An aluminum shell trimming device for the production and processing of aluminum shell resistors

By using a single grinding wheel, sliding base and vacuum cover in the aluminum shell resistor production and processing device, the problem that existing devices cannot trim and adapt to different aluminum shell materials at the same time is solved, and efficient and flexible processing and cleaning of aluminum shell materials is achieved.

CN119230228BActive Publication Date: 2025-07-25JINDUN ELECTRONICS CO LTD OF BENGBU CITY
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Patent Information

Application Number
CN202411503315.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-07-25
Estimated Expiration
2044-10-25

AI Technical Summary

Technical Problem

The existing aluminum shell resistor production and processing equipment cannot complete the trimming and grinding operation of two sets of aluminum shell materials at the same time, cannot flexibly adapt to aluminum shell materials of different sizes and shapes, and cannot vacuum and clean at the same time.

Method used

It adopts a single grinding wheel design, combined with sliding base, telescopic plate and vacuum cover structure, realizes bidirectional trimming, adaptive adjustment and vacuuming functions, and achieves flexible fixing and efficient grinding of a variety of aluminum shell materials through motor drive and elastic structure.

Benefits of technology

The trimming processing of two sets of aluminum shell materials is achieved at the same time, adapting to aluminum shell materials of different sizes and shapes, improving work efficiency and application scope, and effectively avoiding dust during the processing process.

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Abstract

The present invention discloses an aluminum shell trimming device for the production and processing of aluminum shell resistors, including a fixed bottom plate and a partition plate. The partition plate is fixedly installed at the middle position of the upper outer surface of the fixed bottom plate. A grinding wheel is movably installed at the middle position inside the partition plate. Telescopic plates are movably sleeved on both sides of the fixed bottom plate, and movable clamping strips are movably installed on the upper parts of the telescopic plates. Feeding devices are arranged on both sides of the upper outer surface of the fixed bottom plate where the grinding wheel is located, and the two groups of feeding devices are arranged in a staggered manner. A feeding device is fixedly installed above the grinding wheel on the upper outer surface of the partition plate, and the overall feeding device is in a T-shaped structure. A sliding base is arranged below the grinding wheel, and a fixed base is fixedly installed at the lower end of the fixed bottom plate, and the sliding base is movably installed inside the fixed base. It has a double-sided trimming structure, which can simultaneously complete the trimming processing of two groups of aluminum shell materials and improve its working efficiency.
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Description

Technical Field

[0001] The present invention belongs to the technical field related to the processing of aluminum shells, and more specifically, it is a trimming device for aluminum shells used in the production and processing of aluminum shell resistors. Background Art

[0002] The trimming device for aluminum shells used in the production and processing of aluminum shell resistors is a device used in the production and processing of aluminum shell resistors. Before the aluminum shell is bent and shaped, it is used to grind and trim the aluminum plate material. It can remove the burrs on the side of the material, making the side of the processed aluminum shell resistor smooth and improving the processing quality of the aluminum shell resistor.

[0003] The patent document recorded in the publication number CN220462473U discloses a trimming device for processing aluminum shells. It includes a placement box. The inner bottom end of the placement box is fixedly connected with an adjustment plate. One end of the bidirectional threaded rod extends to the outside of the placement box and is fixedly connected with a knob. The other end of the bidirectional threaded rod is rotatably connected to the inner side wall of the adjustment plate, which solves the problem that when the existing trimming device trims the aluminum shell, it needs to clamp and fix it first, but the existing trimming device cannot adjust the clamping mechanism according to the thickness of the aluminum shell. If the clamping mechanism is not adjusted, when trimming a relatively flat aluminum shell, the aluminum shell may shift or fall during the trimming process.

[0004] The above-mentioned equipment has certain deficiencies when performing the trimming and processing operations of aluminum shells. The above-mentioned equipment cannot simultaneously complete the trimming and grinding operations of two groups of aluminum shell materials, reducing its working efficiency. It cannot use a single grinding structure to simultaneously complete the processing of two groups of aluminum shell materials, with a single function. Secondly, the above-mentioned equipment does not have a dual fixed adjustment structure. When performing the grinding operations on two groups of aluminum shell materials, it cannot flexibly adapt to two groups of aluminum shell materials with different sizes, with a single function. Secondly, the above-mentioned equipment can only perform the grinding and trimming processing of aluminum shell materials with a conventional structure. When the side of the aluminum shell material is inclined, it cannot adaptively adjust according to the side structure of the aluminum shell material, reducing its scope of application, and it cannot simultaneously complete the dust suction and cleaning of two groups of aluminum shell materials. Summary of the Invention

[0005] The purpose of the present invention is to provide a trimming device for aluminum shells used in the production and processing of aluminum shell resistors, which can solve the existing problems.

[0006] The problems solved by the present invention are:

[0007] 1. The above-mentioned equipment cannot simultaneously complete the trimming and grinding operations of two groups of aluminum shell materials, reducing its working efficiency. It cannot use a single grinding structure to simultaneously complete the processing of two groups of aluminum shell materials, with a single function.

[0008] 2. Secondly, the above-mentioned equipment does not have a double-fixed adjustment structure. When grinding two groups of aluminum shell materials, it cannot be flexibly applied to two groups of aluminum shell materials with different sizes, and its functionality is single.

[0009] 3. Secondly, the above-mentioned equipment can only perform grinding and trimming processing on aluminum shell materials with a conventional structure. When the side of the aluminum shell material is inclined, it cannot be adaptively adjusted according to the side structure of the aluminum shell material, reducing its scope of application, and it cannot simultaneously complete the dust suction and cleaning of two groups of aluminum shell materials.

[0010] The purpose of the present invention can be achieved by the following technical solutions:

[0011] An aluminum shell trimming device for the production and processing of aluminum shell resistors, including a fixed bottom plate and a partition plate. The partition plate is fixedly installed in the middle position of the upper outer surface of the fixed bottom plate. A grinding wheel is movably installed in the middle position of the inner side of the partition plate. Telescopic plates are movably sleeved on both sides of the fixed bottom plate, and movable clamping strips are movably installed on the upper parts of the telescopic plates. Feeding devices are arranged on both sides of the upper outer surface of the fixed bottom plate at both sides of the grinding wheel. The two feeding devices are arranged in a staggered manner. A sliding base is arranged below the grinding wheel, and a fixed base is fixedly installed at the lower end of the fixed bottom plate. The sliding base is movably installed inside the fixed base.

[0012] As a further technical solution of the present invention, the diameter of the grinding wheel is greater than the width of the partition plate. A number of feeding caster wheels are movably installed on one side of the movable clamping strip and both sides of the partition plate. With the setting of a single grinding wheel, because the diameter of the grinding wheel is greater than the width of the partition plate, the grinding wheel extends beyond both sides of the partition plate. When the first aluminum plate and the second aluminum plate move towards each other on both sides of the partition plate respectively, the rotation of the single grinding wheel can be used to respectively grind and trim the sides of the first aluminum plate and the second aluminum plate. Because the grinding wheel generates a reaction force on the first aluminum plate and the second aluminum plate moving towards each other at the same time when rotating, the grinding operations of the two groups of aluminum plates can be completed.

[0013] As a further technical solution of the present invention, limiting guide rods are movably sleeved on both sides of the sliding base. One end of the sliding base is driven by a transverse push rod. An elastic clamping seat is arranged between the sliding base and the transverse push rod. The transverse push rod is an electric push rod. When the side of the first aluminum plate or the second aluminum plate is inclined, the transverse push rod can be used to drive the sliding base to translate in cooperation with the limiting guide rods, so as to adjust the position of the grinding wheel on the sliding base. The grinding wheel is driven by a motor, and the elastic clamping seat is composed of a spring and a bottom plate, so that an elastic structure is formed between the sliding base and the transverse push rod. When the transverse push rod drives the grinding wheel to move, the grinding wheel can be made to closely adhere to the side of the first aluminum plate or the second aluminum plate, improving its grinding effect.

[0014] As a further technical solution of the present invention, the lower surface of the telescopic plate is driven by a driving roller. One end of the telescopic plate is in an L-shaped structure. The telescopic plate and the movable clamping strip are driven by an electric push rod. Through the setting of the telescopic plate, different widths of the first aluminum plate and the second aluminum plate can be processed on the upper part of the fixed bottom plate. By driving the telescopic plate with the driving roller, the telescopic plate can extend outwards. When the widths of the first aluminum plate and the second aluminum plate are greater than the fixed bottom plate, the extended telescopic plate can use the movable clamping strip to limit and fix its side. When the widths of the first aluminum plate and the second aluminum plate are less than the fixed bottom plate, the telescopic plate is in a reset state, and the electric push rod is used to directly drive the movable clamping strip, so that the movable clamping strip is clamped on the sides of the first aluminum plate and the second aluminum plate.

[0015] As a further technical solution of the present invention, a dust suction groove is provided at the middle position of the dust suction hood. Feeding grooves are provided on both sides of the dust suction groove inside the dust suction hood. The T-shaped dust suction hood can simultaneously meet the dust suction and cleaning on both sides of the grinding wheel. When the dust suction groove generates suction, the feeding grooves on both sides of it suck in dust, avoiding dust flying during the processing of the first aluminum plate and the second aluminum plate.

[0016] As a further technical solution of the present invention, a dust suction machine is provided at the bottom of the dust suction hood. The dust suction hood and the dust suction machine are connected through a dust suction pipe in a through manner. Inclined baffle plates are provided at both ends of the dust suction hood. The two groups of inclined baffle plates are arranged in a staggered manner. When the grinding wheel grinds the first aluminum plate and the second aluminum plate, the inclined baffle plates arranged obliquely can block the flying metal chips, so that the metal chips are introduced into the dust suction hood, improving the use effect of the dust suction hood.

[0017] As a further technical solution of the present invention, the feeder includes a lifting clamping plate and a fixed clamping plate. The lifting clamping plate is movably installed above the fixed clamping plate, and the lifting clamping plate and the fixed clamping plate are movably connected through a lifting guide block. By adjusting the vertical position of the lifting clamping plate, the distance between the lifting clamping plate and the fixed clamping plate is adjusted, so that the first aluminum plate and the second aluminum plate with different thicknesses can pass through between the lifting clamping plate and the fixed clamping plate.

[0018] As a further technical solution of the present invention, the upper end of the lifting clamping plate is driven by a vertical push rod. An upper rolling rod is movably installed on the lower surface of the lifting clamping plate, and a lower rolling rod is movably installed on the upper surface of the fixed clamping plate. The upper rolling rod is driven to rotate by a motor. When the surface of the first aluminum plate or the second aluminum plate contacts the lower rolling rod and the upper rolling rod, the rotation of the upper rolling rod can drive the first aluminum plate or the second aluminum plate to move.

[0019] As a further technical solution of the present invention, a material collecting box is fixedly installed on one side of the fixed base, and a chute for cooperating with the grinding wheel is provided at the upper end of the fixed base. The material collecting box can be used to store the processed first aluminum plate or the second aluminum plate. The first aluminum plate or the second aluminum plate is made into an aluminum shell after cutting and bending.

[0020] As a further technical solution of the present invention, a telescopic groove for cooperating with the telescopic plate is provided inside the fixed bottom plate, and moving footrests are provided on both sides of the fixed base.

[0021] Advantages of the present invention:

[0022] 1. By providing a feeder and a partition plate, when the aluminum shell trimming device for the production and processing of aluminum shell resistors is used, it has a two-way trimming structure, and the trimming processing of two groups of aluminum shell materials can be completed simultaneously, improving its working efficiency.

[0023] During operation, the device adopts a single grinding wheel, and the grinding wheel is arranged in the middle of the partition plate, making it at the same distance from the grinding wheel during the feeding process. Since the diameter of the grinding wheel is larger than the width of the partition plate, part of the structure of the grinding wheel extends beyond both sides of the partition plate. When the first aluminum plate and the second aluminum plate move towards each other on both sides of the partition plate as shown in Figure 7 As shown, the rotation of a single grinding wheel can be used to grind and trim the sides of the first aluminum plate and the second aluminum plate respectively. Because the grinding wheel generates a reaction force on the first aluminum plate and the second aluminum plate moving towards each other during rotation, the grinding operations of the two groups of aluminum plates can be completed. When transporting the first aluminum plate and the second aluminum plate, the two groups of feeders can be used to complete the opposite movement of the first aluminum plate and the second aluminum plate. The vertical push rod is used to drive the lifting clamping plate, and by adjusting the vertical position of the lifting clamping plate, the distance between the lifting clamping plate and the fixed clamping plate is adjusted, so that the first aluminum plate and the second aluminum plate with different thicknesses can pass through between the lifting clamping plate and the fixed clamping plate. The motor is used to drive the upper roller to rotate. When the surface of the first aluminum plate or the second aluminum plate contacts the lower roller and the upper roller, the rotation of the upper roller can drive the first aluminum plate or the second aluminum plate to move, so that the first aluminum plate or the second aluminum plate contacts the grinding wheel during movement, completing the trimming processing of the two groups of aluminum shell materials.

[0024] 2. By providing a telescopic plate and a moving strip, when the aluminum shell trimming device for the production and processing of aluminum shell resistors is used, it can be flexibly applicable to two groups of aluminum shell materials with different sizes, improving its flexibility during use.

[0025] During use, through the setting of the telescopic plate, the upper part of the fixed base plate can process the first aluminum plate and the second aluminum plate with different widths. The driving roller is driven by a motor, and the telescopic plate is driven by the driving roller to extend outward. When the widths of the first aluminum plate and the second aluminum plate are greater than the fixed base plate, the extended telescopic plate can extend the overall width of the fixed base plate, and the moving clamping strip is used to limit and fix its side. When the widths of the first aluminum plate and the second aluminum plate are less than the fixed base plate, the telescopic plate is in a reset state, and the electric push rod is used to directly drive the moving clamping strip to make the moving clamping strip clamp tightly on the sides of the first aluminum plate and the second aluminum plate, thereby completing the limiting operation of the two groups of first aluminum plates and second aluminum plates with different widths.

[0026] 3. By setting the sliding base, when the aluminum shell trimming device for the production and processing of aluminum shell resistors is in use, it has an adaptive adjustment structure, can be adaptively adjusted according to the side structure of the aluminum shell material, and improves its scope of application;

[0027] During operation, the transverse push rod is an electric push rod. When the side of the first aluminum plate or the second aluminum plate is inclined, the transverse push rod can be used to drive the sliding base to translate in cooperation with the limit guide rod, thereby adjusting the position of the grinding wheel on the sliding base. The grinding wheel is driven by a motor, and the elastic clamping seat is composed of a spring and a base plate, so that an elastic structure is formed between the sliding base and the transverse push rod. When the transverse push rod drives the grinding wheel to move, the grinding wheel can be made to closely adhere to the side of the first aluminum plate or the second aluminum plate, improving its grinding effect. When trimming and processing irregular aluminum plates, it cannot be applied to the simultaneous processing of the first aluminum plate or the second aluminum plate, and only one group of aluminum plates can be processed at a time. Secondly, the T-shaped suction hood can simultaneously meet the dust suction and cleaning on both sides of the grinding wheel. When the suction groove generates suction, the feeding grooves on both sides of it suck in dust, avoiding the phenomenon of dust flying during the processing of the first aluminum plate and the second aluminum plate. Brief Description of the Drawings

[0028] The present invention will be further described below with reference to the accompanying drawings.

[0029] Figure 1 is the overall structural schematic diagram of an aluminum shell trimming device for the production and processing of aluminum shell resistors according to the present invention;

[0030] Figure 2 is the overall structural diagram of the grinding wheel in an aluminum shell trimming device for the production and processing of aluminum shell resistors according to the present invention;

[0031] Figure 3 is the overall structural diagram of the telescopic plate in an aluminum shell trimming device for the production and processing of aluminum shell resistors according to the present invention;

[0032] Figure 4 is the overall structural diagram of the suction hood in an aluminum shell trimming device for the production and processing of aluminum shell resistors according to the present invention;

[0033] Figure 5 It is the overall structure diagram of the feeder in the aluminum shell trimming device for the production and processing of aluminum shell resistors of the present invention;

[0034] Figure 6 It is the overall structure diagram of the aluminum shell in the aluminum shell trimming device for the production and processing of aluminum shell resistors of the present invention;

[0035] Figure 7 It is the processing schematic diagram of the first aluminum plate and the second aluminum plate in the aluminum shell trimming device for the production and processing of aluminum shell resistors of the present invention.

[0036] In the figure: 1, fixed base; 2, material receiving box; 3, fixed bottom plate; 4, telescopic plate; 5, feeding clamping wheel; 6, moving clamping strip; 7, feeder; 8, grinding wheel; 9, dust suction hood; 10, partition plate; 11, sliding base; 12, elastic clamping seat; 13, horizontal push rod; 14, limiting guide rod; 15, driving roller; 16, electric push rod; 17, dust suction groove; 18, feeding groove; 19, inclined baffle; 20, dust suction pipe; 21, dust suction machine; 22, lifting clamping plate; 23, fixed clamping plate; 24, lifting guide block; 25, vertical push rod; 26, lower rolling rod; 27, upper rolling rod; 28, aluminum shell; 29, first aluminum plate; 30, second aluminum plate. Specific embodiments

[0037] To further elaborate on the technical means and effects adopted by the present invention to achieve the predetermined invention purpose, the following combines the drawings and preferred embodiments to detail the specific embodiments, structures, features and their effects of the present invention as follows.

[0038] As Figure 1 shown, an aluminum shell trimming device for the production and processing of aluminum shell resistors includes a fixed bottom plate 3 and a partition plate 10. The partition plate 10 is fixedly installed in the middle position of the upper outer surface of the fixed bottom plate 3. A grinding wheel 8 is movably installed in the middle position inside the partition plate 10. Telescopic plates 4 are movably sleeved on both sides of the fixed bottom plate 3, and a moving clamping strip 6 is movably installed on the upper part of the telescopic plate 4; Feeders 7 are arranged on both sides of the upper outer surface of the fixed bottom plate 3 on both sides of the grinding wheel 8. The two groups of feeders 7 are arranged in a staggered manner. A sliding base 11 is arranged below the grinding wheel 8, and a fixed base 1 is fixedly installed at the lower end of the fixed bottom plate 3. The sliding base 11 is movably installed inside the fixed base 1.

[0039] To solve the synchronous trimming processing of two groups of aluminum shell materials, as Figure 1As shown, the diameter of the grinding wheel 8 is greater than the width of the partition plate 10. A number of feeding card wheels 5 are movably installed on one side of the movable clamping strip 6 and both sides of the partition plate 10. With the setting of a single grinding wheel 8, since the diameter of the grinding wheel 8 is greater than the width of the partition plate 10, the grinding wheel 8 extends beyond both sides of the partition plate 10. When the first aluminum plate 29 and the second aluminum plate 30 move towards each other on both sides of the partition plate 10 respectively, the rotation of the single grinding wheel 8 can be used to grind and trim the sides of the first aluminum plate 29 and the second aluminum plate 30 respectively. Because the grinding wheel 8 generates a reaction force on the first aluminum plate 29 and the second aluminum plate 30 moving towards each other while rotating, the grinding operation of two groups of aluminum plates can be completed.

[0040] To solve the trimming process of irregular aluminum shell materials, such as Figure 2 As shown, limiting guide rods 14 are movably sleeved on both sides of the sliding base 11. One end of the sliding base 11 is driven by a transverse push rod 13. An elastic clamping seat 12 is arranged between the sliding base 11 and the transverse push rod 13. The transverse push rod 13 is an electric push rod. When the side of the first aluminum plate 29 or the second aluminum plate 30 is inclined, the transverse push rod 13 can be used to drive the sliding base 11 to translate in cooperation with the limiting guide rods 14, so as to adjust the position of the grinding wheel 8 on the sliding base 11. The grinding wheel 8 is driven by a motor, and the elastic clamping seat 12 is composed of a spring and a bottom plate, so that an elastic structure is formed between the sliding base 11 and the transverse push rod 13. When the transverse push rod 13 drives the grinding wheel 8 to move, the grinding wheel 8 can be made to closely adhere to the side of the first aluminum plate 29 or the second aluminum plate 30, improving its grinding effect.

[0041] To solve the trimming process of aluminum shell materials of different specifications, such as Figure 3 As shown, the lower surface of the telescopic plate 4 is driven by a driving roller 15. One end of the telescopic plate 4 is in an L-shaped structure. The telescopic plate 4 and the movable clamping strip 6 are driven by an electric push rod 16. Through the setting of the telescopic plate 4, the upper part of the fixed bottom plate 3 can process the first aluminum plate 29 and the second aluminum plate 30 with different widths. By driving the telescopic plate 4 with the driving roller 15, the telescopic plate 4 extends outwards. When the widths of the first aluminum plate 29 and the second aluminum plate 30 are greater than the fixed bottom plate 3, the extended telescopic plate 4 can use the movable clamping strip 6 to limit and fix their sides. When the widths of the first aluminum plate 29 and the second aluminum plate 30 are less than the fixed bottom plate 3, the telescopic plate 4 is in a reset state, and the electric push rod 16 is used to directly drive the movable clamping strip 6, so that the movable clamping strip 6 clamps the sides of the first aluminum plate 29 and the second aluminum plate 30.

[0042] Such as Figure 4As shown, a dust suction groove 17 is provided at the middle position of the dust suction hood 9. Feeding grooves 18 are provided on both sides of the dust suction groove 17 inside the dust suction hood 9. The T-shaped dust suction hood 9 can simultaneously meet the dust suction and cleaning on both sides of the grinding wheel 8. When the dust suction groove 17 generates suction, the feeding grooves 18 on both sides thereof suck in dust, avoiding dust flying during the processing of the first aluminum plate 29 and the second aluminum plate 30.

[0043] As Figure 4 shown, a dust suction machine 21 is provided at the bottom of the dust suction hood 9. The dust suction hood 9 and the dust suction machine 21 are connected through a through connection by a dust suction pipe 20. Inclined baffle plates 19 are provided at both ends of the dust suction hood 9. The two groups of inclined baffle plates 19 are arranged in a staggered manner. When the grinding wheel 8 grinds the first aluminum plate 29 and the second aluminum plate 30, the inclined baffle plates 19 arranged obliquely can block the splashing metal chips, so that the metal chips are guided into the dust suction hood 9, improving the use effect of the dust suction hood 9.

[0044] To solve the synchronous trimming processing of two groups of aluminum shell materials, as Figure 5 shown, the feeder 7 includes a lifting clamping plate 22 and a fixed clamping plate 23. The lifting clamping plate 22 is movably installed above the fixed clamping plate 23, and the lifting clamping plate 22 and the fixed clamping plate 23 are movably connected through a lifting guide block 24. By adjusting the vertical position of the lifting clamping plate 22, the distance between the lifting clamping plate 22 and the fixed clamping plate 23 is adjusted, so that the first aluminum plate 29 and the second aluminum plate 30 with different thicknesses can pass through between the lifting clamping plate 22 and the fixed clamping plate 23.

[0045] As Figure 5 shown, the upper end of the lifting clamping plate 22 is driven by a vertical push rod 25. An upper roller 27 is movably installed on the lower surface of the lifting clamping plate 22, and a lower roller 26 is movably installed on the upper surface of the fixed clamping plate 23. The upper roller 27 is driven to rotate by a motor. When the surface of the first aluminum plate 29 or the second aluminum plate 30 contacts the lower roller 26 and the upper roller 27, the rotation of the upper roller 27 can drive the first aluminum plate 29 or the second aluminum plate 30 to move.

[0046] A receiving box 2 is fixedly installed on one side of the fixed base 1. A sliding groove for cooperating with the grinding wheel 8 is provided at the upper end of the fixed base 1. The receiving box 2 can be used to store the processed first aluminum plate 29 or the second aluminum plate 30. The first aluminum plate 29 or the second aluminum plate 30 is made into an aluminum shell 28 after being cut and bent, as Figure 6 shown.

[0047] A telescopic groove for cooperating with the telescopic plate 4 is provided inside the fixed bottom plate 3. Moving footrests are provided on both sides of the fixed base 1.

[0048] During use, by setting the feeder 7 and the partition plate 10, when the aluminum shell trimming device for the production and processing of aluminum shell resistors is in use, it has a two-way trimming structure, which can simultaneously complete the trimming processing of two groups of aluminum shell materials, improving its working efficiency;

[0049] During operation, the device is provided with a single grinding wheel 8, and at the same time, the grinding wheel 8 is arranged in the middle of the partition plate 10, so that it is at the same distance from the grinding wheel 8 during the feeding process. Since the diameter of the grinding wheel 8 is larger than the width of the partition plate 10, part of the structure of the grinding wheel 8 extends beyond both sides of the partition plate 10. When the first aluminum plate 29 and the second aluminum plate 30 move towards each other on both sides of the partition plate 10 as shown in Figure 7 shown in the figure, the rotation of a single grinding wheel 8 can be used to grind and trim the sides of the first aluminum plate 29 and the second aluminum plate 30 respectively. Because the grinding wheel 8 generates a reaction force on the first aluminum plate 29 and the second aluminum plate 30 moving towards each other during rotation, the grinding operation of two groups of aluminum plates can be completed. When transporting the first aluminum plate 29 and the second aluminum plate 30, the two feeders 7 can be used to complete the opposite movement of the first aluminum plate 29 and the second aluminum plate 30. The vertical push rod 25 is used to drive the lifting clamping plate 22. By adjusting the vertical position of the lifting clamping plate 22, the distance between the lifting clamping plate 22 and the fixed clamping plate 23 is adjusted, so that aluminum plates 29 and 30 of different thicknesses can pass through between the lifting clamping plate 22 and the fixed clamping plate 23. The upper roller 27 is rotated by a motor. When the surface of the first aluminum plate 29 or the second aluminum plate 30 contacts the lower roller 26 and the upper roller 27, the rotation of the upper roller 27 can drive the first aluminum plate 29 or the second aluminum plate 30 to move, so that the first aluminum plate 29 or the second aluminum plate 30 contacts the grinding wheel 8 during movement, completing the trimming processing of two groups of aluminum shell materials;

[0050] By setting the telescopic plate 4 and the movable clamping strip 6, when the aluminum shell trimming device for the production and processing of aluminum shell resistors is in use, it can be flexibly applied to two groups of aluminum shell materials of different sizes, improving its flexibility during use;

[0051] During use, through the setting of the telescopic plate 4, the upper part of the fixed bottom plate 3 can process the first aluminum plate 29 and the second aluminum plate 30 of different widths. The driving roller 15 is driven by a motor. By driving the telescopic plate 4 through the driving roller 15, the telescopic plate 4 extends outwards. When the widths of the first aluminum plate 29 and the second aluminum plate 30 are greater than the fixed bottom plate 3, the extended telescopic plate 4 can extend the overall width of the fixed bottom plate 3, and the movable clamping strip 6 is used to limit and fix its side. When the widths of the first aluminum plate 29 and the second aluminum plate 30 are less than the fixed bottom plate 3, the telescopic plate 4 is in a reset state, and the electric push rod 16 is directly used to drive the movable clamping strip 6, so that the movable clamping strip 6 is clamped on the sides of the first aluminum plate 29 and the second aluminum plate 30, thus completing the limiting operation of two groups of first aluminum plates 29 and 30 with different widths;

[0052] By setting the sliding base 11, when the aluminum shell trimming device for the production and processing of aluminum shell resistors is in use, it has an adaptive adjustment structure, which can be adaptively adjusted according to the side structure of the aluminum shell material, improving its scope of application;

[0053] During operation, the transverse push rod 13 is an electric push rod. When the side of the first aluminum plate 29 or the second aluminum plate 30 is inclined, the transverse push rod 13 can be used to drive the sliding base 11 to translate in cooperation with the limit guide rod 14, thereby adjusting the position of the grinding wheel 8 on the sliding base 11. The grinding wheel 8 is driven by a motor, and the elastic clamping seat 12 is composed of a spring and a bottom plate, so that an elastic structure is formed between the sliding base 11 and the transverse push rod 13. When the transverse push rod 13 drives the grinding wheel 8 to move, the grinding wheel 8 can be made to closely adhere to the side of the first aluminum plate 29 or the second aluminum plate 30, improving its grinding effect. When trimming and processing irregular aluminum plates, it is not applicable to the simultaneous processing of the first aluminum plate 29 or the second aluminum plate 30, and only one set of aluminum plates can be processed at a time. Secondly, the T-shaped dust suction hood 9 can simultaneously satisfy the dust suction and cleaning on both sides of the grinding wheel 8. When the dust suction groove 17 generates suction, the feeding grooves 18 on both sides of it suck in dust, preventing dust from flying during the processing of the first aluminum plate 29 and the second aluminum plate 30.

[0054] The above is only a preferred embodiment of the present invention, and it does not impose any form of limitation on the present invention. Although the present invention has been disclosed above with a preferred embodiment, it is not intended to limit the present invention. Any person skilled in the art can make some changes or modifications to it as equivalent embodiments with equivalent changes within the scope of the technical solution of the present invention. However, as long as it does not depart from the content of the technical solution of the present invention, any brief modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention still fall within the scope of the technical solution of the present invention.

Claims

1. An aluminum shell trimming device for the production and processing of aluminum shell resistors, characterized in that, It includes a fixed base plate (3) and a partition plate (10). The partition plate (10) is fixedly installed at the middle position of the upper outer surface of the fixed base plate (3). A grinding wheel (8) is movably installed at the middle position inside the partition plate (10). Telescopic plates (4) are movably sleeved on both sides of the fixed base plate (3). A movable clamping bar (6) is movably installed on the upper part of the telescopic plate (4). On the upper outer surface of the fixed base plate (3), material conveyors (7) are arranged on both sides of the grinding wheel (8). The two groups of material conveyors (7) are arranged in a staggered manner. A sliding base (11) is arranged below the grinding wheel (8), and a dust suction hood (9) is arranged above the grinding wheel (8). The fixed base (1) is fixedly installed at the lower end of the fixed base plate (3), and the sliding base (11) is movably installed inside the fixed base (1).

2. The aluminum shell trimming device for the production and processing of aluminum shell resistors according to claim 1, wherein, The diameter of the grinding wheel (8) is larger than the width of the partition plate (10). A number of material conveying caster wheels (5) are movably installed on one side of the movable clamping bar (6) and on both sides of the partition plate (10).

3. The aluminum shell trimming device for the production and processing of aluminum shell resistors according to claim 1, characterized in that, Limit guide rods (14) are movably sleeved on both sides of the sliding base (11). One end of the sliding base (11) is driven by a transverse push rod (13). An elastic clamping seat (12) is arranged between the sliding base (11) and the transverse push rod (13).

4. An aluminum shell trimming device for the production and processing of aluminum shell resistors according to claim 1, characterized in that, The lower surface of the telescopic plate (4) is driven by a driving roller (15). One end of the telescopic plate (4) is in an L-shaped structure. The telescopic plate (4) and the movable clamping bar (6) are driven by an electric push rod (16).

5. An aluminum shell trimming device for the production and processing of aluminum shell resistors according to claim 1, characterized in that, A dust suction groove (17) is arranged at the middle position of the dust suction hood (9). Feeding grooves (18) are arranged on both sides of the dust suction groove (17) inside the dust suction hood (9).

6. The aluminum shell trimming device for the production and processing of aluminum shell resistors according to claim 5, wherein, A dust suction machine (21) is arranged at the bottom of the dust suction hood (9). The dust suction hood (9) and the dust suction machine (21) are connected through a dust suction pipe (20) in a through manner. Inclined baffle plates (19) are arranged at both ends of the dust suction hood (9). The two groups of inclined baffle plates (19) are arranged in a staggered manner.

7. An aluminum shell trimming device for the production and processing of aluminum shell resistors according to claim 1, characterized in that, The material conveyor (7) includes a lifting clamping plate (22) and a fixed clamping plate (23). The lifting clamping plate (22) is movably installed above the fixed clamping plate (23), and the lifting clamping plate (22) and the fixed clamping plate (23) are movably connected through a lifting guide block (24).

8. An aluminum shell trimming device for the production and processing of aluminum shell resistors according to claim 7, characterized in that, The upper end of the lifting clamping plate (22) is driven by a vertical push rod (25). An upper roller bar (27) is movably installed on the lower surface of the lifting clamping plate (22). A lower roller bar (26) is movably installed on the upper surface of the fixed clamping plate (23).

9. The aluminum shell trimming device for the production and processing of aluminum shell resistors according to claim 1, characterized in that, A material receiving box (2) is fixedly installed on one side of the fixed base (1). A chute for cooperating with the grinding wheel (8) is arranged at the upper end of the fixed base (1).

10. An aluminum shell trimming device for the production and processing of aluminum shell resistors according to claim 1, characterized in that, A telescopic groove for cooperating with the telescopic plate (4) is arranged inside the fixed base plate (3). Moving footrests are arranged on both sides of the fixed base (1).

Citation Information

Patent Citations

  • Trimming device for aluminum shell machining

    CN220462473U

  • Aluminum plate trimming device for aluminum profile production and processing

    CN217890455U

  • Clamp for battery aluminum shell machining

    CN218696067U