Motor enameled wire coil cutting equipment

An automated cutting device that combines a motor mounting plate and a rotating shaft II, along with an adjustment mechanism and cutting components, solves the problems of high labor intensity and insufficient stability in traditional motor coil cutting methods, achieving highly stable automated cutting and wide applicability.

CN223666205UActive Publication Date: 2025-12-12ZHONGTIAN IRON & STEEL GRP (NANTONG) CO LTD +1
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Patent Information

Application Number
CN202423126726.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-12-12
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

Traditional methods of cutting motor coils are labor-intensive, produce rough cuts, and lack stability and adaptability of existing wire cutting machines, making them difficult to operate and costly to produce.

Method used

An automated cutting device using a motor mounting plate and rotating shaft II, combined with an adjustment mechanism and cutting components, enables automated cutting of motor coils. Position adjustment is achieved through the cooperation of a transmission worm, turbine, and lead screw to adapt to the cutting needs of motors of different specifications.

Benefits of technology

It achieves highly stable automated cutting, reduces labor intensity, has a wide range of applications, adapts to the cutting needs of motors of different specifications, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses cutting equipment for a motor enameled wire coil. The cutting equipment comprises a bottom plate, a motor placing plate, a rotating shaft II, an adjusting mechanism and a cutting assembly, a rotating shaft II is further vertically and rotatably arranged on the right side of the upper surface of the horizontally-arranged bottom plate, a circular motor containing plate is further horizontally and coaxially arranged at the upper end of the rotating shaft II, and the motor containing plate is horizontally and rotatably connected with the bottom plate in the axial direction of the motor containing plate through the rotating shaft II; a plurality of mounting holes are uniformly formed in the position, close to the edge, of the upper surface of the motor containing plate in the circumferential direction at intervals in a vertically embedded and penetrating mode, and a to-be-cut motor is fixedly mounted at the corresponding position of the upper surface of the motor containing plate through the mounting holes; the cutting assembly is arranged over the motor containing plate, and after the position of the cutting assembly in the vertical up-down direction and the position of the cutting assembly in the horizontal direction are adjusted through an adjusting mechanism, cutting operation is conducted on a to-be-cut motor enameled wire coil. According to the utility model, automatic cutting operation is basically realized, and the labor intensity is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of coil, concretely relates to a motor enameled wire coil cutting equipment. BACKGROUND

[0002] With the rapid development of economy, in the electrical installation field, motor coil is often cut to meet different use requirements. The traditional motor coil cutting mostly adopts the manual chiseling method, after the motor is disassembled, the motor coil is manually stripped layer by layer using tools, which is high in labor intensity and causes the motor coil cutout to be not smooth, thereby inconvenient for motor maintenance. Although some cutting machines can realize the function of electric cutting at present, the stability still needs to be improved, and some existing cutting machines also have the defects of high operation difficulty, high production cost and being unable to adapt to cutting of various specifications of motor enameled wire. Therefore, the above problems need to be solved. SUMMARY

[0003] The utility model wants to solve the technical problem to provide a motor enameled wire coil cutting equipment, through the cooperation of motor placing plate and rotating shaft II, basically realizes the automatic cutting operation, not only the cutting operation process is high in stability, and reduces the labor intensity.

[0004] In order to solve the above technical problems, the utility model adopts the following technical scheme: a motor enameled wire coil cutting equipment of the utility model, its innovation point lies in: including bottom plate, motor placing plate, rotating shaft II, adjusting mechanism and cutting assembly, the upper surface right side of the horizontally arranged bottom plate is also vertically rotatably provided with rotating shaft II, and the upper end of the rotating shaft II is also horizontally coaxially provided with a circular motor placing plate, the motor placing plate is rotatably connected with the bottom plate around its own axial direction, a plurality of mounting holes are vertically embedded and penetrated on the upper surface of the motor placing plate along the circumferential direction of the edge, and the motor to be cut is fixedly installed on the corresponding position of the upper surface of the motor placing plate through the mounting hole, the cutting assembly is arranged above the motor placing plate, and after the vertical up-down and horizontal position adjustment of the adjusting mechanism, the motor enameled wire coil to be cut is cut.

[0005] Preferably, the opening position of each mounting hole needs to be determined according to the fixed position of the different specifications of the motor to be cut.

[0006] Preferably, the adjusting mechanism comprises bearing I, rotating shaft I, transmission worm, transmission turbine, motor and transmission screw rod; a rotating shaft I is vertically arranged on the left side of the upper surface of the bottom plate relative to the motor placement plate, the lower end of the rotating shaft I is connected to the bottom plate through bearing I for rotation around its own axis, and the upper end of the rotating shaft I is coaxially connected to the lower end of the vertically arranged transmission screw rod through the transmission turbine; the transmission turbine is fixedly installed on the transmission screw rod through a flat key, and the center of the installation position of the transmission turbine is kept consistent with the center of the transmission worm; a transmission worm is horizontally arranged on one side of the transmission turbine, and one end of the transmission worm is directly connected to the motor through a continuous casting device, so that the transmission screw rod is driven to rotate around its own axis through the meshing of the transmission worm and the transmission turbine under the drive of the motor.

[0007] Preferably, it further comprises a cover I; the cover I is a hollow conical body structure, both ends of which are open and coaxially and spacedly sleeved on the rotating shaft I, thereby protecting the rotating shaft I; the upper end of the cover I is a small-diameter end, and the inner diameter of the small-diameter end is greater than the diameter of the rotating shaft I; the lower end of the cover I is outwardly horizontally flanged, and is fixedly screwed to the corresponding position on the upper surface of the bottom plate, the upper end of the rotating shaft I vertically extends out of the upper surface of the cover I, and the cover I does not interfere with the rotation of the rotating shaft I or the rotation of the motor placement plate.

[0008] Preferably, it further comprises bearing II, bearing III, a cover plate and an outer cover; bearing II is horizontally and coaxially arranged on the rotating shaft I between the cover I and the transmission turbine, the inner diameter of the bearing II is coaxially sleeved on the rotating shaft I, and the cover I and the transmission turbine are spacedly arranged; bearing III is coaxially sleeved on the transmission screw rod at the upper end thereof, and a hollow cylindrical outer cover is coaxially sleeved on the transmission screw rod between bearing III and bearing II, the outer cover is spacedly sleeved on the transmission screw rod and does not interfere with the rotation of the transmission screw rod; the upper end surface of the outer cover is screwed with the outer diameter lower surface of the bearing III, and the lower end surface of the outer cover is screwed with the outer diameter upper surface of the bearing II, and does not affect the meshing between the transmission worm and the transmission turbine, thereby allowing the outer cover to rotate around its own axis; the upper end of the transmission screw rod vertically extends out of the bearing III, and a cover plate is coaxially sleeved on the upper end of the transmission screw rod relative to the upper surface of the bearing III, and the cover plate protects the bearing III from dust.

[0009] Preferably, it further comprises a cover II and a bearing IV; the cover II is sleeved on the transmission worm, and is fixedly screwed on the corresponding position of the outer circumferential surface of the outer cover, and ensures that the meshing cooperation between the transmission worm and the transmission turbine does not interfere, thereby protecting the transmission worm; the bearing IV is coaxially sleeved on both ends of the transmission worm, and sequentially extends out the corresponding bearing IV and cover II from the end close to the motor, and is connected with the output end of the motor; the outer diameters of the two bearings IV are coaxially sleeved with the inner circumferential surface of the cover II, and ensure that the cover II does not interfere with the rotation of the transmission worm.

[0010] Preferably, it further comprises a live ring and a support; the live ring is coaxially sleeved on the transmission screw, and is spaced apart in the inner part of the outer cover, and is in threaded connection with the transmission screw; the support is vertically and transversely arranged on the outer circumferential surface of the live ring, and the other end of the two supports vertically extends out of the outer circumferential surface of the outer cover; the waist-shaped hole I matched with the support is vertically embedded in the outer circumferential surface of the outer cover relative to the position of the two supports, each waist-shaped hole I is in communication with the inner part of the outer cover, and the length of each waist-shaped hole I is 1200mm, thereby under the rotation of the transmission screw, the support moves vertically up and down with the live ring through the cooperation of the waist-shaped hole I of the outer cover; and under the rotation of the outer cover, the support rotates horizontally with the outer cover through the cooperation of the waist-shaped hole I of the outer cover.

[0011] Preferably, it further includes a first motor, a main pulley, an adjusting plate, a mounting seat, a bearing V, a slave pulley and a belt; the other end of the left side support is connected with the fixed end of the first motor, the output end of the first motor is vertically upward arranged and coaxially connected with the horizontally arranged main pulley; four threaded holes are vertically embedded in the front surface of the right side support at the other end, an adjusting plate is vertically and transversely arranged on the rear surface of the right side support, and a waist-shaped hole II corresponding to the threaded hole is vertically embedded in the front surface of the adjusting plate at the left end; each waist-shaped hole II is transversely arranged, the adjusting plate is transversely adjusted through the cooperation of the waist-shaped hole II and the threaded hole, and the adjusting plate is locked and fixed through the bolt; the right end of the adjusting plate vertically extends out of the vertical plane where the other end of the support is located, and is fixedly connected with the outer circumferential surface of the vertically arranged mounting seat, so that the mounting seat vertically moves up and down and horizontally rotates with the support; the fixed end of the cutting assembly is coaxially sleeved in the mounting seat through the bearing V, and the fixed end vertically extends out of the upper surface of the mounting seat and is coaxially connected with the slave pulley; the cutting end of the cutting assembly vertically extends out of the lower surface of the mounting seat, and the belt is annularly sleeved on the main pulley and the slave pulley, so that the cutting assembly rotates through the transmission cooperation of the main pulley, the belt and the slave pulley, and the motor coil is cut after vertical up-down and horizontal position adjustment.

[0012] Preferably, it further includes a fixed frame and a fixed rod; the fixed frame is coaxially sleeved and fixedly arranged on the outer cover above the cover shell II, and is arranged below the waist-shaped hole I; the fixed rod is vertically arranged between the lower surface of the fixed frame and the flange of the cover shell I and outside the outer cover, and is screwed through the corresponding positions of the upper and lower surfaces of the fixed frame and then abuts against the upper surface of the flange of the cover shell I, so as to position the horizontal rotation of the outer cover.

[0013] Preferably, it further includes an abutting bolt; the abutting bolt is radially and horizontally screwed in the middle position of the outer circumferential surface of the cover shell I, and the position of the abutting bolt corresponds to the position of the rotating shaft I, so as to position the rotation of the transmission screw rod through the abutting contact of the abutting bolt and the rotating shaft I.

[0014] The utility model discloses the beneficial effects of:

[0015] (1) the utility model discloses the cooperation of motor placing plate and rotating shaft II, basically realizes automatic cutting operation, not only cutting operation process stability is high, and reduces the labor intensity;

[0016] (2) The utility model discloses a cooperation of the outer cover, bearing II, bearing III and the waist type hole I, and the horizontal rotation of the mounting seat is driven through the rotation of the outer cover, and then the horizontal position adjustment of cutting assembly is carried out, so that it is suitable for different specifications motor enameled wire cutting operation, and the application range is wide.

[0017] (3) The utility model discloses a cooperation of motor, transmission worm, transmission turbine, transmission screw rod and the live ring, and the vertical up and down position adjustment of cutting assembly is convenient. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical scheme in the embodiment of the utility model, the drawings needed in the embodiment will be simply introduced below, and obviously, the drawings in the following description are only some embodiments in the utility model, and other drawings can also be obtained according to these drawings without the creative labor for the ordinary skilled in the art.

[0019] Fig. 1 It is a structural schematic diagram of a motor enameled wire coil cutting equipment of the utility model.

[0020] Fig. 2 It is another perspective structural schematic diagram of a motor enameled wire coil cutting equipment of the utility model.

[0021] Fig. 3 It is a schematic diagram after the outer cover, cover shell I and cover shell II of the utility model are removed.

[0022] Wherein, 1 - bottom plate, 2 - motor placing plate, 3 - mounting hole, 4 - bearing I, 5 - rotating shaft I, 6 - bearing II, 7 - cover shell I, 8 - transmission worm, 9 - transmission turbine, 10 - cover shell II, 11 - outer cover, 12 - transmission screw rod, 13 - bearing III, 14 - cover plate, 15 - live ring, 16 - support, 17 - adjusting plate, 18 - mounting seat, 19 - cutting assembly, 20 - from pulley, 21 - first motor, 22 - main pulley, 23 - waist type hole I, 24 - abutting bolt, 25 - fixed frame, 26 - fixed rod. DETAILED DESCRIPTION

[0023] The technical scheme of the utility model will be clearly and completely described below through specific embodiments.

[0024] A motor enameled wire coil cutting equipment of the utility model, including bottom plate 1, motor placing plate 2, rotating shaft II, adjusting mechanism and cutting assembly 19, and the specific structure is as follows Figs. 1-3As shown in the horizontal setting of the upper surface of the base plate 1 right side is also vertically rotating shaft II, and in the upper end of the rotating shaft II is also horizontally coaxial motor placement plate 2, motor placement plate 2 through the rotating shaft II and the base plate 1 around its own axis to horizontal rotation connection; in the upper surface of the motor placement plate 2 on its edge is also along its circumferential direction uniform spacing vertical embedded through a plurality of mounting holes 3, and the cutting motor through three mounting holes 3 fixedly installed in the upper surface of the motor placement plate 2 corresponding position; wherein, each mounting hole 3 opening position, need to be determined according to the different specifications of the cutting motor fixed position.

[0025] The cutting assembly 19 of the utility model is arranged above the motor placement plate 2, and after vertical up and down and horizontal position adjustment are carried out through the adjusting mechanism, the cutting operation of the cutting motor enameled wire coil is carried out again; wherein, the adjusting mechanism comprises bearing I 4, rotating shaft I 5, transmission worm 8, transmission turbine 9, motor, transmission screw rod 12, cover 7, bearing II 6, bearing III 13, cover plate 14, outer cover 11, cover II 10, bearing IV, valve 15, support 16, first motor 21, main pulley 22, adjusting plate 17, mounting seat 18, bearing V, from pulley 20, belt, fixing frame 25, fixed rod 26 and abutting bolt 24; as Figs. 1-3 As shown in the upper surface of the base plate 1 relative to the left side of the motor placement plate 2 is also vertically provided with rotating shaft I 5, the lower end of rotating shaft I 5 is connected with the base plate 1 around its own axis rotation through bearing I 4, and the upper end thereof is coaxially linked with the lower end of the vertically arranged transmission screw rod 12 through transmission turbine 9; transmission turbine 9 is fixedly installed on transmission screw rod 12 through a flat key, and the center of the installation position thereof is kept consistent with the center of transmission worm 8; transmission worm 8 is horizontally linked on one side of transmission turbine 9, and one end of transmission worm 8 is connected with the motor in a continuous casting device direct connection mode, so that under the driving of the motor, transmission screw rod 12 is driven to rotate around its own axis through the meshing of transmission worm 8 and transmission turbine 9. The cutting assembly 19 of the utility model is a conventional structure composed of a tool holder, a tool bar and a tool blade, so the structure thereof will not be described here.

[0026] As shown in the upper surface of the base plate 1 relative to the left side of the motor placement plate 2 is also vertically provided with rotating shaft I 5, the lower end of rotating shaft I 5 is connected with the base plate 1 around its own axis rotation through bearing I 4, and the upper end thereof is coaxially linked with the lower end of the vertically arranged transmission screw rod 12 through transmission turbine 9; transmission turbine 9 is fixedly installed on transmission screw rod 12 through a flat key, and the center of the installation position thereof is kept consistent with the center of transmission worm 8; transmission worm 8 is horizontally linked on one side of transmission turbine 9, and one end of transmission worm 8 is connected with the motor in a continuous casting device direct connection mode, so that under the driving of the motor, transmission screw rod 12 is driven to rotate around its own axis through the meshing of transmission worm 8 and transmission turbine 9. The cutting assembly 19 of the utility model is a conventional structure composed of a tool holder, a tool bar and a tool blade, so the structure thereof will not be described here. Figs. 1-3 As shown in the upper surface of the base plate 1 relative to the left side of the motor placement plate 2 is also vertically provided with rotating shaft I 5, the lower end of rotating shaft I 5 is connected with the base plate 1 around its own axis rotation through bearing I 4, and the upper end thereof is coaxially linked with the lower end of the vertically arranged transmission screw rod 12 through transmission turbine 9; transmission turbine 9 is fixedly installed on transmission screw rod 12 through a flat key, and the center of the installation position thereof is kept consistent with the center of transmission worm 8; transmission worm 8 is horizontally linked on one side of transmission turbine 9, and one end of transmission worm 8 is connected with the motor in a continuous casting device direct connection mode, so that under the driving of the motor, transmission screw rod 12 is driven to rotate around its own axis through the meshing of transmission worm 8 and transmission turbine 9. The cutting assembly 19 of the utility model is a conventional structure composed of a tool holder, a tool bar and a tool blade, so the structure thereof will not be described here.

[0027] As shown in the upper surface of the base plate 1 relative to the left side of the motor placement plate 2 is also vertically provided with rotating shaft I 5, the lower end of rotating shaft I 5 is connected with the base plate 1 around its own axis rotation through bearing I 4, and the upper end thereof is coaxially linked with the lower end of the vertically arranged transmission screw rod 12 through transmission turbine 9; transmission turbine 9 is fixedly installed on transmission screw rod 12 through a flat key, and the center of the installation position thereof is kept consistent with the center of transmission worm 8; transmission worm 8 is horizontally linked on one side of transmission turbine 9, and one end of transmission worm 8 is connected with the motor in a continuous casting device direct connection mode, so that under the driving of the motor, transmission screw rod 12 is driven to rotate around its own axis through the meshing of transmission worm 8 and transmission turbine 9. The cutting assembly 19 of the utility model is a conventional structure composed of a tool holder, a tool bar and a tool blade, so the structure thereof will not be described here. Figs. 1-3As shown in the shaft Ⅰ5 between the cover Ⅰ7 and the transmission turbine 9 is also horizontally coaxial bearing Ⅱ6, and the inner diameter of the bearing Ⅱ6 with shaft Ⅰ5 coaxial sleeve, and respectively with cover Ⅰ7 and transmission turbine 9 interval arrangement; in the transmission screw 12 on its upper end is also coaxial sleeve bearing Ⅲ13, and in the transmission screw 12 between the bearing Ⅲ13 and bearing Ⅱ6 is also coaxial sleeve hollow cylindrical cover 11, cover 11 interval sleeve in transmission screw 12, and the rotation of the transmission screw 12 does not produce interference; the upper end of the cover 11 and the outer diameter of the bearing Ⅲ13 lower surface screw, and its lower surface and the outer diameter of the bearing Ⅱ6 upper surface screw, and the transmission worm 8 and transmission turbine 9 between the meshing does not produce effect, so that the cover 11 can rotate around its own axial; the upper end of the transmission screw 12 vertically upward out of the bearing Ⅲ13, and in its upper relative to the bearing Ⅲ13 upper surface position is also coaxial sleeve cover 14, and the bearing Ⅲ13 through the cover 14 dustproof protection.

[0028] As Figs. 1-3 shown, cover Ⅱ10 interval sleeve in transmission worm 8, and with the outer circumference of the cover 11 corresponding position screw fixed, and ensure that the transmission turbine 9 and transmission worm 8 between the meshing does not produce interference, and thus to protect the transmission worm 8; in the transmission worm 8 both ends are also coaxial sleeve bearing Ⅳ, and its relative to the end of the motor in turn out of the corresponding bearing Ⅳ and cover Ⅱ10, and with the output end of the motor linkage connection; the outer diameter of the two bearing Ⅳ and the inner circumference of the cover Ⅱ10 coaxial sleeve, and ensure that the cover Ⅱ10 to the transmission worm 8 rotation does not produce interference.

[0029] As Figs. 1-3 shown, in the transmission screw 12 is also coaxial sleeve setting of the valve 15, valve 15 interval in the inside of the cover 11, and with the transmission screw 12 T thread connection; in the outer circumference of the valve 15 is also left and right symmetrical vertical transverse setting of the bracket 16, and the other end of the two bracket 16 respectively perpendicular to the outer circumference of the cover 11; in the outer circumference of the cover 11 relative to the position of the two bracket 16 is also along the vertical direction perpendicular to the embedding of the waist hole Ⅰ23 matching with the bracket 16, each waist hole Ⅰ23 with the inside of the cover 11, and its length is 1200 mm, and thus under the rotation of the transmission screw 12, through the waist hole Ⅰ23 of the cover 11 cooperation, the bracket 16 with the valve 15 vertical up and down movement; and under the rotation of the cover 11, through the waist hole Ⅰ23 of the cover 11 cooperation, the bracket 16 with the cover 11 horizontal rotation.

[0030] As Figs. 1-3As shown, the other end of the left side support 16 is connected with the fixed end of the first motor 21, and the output end of the first motor 21 is vertically upward arranged and coaxially connected with the horizontally arranged main pulley 22; four threaded holes are vertically embedded through the front surface of the right side support 16 at the other end thereof, and an adjusting plate 17 is vertically and transversely arranged on the rear surface of the right side support 16, and a waist-shaped hole II corresponding to the threaded hole is vertically embedded through the front surface of the adjusting plate 17 at the left end thereof, each waist-shaped hole II is transversely arranged, and the adjusting plate 17 is transversely adjusted through the cooperation of the waist-shaped hole II and the threaded hole, and the two are locked and fixed by the bolt; the right end of the adjusting plate 17 vertically extends out of the vertical plane where the other end of the support 16 is located, and is fixedly connected with the corresponding position of the outer circumferential surface of the vertically arranged mounting seat 18, so that the mounting seat 18 moves vertically up and down and rotates horizontally with the support 16; the fixed end of the cutting assembly 19 is coaxially sleeved in the mounting seat 18 through the bearing V, and the fixed end thereof vertically extends out of the upper surface of the mounting seat 18 and is coaxially connected with the driven pulley 20; the cutting end of the cutting assembly 19 vertically extends out of the lower surface of the mounting seat 18, and a belt is annularly sleeved on the main pulley 22 and the driven pulley 20, so that the cutting assembly 19 rotates under the drive of the first motor 21 through the transmission cooperation of the main pulley 22, the belt and the driven pulley 20, and cuts the motor enameled wire coil after vertical up and down and horizontal position adjustment.

[0031] As shown in Figs. 1-3 the fixed frame 25 is coaxially and fixedly sleeved on the upper surface of the cover 11 and is located below the waist-shaped hole I 23; the fixed rod 26 is vertically arranged between the lower surface of the fixed frame 25 and the flange of the cover I 7 and is located outside the cover 11, and the fixed rod 26 is screwed through the corresponding positions of the upper and lower surfaces of the fixed frame 25 from top to bottom and then abuts and contacts with the upper surface of the flange of the cover I 7, so as to position the horizontal rotation of the cover 11.

[0032] As shown in Figs. 1-3 the abutting bolt 24 is radially and horizontally screwed on the middle position of the outer circumferential surface of the cover I 7, and the position of the abutting bolt 24 corresponds to the position of the rotating shaft I 5, so as to position the rotation of the transmission screw rod 12 through the abutting contact of the abutting bolt 24 and the rotating shaft I 5.

[0033] The utility model discloses a working principle: first cut motor through the installation hole 3 fixed on motor placement board 2 to its shell is removed, then according to the position of the motor to be cut, through the horizontal direction position of cutting assembly 19 is adjusted to rotating cover 11, and after adjusting, fixed rod 26 is screwed from top to bottom through the fixed frame 25, and abuts on the flanging upper surface corresponding position of cover I 7, and then the horizontal rotation of cover 11 is positioned, then the transverse position of cutting assembly 19 is adjusted through adjusting plate 17, and under the drive of motor, through the meshing cooperation of transmission worm 8 and transmission turbine 9, transmission screw rod is rotated, and under the assistance of waist type hole I 23 of cover 11, cutting assembly 19 is adjusted vertically up and down with the vertical 15, after adjusting, motor stops action, and the rotation of rotating shaft I 5 is further positioned through the abutting contact of abutting bolt 24 and rotating shaft I 5, then under the drive of first motor 21, through the transmission cooperation of main pulley 22, belt and from pulley 20, cutting assembly 19 is rotated, and the enameled wire coil of the motor to be cut is cut, and the motor placement board 2 can be manually rotated in the cutting process, to drive the motor to be cut to rotate.

[0034] The utility model discloses the beneficial effect:

[0035] (1) the utility model discloses a motor placement board 2 and the cooperation of rotating shaft II, basically realize automatic cutting operation, not only cutting operation process stability is high, and reduces the labor intensity,

[0036] (2) the utility model discloses the cooperation of cover 11, bearing II 6, bearing III 13 and waist type hole I 23, conveniently drive the horizontal rotation of mounting seat 18 through rotating cover 11, and then carry out the horizontal position adjustment of cutting assembly 19, to adapt to different specifications motor enameled wire cutting operation, and the scope of application is wide,

[0037] (3) the utility model discloses the cooperation of motor, transmission worm 8, transmission turbine 9, transmission screw rod 12 and the vertical up and down position adjustment of cutting assembly 19 of vertical 15,

[0038] The above-mentioned embodiment is only the preferred implementation of the utility model and is described, and does not limit the design concept and scope of the utility model, and under the premise of not departing from the design concept of the utility model, various modifications and improvements of the technical scheme of the utility model made by ordinary engineering technicians in the art should fall into the protection scope of the utility model, and the technical content of the utility model claimed has been all recorded in the technical requirements.

Claims

1. An electrical machine enameled wire coil cutting apparatus, characterized by: The utility model provides a motor cutting device, including bottom plate, motor placement plate, pivot II, adjusting mechanism and cutting assembly, the upper surface of right side of horizontal setting bottom plate is also vertically rotatory and is equipped with pivot II, and the upper end of pivot II is also horizontally coaxial and is equipped with circular motor placement plate, and motor placement plate passes through pivot II and is connected with the bottom plate around its own axial horizontal rotation, a plurality of mounting holes are vertically embedded and are opened in the upper surface of motor placement plate along its circumference direction, and the motor to be cut is fixedly installed on the upper surface of motor placement plate through mounting hole, cutting assembly is located the upper side of motor placement plate, and after adjusting mechanism is carried out vertical up and down and horizontal direction's position adjustment, then carries out cutting operation to the motor to be cut enameled wire coil.

2. A motor coil cutting apparatus according to claim 1, wherein: The opening position of each mounting hole needs to be determined according to the fixed position of the motor to be cut of different specifications.

3. A motor coil cutting apparatus as claimed in claim 1, wherein: The adjusting mechanism includes bearing I, pivot I, transmission worm, transmission turbine, motor and transmission screw rod, the upper surface of bottom plate is also vertically provided with pivot I relative to motor placement plate left side, the lower end of pivot I is rotatably connected with the bottom plate around its own axis through bearing I, and the upper end is coaxially linked with the lower end of the vertically arranged transmission screw rod through the transmission turbine, the transmission turbine is fixedly installed on the transmission screw rod through a flat key, and the center of its installation position is kept consistent with the center of the transmission worm, a transmission worm is horizontally linked on one side of the transmission turbine, and one end of the transmission worm is directly connected with the motor through a continuous casting device, so that the transmission screw rod is driven to rotate around its own axis by the meshing of the transmission worm and the transmission turbine under the drive of the motor.

4. A machine coil cutting apparatus as claimed in claim 3, wherein: It also includes a cover I, the cover I is a hollow conical body structure, both ends of which are open and coaxially spaced on the pivot I, thereby protecting the pivot I, the upper end of the cover I is a small-diameter end, and the inner diameter of the small-diameter end is larger than the diameter of the pivot I, the lower end of the cover I is horizontally flanged outward, and is fixedly screwed to the upper surface of the bottom plate at the corresponding position, the upper end of the pivot I extends vertically out of the upper surface of the cover I, and the cover I does not interfere with the rotation of the pivot I and the rotation of the motor placement plate.

5. A machine coil cutting apparatus as claimed in claim 4, wherein: It also includes bearing II, bearing III, cover plate and cover; the transmission worm is sleeved with bearing II on the transmission screw, and the inner diameter of the bearing II is coaxially sleeved with the transmission screw, and is spaced apart from the transmission worm; the transmission screw is coaxially sleeved with bearing III on the upper end, and the hollow cylindrical cover is coaxially sleeved between the bearing III and the bearing II on the transmission screw, the cover is spaced apart on the transmission screw, and the transmission screw does not interfere with the transmission; the upper end surface of the cover is screwed with the outer diameter lower surface of the bearing III, and the lower end surface is screwed with the outer diameter upper surface of the bearing II, and the engagement between the transmission worm and the transmission worm is not affected, so that the cover can rotate around its own axis; the upper end of the transmission screw extends vertically upward out of the bearing III, and the cover plate is coaxially sleeved on the upper surface of the bearing III, and the bearing III is protected by the cover plate.

6. A machine coil cutting apparatus as claimed in claim 5, wherein: It also includes cover II and bearing IV; the cover II is spaced apart on the transmission worm, and is screwed and fixed with the corresponding position of the outer circumference of the cover, and ensures that the engagement between the transmission worm and the transmission worm does not interfere, thereby protecting the transmission worm; the transmission worm is coaxially sleeved with bearing IV at both ends, and the corresponding bearing IV and cover II are sequentially extended out of the output end of the motor, and are connected with the output end of the motor; the outer diameter of the two bearings IV is coaxially sleeved with the inner circumference of the cover II, and the cover II does not interfere with the rotation of the transmission worm.

7. A machine coil cutting apparatus as claimed in claim 5, wherein: It also includes a live ring and a bracket; the transmission screw is coaxially sleeved with a live ring, the live ring is spaced apart in the inside of the cover, and is connected with the transmission screw T thread; the outer circumference of the live ring is vertically and horizontally provided with a bracket, and the other end of the two brackets is vertically extended out of the outer circumference of the cover; the waist hole I matched with the bracket is vertically embedded in the outer circumference of the cover relative to the position of the two brackets, each waist hole I is communicated with the inside of the cover, and the length of the waist hole I is 1200mm, so that the bracket moves vertically with the live ring under the rotation of the transmission screw; and under the rotation of the cover, the bracket rotates horizontally with the cover through the waist hole I of the cover.

8. A motor coil cutting apparatus as claimed in claim 7, wherein: It further includes a first motor, a main pulley, an adjusting plate, a mounting seat, a bearing V, a slave pulley and a belt; the other end of the left side of the support is connected with the fixed end of the first motor, and the output end of the first motor is vertically upward, and is coaxially connected with the horizontally arranged main pulley; four threaded holes are vertically embedded in the front surface of the right side of the support, and an adjusting plate is vertically and transversely arranged on the rear surface of the support, and a waist-shaped hole II corresponding to the threaded hole is vertically embedded in the front surface of the adjusting plate relative to the position of each threaded hole, each waist-shaped hole II is transversely arranged, and the waist-shaped hole II and the threaded hole are matched to adjust the transverse position of the adjusting plate, and the two are locked and fixed by bolts; the right end of the adjusting plate vertically extends out of the vertical plane where the other end of the support is located, and is fixedly connected with the corresponding position of the outer circumferential surface of the vertically arranged mounting seat, so that the mounting seat moves vertically up and down and rotates horizontally with the support; the fixed end of the cutting assembly is coaxially sleeved in the mounting seat through the bearing V, and the fixed end vertically extends out of the upper surface of the mounting seat, and is coaxially connected with the slave pulley; the cutting end of the cutting assembly vertically extends out of the lower surface of the mounting seat, and a belt is annularly sleeved on the main pulley and the slave pulley, so that the cutting assembly rotates under the drive of the first motor, and the motor coil is cut after vertical up and down and horizontal position adjustment.

9. A motor coil cutting apparatus as claimed in claim 7, wherein: It further includes a fixed frame and a fixed rod; a fixed frame is coaxially sleeved and fixed on the outer cover above the cover shell II, and the fixed frame is arranged below the waist-shaped hole I; a fixed rod is vertically arranged between the lower surface of the fixed frame and the flange of the cover shell I, and the fixed rod is screwed through the corresponding position of the upper and lower surfaces of the fixed frame from top to bottom, and then abuts and contacts with the upper surface of the flange of the cover shell I, so as to position the horizontal rotation of the outer cover.

10. A motor coil cutting apparatus as claimed in claim 5, wherein: It further includes an abutting bolt; an abutting bolt is radially and horizontally screwed on the outer circumferential surface of the cover shell I, and the position of the abutting bolt corresponds to the position of the rotating shaft I, so as to position the rotation of the transmission screw rod by abutting contact of the abutting bolt and the rotating shaft I.