CN111243856A - Winding device and method for inductance coil mold core winding machine - Google Patents

Winding device and method for inductance coil mold core winding machine Download PDF

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Publication number
CN111243856A
CN111243856A CN202010142229.4A CN202010142229A CN111243856A CN 111243856 A CN111243856 A CN 111243856A CN 202010142229 A CN202010142229 A CN 202010142229A CN 111243856 A CN111243856 A CN 111243856A
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winding
mold core
inductance coil
outer frame
barrel
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Chinese (zh)
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周俊英
杨婷婷
吴仁其
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Priority to CN202010142229.4A priority Critical patent/CN111243856A/en
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F41/00Apparatus or processes specially adapted for manufacturing or assembling magnets, inductances or transformers; Apparatus or processes specially adapted for manufacturing materials characterised by their magnetic properties
    • H01F41/02Apparatus or processes specially adapted for manufacturing or assembling magnets, inductances or transformers; Apparatus or processes specially adapted for manufacturing materials characterised by their magnetic properties for manufacturing cores, coils, or magnets
    • H01F41/04Apparatus or processes specially adapted for manufacturing or assembling magnets, inductances or transformers; Apparatus or processes specially adapted for manufacturing materials characterised by their magnetic properties for manufacturing cores, coils, or magnets for manufacturing coils
    • H01F41/06Coil winding
    • H01F41/082Devices for guiding or positioning the winding material on the former
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F41/00Apparatus or processes specially adapted for manufacturing or assembling magnets, inductances or transformers; Apparatus or processes specially adapted for manufacturing materials characterised by their magnetic properties
    • H01F41/02Apparatus or processes specially adapted for manufacturing or assembling magnets, inductances or transformers; Apparatus or processes specially adapted for manufacturing materials characterised by their magnetic properties for manufacturing cores, coils, or magnets
    • H01F41/04Apparatus or processes specially adapted for manufacturing or assembling magnets, inductances or transformers; Apparatus or processes specially adapted for manufacturing materials characterised by their magnetic properties for manufacturing cores, coils, or magnets for manufacturing coils
    • H01F41/06Coil winding
    • H01F41/09Winding machines having two or more work holders or formers
    • H01F41/092Turrets; Turntables

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Coil Winding Methods And Apparatuses (AREA)

Abstract

The invention relates to the technical field of inductor production. A winding device of an inductance coil mold core winding machine comprises an outer frame, a winding barrel, a power assembly, a guide mechanism, a lining plate and a winding head; the outer frame is fixedly arranged on the frame, and the winding barrel is positioned in the outer frame; the lining plate is fixedly arranged in the outer frame; the winding head is arranged at the eccentric position of the winding barrel; the power assembly is arranged on the outer frame and used for driving the winding barrel; the guide mechanism is arranged in the center of the winding barrel and used for guiding the enameled wire. The invention has the advantages that the clamping blocks and the extending blocks are guided from the upper, lower, left and right directions of the mold core, thereby preventing the enameled wire from being hooked in the winding process and leading the winding to be more stable and reliable; the mechanism has high efficiency and simple driving.

Description

Winding device and method for inductance coil mold core winding machine
Technical Field
The invention relates to the technical field of inductor production, in particular to a winding device of an inductor coil mold core winding machine.
Background
A winding machine is an apparatus for winding a linear object onto a specific work, and is generally used for winding a copper wire. The invention is used for winding the self-adhesive hollow inductance coil, the middle part of the self-adhesive hollow inductance coil is left empty without iron nails, the inductance coil is pasted on an iron core when in use, the hollow inductance coil is firstly wound on a mold core when in assembly, a plurality of winding posts are arranged on the side of the mold core, the inductance coil is wound in the winding posts, the hollow inductance coil can be obtained by taking down the hollow inductance coil after the side surface of the mold core is completely wound, and finally the self-adhesive hollow inductance coil can be obtained by pasting adhesive tapes on the inductance coil.
The patent with the publication number of CN209980975U and the patent name of automatic chip inductor winding machine comprises a case, a PLC control system, a feeding turntable, a chip inductor feeding device, a chip inductor winding device, a wire shearing device, a wire head and strand leveling device, a wire tail shearing device, a wire arranging device, a finished product output device and a finished product automatic swinging device, wherein the chip inductor feeding device, the chip inductor winding device, the wire shearing device, the wire head and strand leveling device, the wire tail shearing device, the wire arranging device, the finished product output device and the finished product automatic swinging device are sequentially and annularly arranged on the; the feeding turntable comprises a turntable body and a plurality of chuck jigs fixed on the periphery of the turntable body.
The prior art has the following problems: 1. the lead is easy to hook in the winding process of the inductance coil, and the guide mechanism is complex; 2. the processing efficiency is low, and the processing synchronism is not high; 3. the position of the inductance coil is easy to dislocate during working, and the coil is fed after being wound singly at a time, so that the efficiency is low.
Disclosure of Invention
The invention aims to provide a winding device of an inductance coil mold core winding machine, which aims at solving the problems that a lead is easy to hook and a guide mechanism is complex in the prior art, leads are wound and guided, the winding is more stable, and the guiding is efficient.
For the purpose of the invention, the following technical scheme is adopted for realizing the purpose: a winding device of an inductance coil mold core winding machine comprises an outer frame, a winding barrel, a power assembly, a guide mechanism, a lining plate and a winding head; the outer frame is fixedly arranged on the frame, and the winding barrel is positioned in the outer frame; the lining plate is fixedly arranged in the outer frame, a round hole is formed in the middle of the lining plate and is used for the winding barrel to penetrate through, the lining plate is provided with a roller wheel, the roller wheel is positioned on the periphery of the round hole, and the surface of the roller wheel is in contact with the surface of the winding barrel; the winding head is arranged at the eccentric position of the winding barrel, a plurality of discharge ports are formed in the winding head, and the enameled wire is arranged in the discharge ports; the power assembly is arranged on the outer frame and used for driving the winding barrel; the guide mechanism is arranged in the center of the winding barrel and used for guiding the enameled wire.
Preferably, the two adjacent winding barrels are arranged, and the synchronous belts are arranged between the winding barrels and connected with each other.
Preferably, the power assemblies are provided with two groups, one group of power assemblies corresponds to one winding barrel, and each power assembly comprises a driving motor, a first transmission belt, a middle shaft and a second transmission belt; the middle shaft is connected to the outer frame through a horizontal bearing, a belt wheel is arranged on the middle shaft, the driving motor is arranged on the outer frame, and the driving motor and the middle shaft are in transmission through a first transmission belt; one end of the second transmission belt is wound on the intermediate shaft, and the other end of the second transmission belt is wound on the winding barrel.
Preferably, the guide mechanism comprises a supporting seat, a clamping block, a protruding block, a driving strip and a driving cylinder; the supporting seat is positioned in the middle of the winding barrel, the supporting seat is hollow, an ear plate is arranged at the side end of the supporting seat, and an elongated slot is formed in the ear plate; a guide pillar is arranged on the side of the supporting seat; the clamping blocks are movably connected to the end face of the supporting seat through sliding rails, the upper clamping block and the lower clamping block are connected through tensioned springs, and balls are arranged at the end parts of the clamping blocks; the driving strip is located at the center of the supporting seat, the driving cylinder is installed on the outer frame, the telescopic end of the driving cylinder is connected with one end of the driving strip, the other end of the driving strip is a wedge-shaped block, the inclined surface of the wedge-shaped block corresponds to the ball on the clamping block, and the plane of the wedge-shaped block corresponds to the sliding rod in the extending block.
Preferably, the protruding block is movably matched in the long groove, the end part of the protruding block is in a pointed shape, the end part is provided with a notch, and the clamping block is positioned in the notch.
A winding method of an inductance coil mold core drives an air cylinder to drive an extension block to extend out, firstly pushes a clamping block to expand, and then pushes the extension block to approach the mold core; then driving motor rotates, drives the wire winding bucket syntropy simultaneously and rotates, makes the wire winding head rotate round the mold core, and the enameled wire is slowly sent out, twines.
The production method of the self-adhesive hollow inductance coil comprises the following steps that a plurality of winding posts are arranged on the side of a mold core, the inductance coil is wound in the winding posts, the hollow inductance coil is wound on the mold core firstly during assembly, and the method for winding the hollow inductance coil on the mold core is as above; and after the side surfaces of the mold core are completely wound, taking down the mold core to obtain a hollow inductance coil, and sticking an adhesive tape on the inductance coil to obtain the self-adhesive hollow inductance coil.
An inductance coil mold core winding machine comprises a rack, a winding device, a mold core fixing device, a wire shearing device, a carrying manipulator and a conveying device, wherein the winding device, the mold core fixing device, the wire shearing device, the carrying manipulator and the conveying device are arranged on the rack; the winding device is positioned on the side of the mold core fixing device, the trimming device is arranged at the upper end of the mold core fixing device and corresponds to a lead discharge port of the winding device, and the carrying manipulator is connected with the conveying device and the mold core fixing device; the winding device adopts the technical scheme to provide the winding device of the inductance coil mold core winding machine.
Preferably, the winding device of the inductance coil mold core winding machine is used for winding a wound enameled wire on a mold core, the mold core fixing device is used for fixing the mold core, the conveying device is used for conveying the mold core before and after winding, the conveying manipulator is used for conveying the mold core between the mold core fixing device and the conveying device, and the wire shearing device is used for shearing and clamping the enameled wire.
The winding device of the inductance coil mold core winding machine adopting the technical scheme has the beneficial effects that: the clamping block and the extending block are driven to move in sequence by arranging the driving strip, and the clamping block and the extending block are guided from the upper direction, the lower direction, the left direction and the right direction of the mold core, so that the enameled wire is prevented from being hooked in the winding process, and the winding is more stable and reliable; the mechanism is driven by one driving cylinder to generate two motions, the action of the mechanism is high-efficiency, and the driving is simple; the winding device has two stations, and the wire winding bucket on two stations passes through the hold-in range and rotates the synchronism higher, and the processing of two stations is synchronous.
The inductance coil mold core winding machine adopting the technical scheme has the beneficial effects that: 1. the winding device drives the clamping block and the extending block to move in sequence by arranging the driving strip, and the clamping block and the extending block are guided from the upper direction, the lower direction, the left direction and the right direction of the mold core, so that the enameled wire is prevented from being hooked in the winding process, and the winding is more stable and reliable; the mechanism is driven by one driving cylinder to generate two motions, the action of the mechanism is high-efficiency, and the driving is simple; the winding device has two stations, and the wire winding bucket on two stations passes through the hold-in range and rotates the synchronism higher, and the processing of two stations is synchronous. 2. The mold core fixing device compresses the mold core through the compressing block, and positions the mold core, so that the position of the mold core is stable and reliable; the rotating assembly drives the mold core to rotate step by step, so that the conducting wire can be wound for multiple times conveniently; the inductor coil is wound by using the method of the mold core, the winding quality of the coil can be improved, the plurality of winding blocks are arranged on the side of the mold core, the number of windings can be increased in the sequential processing of the mold core, and the winding efficiency is improved. . 3. The invention is provided with two stations, the processing efficiency is high, and the two stations are linked and have high synchronism.
Drawings
Fig. 1 is an exploded view of an inductor core winding machine according to an embodiment of the present invention.
Fig. 2 is an exploded view of the winding device.
Fig. 3 is an exploded view of the guidance mechanism.
Fig. 4 is an exploded view of the core fixing device and the thread trimming device.
Detailed Description
As shown in fig. 1, an inductance coil core winding machine comprises a frame, a winding device 2, a core fixing device 3, a thread trimming device 4, a carrying manipulator and a conveying device, wherein the winding device 2, the core fixing device 3, the thread trimming device 4, the carrying manipulator and the conveying device are mounted on the frame; the winding device 2 is located on the side of the mold core fixing device 3, the thread trimming device 4 is installed at the upper end of the mold core fixing device 3, the thread trimming device 4 corresponds to a lead discharge port of the winding device 2, and the carrying manipulator is connected with the conveying device and the mold core fixing device 3.
The winding device 2 is used for winding the wound enameled wire on the mold core, the mold core fixing device 3 is used for fixing the mold core, the conveying device is used for conveying the mold core before and after winding, the conveying mechanical arm is used for conveying the operation of the mold core between the mold core fixing device 3 and the conveying device, and the wire shearing device 4 is used for shearing and clamping the enameled wire.
As shown in fig. 2 and fig. 3, the winding device of the inductor core winding machine includes an outer frame 21, a winding barrel 22, a power assembly 23, a guiding mechanism 24, a lining plate 25 and a winding head 26; the outer frame 21 is fixedly arranged on the frame, and the winding barrel 22 is positioned in the outer frame 21; the lining plate 25 is fixedly arranged in the outer frame 21, a circular hole is formed in the middle of the lining plate 25 and is used for the winding barrel 22 to pass through, the lining plate 25 is provided with a roller 251, the roller 251 is positioned on one circle of the circular hole, and the surface of the roller 251 is contacted with the surface of the winding barrel 22; two adjacent winding barrels 22 are arranged, and synchronous belts 27 are arranged between the winding barrels 22 for connection; the winding head 26 is arranged at the eccentric position of the winding barrel 22, a plurality of discharge ports are formed in the winding head 26, and the enameled wires are arranged in the discharge ports; the power assembly 23 is arranged on the outer frame 21 and used for driving the winding barrel 22; the guiding mechanism 24 is disposed at the center of the winding drum 22, and the guiding mechanism 24 is used for guiding the enameled wire.
The power assemblies 23 are provided with two groups, one group of power assemblies 23 corresponds to one winding barrel 22, and each power assembly 23 comprises a driving motor 231, a first transmission belt 232, a middle shaft 233 and a second transmission belt 234; the intermediate shaft 233 is connected to the outer frame 21 through a horizontal bearing, the intermediate shaft 233 is provided with a belt wheel, the driving motor 231 is arranged on the outer frame 21, and the driving motor 231 and the intermediate shaft 233 are in transmission through a first transmission belt 232; the second driving belt 234 is wound around the intermediate shaft 233 at one end and the winding drum 22 at the other end.
The guide mechanism 24 comprises a supporting seat 241, a clamping block 242, a protruding block 243, a driving bar 244 and a driving air cylinder 245; the supporting seat 241 is positioned in the middle of the winding drum 22, the supporting seat 241 is hollow, an ear plate 246 is arranged at the side end of the supporting seat 241, and a long groove 2461 is arranged in the ear plate 246; a guide post 247 is arranged at the side of the supporting seat 241; the clamping blocks 242 are movably connected to the end face of the supporting seat 241 through sliding rails, the upper clamping block 242 and the lower clamping block 242 are connected through a tensioned spring, and balls are arranged at the end parts of the clamping blocks 242; the extending block 243 is movably matched in the long groove 2461, the end part of the extending block 243 is in a pointed shape, a gap is arranged at the end part, and the clamping block 242 is positioned in the gap; the driving bar 244 is located in the center of the supporting seat 241, the driving cylinder 245 is installed on the outer frame 21, the telescopic end of the driving cylinder 245 is connected with one end of the driving bar 244, the other end of the driving bar 244 is a wedge-shaped block, the inclined surface of the wedge-shaped block corresponds to the ball on the clamping block 242, and the plane of the wedge-shaped block corresponds to the sliding rod in the extending block 243.
The winding method of the inductance coil mold core is operated by adopting the winding device, the driving cylinder 245 drives the extension block 243 to extend out, firstly, the movable clamping block 242 is pushed to expand, and then the extension block 243 is pushed to approach the mold core; then the driving motor 231 rotates to drive the winding barrel 22 to rotate in the same direction, so that the winding head 26 rotates around the mold core, and the enameled wire is slowly sent out for winding.
The winding device solves the problems that a lead is easy to hook and a guide mechanism is complex in the winding process of an inductance coil, the clamping block 242 and the extending block 243 are driven to move sequentially by arranging the driving strip 244, and the clamping block 242 and the extending block 243 guide from the upper direction, the lower direction, the left direction and the right direction of the inductance coil, so that an enameled wire is prevented from hooking in the winding process, and the winding is more stable and reliable; the two motions are generated by driving through one driving air cylinder 245, the mechanism has high action efficiency and simple driving; the winding device 2 has two stations, the rotation synchronism of the winding barrels 22 on the two stations is higher through the synchronous belt 27, and the processing of the two stations is synchronous.
A production method of a self-adhesive hollow inductance coil comprises the steps that a plurality of winding columns are arranged on the side of a mold core, the inductance coil is wound in the winding columns, the hollow inductance coil is wound on the mold core firstly during assembly, the hollow inductance coil is wound on the mold core, the winding method of the inductance coil mold core is characterized in that the side face of the mold core is taken down after the whole winding is finished, the hollow inductance coil is obtained, and an adhesive tape is pasted on the inductance coil, so that the self-adhesive hollow inductance coil can be obtained.
As shown in fig. 4, the mold core fixing device 3 includes a lifting frame 31, a mounting base 32, a rotating base 33, a rotating assembly 34, a lifting cylinder 35, a moving assembly 36 and a pressing block 37; the mounting seat 32 is movably connected to the rack through a sliding rail, the moving component 36 is arranged on the bottom surface of the mounting seat 32, and the moving part of the moving component 36 is connected with the mounting seat 32 to drive the mounting seat 32 to move; the rotating seats 33 are hinged on the mounting seat 32, the rotating assembly 34 is connected to the bottom surface of the mounting seat 32, and the rotating assembly 34 drives the two rotating seats 33 to rotate synchronously; the fixed end of the lifting cylinder 35 is arranged on the mounting seat 32, the telescopic end of the lifting cylinder 35 is connected with the lifting frame 31, and the lifting frame 31 is movably connected in the mounting seat 32; the pressing block 37 is hinged with a support and is arranged at the upper end of the lifting frame 31, the pressing block 37 is conical, and the pressing block 37 is connected with the rotating seat 33. The rotating assembly 34 includes a stepping motor, a synchronous wheel and a synchronous belt. The moving assembly 36 includes a motor, a screw shaft and a screw nut.
When the mold core fixing device 3 works, the mold core is arranged on the rotating seat 33, and then the lifting cylinder 35 drives the lifting frame 31 to ascend so as to tightly press the rotor on the pressing block 37; then the moving component 36 moves to drive the mounting seat 32 to be close to the winding device 2; then the rotating assembly 34 drives the two rotating bases 33 to rotate synchronously at the same time, and each time, the two rotating bases rotate by a certain amplitude.
The die core fixing device 3 solves the problems that the position of the die core is easy to move in a staggered manner and the winding efficiency is low during working, and the die core is pressed by the pressing block 37 to be positioned, so that the position of the die core is stable and reliable; the rotating assembly 34 drives the mold core to rotate step by step, so that the conducting wire can be wound for multiple times conveniently; the inductor coil is wound by using the method of the mold core, the winding quality of the coil can be improved, the plurality of winding blocks are arranged on the side of the mold core, the number of windings can be increased in the sequential processing of the mold core, and the winding efficiency is improved.
As shown in fig. 4, the thread trimming device 4 includes a connecting block 41, a mounting plate 42, a telescopic cylinder 43, a telescopic frame 44, a thread trimming cylinder 45 and scissors 46; the mounting plate 42 is mounted on the lifting frame 31 through the connecting block 41, the telescopic cylinder 43 is mounted on the mounting plate 42, the telescopic end of the telescopic cylinder 43 is connected with the telescopic frame 44, and the telescopic frame 44 is movably connected on the mounting plate 42; the thread cutting cylinder 45 is installed on the telescopic frame 44, and the scissors 46 are controlled to open and close by the thread cutting cylinder 45.
When the wire shearing device 4 works, the telescopic cylinder 43 drives the telescopic frame 44 to extend into the wire shearing device to be close to the mold core, and the wire shearing cylinder 45 drives the scissors 46 to open and close to shear the enameled wire.
When the induction coil mold core winding machine works, the induction coil mold core winding machine is processed through the following steps in sequence:
feeding a mold core: the conveying device conveys the mold cores, and the conveying manipulator conveys the mold cores to the mold core fixing device 3;
(II) winding of an inductance coil: the driving cylinder 245 drives the extension block 243 to extend, firstly, the clamping block 242 is pushed to expand, and then the extension block 243 is pushed to approach the mold core; then the driving motor 231 rotates to drive the winding barrel 22 to rotate in the same direction, so that the winding head 26 rotates around the mold core, and the enameled wire is slowly sent out for winding; after a group of coils are wound, the wire cutting device 4 is cut off, then the mold core rotates, and a plurality of coils are wound on the side surface of the mold core
(III) blanking of the inductance coil: the telescopic cylinder 43 drives the telescopic frame 44 to extend into the mould core to be close to the mould core, and the wire shearing cylinder 45 drives the scissors 46 to open and close to shear the enameled wire; then the conveying manipulator conveys the mold core wound with the inductance coil to a conveying device to realize blanking, and the inductance coil is separated from the mold core to obtain a product of the inductance coil.

Claims (8)

1. A winding device of an inductance coil mold core winding machine is characterized by comprising an outer frame (21), a winding barrel (22), a power assembly (23), a guide mechanism (24), a lining plate (25) and a winding head (26); the outer frame (21) is fixedly arranged on the frame, and the winding barrel (22) is positioned in the outer frame (21); the lining plate (25) is fixedly arranged in the outer frame (21), a round hole is formed in the middle of the lining plate (25) and is used for the winding barrel (22) to penetrate through, the lining plate (25) is provided with a roller (251), the roller (251) is positioned in the periphery of the round hole, and the surface of the roller (251) is in contact with the surface of the winding barrel (22); the winding head (26) is arranged at the eccentric position of the winding barrel (22), a plurality of discharge holes are formed in the winding head (26), and the enameled wire is arranged in the discharge holes; the power assembly (23) is arranged on the outer frame (21) and used for driving the winding barrel (22); the guide mechanism (24) is arranged in the center of the winding barrel (22), and the guide mechanism (24) is used for guiding the enameled wire.
2. The winding device of the inductor coil core winding machine according to claim 1, wherein two adjacent winding drums (22) are arranged, and the winding drums (22) are connected with each other through a synchronous belt (27).
3. The winding device of the induction coil core winding machine according to claim 1, wherein the power assemblies (23) are provided in two groups, one group of power assemblies (23) corresponds to one winding barrel (22), and each power assembly (23) comprises a driving motor (231), a first transmission belt (232), an intermediate shaft (233) and a second transmission belt (234); the middle shaft (233) is connected to the outer frame (21) through a horizontal bearing, a belt wheel is arranged on the middle shaft (233), the driving motor (231) is arranged on the outer frame (21), and the driving motor (231) and the middle shaft (233) are in transmission through a first transmission belt (232); one end of the second transmission belt (234) is wound on the intermediate shaft (233), and the other end is wound on the winding barrel (22).
4. The winding device of the induction coil core winding machine according to claim 1, wherein the guiding mechanism (24) comprises a supporting base (241), a clamping block (242), a protruding block (243), a driving bar (244) and a driving cylinder (245); the supporting seat (241) is positioned in the middle of the winding barrel (22), the supporting seat (241) is hollow, an ear plate (246) is arranged at the side end of the supporting seat (241), and a long groove (2461) is formed in the ear plate (246); a guide post (247) is arranged at the side of the supporting seat (241); the clamping blocks (242) are movably connected to the end face of the supporting seat (241) through sliding rails, the upper clamping block (242) and the lower clamping block (242) are connected through a tensioned spring, and balls are arranged at the end parts of the clamping blocks (242); the driving bar (244) is positioned in the center of the supporting seat (241), the driving cylinder (245) is installed on the outer frame (21), the telescopic end of the driving cylinder (245) is connected with one end of the driving bar (244), the other end of the driving bar (244) is a wedge-shaped block, the inclined surface of the wedge-shaped block corresponds to the ball on the clamping block (242), and the plane of the wedge-shaped block corresponds to the sliding rod in the extending block (243).
5. The winding device of the inductor coil core winding machine according to claim 1, wherein the protruding block (243) is movably fitted in the elongated slot (2461), the end of the protruding block (243) is pointed, the end is provided with a notch, and the clamping block (242) is located in the notch.
6. The winding method of the inductor coil mold core according to claim 1, characterized in that the driving cylinder (245) drives the extension block (243) to extend, firstly the movable clamping block (242) is pushed to expand, and then the extension block (243) is pushed to approach the mold core; then driving motor (231) rotate, drive winding barrel (22) syntropy simultaneously and rotate, make wire winding head (26) rotate round the mold core, the enameled wire is slowly sent out, twines.
7. The production method of the self-adhesive hollow inductance coil is characterized in that the hollow inductance coil is wound on the mold core firstly during assembly, the hollow inductance coil is taken down after the side surface of the mold core is completely wound to obtain the hollow inductance coil, and an adhesive tape is pasted on the inductance coil to obtain the self-adhesive hollow inductance coil.
8. An inductance coil mold core winding machine is characterized by comprising a rack, a winding device (2), a mold core fixing device (3), a wire shearing device (4), a carrying manipulator and a conveying device, wherein the winding device, the mold core fixing device (3), the wire shearing device (4), the carrying manipulator and the conveying device are arranged on the rack; the winding device is used for winding a wound enameled wire on the mold core, the mold core fixing device (3) is used for fixing the mold core, the conveying device is used for conveying the mold core before and after winding, the conveying mechanical arm is used for conveying the mold core between the mold core fixing device (3) and the conveying device, and the wire shearing device (4) is used for shearing and clamping the enameled wire.
CN202010142229.4A 2020-03-04 2020-03-04 Winding device and method for inductance coil mold core winding machine Withdrawn CN111243856A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202010142229.4A CN111243856A (en) 2020-03-04 2020-03-04 Winding device and method for inductance coil mold core winding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202010142229.4A CN111243856A (en) 2020-03-04 2020-03-04 Winding device and method for inductance coil mold core winding machine

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Publication Number Publication Date
CN111243856A true CN111243856A (en) 2020-06-05

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Application Number Title Priority Date Filing Date
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113394007A (en) * 2021-07-02 2021-09-14 莱芜成威电子材料有限公司 Soft magnetic core and soft magnetic core winding method
CN114300264A (en) * 2021-12-28 2022-04-08 有励电子(昆山)有限公司 Hollow inductance coil winding equipment and winding method thereof

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113394007A (en) * 2021-07-02 2021-09-14 莱芜成威电子材料有限公司 Soft magnetic core and soft magnetic core winding method
CN114300264A (en) * 2021-12-28 2022-04-08 有励电子(昆山)有限公司 Hollow inductance coil winding equipment and winding method thereof
CN114300264B (en) * 2021-12-28 2023-09-01 有励电子(昆山)有限公司 Air core inductance coil winding equipment and winding method thereof

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Application publication date: 20200605