Non-ferrous metal calendaring equipment

By designing non-ferrous metal rolling equipment with a support frame, rolling device, conveying device, dust removal device and impurity removal device, the problem of difficult removal of debris and dust on the surface of non-ferrous metals is solved, efficient dust and metal particle cleaning is achieved, and the rolling effect and equipment adaptability are improved.

CN120790673APending Publication Date: 2025-10-17JIANGSU SHENSHENG SPECIAL ALLOY CO LTD
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Patent Information

Application Number
CN202511141265.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-15
Publication Date
2025-10-17

AI Technical Summary

Technical Problem

In the existing non-ferrous metal rolling process, it is difficult to effectively remove debris and dust on the metal surface, resulting in damage to the rolling rollers and reduced performance.

Method used

A non-ferrous metal calendering processing equipment including a support frame, a calendering device, a conveying device, a dust removal device and an impurity removal device is designed. Dust and metal particles are removed by electric field dust removal and flexible brush cleaning to prevent scratches on the calendering rollers.

Benefits of technology

It effectively removes dust and metal particles on the surface of non-ferrous metals, improves the rolling effect, adapts to different thickness requirements, and enhances the reliability and efficiency of the equipment.

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Abstract

The invention discloses non-ferrous metal calendaring equipment, and relates to the technical field of calendaring equipment, the non-ferrous metal calendaring equipment comprises a support frame, a calendaring device, a conveying device, a dust removal device and an impurity removal device, the support frame is fixedly connected with the calendaring device, the support frame is fixedly connected with the conveying device, the conveying device is connected with the dust removal device, and the conveying device is connected with the impurity removal device; the supporting frame serves as a main installation foundation and is used for supporting and installing other devices, the conveying device serves as a main transportation tool, non-ferrous metal is conveyed to the dust removal device and the impurity removal device in sequence through the conveying device, dust attached to the surface of the non-ferrous metal is adsorbed through the dust removal device, and the dust on the surface of the non-ferrous metal is effectively removed; and then metal particles on the surface of the non-ferrous metal are removed through the impurity removing device, and the situation that when the non-ferrous metal is subjected to calendering, the metal particles are attached to the surface of the non-ferrous metal, the calendering device is scratched, and the calendering effect of the calendering device is affected is prevented.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of calendering equipment, and particularly relates to a non-ferrous metal calendering equipment. BACKGROUND

[0002] Non-ferrous metal calendering is to make the metal in a plastic state to deform by applying external force, so as to achieve the required shape and size. The process flow of non-ferrous metal calendering mainly includes raw material preparation, heating, calendering, cooling and subsequent processing, etc. The calendering of non-ferrous metal can be completed through the above-mentioned links.

[0003] When the non-ferrous metal is in the calendering link, it is necessary to ensure that the surface of the non-ferrous metal is free of impurities. If there are residual metal particles on the surface of the non-ferrous metal, the residual metal particles may scratch the calendering roller during calendering, thereby reducing the calendering effect. At the same time, it is also necessary to ensure that the surface of the non-ferrous metal is free of dust, otherwise the dust on the surface of the metal may adhere to the calendering roller during calendering, which is difficult to clean. If the dust accumulates on the calendering roller to a certain thickness over a long period of time, the calendering effect will be affected. SUMMARY

[0004] The present application aims to provide a non-ferrous metal calendering equipment to solve the problems in the prior art.

[0005] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a non-ferrous metal calendering equipment technical scheme, comprising a supporting frame, a calendering device, a conveying device, a dust removal device and a foreign matter removal device, the supporting frame and the calendering device are fixedly connected, the supporting frame and the conveying device are fixedly connected, the conveying device and the dust removal device are connected, the conveying device and the foreign matter removal device are connected, the dust removal device is located at the front end of the conveying direction of the conveying device, and the foreign matter removal device is located at the middle part of the conveying direction of the conveying device.

[0006] The supporting frame serves as the main installation base for supporting and installing other devices. The conveying device serves as the main transportation tool. The non-ferrous metal is sent to the dust removal device and the foreign matter removal device in sequence through the conveying device. The dust attached to the surface of the non-ferrous metal is adsorbed by the dust removal device, effectively removing the dust on the surface of the non-ferrous metal. Then, the metal particles on the surface of the non-ferrous metal are removed by the foreign matter removal device, preventing the metal particles from adhering to the surface of the non-ferrous metal during calendering, thereby scratching the calendering device and affecting the calendering effect of the calendering device.

[0007] Further, the calendering device comprises a calendering mounting frame, an adjusting cylinder, a first roller, a second roller, a connecting plate, a driving motor, a fixed block, a first gear and a second gear, the calendering mounting frame is fixedly connected with the supporting frame, the connecting plate is fixedly connected with the calendering mounting frame, the calendering mounting frame is fixedly connected with the adjusting cylinder, the calendering mounting frame is slidably connected with the fixed block, the output end of the adjusting cylinder is fixedly connected with the fixed block, the first roller is rotatably connected with the fixed block, the roller mounting hole is arranged on the connecting plate, the second roller is arranged in the roller mounting hole, the second roller is rotatably connected with the connecting plate, the end of the second roller close to the driving motor is fixedly connected with the second gear, the output end of the driving motor is fixedly connected with the first gear, and the first gear is engaged with the second gear.

[0008] The calendering mounting frame is used as a main mounting base for supporting and mounting other components, the second roller is fixedly mounted through the connecting plate, the second roller is provided with mounting conditions through the roller mounting hole, when the thickness of the non-ferrous metal after calendering needs to be adjusted, the fixed block is driven to move through the displacement of the output end of the adjusting cylinder, the first roller is driven to move through the movement of the fixed block, the distance between the first roller and the second roller is adjusted through the movement of the first roller, so that the thickness of the non-ferrous metal after calendering is adjusted, when the non-ferrous metal needs to be calendered, the first gear connected with the driving motor is driven to rotate through the output rotary torque of the driving motor, the second gear is driven to rotate through the engagement between the first gear and the second gear, the second roller is driven to rotate through the rotation of the second gear, and the calendering of the non-ferrous metal is realized through the rotation of the second roller and the pressing of the first roller.

[0009] Further, the conveying device comprises a conveying mounting plate, a conveying roller and a conveying motor, the conveying mounting plate is fixedly connected with the supporting frame, the conveying mounting plate is connected with the dust removal device, the conveying mounting plate is fixedly connected with the impurity removal device, the conveying mounting plate is rotatably connected with the conveying roller, and the conveying mounting plate is fixedly connected with the conveying motor.

[0010] The conveying mounting plate provides mounting positions for the conveying roller, the dust removal device and the impurity removal device, and the mounting position of the conveying roller is lifted to the same mounting height as the second roller through the conveying mounting plate, so that the non-ferrous metal can be conveniently conveyed to the calendering device.

[0011] Further, the conveying mounting plate is provided with a connecting hole and a motor mounting groove, the end of the conveying roller close to the conveying motor is rotatably connected with the connecting hole, the output end of the conveying motor penetrates through the connecting hole and is fixedly connected with the conveying roller, and the motor mounting groove is fixedly connected with the dust removal device.

[0012] The connecting hole provides a mounting position for the conveying motor, and the motor mounting slot provides a mounting position for the dust removal device.

[0013] Further, the dust removal device comprises a support plate, an electric field exciter and an electric field excitation plate, the support plate is tightly connected with the conveying mounting plate, the support plate is provided with an electric field mounting slot, the electric field exciter is arranged in the electric field mounting slot, the electric field exciter is tightly connected with the support plate, the electric field exciter is tightly connected with the support plate, the electric field exciter is tightly connected with the electric field excitation plate, and the electric field exciter is electrically connected with the electric field excitation plate.

[0014] The support plate serves as a main support base and is used for supporting and mounting other components, and the electric field mounting slot provides a mounting position for the electric field exciter.

[0015] Further, the dust removal device further comprises a moving frame, a threaded rod, a rotating motor, a rotating motor, a dust removal brush and a suction pump, the moving frame is slidingly connected with the support plate, the rotating motor is arranged in the motor mounting slot, the rotating motor is tightly connected with the motor mounting slot, the output end of the rotating motor is tightly connected with the threaded rod, the end of the threaded rod away from the rotating motor is rotationally connected with the conveying mounting plate, the threaded rod is threadedly connected with the moving frame, the rotating motor is tightly connected with the moving frame, the output end of the rotating motor is tightly connected with the dust removal brush, the suction pump is tightly connected with the conveying mounting plate, the moving frame is provided with an air channel and an air hole, the air channel is in communication with the air hole, and the input end of the suction pump is in pipeline communication with the air hole.

[0016] When the dust on the electric field excitation plate needs to be cleaned, the rotating motor outputs a rotating torque to drive the dust removal brush to rotate, the dust on the electric field excitation plate is swept off by the rotating dust removal brush, and at the same time, the suction pump is opened, the suction force of the suction pump is transmitted to the air channel through the air hole, so that the swept dust can be discharged through the air channel and will not fall on the non-ferrous metal again.

[0017] Further, the impurity removing device comprises an impurity removing mounting rack, a telescopic air cylinder, a steering motor, an impurity removing mounting plate, an impurity removing motor and an impurity removing brush, the impurity removing mounting rack and the conveying mounting plate are fixedly connected, the impurity removing mounting rack and the telescopic air cylinder are fixedly connected, the output end of the telescopic air cylinder and the steering motor are fixedly connected, the output end of the steering motor and the impurity removing mounting plate are fixedly connected, the impurity removing mounting plate and the impurity removing motor are fixedly connected, and the output end of the impurity removing motor and the impurity removing brush are fixedly connected.

[0018] The telescopic air cylinder is provided with a mounting base through the impurity removing mounting rack, when there are metal particles on the non-ferrous metal, the telescopic air cylinder outputs displacement to drive the steering motor to move downward, the steering motor moves downward to drive the impurity removing mounting plate to move, the impurity removing mounting plate moves to drive the impurity removing motor to move, the impurity removing motor moves to drive the impurity removing brush to move, until the impurity removing brush contacts the non-ferrous metal, then the telescopic air cylinder outputs displacement again to drive the impurity removing brush to move downward according to needs, so that the impurity removing brush diffuses to increase the cleaning area of the impurity removing brush, then the impurity removing motor outputs a rotating torque to drive the impurity removing brush to rotate, so that the impurity removing brush can sweep the metal particles on the non-ferrous metal, and meanwhile, the steering motor outputs a rotating torque to drive the impurity removing mounting plate to rotate by a certain angle, so that the metal particles can be cleaned outward along the impurity removing mounting plate when being cleaned by the impurity removing brush, and the cleaning efficiency of the metal particles is improved.

[0019] Further, the dust removing brush is made of insulating material, and the impurity removing brush is a flexible brush.

[0020] The dust removing brush is made of insulating material, so that the dust removing brush will not be affected by an electric field when working, and the impurity removing brush is a flexible brush, so that the impurity removing brush can diffuse a larger area when being pressed to clean the metal particles.

[0021] Compared with the prior art, the present application has the following beneficial effects:

[0022] 1. The adjusting air cylinder is arranged, and the thickness of the non-ferrous metal after being calendered can be controlled through the adjusting air cylinder, so that the needs of different customers can be met.

[0023] 2. The dust removing device is arranged, and dust on the surface of the non-ferrous metal can be adsorbed through the electric field effect of the dust removing device, so that the dust is prevented from being forced to fly into the air and then falling on the surface of the non-ferrous metal when the dust is cleaned by the brush.

[0024] 3. The impurity removing device is arranged, and the metal particles on the surface of the non-ferrous metal can be cleaned through the impurity removing device, so that the metal particles are prevented from damaging the roller during calendering. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 It is a general structural schematic view of the present application;

[0026] Figure 2 Support frame structure of the present application;

[0027] Figure 3 Calender structure of the present application;

[0028] Figure 4 Conveying device structure of the present application;

[0029] Figure 5 Dust removal device structure of the present application;

[0030] Figure 6 is Figure 5 Enlarged view of part A.

[0031] In the figure: 1, support frame; 2, calender; 21, calender mounting frame; 22, adjustment cylinder; 23, first roller; 24, second roller; 25, connecting plate; 251, roller mounting hole; 26, drive motor; 27, fixed block; 28, first gear; 29, second gear; 3, conveying device; 31, conveying mounting plate; 311, connecting hole; 312, motor mounting slot; 32, conveying roller; 33, conveying motor; 4, dust removal device; 41, support plate; 411, electric field mounting slot; 42, electric field exciter; 43, electric field excitation plate; 44, moving frame; 441, air channel; 442, air hole; 45, threaded rod; 46, rotating motor; 47, rotating motor; 48, dust removal brush; 49, air suction pump; 5, impurity removal device; 51, impurity removal mounting frame; 52, telescopic cylinder; 53, steering motor; 54, impurity removal mounting plate; 55, impurity removal motor; 56, impurity removal brush. DETAILED DESCRIPTION

[0032] All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without making creative efforts fall within the scope of protection of the present application.

[0033] Embodiment: As shown in Figures 1-6 The present application provides a non-ferrous metal calendering equipment technical solution, which comprises a support frame 1, a calender 2, a conveying device 3, a dust removal device 4, and an impurity removal device 5. The support frame 1 is tightly connected with the calender 2, the support frame 1 is tightly connected with the conveying device 3, the conveying device 3 is connected with the dust removal device 4, the conveying device 3 is connected with the impurity removal device 5, the dust removal device 4 is located at the front end of the conveying direction of the conveying device 3, and the impurity removal device 5 is located at the middle part of the conveying direction of the conveying device 3.

[0034] Support frame 1 is used as the main installation base for supporting and installing other devices, conveying device 3 is used as the main transport tool, non-ferrous metal is sent to dust removal device 4 and impurity removal device 5 in turn through conveying device 3, dust attached to the surface of non-ferrous metal is adsorbed through dust removal device 4, and the dust on the surface of non-ferrous metal is effectively removed, then metal particles on the surface of non-ferrous metal are removed through impurity removal device 5, so as to prevent the metal particles from being attached to the surface of non-ferrous metal and scratching the calendering device 2 when the non-ferrous metal is calendered, thereby affecting the calendering effect of the calendering device 2.

[0035] As shown in Figures 1-3 , the calendering device 2 comprises a calendering mounting frame 21, an adjusting cylinder 22, a first roller 23, a second roller 24, a connecting plate 25, a driving motor 26, a fixed block 27, a first gear 28 and a second gear 29, the calendering mounting frame 21 is tightly connected with the support frame 1, the connecting plate 25 is tightly connected with the calendering mounting frame 21, the calendering mounting frame 21 is tightly connected with the adjusting cylinder 22, the calendering mounting frame 21 is slidingly connected with the fixed block 27, the output end of the adjusting cylinder 22 is tightly connected with the fixed block 27, the first roller 23 is rotationally connected with the fixed block 27, the connecting plate 25 is provided with a roller mounting hole 251, the second roller 24 is arranged in the roller mounting hole 251, the second roller 24 is rotationally connected with the connecting plate 25, the second roller 24 is tightly connected with the second gear 29 at the end close to the driving motor 26, the output end of the driving motor 26 is tightly connected with the first gear 28, and the first gear 28 is engaged with the second gear 29.

[0036] The calendering mounting frame 21 is used as the main installation base for supporting and installing other components, the second roller 24 is installed and fixed through the connecting plate 25, and the second roller 24 is provided with installation conditions through the roller mounting hole 251, when the thickness of the non-ferrous metal after calendering needs to be adjusted, the fixed block 27 is driven to move through the output displacement of the adjusting cylinder 22, the first roller 23 is driven to move through the movement of the fixed block 27, the distance between the first roller 23 and the second roller 24 is adjusted through the movement of the first roller 23, thereby adjusting the thickness of the non-ferrous metal after calendering, when the non-ferrous metal needs to be calendered, the first gear 28 connected with the driving motor 26 is driven to rotate through the output rotary torque of the driving motor 26, the second gear 29 is driven to rotate through the engagement between the first gear 28 and the second gear 29, the second roller 24 is driven to rotate through the rotation of the second gear 29, and the calendering of the non-ferrous metal is realized through the rotation of the second roller 24 and the pressing of the first roller 23.

[0037] As shown in Figure 1 , Figure 2 and Figure 4As shown in the figure, the conveying device 3 comprises a conveying mounting plate 31, a conveying roller 32 and a conveying motor 33, the conveying mounting plate 31 is fixedly connected with the support frame 1, the conveying mounting plate 31 is connected with the dust removal device 4, the conveying mounting plate 31 is fixedly connected with the impurity removal device 5, the conveying mounting plate 31 is rotatably connected with the conveying roller 32, and the conveying mounting plate 31 is fixedly connected with the conveying motor 33.

[0038] The conveying mounting plate 31 provides mounting positions for the conveying roller 32, the dust removal device 4 and the impurity removal device 5, and the mounting positions of the conveying roller 32 are lifted to the same mounting height as the second roller 24 through the conveying mounting plate 31, so as to facilitate the colored metal to be conveyed to the calendering device 2 during the conveying process.

[0039] As shown in the figure, Figure 4 and Figure 5 the conveying mounting plate 31 is provided with a connecting hole 311 and a motor mounting groove 312, the conveying roller 32 is rotatably connected with the connecting hole 311 near one end of the conveying motor 33, the output end of the conveying motor 33 is fixedly connected with the conveying roller 32 through the connecting hole 311, and the motor mounting groove 312 is fixedly connected with the dust removal device 4.

[0040] The connecting hole 311 provides a mounting position for the conveying motor 33, and the motor mounting groove 312 provides a mounting position for the dust removal device 4, when the colored metal needs to be conveyed, the conveying motor 33 drives the conveying roller 32 to rotate through the output rotating torque, the conveying roller 32 rolls to drive the colored metal above the conveying roller 32 to move, so that the colored metal can move along the conveying direction.

[0041] As shown in the figure, Figure 1 , Figure 4 and Figure 5 the dust removal device 4 comprises a support plate 41, an electric field exciter 42 and an electric field excitation plate 43, the support plate 41 is fixedly connected with the conveying mounting plate 31, the support plate 41 is provided with an electric field mounting groove 411, the electric field exciter 42 is arranged in the electric field mounting groove 411, the electric field exciter 42 is fixedly connected with the support plate 41, the electric field exciter 42 is fixedly connected with the support plate 41, the electric field exciter 42 is fixedly connected with the electric field excitation plate 43, and the electric field exciter 42 is electrically connected with the electric field excitation plate 43.

[0042] The support plate 41 serves as a main support base for supporting and mounting other components. The electric field mounting groove 411 provides a mounting position for the electric field exciter 42. When non-ferrous metal is conveyed below the electric field excitation plate 43, the electric field excitation plate 43 is lifted by the electric field exciter 42 to increase the voltage on the electric field excitation plate 43. At the same time, the voltage on the non-ferrous metal is considered as a zero voltage surface. The voltage difference between the non-ferrous metal and the electric field excitation plate 43 forms an electric field. The electric field causes the charges in the dust on the non-ferrous metal plate to move, so that the charges on the dust on the non-ferrous metal plate are attracted to the electric field, thereby adsorbing the dust on the non-ferrous metal plate to the electric field excitation plate 43 through the electric field effect, achieving the effect of dust removal.

[0043] As shown in Figure 1 , Figure 4 , Figure 5 and Figure 6 , the dust removal device 4 further comprises a moving frame 44, a threaded rod 45, a rotating motor 46, a rotating motor 47, a dust removal brush 48 and a suction pump 49. The moving frame 44 is slidably connected to the support plate 41. The rotating motor 46 is disposed in the motor mounting groove 312 and is fixedly connected to the motor mounting groove 312. The output end of the rotating motor 46 is fixedly connected to the threaded rod 45. The threaded rod 45 is rotatably connected to the conveying mounting plate 31 at an end away from the rotating motor 46. The threaded rod 45 is threadedly connected to the moving frame 44. The rotating motor 47 is fixedly connected to the moving frame 44. The output end of the rotating motor 47 is fixedly connected to the dust removal brush 48. The suction pump 49 is fixedly connected to the conveying mounting plate 31. The moving frame 44 is provided with an air channel 441 and an air hole 442. The air channel 441 and the air hole 442 are in communication. The input end of the suction pump 49 is in pipeline communication with the air hole 442.

[0044] When the dust on the electric field excitation plate 43 needs to be cleaned, the rotating motor 47 outputs a rotating torque to drive the dust removal brush 48 to rotate. The dust on the electric field excitation plate 43 is swept off by the rotation of the dust removal brush 48. At the same time, the suction pump 49 is turned on. The suction force of the suction pump 49 is transmitted to the air channel 441 through the air hole 442, so that the swept dust can be discharged through the air channel 441 and will not fall onto the non-ferrous metal again. Then, the rotating motor 46 outputs a rotating torque to drive the threaded rod 45 to rotate. The rotation of the threaded rod 45 drives the moving frame 44 connected to the threaded rod 45 to move along the support plate 41. The movement of the moving frame 44 along the support plate 41 enables the dust removal brush 48 to perform dust removal work on the entire electric field excitation plate 43.

[0045] As shown in Figure 2 and Figure 5As shown, the impurity removal device 5 includes an impurity removal mounting frame 51, an extension cylinder 52, a steering motor 53, an impurity removal mounting plate 54, an impurity removal motor 55, and an impurity removal brush 56. The impurity removal mounting frame 51 is fixedly connected to the conveying mounting plate 31. The impurity removal mounting frame 51 is fixedly connected to the extension cylinder 52. The output end of the extension cylinder 52 is fixedly connected to the steering motor 53. The output end of the steering motor 53 is fixedly connected to the impurity removal mounting plate 54. The impurity removal mounting plate 54 is fixedly connected to the impurity removal motor 55. The output end of the impurity removal motor 55 is fixedly connected to the impurity removal brush 56.

[0046] The extension cylinder 52 is provided with a mounting base through the impurity removal mounting frame 51. When there are metal particles on the non-ferrous metal, the extension cylinder 52 outputs displacement to drive the steering motor 53 to move downward. The steering motor 53 moves downward to drive the impurity removal mounting plate 54 to move. The impurity removal mounting plate 54 moves to drive the impurity removal motor 55 to move. The impurity removal motor 55 moves to drive the impurity removal brush 56 to move. Until the impurity removal brush 56 is in contact with the non-ferrous metal, the extension cylinder 52 outputs displacement again to drive the impurity removal brush 56 to move downward according to the need. The impurity removal brush 56 spreads to increase the cleaning area of the impurity removal brush 56. Then, the impurity removal motor 55 outputs a rotating torque to drive the impurity removal brush 56 to rotate. The impurity removal brush 56 can sweep the metal particles on the non-ferrous metal. At the same time, the steering motor 53 outputs a rotating torque to drive the impurity removal mounting plate 54 to rotate by a certain angle. The metal particles can be cleaned outward along the impurity removal mounting plate 54 when being cleaned by the impurity removal brush 56. The cleaning efficiency of the metal particles is improved.

[0047] As shown in Figure 2 and Figure 6 The dust removal brush 48 is made of an insulating material. The impurity removal brush 56 is a flexible brush.

[0048] The dust removal brush 48 is made of an insulating material. The dust removal brush 48 will not be affected by an electric field when working. The impurity removal brush 56 is a flexible brush. The impurity removal brush 56 can spread a larger area when being pressed to clean the metal particles.

[0049] The working principle of the present application is as follows: the conveying motor 33 outputs a rotating torque to drive the conveying roller 32 to rotate, the conveying roller 32 rolls to drive the non-ferrous metal above the conveying roller 32 to move, so that the non-ferrous metal passes through the dust removal device 4 and the impurity removal device 5 in turn, when passing through the dust removal device 4, the voltage of the electric field excitation plate 43 is raised by the electric field exciter 42, so that the voltage on the electric field excitation plate 43 is raised, and the voltage on the non-ferrous metal is regarded as a zero voltage surface, an electric field is formed between the non-ferrous metal and the electric field excitation plate 43 due to the voltage difference, the electric field acts on the electric charges in the dust on the non-ferrous metal plate to make them move, so that the electric charges on the dust on the non-ferrous metal plate are attracted to the electric field, thereby the dust on the non-ferrous metal plate is adsorbed onto the electric field excitation plate 43 by the action of the electric field, when the dust on the electric field excitation plate 43 needs to be cleaned, the rotating motor 47 outputs a rotating torque to drive the dust removal brush 48 to rotate, the dust on the electric field excitation plate 43 is swept off by the rotation of the dust removal brush 48, at the same time, the suction pump 49 is opened, the suction force of the suction pump 49 is transmitted to the air duct 441 through the air hole 442, so that the swept-off dust can be discharged through the air duct 441 and will not fall onto the non-ferrous metal again, then the rotating motor 46 outputs a rotating torque to drive the threaded rod 45 to rotate, the threaded rod 45 drives the moving frame 44 connected thereto to move along the support plate 41, the movement of the moving frame 44 along the support plate 41 enables the dust removal brush 48 to perform dust removal work on the entire electric field excitation plate 43, when passing through the impurity removal device 5, the telescopic cylinder 52 outputs a displacement to drive the steering motor 53 to move downward, the downward movement of the steering motor 53 drives the impurity removal mounting plate 54 to move, the movement of the impurity removal mounting plate 54 drives the impurity removal motor 55 to move, the movement of the impurity removal motor 55 drives the impurity removal brush 56 to move, until the impurity removal brush 56 contacts the non-ferrous metal, then the telescopic cylinder 52 outputs a displacement again according to needs to drive the impurity removal brush 56 to move downward, so that the impurity removal brush 56 is expanded to increase the cleaning area, then the impurity removal motor 55 outputs a rotating torque to drive the impurity removal brush 56 to rotate, so that the impurity removal brush 56 can sweep off the metal particles on the non-ferrous metal, at the same time, the steering motor 53 outputs a rotating torque to drive the impurity removal mounting plate 54 to rotate by a certain angle, so that the metal particles can be cleaned outward along the impurity removal mounting plate 54 when being cleaned by the impurity removal brush 56, thereby improving the cleaning efficiency of the metal particles, after the impurity removal is completed, the driving motor 26 outputs a rotating torque to drive the first gear 28 connected thereto to rotate, the first gear 28 and the second gear 29 are engaged, so that the first gear 28 drives the second gear 29 to rotate, the rotation of the second gear 29 drives the second roller 24 to rotate, and the rotation of the second roller 24 and the pressing of the first roller 23 realize the calendering treatment of the non-ferrous metal.

[0050] Finally, it should be noted that the above only describes the preferred embodiments of the present application and is not intended to limit the present application. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art will appreciate that the technical solutions described in the foregoing embodiments can be modified or some technical features thereof can be replaced by equivalent ones. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A non-ferrous metal rolling processing equipment, characterized in that: The calendering processing equipment comprises a support frame (1), a calendering device (2), a conveying device (3), a dust removal device (4) and an impurity removal device (5); the support frame (1) and the calendering device (2) are tightly connected; the support frame (1) and the conveying device (3) are tightly connected; the conveying device (3) and the dust removal device (4) are connected; the conveying device (3) and the impurity removal device (5) are connected; the dust removal device (4) is located at the front end of the conveying direction of the conveying device (3); and the impurity removal device (5) is located in the middle of the conveying direction of the conveying device (3).

2. The non-ferrous metal rolling processing equipment according to claim 1, characterized in that: The calendering device (2) comprises a calendering mounting frame (21), an adjusting cylinder (22), a first roller (23), a second roller (24), a connecting plate (25), a driving motor (26), a fixing block (27), a first gear (28) and a second gear (29); the calendering mounting frame (21) is fastened to the support frame (1); the connecting plate (25) is fastened to the calendering mounting frame (21); the calendering mounting frame (21) is fastened to the adjusting cylinder (22); the calendering mounting frame (21) is slidably connected to the fixing block (27); the adjusting cylinder (2 2) The output end is tightly connected to the fixed block (27), the first roller (23) is rotatably connected to the fixed block (27), a roller mounting hole (251) is provided on the connecting plate (25), the second roller (24) is placed in the roller mounting hole (251), the second roller (24) is rotatably connected to the connecting plate (25), the second roller (24) is tightly connected to one end of the driving motor (26) and the second gear (29), the output end of the driving motor (26) is tightly connected to the first gear (28), and the first gear (28) and the second gear (29) are meshed.

3. The non-ferrous metal rolling processing equipment according to claim 2, characterized in that: The conveying device (3) comprises a conveying mounting plate (31), a conveying roller (32), and a conveying motor (33); the conveying mounting plate (31) is tightly connected to the support frame (1); the conveying mounting plate (31) is connected to the dust removal device (4); the conveying mounting plate (31) is tightly connected to the impurity removal device (5); the conveying mounting plate (31) is rotatably connected to the conveying roller (32); and the conveying mounting plate (31) is tightly connected to the conveying motor (33).

4. The non-ferrous metal rolling processing equipment according to claim 3, characterized in that: The conveying mounting plate (31) is provided with a connecting hole (311) and a motor mounting groove (312); the conveying roller (32) is rotatably connected to one end of the conveying motor (33) and the connecting hole (311); the output end of the conveying motor (33) passes through the connecting hole (311) and is firmly connected to the conveying roller (32); and the motor mounting groove (312) is firmly connected to the dust removal device (4).

5. The non-ferrous metal rolling processing equipment according to claim 4, characterized in that: The dust removal device (4) comprises a support plate (41), an electric field exciter (42) and an electric field excitation plate (43); the support plate (41) and the conveying mounting plate (31) are tightly connected; an electric field mounting groove (411) is provided on the support plate (41); the electric field exciter (42) is placed in the electric field mounting groove (411); the electric field exciter (42) and the support plate (41) are tightly connected; the electric field exciter (42) and the support plate (41) are tightly connected; the electric field exciter (42) and the electric field excitation plate (43) are tightly connected; and the electric field exciter (42) and the electric field excitation plate (43) are electrically connected.

6. The non-ferrous metal rolling processing equipment according to claim 5, characterized in that: The dust removal device (4) further comprises a movable frame (44), a threaded rod (45), a rotary motor (46), a rotating motor (47), a dust removal brush (48) and an air suction pump (49); the movable frame (44) and the support plate (41) are slidably connected; the rotary motor (46) is placed in the motor mounting groove (312); the rotary motor (46) and the motor mounting groove (312) are fastened together; the output end of the rotary motor (46) is fastened together with the threaded rod (45); the threaded rod (45) is away from one end of the rotary motor (46) and the rotary motor (47); The conveying mounting plate (31) is rotatably connected, the threaded rod (45) and the movable frame (44) are threadedly connected, the rotating motor (47) and the movable frame (44) are tightly connected, the output end of the rotating motor (47) and the dust removal brush (48) are tightly connected, the suction pump (49) and the conveying mounting plate (31) are tightly connected, an air duct (441) and an air hole (442) are provided on the movable frame (44), the air duct (441) and the air hole (442) are communicated, and the input end of the suction pump (49) and the air hole (442) are communicated through a pipeline.

7. The non-ferrous metal rolling processing equipment according to claim 6, characterized in that: The impurity removal device (5) comprises an impurity removal mounting frame (51), a telescopic cylinder (52), a steering motor (53), an impurity removal mounting plate (54), an impurity removal motor (55), and an impurity removal brush (56). The impurity removal mounting frame (51) is fastened to the conveying mounting plate (31), the impurity removal mounting frame (51) is fastened to the telescopic cylinder (52), the output end of the telescopic cylinder (52) is fastened to the steering motor (53), the output end of the steering motor (53) is fastened to the impurity removal mounting plate (54), the impurity removal mounting plate (54) is fastened to the impurity removal motor (55), and the output end of the impurity removal motor (55) is fastened to the impurity removal brush (56).

8. The non-ferrous metal rolling processing equipment according to claim 7, characterized in that: The dust removal brush (48) is made of insulating material, and the debris removal brush (56) is a flexible brush.