 300.

[0043] The side surface of the top driving strip plate one 300 is rotationally connected with a support plate two 508 through the torsion spring rod 507. A transmission member for transmission is assembled between the tooth rod 501 and the support plate two 508. The transmission member comprises a hydraulic chamber one 504 assembled in the tooth rod 501 and penetrating through the tooth rod 501. The side surface of the hydraulic chamber one 504 is slidably connected with a transmission rod one 505 through a piston. The other end of the hydraulic chamber one 504 is slidably connected with a transmission rod two 506 through a piston. The transmission rod two 506 is located at the side surface of the support plate two 508 and is in a fixed state with the support plate two 508. When the tooth rod 501 moves, the hydraulic chamber one 504 assembled in the tooth rod 501 moves at the same time. At this time, the transmission rod one 505 is extruded by the inner wall of the connecting seat 100 and moves into the hydraulic chamber one 504 connected with the transmission rod one 505 through a piston, thereby pushing the oil originally stored in the hydraulic chamber one 504. Part of the oil is extruded and flows to the side close to the transmission rod two 506, thereby driving the transmission rod two 506 connected with the hydraulic chamber one 504 through a piston to move. The transmission rod two 506 drives the support plate two 508 fixedly connected with the transmission rod two 506 to rotate around the torsion spring rod 507 as the axis. The support plate two 508 rotates to the position between the top driving strip plate one 300 and the top driving strip plate two 400 and supports them. In this way, when a large flat tube is used, the loosening of the top driving strip plate can be prevented, and the use of the device in this case is more stable.

[0044] When the top driving strip plate one 300 and the top driving strip plate two 400 are reset, the support plate one 502 can be reset at the same time. At the same time, the transmission rod one 505 loses the limitation, and the transmission rod two 506 and the support plate two 508 lose the limitation at the same reason, thereby being reset under the action of the torsion spring rod 507 itself. The device is reset immediately.

[0045] When used, as shown in Figure 3 , the adjusting bolt 200 is rotated clockwise. The top driving strip plate one 300 and the top driving strip plate two 400 threadedly assembled outside the adjusting bolt 200 move due to the connecting seat 100 slidably connected with them. The top driving strip plate one 300 and the top driving strip plate two 400 move away from each other, thereby expanding the gap between them. At this time, the tooth rod 501 assembled at the side surface of the top driving strip plate one 300 moves with the top driving strip plate one 300. When the gap between the top driving strip plate one 300 and the top driving strip plate two 400 is expanded to the maximum, the tooth rod 501 is extruded by the inner wall of the connecting seat 100 and moves into the hydraulic chamber one 504 connected with the tooth rod 501 through a piston, thereby pushing the oil originally stored in the hydraulic chamber one 504. Part of the oil is extruded and flows to the side close to the transmission rod two 506, thereby driving the transmission rod two 506 connected with the hydraulic chamber one 504 through a piston to move. The transmission rod two 506 drives the support plate two 508 fixedly connected with the transmission rod two 506 to rotate around the torsion spring rod 507 as the axis. The support plate two 508 rotates to the position between the top driving strip plate one 300 and the top driving strip plate two 400 and supports them. In this way, when a large flat tube is used, the loosening of the top driving strip plate can be prevented, and the use of the device in this case is more stable. Figure 4As shown in FIG. 1, the toothed rod 501 drives the gear 503 engaged therewith to rotate clockwise by a certain angle, so that the gear 503 drives the support plate one 502 connected in transmission to rotate, supporting between the connecting seat 100 and the ejector strip plate one 300; the hydraulic chamber one 504 assembled in the toothed rod 501 moves together, at this time, the transmission rod one 505 is extruded by the inner wall of the connecting seat 100, and moves to the hydraulic chamber one 504 connected in sliding by the setting piston, so as to push the oil originally stored in the hydraulic chamber one 504, part of the oil is extruded to flow to the side close to the transmission rod two 506, driving the transmission rod two 506 connected in sliding with the hydraulic chamber one 504 to move, the transmission rod two 506 drives the support plate two 508 fixedly connected therewith to rotate with the torsion spring rod 507 as the axis, the support plate two 508 rotates to the position between the ejector strip plate one 300 and the ejector strip plate two 400 and supports; when the ejector strip plate one 300 and the ejector strip plate two 400 are reset, the support plate one 502 can be reset together, at the same time, the transmission rod one 505 loses the limitation, and the transmission rod two 506 and the support plate two 508 lose the limitation, so as to reset under the action of the torsion spring rod 507 itself, and the device resets immediately.

[0046] Embodiment two, please refer to Figures 1-8 On the basis of embodiment one, the support assembly 600 for supporting the ejector strip plate two 400 is assembled between the ejector strip plate two 400 and the connecting seat 100, the support assembly 600 comprises the bevel gear one 601 assembled outside the adjusting bolt 200, the connecting seat 100 is rotatably connected with the rotating rod one 602 and the rotating rod two 603 at the top, the top of the rotating rod one 602 is fixedly connected with the bevel gear two 604, the bevel gear two 604 is located at the side of the bevel gear one 601, and is in engagement with the bevel gear one 601, the outside of the rotating rod one 602 is assembled with the chain wheel one 605. Figure 3 When the adjusting bolt 200 rotates clockwise in the view angle, the chain wheel one 605 drives the bevel gear two 604 engaged therewith to rotate clockwise, the bevel gear two 604 drives the rotating rod one 602 fixedly connected therewith to rotate, and the rotating rod one 602 drives the chain wheel one 605 assembled outside to rotate. Figure 5 When the adjusting bolt 200 rotates counterclockwise in the view angle, the chain wheel one 605 drives the bevel gear two 604 engaged therewith to rotate counterclockwise, the bevel gear two 604 drives the rotating rod one 602 fixedly connected therewith to rotate, and the rotating rod one 602 drives the chain wheel one 605 assembled outside to rotate. Figure 6 When the adjusting bolt 200 rotates counterclockwise in the view angle, the chain wheel one 605 drives the bevel gear two 604 engaged therewith to rotate counterclockwise, the bevel gear two 604 drives the rotating rod one 602 fixedly connected therewith to rotate, and the rotating rod one 602 drives the chain wheel one 605 assembled outside to rotate.

[0047] The outer side of the chain wheel one 605 is equipped with a chain 606, the outer side of the rotating rod two 603 is equipped with a chain wheel two 607, the chain 606 far away from the chain wheel one 605 is equipped at the outer side of the chain wheel two 607, and the top of the rotating rod two 603 is fixedly connected with a limiting cam 608. When the chain wheel one 605 rotates, the chain 606 equipped at the outer side of the chain wheel one 605 is matched, so that the chain wheel two 607 driven by the chain 606 and the chain wheel one 605 rotates synchronously by a certain angle counterclockwise, the chain wheel two 607 drives the rotating rod two 603 to rotate, so that the rotating rod two 603 drives the limiting cam 608 fixedly connected therewith to rotate counterclockwise by a certain angle, and the limiting cam 608 rotates to the position between the top driving strip plate two 400 and the connecting seat 100 to assist in supporting, thereby further improving the stability of the device when the device is used in this case.

[0048] An auxiliary supporting assembly 700 for assisting in supporting the top driving strip plate two 400 is equipped between the top driving strip plate two 400 and the connecting seat 100, the auxiliary supporting assembly 700 comprises a hydraulic bin two 701 equipped at the side of the top driving strip plate two 400, one end of the hydraulic bin two 701 is slidably connected with a stress rod two 702 through a piston, and the stress rod two 702 and the limiting cam 608 are in contact with each other in the enabled state of the auxiliary supporting assembly 700. When the limiting cam 608 rotates to the position between the top driving strip plate two 400 and the connecting seat 100 and assists in supporting, the limiting cam 608 can extrude the stress rod two 702, and the stress rod two 702 moves into the hydraulic bin two 701 through the piston to extrude the oil originally stored in the hydraulic bin two 701.

[0049] The other end of the hydraulic bin two 701 is slidably connected with a supporting rod 703 through a piston, the side of the stress rod two 702 is equipped with a spring 704, and one end of the spring 704 far away from the stress rod two 702 is equipped at the side of the stress rod two 702. When the oil originally stored in the hydraulic bin two 701 is extruded, the oil flows to the side close to the supporting rod 703, drives the supporting rod 703 slidably connected with the hydraulic bin two 701 to move out of the hydraulic bin two 701, and the supporting rod 703 moves to the inner wall bottom side of the connecting seat 100 to further assist in supporting the top driving strip plate two 400, so that the device is more stable in use.

[0050] When the limiting cam 608 is reset, the stress rod two 702 loses the effect and can be reset under the action of the spring 704, and the supporting rod 703 is reset in the same way.

[0051] In use, on the basis of the first embodiment, when the adjusting bolt 200 is rotated clockwise in the view angle Figure 3 , the view angle Figure 5 andFigure 6 As shown in the figure, the adjusting bolt 200 is in the anticlockwise rotation state, which drives the bevel gear one 601 assembled outside the adjusting bolt 200 to rotate synchronously, so that the bevel gear one 601 drives the bevel gear two 604 meshed with it to rotate anticlockwise, the bevel gear two 604 drives the rotating rod one 602 fixedly connected with it to rotate, so that the rotating rod one 602 drives the chain wheel one 605 assembled outside it to rotate, cooperates with the chain 606 assembled outside the chain wheel one 605, so that the chain wheel two 607 driven by the chain 606 and the chain wheel one 605 is synchronously rotated anticlockwise by a certain angle, the chain wheel two 607 drives the rotating rod two 603 to rotate, so that the rotating rod two 603 drives the limiting cam 608 fixedly connected with it to rotate anticlockwise by a certain angle, the limiting cam 608 is immediately rotated to the position between the knock strip plate two 400 and the connecting seat 100 to assist in supporting; when the limiting cam 608 is rotated to the position between the knock strip plate two 400 and the connecting seat 100 and assists in supporting, the limiting cam 608 can extrude the stress rod two 702, the stress rod two 702 is extruded to move into the hydraulic bin two 701 connected with it through the setting piston, so as to extrude the oil originally stored in the hydraulic bin two 701, the oil immediately flows to the side close to the supporting rod 703, drives the supporting rod 703 connected with the hydraulic bin two 701 through the setting piston to move out of the hydraulic bin two 701, the supporting rod 703 is immediately moved to the inner wall bottom side of the connecting seat 100 to further assist in supporting the knock strip plate two 400; when the limiting cam 608 is reset, the stress rod two 702 loses the effect, which can be reset under the action of the spring 704, and the supporting rod 703 is reset in the same way.

[0052] Example three, please refer to Figures 1-9 On the basis of example one and example two, the auxiliary adsorption assembly 800 includes the suction cup 801 and the electric telescopic rod switch 802 assembled on the side surface of the supporting plate one 502. When the supporting plate one 502 is rotated to the side surface of the knock strip plate one 300 and supports it, the suction cup 801 and the electric telescopic rod switch 802 assembled on the side surface of the supporting plate one 502 are rotated to the place at the same time, and the suction cup 801 and the electric telescopic rod switch 802 are extruded by the knock strip plate one 300, so that the suction cup 801 performs the preliminary adsorption operation on the knock strip plate one 300.

[0053] The side of the support plate 502 is equipped with an air pressure bin 803, the side of the air pressure bin 803 is slidably connected with an air pressure rod 804 through the arrangement of a piston, the air pressure rod 804 is in the shape of "L", the side, away from the air pressure bin 803, of the air pressure rod 804 extends to the bottom of the air pressure bin 803, the inner wall side of the connecting seat 100 is equipped with an electric telescopic rod body 805, the side of the electric telescopic rod body 805 is equipped with a moving rod 806, in the enabled state of the auxiliary adsorption assembly 800, the moving rod 806 and the air pressure rod 804 are in contact with each other. With the rotation of the support plate 502, the air pressure rod 804 moves to the side of the moving rod 806 and is in contact with the moving rod 806, and in the case that the electric telescopic rod switch 802 is extruded, the electric telescopic rod body 805 can be started, the electric telescopic rod body 805 drives the moving rod 806 equipped on the side of the electric telescopic rod body 805 to move away from the side of the knock strip plate 300, so that the moving rod 806 drives the air pressure rod 804 to move away from the side of the air pressure bin 803 by extruding the air pressure rod 804, through the movement of the air pressure rod 804, the residual gas between the suction cup 801 and the knock strip plate 300 can be extracted into the air pressure bin 803 through the air pressure bin 803, so that the suction cup 801 stably adsorbs the knock strip plate 300, and the stability of the device during use is further improved.

[0054] In use, on the basis of examples one and two, when the support plate 502 is rotated to the side of the knock strip plate 300 and supports it, the suction cup 801 and the electric telescopic rod switch 802 equipped on the side of the support plate 502 are rotated to the place at the same time, and the suction cup 801 and the electric telescopic rod switch 802 are extruded by the knock strip plate 300, the suction cup 801 then performs a preliminary adsorption operation on the knock strip plate 300, at the same time, with the rotation of the support plate 502, the air pressure rod 804 moves to the side of the moving rod 806 and is in contact with the moving rod 806, and in the case that the electric telescopic rod switch 802 is extruded, the electric telescopic rod body 805 can be started, the electric telescopic rod body 805 drives the moving rod 806 equipped on the side of the electric telescopic rod body 805 to move away from the side of the knock strip plate 300, so that the moving rod 806 drives the air pressure rod 804 to move away from the side of the air pressure bin 803 by extruding the air pressure rod 804, through the movement of the air pressure rod 804, the residual gas between the suction cup 801 and the knock strip plate 300 can be extracted into the air pressure bin 803 through the air pressure bin 803.

[0055] The above merely describes a preferred embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can make equivalent replacements or changes according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. An adjustable pressure plate for processing a radiator core, characterized in that, include: A connecting seat (100) is rotatably connected to the side of the connecting seat (100) with an adjusting bolt (200). A top moving plate one (300) and a top moving plate two (400) are provided, both of which are threadedly mounted on the outside of the adjusting bolt (200), and are slidably connected to the connecting seat (100). A rack (501) is mounted on the side of the first jacking plate (300). A support plate (502) is rotatably connected to the top of the connecting seat (100). A gear (503) is driven to the top of the support plate (502). A support plate (508) is rotatably connected to the side of the first jacking plate (300) via a torsion spring rod (507). A transmission component for transmission is mounted between the rack (501) and the support plate (508). The transmission component includes a hydraulic chamber (504) mounted inside and penetrating the rack (501). A transmission rod (505) is slidably connected to the side of the hydraulic chamber (504) via a piston. The other end of the first compartment (504) is connected to the second transmission rod (506) via a piston. The second transmission rod (506) is located on the side of the second support plate (508) and is fixed to the second support plate (508). A support assembly (600) for supporting the second pushing strip plate (400) is assembled between the second pushing strip plate (400) and the connecting seat (100). An auxiliary support assembly (700) for auxiliary support of the second pushing strip plate (400) is assembled between the second pushing strip plate (400) and the connecting seat (100). An auxiliary adsorption assembly (800) for adsorbing the first pushing strip plate (300) is assembled on the top of the connecting seat (100).

2. The adjustable pressure plate for processing a radiator core according to claim 1, characterized in that: The gear (503) is located on the side of the rack (501) and is in mesh with the rack (501).

3. The adjustable pressure plate for processing a radiator core according to claim 1, characterized in that: The support assembly (600) includes a bevel gear one (601) mounted on the outside of the adjusting bolt (200), a rotating rod one (602) and a rotating rod two (603) rotatably connected to the top of the connecting seat (100), a bevel gear two (604) fixedly connected to the top of the rotating rod one (602), a sprocket one (605) mounted on the outside of the rotating rod one (602), a chain (606) mounted on the outside of the sprocket one (605), a sprocket two (607) mounted on the outside of the rotating rod two (603), and a limiting cam (608) fixedly connected to the top of the rotating rod two (603). The auxiliary support assembly (700) includes a hydraulic chamber two (701) mounted on the side of the top moving plate two (400). One end of the hydraulic chamber two (701) is slidably connected to a force rod two (702) via a piston. The other end of the hydraulic chamber two (701) is slidably connected to a support rod (703) via a piston. A spring (704) is mounted on the side of the force rod two (702).

4. The adjustable pressure plate for processing a radiator core according to claim 3, characterized in that: The second bevel gear (604) is located on the side of the first bevel gear (601) and is in mesh with the first bevel gear (601).

5. An adjustable pressure plate for processing a radiator core according to claim 3, characterized in that: The end of the chain (606) away from the first sprocket (605) is fitted to the outer side of the second sprocket (607).

6. The adjustable pressure plate for processing a radiator core according to claim 3, characterized in that: The auxiliary adsorption assembly (800) includes a suction cup (801) and an electric telescopic rod switch (802) mounted on the side of the support plate (502). A pressure chamber (803) is mounted on the side of the support plate (502). A pressure rod (804) is slidably connected to the side of the pressure chamber (803) by means of a piston. An electric telescopic rod body (805) is mounted on the inner wall side of the connecting seat (100). A moving rod (806) is mounted on the side of the electric telescopic rod body (805).

7. An adjustable pressure plate for processing a radiator core according to claim 6, characterized in that: The pneumatic rod (804) is L-shaped, and the side of the pneumatic rod (804) away from the pneumatic chamber (803) extends toward its bottom.

8. An adjustable pressure plate for processing a radiator core according to claim 6, characterized in that: When the auxiliary adsorption component (800) is in the activated state, the moving rod (806) and the pneumatic rod (804) are in contact with each other.

Citation Information

Patent Citations

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    CN219054149U

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