Stainless steel plate finishing system and finishing machine thereof

By introducing cleaning and limiting components into the stainless steel plate finishing machine, the problem of debris accumulation in the vertical mold was solved, achieving automatic cleaning and preventing the mold from pushing the stainless steel plate, thus improving work efficiency and safety.

CN120961768AInactive Publication Date: 2025-11-18GUANGDONG CHUANGRUI TECH CO LTD
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Patent Information

Application Number
CN202511252385.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-03
Publication Date
2025-11-18
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When using existing stainless steel plate finishing machines, debris accumulates in the cavity of the vertical mold, requiring manual cleaning, which is time-consuming and labor-intensive.

Method used

A finishing system for stainless steel plates was designed, including a cleaning component. The system uses a vibration component and a limiting component to automatically clean debris inside a vertical mold. The vibration of the vibration component and the limiting component prevent the vertical mold from pushing the stainless steel plate, thus achieving automatic cleaning.

Benefits of technology

It enables automatic cleaning of vertical molds, reducing manual cleaning time and labor intensity, and avoiding imbalance problems caused by the mold pushing the stainless steel plate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of finishing machines, and discloses a stainless steel plate finishing system and a finishing machine thereof.The finishing machine comprises a machine body used for finishing a stainless steel plate; the lateral dies are symmetrically arranged on the machine body and used for performing lateral finishing on the stainless steel plate; the vertical dies are symmetrically arranged on the machine body and used for vertically finishing the stainless steel plate; and the cleaning assembly is used for cleaning residual chippings in the vertical mold below. After a stainless steel plate is taken out from the lower vertical mold, the lower vertical mold can automatically clean away residual chips in the lower vertical mold, so that manual subsequent cleaning is not needed, time and labor are saved, the lower vertical mold can be limited, the lower vertical mold cannot move even if the speed of taking the stainless steel plate is low, and the production efficiency is improved. And the situation that the stainless steel plate is pushed by the vertical mold is avoided, and unbalance is avoided.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of finishing machines, in particular to a stainless steel plate finishing system and a finishing machine thereof. BACKGROUND

[0002] The stainless steel plate is a kind of alloy steel that is not easy to rust, with a smooth surface, high plasticity, toughness and mechanical strength, and can resist the corrosion of acid, alkaline gas, solution and other media, which is the general term of stainless steel plate and acid-resistant steel plate.

[0003] When finishing the U-shaped stainless steel plate, a finishing machine needs to be used. The existing finishing machine is mostly a small R finishing extrusion machine. The stainless steel plate is finished by the cooperation of the lateral mold and the vertical mold on the finishing machine. When the existing finishing machine is used, a large amount of debris will fall on the surface of the stainless steel plate into the cavity of the lower vertical mold after extrusion finishing, which needs to be cleaned manually.

[0004] Therefore, it is necessary to invent a stainless steel plate finishing system and a finishing machine to solve the above problems. SUMMARY

[0005] In view of the above problems, the present application provides a stainless steel plate finishing system and a finishing machine to solve the problems raised in the background art.

[0006] To achieve the above purpose, the present application provides the following technical scheme: a stainless steel plate finishing machine, comprising:

[0007] A machine body is used for finishing the stainless steel plate.

[0008] A lateral mold is symmetrically arranged on the machine body to finish the stainless steel plate laterally.

[0009] A vertical mold is symmetrically arranged on the machine body to finish the stainless steel plate vertically.

[0010] A cleaning assembly is arranged on both sides of the vertical mold to clean the debris remaining in the vertical mold.

[0011] The cleaning assembly comprises a shaft and a connecting plate, the end of the shaft is provided with a vibration assembly to vibrate the vertical mold, and the bottom of the connecting plate is provided with a limiting assembly to limit the position of the vertical mold.

[0012] Further, the vibration assembly comprises:

[0013] Discs are symmetrically connected to both ends of the shaft.

[0014] A baffle is slidingly inserted into the disc to impact the disc.

[0015] a reset assembly arranged inside the disc to drive the baffle plate to reset;

[0016] a driving assembly arranged at one side of the baffle plate to drive the baffle plate to move away from the shaft rod.

[0017] Further, the reset assembly comprises:

[0018] a pressing plate symmetrically arranged outside the baffle plate to drive the baffle plate to move;

[0019] a spring connecting one side of the pressing plate away from the vertical mold with the inner wall of the disc to drive the pressing plate to reset.

[0020] Further, the driving assembly comprises:

[0021] a round rod connected at one side of the baffle plate;

[0022] a support symmetrically connected outside the machine body;

[0023] a rotating shaft equidistantly and rotatably arranged at one side of the support close to the round rod;

[0024] a push plate fixedly sleeved outside the rotating shaft;

[0025] an arc surface arranged at the end of the push plate to extrude the round rod;

[0026] a stop rod connected to the support, the stop rod corresponding in number to the push plates and located below the corresponding push plates, the stop rod abutting against the corresponding push plate.

[0027] Further, the limiting assembly comprises:

[0028] a limiting plate connected to the bottom of the connecting plate;

[0029] a limiting rod connected between a pair of supports to block the limiting plate.

[0030] Further, one of the vertical molds is provided with a locking assembly to lock the vertical mold;

[0031] The locking assembly comprises:

[0032] a bottom plate slidably arranged outside the machine body;

[0033] a rope connecting the bottom plate with the vertical mold below to tension the vertical mold;

[0034] a rubber pad sleeved outside the bottom plate to buffer the bottom plate.

[0035] Further, the cleaning assembly further comprises a side plate and a torsion spring, the side plate is symmetrically fixedly connected to the outside of the body, and the torsion spring is symmetrically sleeved on the two sides of the shaft rod, and the two ends of the torsion spring are fixedly connected with the shaft rod and the side plate respectively to cooperate with the vibration assembly to generate vibration.

[0036] Further, when the surface of one of the vertical molds is placed with a stainless steel plate, the gravity of the stainless steel plate can overcome the torsion of the torsion spring to drive the other vertical mold to rotate to a horizontal state.

[0037] Further, the position of one of the push plates is below the central axis of the shaft rod to drive the impact plate to move.

[0038] The application further discloses a stainless steel plate finishing system comprising the stainless steel plate finishing machine.

[0039] The application has the following technical effects and advantages:

[0040] 1. After the stainless steel plate is taken out from the lower vertical mold, the lower vertical mold can automatically clean the residual debris in the inside, so that manual subsequent cleaning is not needed, time and labor are saved.

[0041] 2. The application can limit the lower vertical mold, so that even if the speed of taking the stainless steel plate is slow, the lower vertical mold cannot move, and the situation that the stainless steel plate is pushed by the vertical mold does not occur, and imbalance is avoided. BRIEF DESCRIPTION OF DRAWINGS

[0042] Figure 1 The structure of the stainless steel plate finishing machine is shown. Figure 1 ;

[0043] Figure 2 The structure of the stainless steel plate finishing machine is shown. Figure 1 ;

[0044] Figure 3 The structure of the stainless steel plate finishing machine is shown.

[0045] Figure 4 The structure of the stainless steel plate finishing machine is shown. Figure 3 ;

[0046] Figure 5 The structure of the stainless steel plate finishing machine is shown. Figure 2 ;

[0047] Figure 6 The structure of the stainless steel plate finishing machine is shown.

[0048] In the figure: 1, body; 2, lateral mold; 3, vertical mold; 4, side plate; 5, shaft; 6, connecting plate; 7, torsional spring; 8, disc; 9, impact plate; 10, pressing plate; 11, spring; 12, round rod; 13, support; 14, push plate; 15, camber; 16, blocking rod; 17, limiting plate; 18, limiting rod; 19, bottom plate; 20, rope; 21, rubber pad. DETAILED DESCRIPTION

[0049] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme of the present application will be described clearly and completely below in conjunction with the embodiments.

[0050] The present application provides a stainless steel plate finishing machine, as shown in the figure, comprising: a body 1, a lateral mold 2, a vertical mold 3, a cleaning assembly; Figures 1 to 5

[0051] The body 1 is used for finishing the stainless steel plate, the body 1 is a small R finishing extruder in the prior art, the lateral mold 2 is symmetrically arranged on the body 1 and is used for finishing the stainless steel plate in the lateral direction, the lateral mold 2 is a mold moving in the horizontal direction on the small R finishing extruder in the prior art, the vertical mold 3 is symmetrically arranged on the body 1 and is used for finishing the stainless steel plate in the vertical direction, the vertical mold 3 is a mold moving in the vertical direction on the small R finishing extruder in the prior art, and the cleaning assembly is used for cleaning the debris remaining in the inside of the lower vertical mold 3.

[0052] The cleaning assembly comprises: a side plate 4, a shaft 5, a connecting plate 6, a torsional spring 7, a vibration assembly, and a limiting assembly.

[0053] The side plate 4 is fixedly connected to the outside of the body 1 in a symmetrical manner, the shaft 5 is rotatably installed between a pair of side plates 4, the connecting plate 6 fixedly connects the shaft 5 and the lower vertical mold 3, the connecting plate 6 has an L-shaped cross section, the torsional spring 7 is symmetrically sleeved on both sides of the shaft 5, both ends of the torsional spring 7 are fixedly connected with the shaft 5 and the side plate 4, the vibration assembly is used for vibrating the lower vertical mold 3, and the limiting assembly is used for limiting the position of the lower vertical mold 3.

[0054] ​When in use, the stainless steel plate on the lower vertical mold 3 is extruded and finished by driving the upper vertical mold 3 to move downward through the body 1, after finishing, the stainless steel plate is taken away, the extrusion of the stainless steel plate is lost, the torsion spring 7 is reset with the shaft 5, the connecting plate 6 and the lower vertical mold 3 to rotate upward, in the process of rotating, the lower vertical mold 3 is vibrated by cooperating with the vibration assembly, the debris generated by extruding the stainless steel plate in the lower vertical mold 3 is cleaned out from the lower vertical mold 3, so that subsequent cleaning is not needed, time and labor are saved, finally, the lower vertical mold 3 stops moving and is in an inclined state, the limiting assembly can limit the vertical mold 3 to keep at a fixed inclination angle, when the lower vertical mold 3 stops moving and is in an inclined state, it will not block the lateral mold 2;

[0055] When subsequent processing is needed again, the stainless steel plate is placed between a pair of lateral molds 2, and is finished by the pair of lateral molds 2, then the finished stainless steel plate is placed on the lower vertical mold 3, at this time, the gravity of the stainless steel plate drives the lower vertical mold 3 to rotate downward with the connecting plate 6 and the shaft 5, at this time, the torsion spring 7 is twisted and deformed, finally, the lower vertical mold 3 is in a horizontal state and is in contact with the body 1, then the upper vertical mold 3 is controlled to move downward by the body 1 to finish the stainless steel plate;

[0056] The time required for the lower vertical mold 3 to rotate from the horizontal state to the inclined state is 6S.

[0057] As shown in Figures 2 to 5 The vibration assembly comprises a disc 8, a striker plate 9, a reset assembly and a driving assembly.

[0058] The disc 8 is symmetrically fixedly connected at both ends of the shaft 5, the striker plate 9 is slidingly inserted into the disc 8 and is used for impacting the disc 8, the reset assembly is arranged in the interior of the disc 8 and is used for driving the striker plate 9 to reset, and the driving assembly is used for driving the striker plate 9 to move away from the shaft 5.

[0059] When the lower vertical mold 3 rotates upward, the shaft 5 moves with the disc 8 and the striker plate 9, the driving assembly drives the striker plate 9 to move away from the shaft 5, then the driving is cancelled, the reset assembly drives the striker plate 9 to reset quickly, so that the striker plate 9 impacts the inner wall of the disc 8 to generate vibration, the vibration is transmitted to the shaft 5, the connecting plate 6 and the lower vertical mold 3, the driving assembly continuously drives the striker plate 9 to move and then cancels the driving, cooperating with the reset assembly can realize the striker plate 9 continuously impacting the disc 8 to continuously generate vibration and transmit the vibration to the lower vertical mold 3.

[0060] As shown in Figure 4As shown, the reset assembly comprises a pressing plate 10, a spring 11;

[0061] The pressing plate 10 is symmetrically fixedly installed outside the striker plate 9, the pressing plate 10 is slidingly arranged inside the disc 8, and the spring 11 connects one side of the pressing plate 10 away from the vertical mold 3 with the inner wall of the disc 8, and the spring 11 can drive the pressing plate 10 to reset.

[0062] The driving assembly drives the striker plate 9 to move away from the shaft 5, at this time, the striker plate 9 moves with the pressing plate 10, the pressing plate 10 extrudes the spring 11 to deform, and when the driving assembly cancels the driving of the striker plate 9, at this time, the spring 11 resets with the pressing plate 10 and the striker plate 9 to quickly reset, so that the striker plate 9 hits the inner wall of the disc 8 to vibrate.

[0063] As shown in the figure, Figures 2 to 4 The driving assembly comprises a round rod 12, a support 13, a rotating shaft, a toggle plate 14, an arc surface 15, and a stop rod 16.

[0064] The round rod 12 is fixedly connected to one side of the striker plate 9, the support 13 is symmetrically fixedly connected to the outside of the machine body 1, the rotating shaft is equidistantly and rotatably installed on one side of the support 13 close to the round rod 12, the toggle plate 14 is fixedly sleeved outside the rotating shaft, the arc surface 15 is arranged at the end of the toggle plate 14 and is used for extruding the round rod 12, and the stop rod 16 is fixedly connected to the support 13.

[0065] When the lower vertical mold 3 rotates upward, at this time, the shaft 5 moves with the disc 8, the striker plate 9, and the round rod 12, the round rod 12 is in contact with the arc surface 15, and due to the limitation of the stop rod 16, the toggle plate 14 cannot rotate downward at this time, so the toggle plate 14 remains in a stationary state.

[0066] When the lower vertical mold 3 rotates to the horizontal state and resets, at this time, the round rod 12 also moves with the movement of the vertical mold 3, the round rod 12 is in contact with the bottom of the toggle plate 14, the toggle plate 14 is driven to rotate upward, so that the toggle plate 14 can avoid the round rod 12, and after the round rod 12 leaves the toggle plate 14, the toggle plate 14 resets under the action of gravity.

[0067] As shown in the figure, Figure 3 The limiting assembly comprises a limiting plate 17 and a limiting rod 18.

[0068] The limiting plate 17 is fixedly connected to the bottom of the connecting plate 6, and the limiting rod 18 is fixedly connected between the pair of supports 13, for blocking the limiting plate 17.

[0069] When the lower vertical mold 3 and the connecting plate 6 rotate upward, the limiting plate 17 moves, and finally the limiting plate 17 is in contact with the limiting rod 18, thereby limiting the lower vertical mold 3 and keeping it at a fixed inclination angle.

[0070] As shown in Figure 1 , the lower vertical mold 3 is provided with a locking assembly for locking it;

[0071] The locking assembly comprises a bottom plate 19, a rope 20, and a rubber pad 21.

[0072] The bottom plate 19 is slidingly installed outside the machine body 1, the rope 20 is fixedly connected between the bottom plate 19 and the lower vertical mold 3, and the rubber pad 21 is sleeved outside the bottom plate 19. The rubber pad 21 can wrap and protect the outside of the bottom plate 19. If the staff accidentally kicks the bottom plate 19, the rubber pad 21 can protect the staff.

[0073] If the weight of the stainless steel plate is too heavy, when the stainless steel plate is separated from the lower vertical mold 3, the staff takes the stainless steel plate too slowly, causing the upward rotating vertical mold 3 to rotate to contact the stainless steel plate, which pushes the stainless steel plate and causes the staff to lose balance during the process of taking the stainless steel plate.

[0074] Therefore, when the staff stands on the bottom plate 19, the bottom plate 19 cooperates with the rope 20 to limit the lower vertical mold 3, so that the lower vertical mold 3 cannot move. Even if the speed of taking the stainless steel plate is slow, the lower vertical mold 3 cannot move, and the above-mentioned pushing of the stainless steel plate does not occur, avoiding imbalance. When the staff completely leaves the bottom plate 19, the limitation on the lower vertical mold 3 is cancelled, the torsional spring 7 drives the shaft rod 5, the connecting plate 6, and the lower vertical mold 3 to rotate upward, thereby cooperating with the rope 20 to drive the bottom plate 19 to rise. When the staff stands on the bottom plate 19, under the action of gravity, the bottom plate 19 drives the rope 20 and the lower vertical mold 3 to rotate downward, so that the lower vertical mold 3 is limited and cannot move.

[0075] The rotation angle of the lower vertical mold 3 is 0-45 degrees.

[0076] When the stainless steel plate is placed on the surface of the lower vertical mold 3, the gravity of the stainless steel plate can overcome the torsional force of the torsional spring 7 to drive the lower vertical mold 3 to rotate to a horizontal state.

[0077] As shown in Figure 2 , the position of the uppermost push plate 14 is below the central axis of the shaft rod 5.

[0078] A stainless steel plate finishing system comprises the stainless steel plate finishing machine as described above.

[0079] Working principle: in use, the upper vertical mold 3 is driven to descend by the machine body 1 to extrude and finish the stainless steel plate that has been finished by the lateral mold 2 and is located on the lower vertical mold 3, after finishing, the stainless steel plate is taken away, the extrusion of the stainless steel plate is lost, the torsional spring 7 that is twisted and deformed resets the shaft rod 5, the connecting plate 6 and the lower vertical mold 3 to rotate upwards, when the lower vertical mold 3 rotates upwards, the shaft rod 5 moves with the disc 8 and the baffle plate 9, the round rod 12 moves, the round rod 12 collides with the arc surface 15, at this time, the push plate 14 cannot rotate downwards due to the limitation of the stop rod 16, so the push plate 14 remains in a stationary state, with the movement of the round rod 12, the round rod 12 moves along the arc surface 15 to drive the baffle plate 9 to move away from the shaft rod 5, at this time, the baffle plate 9 moves with the pressing plate 10, the pressing plate 10 extrudes the spring 11 to deform, when the round rod 12 moves away from the push plate 14, the driving of the baffle plate 9 is cancelled, at this time, the spring 11 resets the pressing plate 10 and the baffle plate 9 to reset quickly, so that the baffle plate 9 hits the inner wall of the disc 8 to make it vibrate, the round rod 12 continuously collides with the arc surface 15 of the push plate 14 and then separates from the push plate 14, which can continuously drive the baffle plate 9 to move, and the spring 11 can realize the continuous vibration of the lower vertical mold 3, with the continuous tilting of the lower vertical mold 3, the debris generated by extruding the stainless steel plate in the lower vertical mold 3 is cleaned out of the lower vertical mold 3, so that subsequent cleaning by manual work is not needed, time and effort are saved, and finally the lower vertical mold 3 stops moving and is in a tilted state.

[0080] When subsequent processing is needed again, the stainless steel plate is first placed between a pair of lateral molds 2 for finishing, and then the finished stainless steel plate is placed on the lower vertical mold 3, at this time, the gravity of the stainless steel plate drives the lower vertical mold 3 to rotate downwards with the connecting plate 6 and the shaft rod 5, at this time, the torsional spring 7 is twisted and deformed, and finally the lower vertical mold 3 is in a horizontal state and is in contact with the machine body 1, then the upper vertical mold 3 is controlled to descend by the machine body 1 to finish the stainless steel plate in cooperation with the lower vertical mold 3, after finishing, when the lower vertical mold 3 rotates to the horizontal state, with the movement of the vertical mold 3, the round rod 12 also moves, the round rod 12 collides with the bottom of the push plate 14 to drive the push plate 14 to rotate upwards, so that the push plate 14 can avoid the round rod 12, after the round rod 12 moves away from the push plate 14, at this time, under the action of gravity, the push plate 14 resets.

[0081] If the weight of the stainless steel plate is too heavy, when the stainless steel plate is separated from the lower vertical mold 3, the worker is too slow to take away the stainless steel plate, causing the upward rotating vertical mold 3 to rotate to interfere with the stainless steel plate, so as to push the stainless steel plate, causing the worker to lose balance during the process of taking the stainless steel plate;

[0082] Therefore, when the worker stands on the bottom plate 19, at this time the bottom plate 19 cooperates with the rope 20 to limit the lower vertical mold 3, so that the lower vertical mold 3 cannot move, even if the speed of taking the stainless steel plate is slow, the lower vertical mold 3 cannot move, and the above-mentioned pushing of the stainless steel plate will not occur, avoiding the imbalance, when the worker completely leaves the bottom plate 19, at this time the restriction on the lower vertical mold 3 is cancelled, the torsional spring 7 brings the shaft rod 5, the connecting plate 6 and the lower vertical mold 3 to rotate upward, thereby cooperating with the rope 20 to bring the bottom plate 19 to rise, when the worker stands on the bottom plate 19, under the action of gravity, the bottom plate 19 drives the rope 20 and the lower vertical mold 3 to rotate downward, so as to limit the lower vertical mold 3 to make it unable to move.

[0083] The above embodiments are only used to illustrate the technical solutions of the present application, and not to limit it.

Claims

1. A stainless steel plate finishing machine, characterized in that, include: Machine body (1), used for finishing stainless steel plates; Side molds (2) are symmetrically arranged on the machine body (1) to perform lateral finishing on stainless steel plates; Vertical molds (3) are symmetrically arranged on the machine body (1) to perform vertical finishing on stainless steel plates; Cleaning components are provided on both sides of the vertical mold (3) to clean the debris remaining inside the vertical mold (3); The cleaning assembly includes a shaft (5) and a connecting plate (6). The end of the shaft (6) is provided with a vibration assembly to vibrate the vertical mold (3). The bottom of the connecting plate (6) is provided with a limit assembly to restrict the position of the vertical mold (3).

2. The stainless steel plate finishing machine according to claim 1, characterized in that: The vibration component includes: The disc (8) is symmetrically connected to both ends of the shaft (5); The impact plate (9) is slidably inserted into the disk (8) to impact the disk (8); A reset assembly is disposed inside the disk (8) to drive the impact plate (9) to reset; A drive assembly is provided on one side of the impact plate (9) to drive the impact plate (9) to move away from the shaft (5).

3. The stainless steel plate finishing machine according to claim 2, characterized in that: The reset component includes: Pressure plates (10) are symmetrically arranged outside the impact plate (9) to drive the impact plate (9) to move; A spring (11) connects the side of the pressure plate (10) away from the vertical mold (3) to the inner wall of the disc (8) to drive the pressure plate (10) to reset.

4. The stainless steel plate finishing machine according to claim 3, characterized in that: The driving component includes: A round rod (12) is connected to one side of the impact plate (9); The bracket (13) is symmetrically connected to the outside of the body (1); A rotating shaft is equidistantly mounted on the side of the bracket (13) near the round rod (12) for rotation. A toggle plate (14) is fixedly sleeved on the outside of the rotating shaft; An arc surface (15) is provided at the end of the actuating plate (14) to press the round rod (12); A stop bar (16) is connected to the bracket (13). The number of stop bars (16) corresponds to the number of toggle plates (14), and the stop bar (16) is located below the corresponding toggle plate (14). The stop bar (16) abuts against the corresponding toggle plate (14).

5. The stainless steel plate finishing machine according to claim 4, characterized in that: The limiting component includes: A limiting plate (17) is connected to the bottom of the connecting plate (6); A limiting rod (18) is connected between a pair of brackets (13) to block the limiting plate (17).

6. The stainless steel plate finishing machine according to claim 5, characterized in that: One of the vertical molds (3) is provided with a locking component to lock the vertical mold (3); The locking component includes: The base plate (19) is slidably mounted on the outside of the body (1); A rope (20) is used to connect the base plate (19) to the vertical mold (3) below to tighten the vertical mold (3); A rubber pad (21) is fitted over the outside of the base plate (19) to cushion the base plate (19).

7. The stainless steel plate finishing machine according to claim 6, characterized in that: The cleaning assembly also includes a side plate (4) and a torsion spring (7). The side plate (4) is symmetrically fixedly connected to the outside of the body (1). The torsion spring (7) is symmetrically sleeved on both sides of the shaft (5). The two ends of the torsion spring (7) are fixedly connected to the shaft (5) and the side plate (4) respectively to cooperate with the vibration assembly to generate vibration.

8. The stainless steel plate finishing machine according to claim 7, characterized in that: When a stainless steel plate is placed on the surface of one of the vertical molds (3), the weight of the stainless steel plate can overcome the torque of the torsion spring (7) and drive the other vertical mold (3) to rotate to a horizontal position.

9. The stainless steel plate finishing machine according to claim 8, characterized in that: One of the actuating plates (14) is positioned below the central axis of the shaft (5) to drive the impact plate (9) to move.

10. A stainless steel plate finishing system, characterized in that, Including the stainless steel plate finishing machine as described in claim 9 above.