Full-automatic groove cutting equipment for electromagnetic flat wire

By combining the pressure plate assembly, the limiting plate assembly, and the angle adjustment assembly, flexible fixing and angle adjustment of the electromagnetic flat wire end are achieved, solving the problems of non-compact structure and cumbersome operation of existing equipment, and improving processing efficiency and product quality.

CN223462112UInactive Publication Date: 2025-10-21天津市特变电工变压器有限公司

Patent Information

Application Number
CN202422840749.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2025-10-21
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing electromagnetic flat wire beveling equipment has a non-compact structure, cumbersome angle adjustment, laborious operation, and is prone to quality problems such as non-compliance with specifications.

Method used

The electromagnetic flat wire is fixed by using a pressure plate assembly, a limit plate assembly, and an angle adjustment assembly. The cutting tool is driven by the cutting adjustment assembly to achieve flexible fixing and angle adjustment of the end of the electromagnetic flat wire. Dust collection and welding functions are integrated into the mobile housing.

Benefits of technology

It improves the flexibility and applicability of electromagnetic flat wire beveling, reduces equipment space occupation, simplifies operation process, and ensures product quality consistency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to electromagnetic flat wire full-automatic groove cutting equipment, which is characterized in that a cutting mechanism comprises a cutting adjusting assembly, a cutting driving assembly and a cutting support, a pressing plate assembly, a limiting plate assembly and an angle adjusting assembly are arranged on the cutting support, and the cutting support comprises a limiting supporting plate and a pressing mounting plate. The pressing plate assembly is installed on the pressing installation plate, a pressing plate capable of ascending and descending is arranged at the lower end of the pressing plate assembly, the limiting plate assembly is arranged on the limiting supporting plate, a limiting plate capable of horizontally moving is arranged at the front end of the limiting plate assembly, the angle adjusting assembly is arranged on the lower side of the limiting supporting plate, and the angle adjusting assembly is provided with a lower supporting plate capable of adjusting the angle. The electromagnetic flat wire is inserted into a gap among the pressing plate, the pressing mounting plate, the limiting supporting plate and the limiting plate, and one side of the lower supporting plate is provided with an ejector block which abuts against the lower side of the end of the electromagnetic flat wire. According to the utility model, the electromagnetic flat wire can be firmly fixed, the angle can be adjusted, the use is more flexible, and the structure is more compact.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to transformer production technical field, concretely speaking, it is a kind of full-automatic cutting groove equipment of electromagnetic flat wire. BACKGROUND

[0002] Copper aluminum electromagnetic flat wire bevel groove lap welding is an important link of transformer high-voltage winding production, by this way, electromagnetic flat wire can be connected closely with electromagnetic flat wire, and before welding, electromagnetic flat wire end is usually polished into bevel groove to increase the contact area of solder and electromagnetic flat wire, and in prior art, manual polishing method is usually used, that is, manually using file and other tools to polish electromagnetic flat wire end, and according to process requirement, it must be guaranteed that the length of bevel surface is 3 times the thickness of electromagnetic flat wire, so the existing manual polishing method is not only time-consuming and laborious, but also prone to electromagnetic flat wire bevel surface specifications not meeting requirements or electromagnetic flat wire bevel surface specifications of the same size being different, in addition, metal particles generated during polishing are also easy to adhere to winding or insulating material surface, thereby causing product quality risk.

[0003] With the development of technology, some devices for cutting bevel groove of transformer coil conductor have appeared in prior art, for example, a device for cutting bevel groove of transformer coil conductor is disclosed in the patent CN218730404U, but the device is used to straighten the coil conductor from both ends by straightening assembly, then the cutting machine in inclined state is used to cut the conductor to complete bevel surface processing, and the device adjusts the cutting angle of cutting machine by adjusting assembly, the adjusting assembly includes cylinder, rack, incomplete gear and other structures, the overall structure of the device is not compact enough, and the straightening assembly occupies a certain installation space on both sides of straightening conductor, in addition, the device adjusts the cutting machine with a certain volume to change the cutting angle, which further increases the installation space occupied by the whole equipment.

[0004] A device for cutting bevel groove of transformer coil conductor is also disclosed in the patent CN215657573U, but the device uses cutting knife to cut up and down reciprocatingly once to complete cutting once, and when cutting knife completes cutting once, it needs to slide pull rod in reverse along pull-out slot to make tooth block disengage from tooth slot, and then use the elastic potential energy of second spring to slide rectangular guide rod upward along through hole, so as to separate cutting knife from cut conductor cutting end, the structure and operation of the device are relatively complicated, and it also adjusts the cutting angle of cutting knife according to the cutting angle requirement.

[0005] The patent of CN212168838U discloses another device for cutting bevel groove of transformer coil wire, which moves the movable sliding block by adjusting the movable sliding block bolt to move the movable sliding block and fix the wire, but the angle of the lower surface of the movable sliding block and the inclined slot of the device is fixed, which cannot be flexibly adjusted according to actual needs, and if the angle needs to be adjusted, the above structure can only be disassembled and replaced, and at the same time, the device is processed by the operator using the electric steel saw to cut the fixed wire back and forth in the horizontal slot to complete the bevel groove processing, which is more laborious to operate. Content of the utility model

[0006] The utility model discloses a kind of electromagnetic flat wire full-automatic cutting bevel groove equipment, and it is fixed by the angle adjusting assembly, the limiting plate assembly and the pressing plate assembly being arranged on cutting support, electromagnetic flat wire to be processed, not only structure is more compact, while angle adjusting assembly can also adjust the inclination angle of electromagnetic flat wire end according to actual needs, use more flexible.

[0007] The utility model aims to realize by the following technical scheme:

[0008] A kind of electromagnetic flat wire full-automatic cutting bevel groove equipment, including cutting mechanism, and the cutting mechanism includes cutting adjusting assembly, cutting drive component and cutting support, the cutting drive component is driven to move by the cutting adjusting assembly, and the cutting drive component front end is equipped with cutting tool, cutting support is located in the side of the cutting drive component with cutting tool, and the cutting support is equipped with pressing plate assembly, limiting plate assembly and angle adjusting assembly, the cutting support includes limiting support plate and the pressing installation plate of L type, and the pressing installation plate is located in one end of the limiting support plate, pressing plate assembly is installed on the pressing installation plate, and the lower end of the pressing plate assembly is equipped with the lifting pressing plate, limiting plate assembly is located on the limiting support plate, and the front end of the limiting plate assembly is equipped with the limiting plate of horizontal movement, angle adjusting assembly is located on the lower side of the limiting support plate, and the angle adjusting assembly is equipped with the lower support plate of adjustable angle, electromagnetic flat wire to be processed is inserted into the interspace between the pressing plate, pressing installation plate, limiting support plate and limiting plate, and the lower side of the lower support plate one side is equipped with the top block and electromagnetic flat wire end.

[0009] The cutting adjusting assembly includes cutting adjusting support, cutting adjusting motor and cutting adjusting lead screw, wherein cutting adjusting motor is located on the cutting adjusting support, cutting adjusting lead screw is driven to rotate by the cutting adjusting motor, the lower side of the cutting drive component is equipped with cutting mounting seat, and the two sides of the cutting mounting seat are slidably connected with the cutting adjusting support, and the lower side of the cutting mounting seat is equipped with cutting adjusting nut, which is sleeved on the cutting adjusting lead screw.

[0010] The cutting adjustment support comprises a motor mounting plate arranged in the middle and side plates arranged on both sides, the cutting adjustment motor is arranged on the motor mounting plate, the upper end of the side plate is provided with a sliding rail, and the lower side of the cutting mounting seat is provided with a sliding block matched with the corresponding sliding rail.

[0011] The cutting driving assembly comprises a cutting driving motor, and the cutting driving motor is mounted on the cutting mounting seat, and the cutting tool is arranged on the output shaft of the cutting driving motor.

[0012] The pressing plate assembly comprises a pressing knob, the knob shaft of the pressing knob is screw-connected with the horizontal plate part of the pressing mounting plate, and the pressing plate is arranged in the pressing mounting plate and is fixedly connected with the lower end of the knob shaft of the pressing knob.

[0013] The limiting plate assembly comprises a fixing seat, a driving lead screw and a driving lead nut, the fixing seat is arranged on the limiting support plate, the driving lead nut is arranged in the fixing seat, the driving lead screw is connected with the limiting plate after penetrating through the driving lead nut, and the rear end of the driving lead screw is connected with a driving rotating adjusting device.

[0014] The angle adjusting assembly comprises a hinged seat and an adjusting cam, the lower support plate is rotatably arranged on the hinged seat through a bearing, the wheel shaft of the adjusting cam is screw-connected with the lower support plate, and the adjusting cam is abutted with the lower side of the limiting support plate.

[0015] The cutting support comprises a bottom plate arranged at the lower end, the hinged seat is arranged on the bottom plate, a vertical plate is arranged between the bottom plate and the limiting support plate, and a guide opening, through which the lower support plate passes, is arranged on the vertical plate.

[0016] The cutting mechanism is arranged on a moving box body, the moving box body is provided with a hopper for welding on one side of the upper end, the hopper is provided with an electromagnetic flat wire clamping device, the moving box body is internally provided with a power supply system, a dust collection system and a waste chip collection system connected through pipelines, metal particles generated in the cutting mechanism and the hopper are all sucked away through the dust collection system, the moving box body is provided with moving rollers at the lower end, the moving box body is provided with a protective cover at the upper end, the upper side of the protective cover is provided with a protective cover perspective cover plate, and the cutting mechanism is arranged in the protective cover.

[0017] The utility model discloses the advantages and positive effects are:

[0018] 1. The utility model discloses a cutting support is equipped with the pressing plate subassembly, the limit board subassembly and the angle adjusting subassembly cooperation fixed the electromagnetic flat wire of processing, wherein considering the special shape of rectangular section of electromagnetic flat wire, the utility model discloses utilize the limit board of limit board subassembly and the vertical board portion of pressing mounting plate on cutting support cooperation limit electromagnetic flat wire horizontal direction displacement, utilize the pressing plate of pressing plate subassembly and the limit support board on cutting support cooperation limit electromagnetic flat wire vertical direction displacement, thereby can guarantee that the electromagnetic flat wire is fixed firmly, in addition, the utility model discloses through angle adjusting subassembly and electromagnetic flat wire end portion are lifted to change its inclination angle, thereby can be applicable to the processing need of different specifications beveling, this improves the use flexibility and application scope of the utility model.

[0019] 2. The utility model discloses a cutting support is equipped with the pressing plate subassembly, the limit board subassembly and the angle adjusting subassembly cooperation fixed the electromagnetic flat wire of processing, the structure is more compact, and the utility model discloses can also integrate cutting mechanism, dust collection system, the structure such as hopper for welding on a mobile box body, like this can directly carry out welding operation after beveling is processed, also can according to actual need, the mobile box body position is moved flexibly. DRAWINGS

[0020] Figure 1 It is the overall structure schematic diagram of the utility model,

[0021] Figure 2 It is Figure 1 The structure schematic diagram of cutting mechanism,

[0022] Figure 3 It is Figure 1 The enlarged view of A in

[0023] Figure 4 It is Figure 2 The enlarged view of B in

[0024] Figure 5 It is the overall appearance schematic diagram of the utility model.

[0025] Wherein, 1 is a cutting adjustment assembly, 101 is a cutting adjustment motor, 102 is a cutting adjustment screw, 103 is a cutting adjustment support, 1031 is a motor mounting plate, 1032 is a side plate, 1033 is a sliding rail, 2 is a cutting drive assembly, 201 is a cutting drive motor, 202 is a cutting mounting seat, 203 is a linkage guide shaft, 204 is a cutting tool, 3 is a pressing plate assembly, 301 is a pressing plate, 302 is a pressing knob, 4 is a limiting plate assembly, 401 is a fixed seat, 402 is a drive screw, 403 is a limiting plate, 5 is an angle adjustment assembly, 501 is a lower support plate, 502 is a bearing, 503 is an adjustment cam, 6 is an electromagnetic flat wire, 7 is a cutting mechanism, 8 is a cutting support, 801 is a limiting support plate, 802 is a vertical plate, 8021 is a guide opening, 803 is a guide side plate, 8031 is a first guide slot, 8032 is a second guide slot, 804 is a pressing mounting plate, 805 is a bottom plate, 9 is a cover see-through cover plate, 10 is a dust collection system, 11 is a scrap collection system, 12 is a moving box, 1201 is a moving roller, 13 is a power supply system, 14 is a cover, 15 is a hopper, 16 is an electromagnetic flat wire clamping device. DETAILED DESCRIPTION

[0026] The utility model will be further described in connection with the drawings.

[0027] As Figures 1 to 5 shown, the utility model includes cutting mechanism 7, and cutting mechanism 7 includes cutting adjustment assembly 1, cutting drive assembly 2 and cutting support 8, wherein as Figure 3 shown, cutting drive assembly 2 front end is equipped with cutting tool 204, and cutting drive assembly 2 is driven to move through cutting adjustment assembly 1 to adjust the position of cutting tool 204, and cutting support 8 is arranged on the side of cutting drive assembly 2 with cutting tool 204, and as Figures 2 to 4 shown, cutting support 8 is equipped with pressing plate assembly 3, limiting plate assembly 4 and angle adjustment assembly 5, wherein cutting support 8 includes limiting support plate 801 and pressing mounting plate 804 of L type, pressing mounting plate 804 is arranged at the end of limiting support plate 801 close to cutting drive assembly 2, pressing plate assembly 3 is installed on pressing mounting plate 804, and the lower end of pressing plate assembly 3 is equipped with the pressing plate 301 of adjustable lifting, limiting plate assembly 4 is arranged on limiting support plate 801, and the front end of limiting plate assembly 4 is equipped with the limiting plate 403 of adjustable horizontal movement, angle adjustment assembly 5 is arranged on the lower side of limiting support plate 801, and angle adjustment assembly 5 is equipped with the lower support plate 501 of adjustable angle, as Figures 3 to 4As shown, the utility model work, the processing electromagnetic flat wire 6 is inserted in the gap between the pressing plate 301, the pressing mounting plate 804, the limiting support plate 801 and the limiting plate 403, then the electromagnetic flat wire 6 is compressed by the pressing plate 301 and is limited height direction displacement, and the limiting plate 403 is limited horizontal direction displacement by cooperating with the pressing mounting plate 804, and the limiting support plate 801 is provided with a notch on the side close to the processing station, and the lower support plate 501 is provided with a top block on the side close to the processing station, and the top block passes through the notch and abuts against the lower side of the end of the electromagnetic flat wire 6, so that the utility model can adjust the height of the top block for lifting the end of the electromagnetic flat wire 6 by adjusting the angle of the lower support plate 501, that is, the cutting and polishing angle of the end of the electromagnetic flat wire 6 is changed. The pressing plate 301, the limiting plate 403, the limiting support plate 801 and the vertical plate of the pressing mounting plate 804 can be provided with a protruding block or other structure for positioning the electromagnetic flat wire 6 to be processed at a suitable position, so that the movement and interference of each plate can be avoided.

[0028] As shown, Figures 2 to 4 In the embodiment, the cutting adjustment assembly 1 includes a cutting adjustment support 103, a cutting adjustment motor 101 and a cutting adjustment lead screw 102. The cutting adjustment motor 101 is arranged on the cutting adjustment support 103, and the cutting adjustment lead screw 102 is driven to rotate by the cutting adjustment motor 101. The cutting drive assembly 2 is provided with a cutting mounting seat 202 on the lower side, and the cutting mounting seat 202 is slidably connected to the cutting adjustment support 103 on both sides. The cutting mounting seat 202 is provided with a cutting adjustment nut on the lower side, which is sleeved on the cutting adjustment lead screw 102. When the utility model works, the cutting adjustment motor 101 drives the cutting adjustment lead screw 102 to rotate, and then drives the cutting adjustment nut to move and adjust the position of the cutting mounting seat 202.

[0029] As shown, Figure 2 In the embodiment, the cutting adjustment support 103 includes a motor mounting plate 1031 arranged obliquely in the middle and side plates 1032 on both sides. The cutting adjustment motor 101 is arranged on the motor mounting plate 1031. The upper end of the side plate 1032 is provided with a sliding rail 1033. The cutting mounting seat 202 is provided with a sliding block on the lower side, which is matched with the corresponding sliding rail 1033.

[0030] As shown, Figure 2 In the embodiment, the cutting drive assembly 2 further includes a cutting drive motor 201, and the cutting drive motor 201 is mounted on the cutting mounting seat 202. The cutting tool 204 is arranged on the output shaft of the cutting drive motor 201. In the embodiment, the cutting tool 204 is a milling cutter. The cutting drive motor 201 drives the milling cutter to rotate, which completes the slope surface processing of the electromagnetic flat wire. This is a well-known technology in the field.

[0031] As Figures 2 to 3 shown in the embodiment, the cutting support 8 is provided with a guide side plate 803 on the side close to the cutting driving assembly 2, and the guide side plate 803 is provided with a first guide slot 8031 and a second guide slot 8032, and the cutting mounting seat 202 is provided with a linkage guide shaft 203, and when the cutting driving assembly 2 is driven to move by the cutting adjusting assembly 1, and the cutting tool 204 moves in the first guide slot 8031, the linkage guide shaft 203 moves in the second guide slot 8032.

[0032] As Figures 2 to 4 shown in the embodiment, the pressing plate assembly 3 comprises a pressing knob 302, and the knob shaft of the pressing knob 302 is threadedly connected with the horizontal plate part of the L-shaped pressing mounting plate 804, the pressing plate 301 is arranged inside the pressing mounting plate 804 and is fixedly connected with the lower end of the knob shaft of the pressing knob 302, and the pressing plate 301 can be driven to ascend and descend by screwing the pressing knob 302.

[0033] As Figures 2 to 4 shown in the embodiment, the limiting plate assembly 4 comprises a fixing seat 401, a driving screw rod 402 and a driving screw nut, the fixing seat 401 is arranged on the limiting support plate 801, the driving screw nut is arranged in the fixing seat 401, and the driving screw rod 402 is connected with the limiting plate 403 after penetrating through the driving screw nut, the rear end of the driving screw rod 402 is connected with an adjusting device, the adjusting device drives the driving screw rod 402 to rotate, thereby driving the limiting plate 403 to move back and forth, and the adjusting device can select a hand wheel (manual adjustment) or a micro motor (automatic adjustment) and the like according to needs.

[0034] As Figures 2 to 4 shown in the embodiment, the angle adjusting assembly 5 comprises a hinged seat and an adjusting cam 503, wherein the lower support plate 501 is supported and installed on the hinged seat (omitted in the Figure 3 and Figure 4 ) by a bearing 503 to realize rotation, the wheel shaft of the adjusting cam 503 is threadedly installed on the lower support plate 501, and the adjusting cam 503 abuts against the lower side of the limiting support plate 801, and the adjusting cam 503 can be driven to rotate and change the position abutting against the lower side of the limiting support plate 801 by screwing the adjusting cam 503, thereby changing the angle of the lower support plate 501, and since the wheel shaft of the adjusting cam 503 is threadedly connected with the lower support plate 501, the position of the lower support plate 501 can be locked after adjustment.

[0035] As Figure 4As shown in the embodiment, the cutting support 8 further comprises a bottom plate 805 arranged at the lower end, and the hinged seat is arranged on the bottom plate 805, and a vertical plate 802 is arranged between the bottom plate 805 and the limiting support plate 801 to strengthen the support strength, and a guide opening 8021 is arranged on the vertical plate 802 for the lower support plate 501 to pass through to limit the swing displacement of the lower support plate 501.

[0036] As shown in the embodiment, the cutting mechanism 7 is arranged on a moving box body 12, and a hopper 15 is arranged on one side of the upper end of the moving box body 12, and the hopper 15 is internally provided with an electromagnetic flat wire clamping device 16. Figure 1 As shown in the embodiment, the cutting mechanism 7 is arranged on a moving box body 12, and a hopper 15 is arranged on one side of the upper end of the moving box body 12, and the hopper 15 is internally provided with an electromagnetic flat wire clamping device 16.

[0037] As shown in the embodiment, the moving box body 12 is further provided with a dust collection system 10 and a scrap collection system 11 connected through pipelines, the dust collection system 10 is provided with two dust collection pipelines, one dust collection pipeline is arranged below the machining station on one side of the cutting support 8, so that the metal particles generated during the machining of the cutting drive assembly 2 can be directly sucked away, and the dust collection pipeline is arranged below the hopper 15, so that the metal particles generated during the welding are first stored in the hopper 15, and then sucked away by the dust collection system 10 and discharged into the scrap collection system 11. Figure 1 As shown in the embodiment, the moving box body 12 is further provided with a dust collection system 10 and a scrap collection system 11 connected through pipelines, the dust collection system 10 is provided with two dust collection pipelines, one dust collection pipeline is arranged below the machining station on one side of the cutting support 8, so that the metal particles generated during the machining of the cutting drive assembly 2 can be directly sucked away, and the dust collection pipeline is arranged below the hopper 15, so that the metal particles generated during the welding are first stored in the hopper 15, and then sucked away by the dust collection system 10 and discharged into the scrap collection system 11.

[0038] Figure 1 As shown in the embodiment, the moving box body 12 is further provided with a dust collection system 10 and a scrap collection system 11 connected through pipelines, the dust collection system 10 is provided with two dust collection pipelines, one dust collection pipeline is arranged below the machining station on one side of the cutting support 8, so that the metal particles generated during the machining of the cutting drive assembly 2 can be directly sucked away, and the dust collection pipeline is arranged below the hopper 15, so that the metal particles generated during the welding are first stored in the hopper 15, and then sucked away by the dust collection system 10 and discharged into the scrap collection system 11. Figure 5 As shown in the embodiment, the moving box body 12 is further provided with a dust collection system 10 and a scrap collection system 11 connected through pipelines, the dust collection system 10 is provided with two dust collection pipelines, one dust collection pipeline is arranged below the machining station on one side of the cutting support 8, so that the metal particles generated during the machining of the cutting drive assembly 2 can be directly sucked away, and the dust collection pipeline is arranged below the hopper 15, so that the metal particles generated during the welding are first stored in the hopper 15, and then sucked away by the dust collection system 10 and discharged into the scrap collection system 11.

[0039] The working principle of the utility model is:

[0040] ​The processing of the utility model includes the following steps:

[0041] Step 1: If Figures 2 to 4 As shown, the electromagnetic flat wire 6 to be processed is inserted into the gap enclosed by the pressing plate 301, the limiting plate 403, the limiting support plate 801, and the pressing and mounting plate 804. Appropriate positions on the vertical plates of the pressing plate 301, the limiting plate 403, the limiting support plate 801, and the pressing and mounting plate 804 may be provided with protrusions or other structures as needed to position the electromagnetic flat wire 6 to be processed. This can prevent the plates from interfering with each other.

[0042] Step 2: Adjust the position of the limiting plate 403 so that the limiting plate 403 cooperates with the vertical plate portion of the pressing mounting plate 804 to limit the horizontal displacement of the electromagnetic flat wire 6;

[0043] Step 3: Adjust the height of the pressing plate 301 so that the pressing plate 301 cooperates with the limiting support plate 801 to limit the vertical displacement of the electromagnetic flat wire 6;

[0044] Step 4: Adjust the angle of the lower support plate 501 to change the height of the top block on the side of the lower support plate 501 close to the processing station, thereby changing the inclination angle of the end portion of the electromagnetic flat wire 6 to be processed;

[0045] Step 5: The cutting adjustment component 1 starts and drives the cutting drive component 2 to move, thereby driving the cutting tool 204 into the processing station;

[0046] Step 6: The cutting drive assembly 2 is started to drive the cutting tool 204 to rotate to complete the bevel processing of the end of the electromagnetic flat wire 6 .

[0047] In addition, Figure 1 As shown, the metal particles generated during the above processing can be sucked away by the dust collection system 10, and the operator can observe the processing status in real time through the protective cover 9. After the processing is completed, the operator can directly take out the electromagnetic flat wire 6 from the cutting mechanism 7, and put it into the hopper 15 and clamp it with the electromagnetic flat wire clamping device 16, and then perform the welding operation.

Claims

1. A full automatic cutting beveling apparatus for electromagnetic flat wire, characterized in that: The cutting mechanism (7) comprises a cutting adjustment assembly (1), a cutting drive assembly (2) and a cutting support (8), the cutting drive assembly (2) is driven to move through the cutting adjustment assembly (1), and the cutting drive assembly (2) is provided with a cutting tool (204) at the front end, the cutting support (8) is arranged on the side of the cutting drive assembly (2) with the cutting tool (204), and the cutting support (8) is provided with a pressing plate assembly (3), a limiting plate assembly (4) and an angle adjustment assembly (5), the cutting support (8) comprises a limiting support plate (801) and an L-shaped pressing mounting plate (804), the pressing mounting plate (804) is arranged at one end of the limiting support plate (801), the pressing plate assembly (3) is mounted on the pressing mounting plate (804), and the lower end of the pressing plate assembly (3) is provided with a lifting pressing plate (301), the limiting plate assembly (4) is arranged on the limiting support plate (801), and the front end of the limiting plate assembly (4) is provided with a horizontally movable limiting plate (403), the angle adjustment assembly (5) is arranged on the lower side of the limiting support plate (801), and the angle adjustment assembly (5) is provided with a lower support plate (501) with adjustable angle, the electromagnetic flat wire (6) to be processed is inserted into the gap between the pressing plate (301), the pressing mounting plate (804), the limiting support plate (801) and the limiting plate (403), and the side of the lower support plate (501) is provided with a top block abutting against the lower side of the end of the electromagnetic flat wire (6).

2. The electromagnetic flat wire full-automatic cutting and beveling apparatus according to claim 1, characterized in that: The cutting adjustment assembly (1) comprises a cutting adjustment support (103), a cutting adjustment motor (101) and a cutting adjustment lead screw (102), wherein the cutting adjustment motor (101) is arranged on the cutting adjustment support (103), the cutting adjustment lead screw (102) is driven to rotate through the cutting adjustment motor (101), the lower side of the cutting drive assembly (2) is provided with a cutting mounting seat (202), and the two sides of the cutting mounting seat (202) are slidably connected with the cutting adjustment support (103), and the lower side of the cutting mounting seat (202) is provided with a cutting adjustment nut sleeve arranged on the cutting adjustment lead screw (102).

3. The electromagnetic flat wire full-automatic cutting and beveling apparatus according to claim 2, characterized in that: The cutting adjustment support (103) comprises a motor mounting plate (1031) arranged in the middle and side plates (1032) on both sides, the cutting adjustment motor (101) is arranged on the motor mounting plate (1031), the upper end of the side plate (1032) is provided with a sliding rail (1033), and the lower side of the cutting mounting seat (202) is provided with a sliding block matched with the corresponding sliding rail (1033).

4. The electromagnetic flat wire full-automatic cutting and beveling apparatus according to claim 2, characterized in that: The cutting drive assembly (2) comprises a cutting drive motor (201), and the cutting drive motor (201) is mounted on the cutting mounting seat (202), and the cutting tool (204) is arranged on the output shaft of the cutting drive motor (201).

5. The electromagnetic flat wire full automatic cutting bevel apparatus according to claim 1, wherein: The pressing plate assembly (3) comprises a pressing knob (302), and the knob shaft of the pressing knob (302) is screwed with the horizontal plate part of the pressing mounting plate (804), the pressing plate (301) is arranged inside the pressing mounting plate (804) and is fixed with the lower end of the knob shaft of the pressing knob (302).

6. The electromagnetic flat wire full automatic cutting bevel apparatus according to claim 1, wherein: The limiting plate assembly (4) comprises a fixed seat (401), a driving screw (402) and a driving nut, wherein the fixed seat (401) is arranged on the limiting support plate (801), the driving nut is arranged in the fixed seat (401), and the driving screw (402) is connected with the limiting plate (403) after passing through the driving nut, and the rear end of the driving screw (402) is connected with a driving rotating adjusting device.

7. The electromagnetic flat wire full automatic cutting bevel apparatus according to claim 1, wherein: The angle adjusting assembly (5) comprises a hinged seat and an adjusting cam (503), wherein the lower support plate (501) is rotatably arranged on the hinged seat through a bearing (503), the wheel shaft of the adjusting cam (503) is screwedly arranged on the lower support plate (501), and the adjusting cam (503) abuts against the lower side of the limiting support plate (801).

8. The electromagnetic flat wire full-automatic cutting and beveling apparatus according to claim 7, characterized in that: The cutting support (8) comprises a bottom plate (805) arranged at the lower end, and the hinged seat is arranged on the bottom plate (805), a vertical plate (802) is arranged between the bottom plate (805) and the limiting support plate (801), and a guide opening (8021) for the lower support plate (501) to pass through is arranged on the vertical plate (802).

9. The electromagnetic flat wire full automatic cutting bevel apparatus according to claim 1, wherein: The cutting mechanism (7) is arranged on a moving box body (12), one side of the upper end of the moving box body (12) is provided with a hopper (15) for welding, the hopper (15) is provided with an electromagnetic flat wire clamping device (16) inside, the moving box body (12) is provided with a power supply system (13) and a dust collection system (10) and a waste chip collection system (11) connected through pipelines inside, and the metal particles generated in the cutting mechanism (7) and the hopper (15) are all sucked away by the dust collection system (10), the lower end of the moving box body (12) is provided with a moving roller (1201), the upper end of the moving box body (12) is provided with a protective cover (14), and the upper side of the protective cover (14) is provided with a protective cover perspective cover plate (9), and the cutting mechanism (7) is arranged in the protective cover (14).

Citation Information

Patent Citations

  • Slope opening cutting device for transformer coil wire

    CN212168838U

  • Slope cutting device for transformer coil wire

    CN218730404U

Cited By

  • Electromagnetic flat wire full-automatic groove cutting equipment and machining method

    CN119274965A

  • Electromagnetic flat wire full-automatic cutting groove equipment and processing method

    CN119274965B