CN109285692A - A kind of multi-thread coil winding machine - Google Patents

A kind of multi-thread coil winding machine Download PDF

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Publication number
CN109285692A
CN109285692A CN201811368418.2A CN201811368418A CN109285692A CN 109285692 A CN109285692 A CN 109285692A CN 201811368418 A CN201811368418 A CN 201811368418A CN 109285692 A CN109285692 A CN 109285692A
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CN
China
Prior art keywords
supporting mechanism
paper
supporting
wire
paper feeding
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Pending
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CN201811368418.2A
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Chinese (zh)
Inventor
光和田
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Beijing Wandete Electromechanical Technology Research Institute
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Beijing Wandete Electromechanical Technology Research Institute
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Application filed by Beijing Wandete Electromechanical Technology Research Institute filed Critical Beijing Wandete Electromechanical Technology Research Institute
Priority to CN201811368418.2A priority Critical patent/CN109285692A/en
Publication of CN109285692A publication Critical patent/CN109285692A/en
Pending legal-status Critical Current

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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
    • H01F41/064Winding non-flat conductive wires, e.g. rods, cables or cords
    • H01F41/069Winding two or more wires, e.g. bifilar winding

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Replacement Of Web Rolls (AREA)

Abstract

The invention proposes a kind of multi-thread coil winding machine, solve coil winding machine in the prior art because of the limitation of structure, it is impossible to meet the demand of batch production, the problem of causing production efficiency to reduce;Including supporting mechanism, setting is using ground;Paper advance mechanism is arranged on supporting mechanism, is placed in supporting mechanism one end;Paper feed mechanism, setting are disposed adjacent on supporting mechanism, and with Song Ji mechanism;Wire-arranging mechanism is arranged on supporting mechanism, and wire-arranging mechanism is arranged on paper feed mechanism;For the mainshaft mechanism of tooling installation, it is arranged on supporting mechanism, is placed in the supporting mechanism other end, and be disposed adjacent with paper advance mechanism;Control mechanism is located on supporting mechanism, and is connect respectively with paper advance mechanism, paper feed mechanism, wire-arranging mechanism and mainshaft mechanism;Multi-thread coil winding machine proposed by the present invention needs batch that can carry out simultaneously when carrying out coiling;The efficiency of coiling is improved while guaranteeing around line mass.

Description

Multi-wire winding machine
Technical Field
The invention relates to the field of winding equipment, in particular to a multi-wire winding machine.
Background
The winding machine winds the conducting wire and the insulating material on a tool together to form a coil and the like, and replaces the original manual winding mode; the production period is shortened, and the labor cost is reduced;
winding machine among the prior art is when winding to the frock, and the mode of adoption is through transmitting single wire to twine the wire on the frock, however, in batch production, when single wire twines, because the restriction of structure, can only carry out the wire winding of single frock at the same time, however, this kind of wire winding mode is in single cycle, and wire-wound frock is limited, consequently, can not satisfy the needs of production in batch production, causes production efficiency's reduction.
Disclosure of Invention
The invention provides a multi-wire winding machine, which solves the problem that the winding machine in the prior art cannot meet the requirement of batch production due to structural limitation, so that the production efficiency is reduced.
The technical scheme of the invention is realized as follows:
a multiple wire winding machine comprising:
a support mechanism provided at a place of use;
the paper feeding mechanism is arranged on the supporting mechanism and is arranged at one end of the supporting mechanism;
the paper conveying mechanism is arranged on the supporting mechanism and is adjacent to the machine feeding mechanism;
the wire arranging mechanism is arranged on the supporting mechanism and arranged on the paper conveying mechanism;
the main shaft mechanism is arranged on the supporting mechanism, arranged at the other end of the supporting mechanism and arranged adjacent to the paper feeding mechanism;
and the control mechanism is arranged on the supporting mechanism and is respectively connected with the paper feeding mechanism, the paper conveying mechanism, the wire arrangement mechanism and the main shaft mechanism.
As a further technical solution, the support mechanism includes:
the supporting plate and the control box are arranged oppositely, and the control mechanism is arranged on the control box and is connected with components inside the control box.
As a further technical solution, a paper feeding mechanism includes:
the paper feeding wheel is arranged at one end of the supporting mechanism and is adjacent to the paper feeding mechanism.
And the paper feeding motor is connected with the paper feeding wheel.
As a further technical solution, the paper feeding mechanism includes:
the conveying device is arranged on the supporting mechanism;
the adsorption device is arranged at the lower part of the conveying device;
and the detection cutting device is arranged on the supporting mechanism and is arranged above the conveying device.
As a further technical solution, the transfer device includes:
the driving roller and the driven roller are oppositely arranged on the supporting mechanism, and the driving roller is connected with the paper conveying motor;
the conveying belt is provided with a plurality of air holes.
As a further technical solution, the traverse mechanism includes:
the transverse moving device is arranged on the supporting mechanism;
the longitudinal moving device is arranged on the transverse moving device and driven by the transverse moving device to act;
the moving frame is arranged on the longitudinal moving device and driven by the longitudinal moving device to act;
and the plurality of wire arrangement groups are arranged on the movable frame and move simultaneously along with the movable frame.
As a further technical solution, the flat cable group includes:
one end of the flat cable connecting arm is connected with the movable frame;
the flat cable supporting arm is connected with the other end of the flat cable connecting arm;
the wire arrangement wheel is arranged on the wire arrangement supporting arm.
As a further technical solution, the spindle mechanism includes:
the rotating seat is arranged at one end of the supporting mechanism;
the outer swing mechanism is arranged on the rotating seat and can rotate on the rotating seat;
one end of the rotating main shaft is connected with the outer swing mechanism, and the other end of the rotating main shaft is connected with the supporting mechanism;
and the locking mechanism is used for limiting the position of the rotating seat, is arranged on the supporting mechanism and is adjacent to the rotating seat.
As a further technical solution, the method further comprises:
a safety cover for avoiding roating seat and external contact, carry out roating seat protection sets up on supporting mechanism to adjacent the setting with the roating seat.
As a further technical solution, the outward swing mechanism includes:
the connecting frame is arranged on the rotating seat, and a positioning through hole is formed in the top of the connecting frame;
the swinging block is connected with one side shaft of the connecting frame, one end of the rotating main shaft is arranged on the swinging block and moves along with the swinging block, and a positioning hole is formed in the swinging block in a way that the fixed language of the swinging block is opposite to the positioning hole;
one end of the positioning piece passes through the positioning through hole and then is arranged in the positioning hole.
According to the technical scheme, the paper is fed onto the paper conveying mechanism through the paper feeding mechanism, the length of the paper is obtained while the paper is conveyed through the paper conveying mechanism, the paper is cut according to the winding condition of the tool, the winding mechanism is matched with the main shaft mechanism to wind the paper on the tool, the winding mechanism is matched with the paper conveying mechanism to wind the wires and the paper on the tool simultaneously, and the winding mechanism can wind the wires and the paper simultaneously, so that when the winding is required in batches, the winding can be carried out simultaneously through the technical scheme provided by the invention, the winding efficiency is improved while the winding quality is ensured.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a schematic structural view of a multi-wire winding machine according to the present invention;
FIG. 2 is a schematic view of the structure of FIG. 1 from another angle;
FIG. 3 is a mechanism diagram of the paper feed mechanism;
FIG. 4 is a schematic view of a detecting and cutting device;
FIG. 5 is a schematic structural view of a wire arranging mechanism;
FIG. 6 is a schematic structural view of the spindle mechanism;
fig. 7 is a schematic structural view of the longitudinal cutter mechanism.
In the figure:
1. a support mechanism; 11. a support plate; 12. a control box; 2. a paper feeding mechanism; 21. a paper feeding wheel; 3. a paper feed mechanism; 311. a drive roll; 312. a driven roller; 313. a conveyor belt; 32. an adsorption device; 33. detecting a cutting device; 331. a paper conveying table; 332. a detection device; 333. a cutting device; 4. a wire arranging mechanism; 41. A lateral movement device; 42. a longitudinal moving device; 43. a movable frame; 44. a line arrangement group; 441. a flat cable connecting arm; 442. a flat cable support arm; 443. a wire arrangement wheel; 5. a spindle mechanism; 51. a rotating base; 52. an outward swinging mechanism; 53. rotating the main shaft; 54. a locking mechanism; 6. a control mechanism; 7. a longitudinal cutter mechanism; 71. a segmented scaffold; 72. a first driving device; 73. a segment cutting device; 74. a connecting rod; 75. pushing the plate; 76. a second driving device; 77. a trimming and cutting device; 78. and a guide shaft.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
As shown in fig. 1 to 7, the present invention provides a multi-wire winding machine, comprising:
the supporting mechanism 1 is arranged at a use place and integrally supported by the supporting mechanism 1, wherein the supporting mechanism 1 comprises a supporting plate 11 and a control box 12, the supporting plate 11 is arranged opposite to the control box 12, and the control mechanism 6 is arranged on the control box 12 and is connected with the internal components of the control box 12; in the invention, a driving motor and a lead wire of corresponding parts are arranged in the control box 12;
the paper feeding mechanism 3 is provided with a paper feeding mechanism 32 on the supporting mechanism 1 and is arranged at one end of the supporting mechanism 1; the paper conveying mechanism is arranged on the supporting mechanism 1 and is adjacent to the machine feeding mechanism; the sheet feeding mechanism 32 feeds the sheet to the sheet conveying mechanism by the sheet feeding mechanism 3, and further performs conveyance and cutting of the sheet by the sheet conveying mechanism, wherein,
the paper feeding mechanism 3 paper feeding mechanism 32 includes paper feeding wheel 21 and paper feeding motor, the paper feeding wheel 21 is set up in one end of the supporting mechanism 1, and set up adjacent to paper feeding mechanism 32 of the paper feeding mechanism 3; the paper feeding motor is connected with the paper feeding wheel 21; the paper feeding wheel 21 is driven by the paper feeding motor to transfer and convey the paper;
as shown in fig. 3, the paper feed mechanism includes a conveying device provided on the support mechanism 1, an adsorption device 32, and a detection cutter device; the adsorption device 32 is arranged at the lower part of the conveying device; the conveying device comprises a driving roller 311, a driven roller 312 and a conveying belt 313, wherein the driving roller 311 and the driven roller 312 are oppositely arranged on the supporting mechanism 1, and the driving roller 311 is connected with a paper conveying motor; the conveying belt 313 is provided with a plurality of air holes; the detection cutting device is arranged on the supporting mechanism 1 and is arranged above the conveying device;
specifically, the conveying device is arranged on a fixed frame, and the fixed frame is arranged on the supporting mechanism; the driving roller 311 is arranged at one end of the fixed frame; the driven roller 312 is arranged at the other end of the fixing frame; in the present invention, the driving roller 311 is driven by the paper feeding motor;
the conveying belt 313 is arranged between the driving roller 311 and the driven roller 312, and a plurality of ventilation holes are formed in the conveying belt 313; when the paper conveying device is used, the paper conveying motor drives the driving roller 311 to act, and then the driven roller 312 acts simultaneously under the action of the conveying belt 313, so that the conveying belt 313 conveys paper;
in the invention, a vacuum box is also arranged on the fixed frame and is arranged between the driving roller 311 and the driven roller 312; the adsorption device 32 is arranged on the fixing frame and is arranged in the vacuum box; in the present invention, the vacuum box is arranged at the periphery of the adsorption device 32, and the top of the vacuum box is arranged adjacent to the conveying belt 313, so that when paper is arranged on the conveying belt 313, the paper is adsorbed on the conveying belt 313 under the action of the adsorption device 32, and the paper is prevented from being deformed or shifted in position during the conveying process; in the present invention, the adsorption device 32 includes a plurality of blowers; the paper is tightly attached to the conveying belt 313 under the action of a plurality of blowers;
as shown in fig. 4, the detecting and cutting device includes a paper feeding table 331, the paper feeding table 331 is provided on the supporting mechanism 1, and the paper (insulating paper) enters the paper feeding table 331 through the paper feeding mechanism, and is continuously conveyed onto the conveyor belt 313 through the paper feeding table 331, and is continuously conveyed to the position of the detecting device 332;
the detection device 332 is arranged on the support frame, and the length of the paper entering the paper conveying table 331 is detected through the detection device 332; wherein,
the detection device 332 comprises a detection frame, a detection group and a detection roller, wherein the detection frame is arranged on the supporting mechanism 1; the detection group is arranged on the detection frame and is connected with the control mechanism 6; the detection roller is arranged on the supporting mechanism 1 and is opposite to the detection group, and when paper passes through the detection group and the detection roller, the length of the paper is obtained through the detection group; when the paper enters the position of the detection device 332, the length measurement of the paper is realized through the cooperation of the detection group and the detection roller;
and, the detection group includes: the first detection part and the second detection part are arranged on one side of the detection frame; the second detection part is arranged on the other side of the detection frame; in the invention, the first detection part and the second detection part have the same structure, and detection is simultaneously carried out in the using process, so that the accuracy of the detection result is improved; for better explanation, in the present invention, the structure of the first detecting portion is used for explanation, and the structure of the second detecting portion is the same as the first detecting portion, so that the present invention is not further described for saving space;
the first detection part comprises a detection shell, a detection wheel and a wire pressing wheel, and the detection shell is arranged on the detection frame; the detection wheel is arranged on the detection shell and is connected with the control mechanism 6; the wire pressing wheel is arranged on the detection shell; in the actual use process, the detection wheel is pressed on the paper through the gravity of the line pressing wheel, the detection wheel is matched with the rotation of the detection roller to detect the paper passing through the detection wheel, and preferably, the line pressing wheel is an encoder; acquiring the length of the paper by the rotation of the encoder;
the cutting device 333 is provided on the support mechanism 1, and is provided adjacent to the detection device 332; cutting the paper by the cutting device 333 according to the detection result of the detection device 332; the cutting device 333 comprises a cutting cylinder and a cutting knife, wherein the cutting cylinder is arranged on the supporting mechanism 1 and is connected with the control mechanism 6; the cutting knife is movably arranged on the supporting mechanism 1 and is connected with the cutting cylinder; when the length of the sheet is acquired by the detecting device 332, the cutting device 333 operates to cut the sheet;
the control mechanism 6 is respectively connected with the detection device 332 and the cutting device 333; the detection device 332 acquires the length of the paper, and sends the length to the control mechanism 6, and when the control mechanism 6 determines that the detected length is the preset length, the control mechanism controls the cutting device 333 to operate to cut the paper; as the coil on the tool and the paper are continuously wound, the length of the paper detected by the detecting device 332 changes, that is, under the control of the control mechanism 6, the result of the paper detected by the detecting device 332 changes, and the length of the paper cut by the cutting device 333 increases.
The wire arranging mechanism 4 is arranged on the supporting mechanism 1, and the wire arranging mechanism 4 is arranged on the paper conveying mechanism;
wherein,
the wire arranging mechanism 4 comprises a transverse moving device 41, a longitudinal moving frame 43 and a plurality of wire winding groups, wherein the transverse moving device 41 is arranged on the supporting mechanism 1; the longitudinal moving device 42 is arranged on the transverse moving device 41 and is driven by the transverse moving device 41 to act; the moving frame 43 is arranged on the longitudinal moving device 42 and is driven by the longitudinal moving device 42 to act; a plurality of line-arrangement groups 44 are arranged on the moving frame 43 and act simultaneously with the moving frame 43; furthermore, the flat cable set 44 includes: one end of the flat cable connecting arm 441 is connected with the moving frame 43; the flat cable support arm 442 is connected with the other end of the flat cable connecting arm 441; the traverse wheel 443 is provided on the traverse support arm 442.
The lateral moving device 41 is arranged on the supporting mechanism 1; the longitudinal moving device 42 is arranged on the transverse moving device 41 and is driven by the transverse moving device 41 to act; the moving frame 43 is arranged on the longitudinal moving device 42 and is driven by the longitudinal moving device 42 to act, in the invention, the moving frame 43 and the longitudinal moving device 42 are rotatably connected, namely, the moving frame 43 and the longitudinal moving device 42 are connected through a fixed frame such as a bolt, so that the angle of the longitudinal moving device 42 can be adjusted according to different tools;
according to different tools, the position of the longitudinal moving device 42 is changed by adjusting the position of the transverse moving device 41; wherein,
the traverse device 41 includes a traverse driving device provided on the frame of the winding machine and a traverse moving frame 43; the transverse moving frame 43 is connected with a transverse motor and driven by the transverse motor to move along the guide shaft 78;
the longitudinal moving device 42 includes a first longitudinal driving device, a second longitudinal driving device, a first longitudinal moving block and a second longitudinal moving block, and the first longitudinal driving device and the second longitudinal driving device are oppositely disposed on the transverse moving device 41; the first longitudinal moving block is connected with the first longitudinal driving device; and is placed on a guide rail provided on the lateral movement device 41; the second longitudinal moving block is connected with the second longitudinal driving device; and is placed on another guide rail provided on the lateral movement device 41;
during action, the transverse driving device drives the transverse moving frame 43 to transversely move on the guide shaft 78; in the present invention, the transverse driving is preferably a lead screw motor, so that the position of the lead screw passing through the lead screw motor is changed, and the position of the transverse moving frame 43 on the guide shaft 78 is further changed; the first longitudinal driving device and the second longitudinal driving device are arranged on the transverse moving frame 43 relatively, so that when the transverse moving frame 43 changes the position, the first longitudinal driving device and the second longitudinal driving device are driven to change the position, and the first longitudinal moving block and the second longitudinal moving block are arranged on the guide rail on the transverse moving frame 43, so that the positions of the first longitudinal moving block and the second longitudinal moving block on the guide rail can be changed under the action of the first longitudinal driving device and the second longitudinal driving device; and because the first longitudinal moving block and the second longitudinal moving block are connected with the moving frame 43, the position of the moving frame 43 is further changed;
a plurality of line-arrangement groups 44 are arranged on the moving frame 43 and act simultaneously with the moving frame 43; that is, when the moving frame 43 changes the position, the plurality of flat cable groups 44 change the position at the same time; in the present invention, the number of the flat cable groups 44 is different according to the different settings of the tool, and preferably 2 to 8 flat cable groups 44 are provided according to the overall situation of the apparatus, wherein,
the flat cable group 44 comprises a flat cable connecting arm 441, a flat cable supporting arm 442 and a flat cable wheel 443, wherein one end of the flat cable connecting arm 441 is connected with the moving frame 43; as shown in the drawings, the preferred flat cable connecting arm 441 of the present invention is rotatably connected to the movable frame 43, i.e., the flat cable connecting arm 441 and the movable frame 43 are fixed by bolts or the like, so that the angle of the flat cable connecting arm 441 can be adjusted as required; certainly, the connection position of the flat cable connecting arm 441 and the movable frame 43 can be interactively connected, when winding is performed, the diameter of the tool wound with the wires is increased along with the increase of the wires on the tool, so that the angle of the flat cable connecting arm 441 can be changed, and winding is better performed; the flat cable support arm 442 is connected with the other end of the flat cable connecting arm 441; certainly, the flat cable connecting arm 441 and the flat cable supporting arm 442 are also rotatably connected, so that the angle of the flat cable supporting arm 442 can be better adjusted, and the rotation of winding can be better adapted; the flat cable wheel 443 is arranged on the flat cable support arm 442; in the present invention, two traverse rollers 443 are preferably provided, and are oppositely disposed on the traverse supporting arm 442; for better illustration of the wire arranging and guiding wheel, the wire arranging and guiding wheel is defined as a first wire guiding wheel and a second wire guiding wheel in the invention, and as shown in the figure or shown in the figure, the first wire guiding wheel with larger diameter is used; the diameter of the second wire guide wheel is smaller; after being transmitted, the wire passes through the first wire guide wheel and the second wire guide wheel in sequence and is wound on the tool, and the wires are S-shaped wires on the first wire guide wheel and the second wire guide wheel;
in the present invention, for better winding, a longitudinal cutter mechanism 7 is preferably provided, and the longitudinal cutter mechanism 7 comprises a first driving device 72 arranged on the sectional bracket 71; the segmentation cutting device 73 is connected with the first driving device 72 through a connecting rod 74 and a push plate (75), and is driven by the first driving device 72 to act, and the segmentation cutting device 73 performs segmentation cutting on paper; the second driving device 76 is provided on the segment support 71; and is disposed at the lower side of the first driving device 72; the trimming cutting device 77 is connected with the second driving device 76, and is driven by the second driving device 76 to act along the guide shaft 78, and the trimming cutting device 77 cuts two ends of the wound paper;
the segmented support 71 comprises a support body, a first support plate 11 and a second support plate 11, wherein the support body is arranged on the support mechanism 1; the first support plate 11 and the second support plate 11 are arranged on the frame body, and the guide shaft 78 sequentially penetrates through the first support plate 11 and the second support plate 11; and the connecting rod 74 passes through the second supporting plate 11 to be connected with the section cutting device 73; the second driving device 76 is provided on the second support plate 11;
the control mechanism 6 is connected with the first driving device 72 and the second driving device 76 respectively, and the control mechanism 6 acquires the thickness of the wound wires and the paper on the tool to control the first driving device 72 and the second driving device 76 to act;
the positions of the first driving device 72 and the second driving device 76 are adjusted according to the size of the tool, and in the invention, because the paper feeding mechanism 32 of the paper feeding mechanism 3 is arranged below the technical scheme of the invention, and the position of the tool and the horizontal plane where the segmentation cutting device 73 and the trimming cutting device 77 are arranged form an inclined angle, the distance between the segmentation cutting device 73 and the tool can be gradually changed when the first driving device 72 moves;
in the using stage, the wire and the paper are conveyed through the wire conveying mechanism, the paper feeding mechanism 32 and the paper conveying mechanism 3, and the paper is cut through the segmentation cutting device 73 in the paper conveying process, wherein the segmentation cutting device 73 comprises a segmentation cutting frame, a plurality of cutter plates and a plurality of segmentation cutters, and the segmentation cutting frame is connected with the first driving device 72; a plurality of cutting boards are arranged on the sectional cutting frame; a plurality of sectional cutters (not shown in the figure) are arranged on a plurality of cutter plates; in the invention, the number of the segmented cutters is set according to the actual situation, and the invention does not limit the number; in the cutting process, the tool for winding the conducting wires is directly enlarged along with the increase of the conducting wires and the paper on the tool, so that in the enlarging process, the first driving device 72 is controlled to act through the control mechanism 6, the positions of the plurality of segmented cutters are changed once when each layer of paper is wound, and each layer of paper is cut; the positions of the plurality of segmented cutters can be changed by calculating the size of the wire winding tool according to the size of the tool and the rotating speed of the wire winding mechanism; the invention is not further limited thereto;
when the lead and the paper are wound on the tool, the excess parts are reserved on the two sides of the tool, so that the excess parts on the two sides of the tool are cut through the trimming and cutting device 77; wherein, the trimming and cutting device 77 comprises a trimming and cutting frame, a first trimming knife plate, a first trimming knife, a second trimming knife plate and a second trimming knife; the trimming cutting frame is connected with a second driving device 76; the first trimming cutter plate is arranged on one side of the trimming cutting frame, and the trimming cutter is arranged on the first trimming cutter plate; the second trimming knife plate is arranged at the other side of the trimming cutting frame, and the trimming cutter is arranged on the second trimming knife plate.
The main shaft mechanism 5 is arranged on the supporting mechanism 1, is arranged at the other end of the supporting mechanism 1, and is arranged adjacent to the paper feeding mechanism 32 of the paper feeding mechanism 3; wherein,
the spindle mechanism 5 includes: the rotary seat 51 is arranged at one end of the supporting mechanism 1; the outward swinging mechanism 52 is arranged on the rotating base 51 and can rotate on the rotating base 51; one end of the rotating main shaft 53 is connected with the outer swing mechanism 52, and the other end is connected with the supporting mechanism 1; the locking mechanism 54 is arranged on the supporting mechanism 1 and is adjacent to the rotating base 51; and the swing-out mechanism 52 includes: the connecting frame is arranged on the rotating seat 51, and the top of the connecting frame is provided with a positioning through hole; the swinging block is connected with one side shaft of the connecting frame, one end of the rotating main shaft 53 is arranged on the swinging block and acts simultaneously along with the swinging block, and a positioning hole is formed in the fixed language of the swinging block and is opposite to the positioning hole; one end of the positioning piece passes through the positioning through hole and then is arranged in the positioning hole;
in order to better protect the rotary base 51 and the swinging mechanism 52, in the present invention, it is preferable that the protection device further comprises: a protective cover for protecting the device; is arranged on the supporting mechanism 1 and is adjacent to the rotating seat 51;
the rotary seat 51 is arranged at one end of the support mechanism 1, in particular between the support plate 11 and the control, wherein,
the base rotary seat 51 includes a seat body and a rotary body, and the base is disposed on the support mechanism 1; the rotating body is connected with the base through a connecting shaft and rotates by taking the connecting shaft as an axis; and a limiting opening is arranged on the rotating body; when winding, the rotating body rotates on the seat body by a connecting shaft with an axis;
the outward swinging mechanism 52 is arranged on the base rotary seat 51 and can rotate on the base rotary seat 51; one end of the rotating main shaft 53 is connected with the outer swing mechanism 52, the other end of the rotating main shaft is connected with the supporting mechanism 1, and the rotating main shaft is particularly connected in a clamping mode and can be separated from the supporting mechanism 1 when the tool is replaced; namely, a workpiece is placed on the rotating main shaft 53, and the outward swinging mechanism 52 is driven to rotate by the base rotating seat 51, so as to drive the rotating main shaft 53 to rotate;
wherein,
the outer swing mechanism 52 includes: the connecting frame is arranged on the base rotating seat 51, and the top of the connecting frame is provided with a positioning through hole; the swinging block is connected with one side shaft of the connecting frame, one end of the rotating main shaft 53 is arranged on the swinging block and acts simultaneously along with the swinging block, and the top of the swinging block and the positioning through hole are oppositely provided with positioning holes; one end of the positioning piece passes through the positioning through hole and then is arranged in the positioning hole; as shown in the figure, when the wire is wound, the swinging block is arranged in the connecting frame, the positioning through hole is aligned with the positioning hole, and the swinging block is fixed in the connecting frame after the positioning piece penetrates through the positioning hole and the positioning through hole;
in the invention, the preferred positioning piece is a positioning bolt; and the positioning hole on the swinging block is internally provided with a thread matched with the positioning bolt;
after the winding of the tool is finished, the positioning piece is detached, and the other end of the rotating main shaft 53 is separated from the supporting plate 11; because the swinging block is connected with the shaft on one side of the connecting hole, after the positioning piece is separated, the rotating main shaft 53 can be pulled, the angle of the swinging block is changed, and the tool is detached from the rotating main shaft 53; replacing other tools, pulling the rotating main shaft 53 after the tools are replaced, resetting the swinging block, and placing the positioning piece in the positioning through hole and the positioning hole again; the other end of the rotating main shaft 53 is connected with the supporting mechanism 1, so that the winding of a new tool is realized, and in the invention, because the swinging block has thickness, the swinging block rotates by an angle of minus DEG by taking a shaft connected with the connecting frame as an axis, so that the tool can be better separated from the rotating main shaft 53;
the locking mechanism 54 is arranged under control and adjacent to the rotary base 51; the position of the base rotary seat 51 is limited by a locking mechanism 54; in the present invention, the rotation block is rotated to limit the position of the rotating seat 51; because the tool has a certain weight and the weight of the tool wound on the lead is increased, if the rotating seat 51 rotates during the dismounting of the tool, the tool is easy to fall off, and the tool is damaged or the operator is injured;
therefore, before the tool needs to be disassembled and assembled, the rotating body rotates, so that the limiting opening rotates to the position opposite to the locking mechanism 54, as shown in the figure, in this way, the mechanism acts, one end of the mechanism is placed in the limiting opening to limit the action of the rotating body, and further subsequent workpiece disassembling and assembling operations are carried out, and after the tool is disassembled and assembled, the mechanism acts, one end of the mechanism is separated from the limiting opening, so that the rotating seat 51 can carry out corresponding actions;
wherein,
the locking mechanism 54 comprises a locking body, a locking block and a locking device, wherein the locking body is arranged on the supporting mechanism 1; the locking block is arranged in the locking body; the locking device is arranged on the locking body, and one end of the locking device is connected with the locking block; the locking block is driven to do linear motion in the locking body through the locking device; as shown in the figure, when the limiting opening rotates to the position of the locking mechanism 54, the locking device acts to drive the locking block to move forward, so that the locking block is placed in the limiting opening to limit the position of the rotating body; after the tool is completely assembled and disassembled, the locking device reversely acts to drive the locking block to be separated from the limiting opening, and after the locking block is separated, candidate winding rotation operation can be carried out; in the invention, the locking device can be a motor, and the locking block is pushed to act through the motor, of course, in order to save cost, the preferred locking device is a cylinder, and one end of the cylinder is connected with the locking block; the locking block is pushed by the cylinder to act repeatedly;
in order to prevent the rotary base 51 from being affected by the outside or to protect the external operator from contacting the rotary base 51 during the operation, in the present invention, a protective cover is preferably disposed on the supporting mechanism 1 and adjacent to the base rotary base 51; of course, the size of the protective cover can be adjusted according to actual needs, and the outward swing mechanism 52 can be protected at the same time, but if the outward swing mechanism 52 is protected, it is necessary to avoid the protective cover from affecting the operation of the swing block.
The control mechanism 6 is arranged on the supporting mechanism 1 and is respectively connected with the paper feeding mechanism 32, the paper conveying mechanism, the wire arranging mechanism 4 and the main shaft mechanism 5 of the paper feeding mechanism 3; in the present invention, the control mechanism 6 is preferably a computer, as shown in fig. 1, the computer is connected to the control device through a rotating arm, so that the angle and position of the control mechanism 6 can be adjusted according to the working requirement, and better operation can be realized.
The present invention is not limited to the above preferred embodiments, and any modifications, equivalent substitutions, improvements, etc. within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. A multiple wire winding machine, comprising:
a support mechanism (1) provided at a place of use;
the paper feeding mechanism (2) is arranged on the supporting mechanism (1) and is arranged at one end of the supporting mechanism (1);
the paper conveying mechanism (3) is arranged on the supporting mechanism (1) and is adjacent to the feeder mechanism;
the wire arranging mechanism (4) is arranged on the supporting mechanism (1), and the wire arranging mechanism (4) is arranged on the paper conveying mechanism (3);
the main shaft mechanism (5) is used for tool installation, is arranged on the supporting mechanism (1), is arranged at the other end of the supporting mechanism (1), and is arranged adjacent to the paper feeding mechanism (2);
and the control mechanism (6) is arranged on the supporting mechanism (1) and is respectively connected with the paper feeding mechanism (2), the paper conveying mechanism (3), the wire arrangement mechanism (4) and the main shaft mechanism (5).
2. The machine according to claim 1, characterized in that said support mechanism (1) comprises:
the device comprises a supporting plate (11) and a control box (12), wherein the supporting plate (11) and the control box (12) are arranged oppositely, and a control mechanism (6) is arranged on the control box (12) and is connected with internal parts of the control box (12).
3. The multi-wire winder according to claim 1, wherein the paper feeding mechanism (2) comprises:
and the paper feeding wheel (21) is arranged at one end of the supporting mechanism (1) and is adjacent to the paper feeding mechanism (2).
And the paper feeding motor is connected with the paper feeding wheel (21).
4. The machine according to claim 1, characterized in that said feed mechanism (3) comprises:
a conveying device arranged on the supporting mechanism (1);
an adsorption device (32) arranged at the lower part of the conveying device;
and the detection cutting device is arranged on the supporting mechanism (1) and is arranged above the conveying device.
5. The multi-wire winder according to claim 4, wherein the conveyor comprises:
the paper feeding mechanism comprises a driving roller (311), a driven roller (312) and a conveying belt (313), wherein the driving roller (311) and the driven roller (312) are oppositely arranged on the supporting mechanism (1), and the driving roller (311) is connected with a paper conveying motor;
the conveying belt (313) is provided with a plurality of air holes.
6. The machine according to claim 1, characterized in that said winding displacement mechanism (4) comprises:
a lateral movement device (41) provided on the support mechanism (1);
the longitudinal moving device (42) is arranged on the transverse moving device (41) and is driven by the transverse moving device (41) to act;
the moving frame (43) is arranged on the longitudinal moving device (42) and is driven by the longitudinal moving device (42) to act;
and a plurality of line-arranging groups (44) which are arranged on the moving frame (43) and act simultaneously along with the moving frame (43).
7. The machine according to claim 6, wherein the set of rows (44) comprises:
a flat cable connecting arm (441) having one end connected to the moving frame (43);
a flat cable support arm (442) connected to the other end of the flat cable connection arm (441);
and a wire arranging wheel (443) arranged on the wire arranging support arm (442).
8. The machine according to claim 1, characterized in that said spindle means (5) comprise:
a rotating base (51) arranged at one end of the supporting mechanism (1);
an outward swing mechanism (52) which is arranged on the rotating base (51) and can rotate on the rotating base (51);
one end of the rotating main shaft (53) is connected with the outward swinging mechanism (52), and the other end of the rotating main shaft is connected with the supporting mechanism (1);
and the locking mechanism (54) is used for limiting the position of the rotating seat (51), is arranged on the supporting mechanism (1), and is arranged adjacent to the rotating seat (51).
9. The multi-wire winder of claim 8, further comprising:
the protection cover is used for avoiding the contact between the rotating seat (51) and the outside and protecting the rotating seat (51) and is arranged on the winding machine and adjacent to the rotating seat (51).
10. The machine according to claim 8, characterized in that said oscillating mechanism (52) comprises:
the connecting frame is arranged on the rotating seat (51), and a positioning through hole is formed in the top of the connecting frame;
the swinging block is connected with one side shaft of the connecting frame, one end of the rotating main shaft (53) is arranged on the swinging block and acts simultaneously along with the swinging block, and a positioning hole is formed in the fixed language of the swinging block and is opposite to the positioning hole;
and one end of the positioning piece penetrates through the positioning through hole and then is arranged in the positioning hole.
CN201811368418.2A 2018-11-16 2018-11-16 A kind of multi-thread coil winding machine Pending CN109285692A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201811368418.2A CN109285692A (en) 2018-11-16 2018-11-16 A kind of multi-thread coil winding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201811368418.2A CN109285692A (en) 2018-11-16 2018-11-16 A kind of multi-thread coil winding machine

Publications (1)

Publication Number Publication Date
CN109285692A true CN109285692A (en) 2019-01-29

Family

ID=65176417

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201811368418.2A Pending CN109285692A (en) 2018-11-16 2018-11-16 A kind of multi-thread coil winding machine

Country Status (1)

Country Link
CN (1) CN109285692A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110010340A (en) * 2019-04-28 2019-07-12 龙泉市中泰汽车空调有限公司 A kind of Multiple coil automatic coil winding machine of clutch coil
CN110743988A (en) * 2019-11-04 2020-02-04 湖南弘钧电子科技有限公司 Automatic thread cutting machine

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Publication number Priority date Publication date Assignee Title
US20090284338A1 (en) * 2008-05-15 2009-11-19 Eisuke Maruyama Multi-Stage Coil for Transformer, and Coil Winding Method and Apparatus for Manufacturing the Same
CN102237195A (en) * 2010-04-21 2011-11-09 上海通力电工设备厂 Automatic wire arranging and winding machine
CN103258637A (en) * 2013-05-07 2013-08-21 深圳市泰顺友电机电有限公司 Multihead automatic coil winding and rubber belt packaging integrated machine
CN107068386A (en) * 2017-06-12 2017-08-18 乐清柳航汽配有限公司 A kind of numerical-control full-automatic voltage transformer winding machine
CN207612179U (en) * 2017-08-24 2018-07-13 苏州市圣玛特电机设备制造有限公司 A kind of interior coil winding machine
CN207690630U (en) * 2018-01-02 2018-08-03 厦门斯普机电有限公司 A kind of coil winding machine

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090284338A1 (en) * 2008-05-15 2009-11-19 Eisuke Maruyama Multi-Stage Coil for Transformer, and Coil Winding Method and Apparatus for Manufacturing the Same
CN102237195A (en) * 2010-04-21 2011-11-09 上海通力电工设备厂 Automatic wire arranging and winding machine
CN103258637A (en) * 2013-05-07 2013-08-21 深圳市泰顺友电机电有限公司 Multihead automatic coil winding and rubber belt packaging integrated machine
CN107068386A (en) * 2017-06-12 2017-08-18 乐清柳航汽配有限公司 A kind of numerical-control full-automatic voltage transformer winding machine
CN207612179U (en) * 2017-08-24 2018-07-13 苏州市圣玛特电机设备制造有限公司 A kind of interior coil winding machine
CN207690630U (en) * 2018-01-02 2018-08-03 厦门斯普机电有限公司 A kind of coil winding machine

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110010340A (en) * 2019-04-28 2019-07-12 龙泉市中泰汽车空调有限公司 A kind of Multiple coil automatic coil winding machine of clutch coil
CN110010340B (en) * 2019-04-28 2021-01-15 龙泉市中泰汽车空调有限公司 Multi-winding automatic winding machine for clutch coil
CN110743988A (en) * 2019-11-04 2020-02-04 湖南弘钧电子科技有限公司 Automatic thread cutting machine
CN110743988B (en) * 2019-11-04 2021-04-13 湖南弘钧电子科技有限公司 Automatic thread cutting machine

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