CN206596344U - Automatic winding displacement apparatus for bending - Google Patents

Automatic winding displacement apparatus for bending Download PDF

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Publication number
CN206596344U
CN206596344U CN201621492285.6U CN201621492285U CN206596344U CN 206596344 U CN206596344 U CN 206596344U CN 201621492285 U CN201621492285 U CN 201621492285U CN 206596344 U CN206596344 U CN 206596344U
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China
Prior art keywords
bending
winding displacement
automatic winding
alignment pin
displacement apparatus
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CN201621492285.6U
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Chinese (zh)
Inventor
邓发友
莫凡
王志忠
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Guangdong Ward Precision Technology Co ltd
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World Precision Manufacturing Dongguan Co Ltd
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Abstract

The utility model discloses a kind of automatic winding displacement apparatus for bending, for the winding displacement for being connected to workpiece to be carried out into bent for shaping, the automatic winding displacement apparatus for bending includes the first bending mechanism and the second bending mechanism of rotary table and the direction of rotation order setting along the rotary table;The outer edge side of the rotary table is provided with several machining positions, and several described machining positions are uniformly arranged in equal angular;The automatic winding displacement apparatus for bending has at a feeding, is set at first bending mechanism, second bending mechanism and the feeding in the correspondence machining position.The automatic winding displacement apparatus for bending provided according to the utility model, it is simple in construction, be easy to implement, and have preferably compatible, bending can be carried out to the workpiece winding displacement of different size shapes.

Description

Automatic winding displacement apparatus for bending
Technical field
The utility model is related to a kind of electronic unit process equipment, more particularly to a kind of for will attach to electronic unit The automatic winding displacement apparatus for bending of FPC bendings.
Background technology
Generally realized in electronic product, between different electronic units using FPC and be powered and communicate to connect:Electronic unit is set The FPC being connected electrically is equipped with, FPC stretches out on the outside of electronic unit to connect the electrical connection section of another part.
Although FPC have the advantages that it is soft it is thin, take up space it is small, be adapted to different spaces occasion, FPC soft arranging wires it is soft Property material also result in connection inconvenience the problem of, it is necessary to by soft arranging wire according to suitable environment carry out pre-setting, to facilitate electronic product Assembling.
Current more use manual type realizes the sizing that pre-bends of FPC soft arranging wires, still, one side FPC soft arranging wires Flexible material also cause manual type be difficult by bending to target shape and the bending-like of size, another aspect manual type Operating efficiency is extremely low, does not reach production requirement.
Accordingly, it would be desirable to which a kind of flat cable bending mechanism, replaces artificial bending operation by mechanically actuated, to improve production efficiency With production qualification rate.
Utility model content
The purpose of this utility model is to provide a kind of flat cable bending mechanism, replaces artificial bending operation by mechanically actuated, To improve production efficiency and production qualification rate.
To achieve these goals, the utility model discloses a kind of automatic winding displacement apparatus for bending, for work will to be connected to The winding displacement of part carries out bent for shaping, and the automatic winding displacement apparatus for bending includes rotary table and the rotation along the rotary table Turn the first bending mechanism and the second bending mechanism that direction order is set;The outer edge side of the rotary table is provided with several Machining position, several described machining positions are uniformly arranged in equal angular;The automatic winding displacement apparatus for bending has at a feeding, institute State at the first bending mechanism, second bending mechanism and the feeding is in set with corresponding to the machining position.
Compared with prior art, the automatic winding displacement apparatus for bending that the utility model is provided, via feeding at feeding to processing The workpiece of position sequentially passes through the first bending mechanism and the second bending mechanism with rotary table rotation, and in the first bending mechanism and Bending is to target shape under the action of second bending mechanism;It should be understood that the quantity of machining position has multiple, for realizing workpiece The mechanism of bending is not limited only to the first bending mechanism and the second bending mechanism, can also set multiple, and it can roll over according to workpiece Curved demand carries out any adjustment, during automatic winding displacement apparatus for bending works, and rotary table is under stepper motor driving Rotated with fixed angle, even workpiece sequentially passes through the first bending mechanism, the second bending mechanism, other more Bending Processing machines Structure, the workpiece that organisation of working is pointed to machining position successively carries out operation, so that before workpiece rotates a circle, carries out blanking, workpiece Bending Processing is finished.The automatic winding displacement apparatus for bending provided according to the utility model, it is simple in construction, be easy to implement, and have preferably Compatibility, bending can be carried out to the workpiece winding displacements of different size shapes.
Preferably, the automatic winding displacement apparatus for bending also includes rotating disk clamp positioning mechanism, dyestripping mechanism and hot pressure-maintaining machine Structure, and the rotating disk clamp positioning mechanism, first bending mechanism, the dyestripping mechanism, second bending mechanism and institute Direction of rotation order of the hot pressure-keeping mechanism along the rotation machine table is stated to set;Rotating disk clamp positioning mechanism is used for rotating disk fixture Positioning is adjusted, and the first bending mechanism and the second bending mechanism are intended to carry out the winding displacement of workpiece bending operation, Coating-removing machine Structure is used for the diaphragm for removing winding displacement surface, and hot pressure-keeping mechanism to winding displacement by being heated with so that bending shape is fixed Get off;Certainly, in the other embodiment different from the present embodiment, foregoing multiple mechanisms can enter according to workpiece bending demand Any adjustment of row.
Preferably, first bending mechanism includes the first clamping jaw, the first alignment pin and rotating eccentricity pin;Described first Clamping jaw movably clamps winding displacement, and first alignment pin is arranged at the front end of first clamping jaw, and the rotating eccentricity pin is inclined From first alignment pin, and the rotating eccentricity pin and first alignment pin are parallel;The rotating eccentricity pin is with described First alignment pin pivots about to drive relatively described first alignment pin of the winding displacement to occur a bending;First clamping jaw The positioning action being arranged to add to winding displacement, so as to the free end of flexible winding displacement carry out bending;First alignment pin and Rotating eccentricity pin is engaged so that around the first alignment pin bending occurs for winding displacement.
Specifically, the gripping channel for clamping winding displacement is formed between the rotating eccentricity pin and first alignment pin; Pass through the clamping action of rotating eccentricity pin and the first alignment pin to winding displacement so that more may be used the position that a bending occurs for winding displacement Position and angle at control, flat cable bending reach expection.
Preferably, second bending mechanism includes the second alignment pin, and revolved centered on second alignment pin Turn to drive the winding displacement that the rotation briquetting of secondary bending occurs relative to second alignment pin;It is close with a bending, By the second alignment pin as bending locating shaft, to rotate briquetting as driving force so that winding displacement occurs two around the second alignment pin Secondary bending;Because the bending part of secondary bending is not the free end of winding displacement, machining position is only relied on to the positioning action of workpiece also Enough positioning actions can be provided.
Specifically, second bending mechanism also includes driving second alignment pin to move to the direction of the machining position The first driver element that dynamic or driving second alignment pin is moved to the direction away from the machining position.
Specifically, second bending mechanism also include drive it is described rotation direction from briquetting to the machining position movement, Or the second driver element that the driving rotation briquetting is moved to the direction away from the machining position;First driver element and second The setting of driver element, is to avoid the second bending mechanism from causing interference to the workpiece moved with rotary table, when first Driver element and the second driver element drive the second alignment pin and rotation briquetting in workpiece moving process away from rotation work respectively Make platform and drive the second alignment pin and rotation briquetting to carry out the workpiece of machining position when machining position is processed when workpiece is moved to Processing.
Specifically, second bending mechanism also includes being used for the side rotation briquetting that three bendings are carried out to winding displacement;Winding displacement The direction for rotating briquetting to the side occurs after secondary bending, and the bending driving of the side rotation briquetting is moved towards the direction of winding displacement Three bendings occur for dynamic and ejection winding displacement.
Specifically, the side of side rotation briquetting towards the winding displacement has the bending drive surface of curved convex shape, Briquetting is moved forward under the driving of the 3rd driver element, the bending drive surface compresses the flat cable bending extremely for the side rotation Rectangular shape.
Preferably, being respectively arranged with a rotating disk fixture for being used to position workpiece at several described machining positions, it is connected to The winding displacement of workpiece is in the hanging shape for stretching out in the rotating disk fixture;It can facilitate foregoing first bender in the winding displacement of hanging shape Structure, the second bending mechanism and other each Bending Processing mechanisms carry out Bending Processing to it.
Brief description of the drawings
Fig. 1 is workpiece to be processed.
Fig. 2 is the view after bending of workpiece.
Fig. 3 is the view after the secondary bending of workpiece.
Fig. 4 is the result schematic diagram after three bendings of workpiece.
Fig. 5 is the structural representation of rotary table.
Fig. 6 is the top view of the utility model automatic winding displacement apparatus for bending.
Fig. 7 is the structural representation of rotating disk clamp positioning mechanism.
Fig. 8 and Fig. 9 is the structural representation of the first bending mechanism.
Figure 10 is the enlarged drawing in A portions in Fig. 9.
Figure 11 and Figure 12 is the structural representation of dyestripping mechanism.
Figure 13 and Figure 14 is the structural representation of the second bending mechanism.
Figure 15 and Figure 16 is the structural representation of hot pressure-keeping mechanism.
Embodiment
To describe technology contents of the present utility model, construction feature, the objects and the effects in detail, below in conjunction with implementation Mode simultaneously coordinates accompanying drawing to be explained in detail.
As shown in figure 1, winding displacement A10 is fixedly connected with as the workpiece A00 of electronic product components, and it is real by winding displacement A10 Now it is connected with the energization connection and/or communication of other electronic units.Work is stretched out as shown in figure 1, having in the winding displacement A10 of flat Part A00 cantilever portion A11, the back-shaped bending part A12 in in-plane and back-shaped bending part A12 is arranged at away from workpiece A00's One end is used for the connecting portion A13 for realizing the connection of energization connection and/or communication.Assembling for convenience of workpiece A00 is, it is necessary to first be about to row Line A10 carries out bending, with reach it is corresponding with installation dimension, assemble more easily shape.
It is exemplary, it is necessary to which connecting portion A13 is folded for 180 ° to back-shaped bending part A12 direction with reference to shown in Fig. 1-Fig. 4 Realize a bending to as shown in Figure 2, to the folding of 180 ° of workpiece A00 direction realize secondary bending to such as Fig. 3 the cantilever portion A11 It is shown, back-shaped bending part A12 to 90 ° of the direction bending perpendicular to cantilever portion A11 is realized into three bendings, by workpiece A00's Winding displacement A10 bendings are to shape as shown in Figure 4.
As shown in Figure 5 and Figure 6, the automatic winding displacement apparatus for bending that the utility model is provided, for will be connected to workpiece A00's Winding displacement A10 carries out bent for shaping.The utility model automatic winding displacement apparatus for bending includes rotary table 100 and along rotary table The first bending mechanism 300 and the second bending mechanism 500 that 100 direction of rotation order is set;The outer edge side of rotary table 100 Several machining positions are provided with, several machining positions are uniformly arranged in equal angular;Automatic winding displacement apparatus for bending has a feeding Locate 100a at 100a, the first bending mechanism 300, the second bending mechanism 500 and feeding to set in correspondence machining position.With reference to figure Shown in 7- Figure 15, more specifically:
As shown in figure 5, rotary table 100 has a rounded work top 110, work is driven by stepper motor 130 It is in intermittent rotary to make table top 110 with fixed angle;The outer edge side of rounded work top 100 is fixedly installed several and added Station, several machining positions are uniformly arranged in equal angular, and the differential seat angle between adjacent two machining position is equal to stepper motor 130 Step angle;Preferably, rotating disk fixture 120 that is accommodating and positioning workpiece A00 can be respectively arranged in several machining positions, And cause the winding displacement A10 for being connected to workpiece A00 to be in the hanging shape for stretching out in rotating disk fixture 120;Several are used to enter winding displacement A10 100a is set in correspondence machining position at the organisation of working of row bending and the feeding of automatic winding displacement apparatus for bending.
It should be appreciated that the quantity of organisation of working is less than the quantity of machining position.The value volume and range of product of organisation of working can root Arbitrarily adjusted according to bending shape needed for workpiece A00 winding displacement A10, during automatic winding displacement apparatus for bending works, Rotary table 100 is rotated under the driving of stepper motor 130 with fixed angle, and machining position sequentially passes through several processing machines Structure, the workpiece A00 that several organisation of workings are pointed to machining position successively carries out operation, and in the case where workpiece A00 rotates a circle, carried out Before material, workpiece Bending Processing is finished.
It is preferred that, organisation of working can be the first bending mechanism 300 and the second bending mechanism 500, and the first bending mechanism 300 and second direction of rotation of the bending mechanism 500 along rotary table 100 set gradually.First bending mechanism 300 and the second folding Bender structure 500 carries out bending operation to the winding displacement A10 for stretching out in rotating disk fixture 120 respectively, to cause the winding displacement A10's after bending Face shaping more conforms to product demand.Specifically, the first bending mechanism 300 is used for workpiece to be processed A00 as described in Figure 1 The bending in end of bending is to as shown in Fig. 2 the second bending mechanism 500 is used for the workpiece after a bending as shown in Figure 2 A00 carries out secondary bending to as shown in Figure 3, three bendings to as shown in figure 4, to reach use demand.
Further, in the present embodiment, as shown in fig. 6, automatic winding displacement apparatus for bending also includes rotating disk fixture localization machine Structure 200, dyestripping mechanism 400 and hot pressure-keeping mechanism 600, and rotating disk clamp positioning mechanism 200, the first bending mechanism 300, dyestripping The direction of rotation order of mechanism 400, the second bending mechanism 500 and hot pressure-keeping mechanism 600 along rotary table 100 is set;Rotating disk Clamp positioning mechanism 200 is used to be adjusted rotating disk fixture 120 positioning, and the first bending mechanism 300 and the second bending mechanism The 500 winding displacement A10 for being intended to stretch out workpiece A00 rotating disk fixture 120 carry out bending operation, and dyestripping mechanism 400 is used to remove winding displacement The diaphragm on A10 surfaces, and hot pressure-keeping mechanism 600 to the winding displacement A10 after bending by being heated to cause bending shape quilt It is fixed up;Certainly, in the other embodiment different from the present embodiment, foregoing multiple mechanisms can be according to workpiece A00's Winding displacement A10 bendings demand carries out any adjustment.
The first bending mechanism 300 as shown in Figure 8 and Figure 9, including the first clamping jaw 310, the first alignment pin 320 and rotation Cam pin 330;Wherein, the relative work top 110 of the first clamping jaw 310 is movably disposed, and when the rotating disk for carrying workpiece A00 When fixture 120 is moved to just to the first bending mechanism 300, the first clamping jaw 310 is moved to the direction of work top 110, and removable The hanging winding displacement A10 for stretching out rotating disk fixture 120 is clamped dynamicly;First alignment pin 320 is arranged at the front end of the first clamping jaw 310, and One alignment pin 320 can also be arranged as required to movable, only when workpiece A00 is rotated to just to first with work top 110 During bending mechanism 300, it is moved to the front end of the first clamping jaw 310 and keeps fixed, and when workpiece A00 needs to leave, moves back to energy Enough avoid workpiece A00 initial position;Rotating eccentricity pin 330 deviates the first alignment pin 320, and rotating eccentricity pin 330 and first is determined Position pin 320 is parallel, and rotating eccentricity pin 330 pivots about to drive winding displacement A10 relative first with the first alignment pin 320 Bending occurs for alignment pin 320.
With reference to shown in Figure 10, when the rotating disk fixture 120 for carrying workpiece A00 is moved to just to the first bending mechanism 300, First clamping jaw 310 is moved to the direction of work top 110, and movably clamps hanging winding displacement A10 back-shaped bending part A12, fully to be positioned to winding displacement A10;Rotating eccentricity pin 330 is pivoted about with the first alignment pin 320, herein mistake With respect to the first alignment pin 320 bending occurs for Cheng Zhong, the connecting portion A13 that rotating eccentricity pin 330 compresses winding displacement A10, by winding displacement A10 bendings are to shown in Fig. 2.
Further, the clamping for clamping winding displacement A10 is formed between the alignment pin 320 of rotating eccentricity pin 330 and first to lead to Road 300a;Pass through clamping action of the alignment pin 320 of rotating eccentricity pin 330 and first to winding displacement A10 so that winding displacement A10 occurs one The position of secondary bending is more controllable.
Dyestripping mechanism 400 shown in Figure 11 and Figure 12, the diaphragm for removing winding displacement surface.Specifically, dyestripping mechanism 400 include the clamping jaw 420 that is driven by clamping jaw cylinder 410 and the suction film rifle 430 just to clamping jaw 420;Clamping jaw 420 is in clamping jaw cylinder After the diaphragm that winding displacement A10 surfaces are removed under 410 drivings, just the suction film rifle 430 of clamping jaw 420 is in time inhaled the diaphragm removed Remove, with keep the utility model automatic winding displacement apparatus for bending it is clean and tidy, ensure stable equipment operation.
The second bending mechanism 500 as shown in Figure 13 and Figure 14, for by the winding displacement of bending of process as shown in Figure 2 A10 carries out secondary bending, three bendings to end-state as shown in Figure 4.Second bending mechanism 500 includes the second alignment pin 510, and pivot about to drive winding displacement A10 to occur secondary bending with respect to the second alignment pin 510 with the second alignment pin 510 Rotation briquetting 520, and for winding displacement carry out three bendings side rotate briquetting 550.
Specifically, the second bending mechanism 500 also includes the second alignment pin 510 of driving to machining position movement with rotating briquetting 520 form clamping winding displacement A10 gripping channels or drive the second alignment pin 510 to first of the direction movement away from machining position Driver element 530;And driving rotation briquetting 520 clamps winding displacement A10's to machining position movement to be formed with the second alignment pin 510 The second driver element 540 that gripping channel or driving rotation briquetting 520 are moved to the direction away from machining position.It should be understood that The setting of first driver element 530 and the second driver element 540, is to avoid 500 pairs of the second bending mechanism with rotary work The workpiece A00 that platform 100 is moved causes interference, when the first driver element 530 and the second driver element 540 drives second to position respectively Pin 510 and rotation briquetting 520 in workpiece A00 moving process away from rotary table 100 and when workpiece A00 be moved to it is just right When second bending mechanism 500 is processed, the second alignment pin of driving 510 and rotation briquetting 520 are moved to machining position to workpiece A00 Winding displacement carry out secondary bending.May be appreciated the first driver element 530 and the second driver element 540 can be respectively single gas Cylinder as power source, can also be respectively the different cylinder of multiple outbound courses as power source group, specifically can be as needed It is configured.
In secondary bending process:First driver element 530 drives the second alignment pin 510 to be moved to just to winding displacement A10's Cantilever portion A11 position, and by the constant state in the holding position of the second alignment pin 510;The driving of second driver element 540 deviates the The rotation briquetting 520 of two alignment pins 510 is that axle center is rotated with the second alignment pin 510, the row of compressing of rotation briquetting 520 of rotation 180 ° of bendings occur for line A10 cantilever portion A11.In this way, winding displacement A10 is by secondary bending, to state as shown in Figure 3.
Further, winding displacement A10 occurs after secondary bending, and back-shaped bending part A12 is folded to side rotation briquetting 550;Then, Two bending mechanisms 500 realize three bendings to winding displacement A10 by side rotation briquetting 550:3rd driver element 560 is towards winding displacement A10 side has a bending drive surface 551 of curved convex shape, and the driving side of the 3rd driver element 560 rotates briquetting 550 to returning Shape bending part A12 movements, the arcuation bending drive surface 551 of protrusion compress back-shaped bending part A12 so that at back-shaped bending part A12 Occur three bendings, to state as shown in Figure 4.
Preferably, the second bending mechanism 500 also includes heater 570, the heater 570 passes through to rotation briquetting 520 and/or side rotation briquetting 550 heated so that heated winding displacement A10 can easily occur after bending, and bending Shape matching is stable, be not easy to reply.
Hot pressure-keeping mechanism 600 as shown in Figure 15 and Figure 16, by being heated to winding displacement A10 to cause bending shape quilt Sizing.Specifically, as shown in Figure 15 and Figure 16, hot pressure-keeping mechanism 600 includes thermocouple 610 and heating rod 620, and driving electricity Brain even summation heating rod 620 is respectively at the vertical cylinder 630 and front and rear cylinder vertically and horizontally moved to machining position 640;After a rotating disk fixture 120, which carries a workpiece A00, is moved to the position just to hot pressure-keeping mechanism 600, the vertical He of cylinder 630 Driving thermocouple 610 and heating rod 620 are moved front and rear cylinder 640 to winding displacement A10 direction jointly, and via the He of thermocouple 610 Heating rod 620 is heated to winding displacement, with cause preamble machining position by a bending, secondary bending, three bendings winding displacement It is as shown in Figure 4 that A10 can be maintained at the state being bent over.Further, hot pressure-keeping mechanism 600 also includes pressure sensor 650, The pressure sensor 650 is set towards machining position, and controls thermocouple 610 and heating by the detection of pressure sensor 650 Rod 620 is moved to target location.
With reference to shown in Fig. 1-Figure 16, to do one detailed for the course of work of the automatic winding displacement apparatus for bending provided the utility model Explanation:
Workpiece A00 with winding displacement A10 by the supreme material position 100a of feeding, and workpiece A00 is placed in rotating disk fixture 120, Winding displacement A10 is in the hanging shape for stretching out rotating disk fixture 120;
Workpiece A00 is under the driving of stepper motor 130, successively via rotating disk clamp positioning mechanism 200 accurately to adjust work Part A00 carries out a bending to target location, via the first bending mechanism 300, removes winding displacement A10 tables via dyestripping mechanism 400 The diaphragm in face, carry out via the second bending mechanism 400 secondary bending and three bendings, via hot pressure-keeping mechanism with to bending Winding displacement A10 is shaped, and then when workpiece A00 goes back to material position 100a, the workpiece A00 after bending is removed.
Compared with prior art, the automatic winding displacement apparatus for bending that the utility model is provided, be arranged at the workpiece of machining position with The rotation of rotary table 100 sequentially passes through the first bending mechanism 300 and the second bending mechanism 500, and in the first bending mechanism 300 Bending is to target shape under action with the second bending mechanism 500;It should be understood that the quantity of machining position has multiple, for reality The mechanism of existing workpiece bending is not limited only to the first bending mechanism 300 and the second bending mechanism 500, can also set multiple, and it can To carry out any adjustment according to workpiece bending demand, during automatic winding displacement apparatus for bending works, rotary table 100 exists Stepper motor 130 is rotated under driving with fixed angle, and machining position sequentially passes through several organisation of workings, several organisation of workings The workpiece for being pointed to machining position successively carries out operation, and before workpiece rotates a circle, carries out blanking, workpiece Bending Processing is finished.
Above disclosed is only preferred embodiment of the present utility model, can not limit this practicality with this certainly new The interest field of type, therefore the equivalent variations made according to present utility model application the scope of the claims, still belong to the utility model and are covered Scope.

Claims (10)

1. a kind of automatic winding displacement apparatus for bending, for the winding displacement for being connected to workpiece to be carried out into bent for shaping, it is characterised in that:It is described Automatic winding displacement apparatus for bending includes the first bending of rotary table and the direction of rotation order setting along the rotary table Mechanism and the second bending mechanism;The outer edge side of the rotary table is provided with several machining positions, several described machining positions It is uniformly arranged in equal angular;The automatic winding displacement apparatus for bending has at a feeding, first bending mechanism, described second Set at bending mechanism and the feeding in the correspondence machining position.
2. automatic winding displacement apparatus for bending as claimed in claim 1, it is characterised in that:The automatic winding displacement apparatus for bending also includes Rotating disk clamp positioning mechanism, dyestripping mechanism and hot pressure-keeping mechanism, and the rotating disk clamp positioning mechanism, first bender The direction of rotation of structure, the dyestripping mechanism, second bending mechanism and the hot pressure-keeping mechanism along the rotation machine table is suitable Sequence is set.
3. automatic winding displacement apparatus for bending as claimed in claim 1, it is characterised in that:First bending mechanism includes the first folder Pawl, the first alignment pin and rotating eccentricity pin;First clamping jaw movably clamps winding displacement, and first alignment pin is arranged at The front end of first clamping jaw, the rotating eccentricity pin deviates first alignment pin, and the rotating eccentricity pin and described the One alignment pin is parallel;The rotating eccentricity pin pivots about to drive the winding displacement relative with first alignment pin Bending occurs for first alignment pin.
4. automatic winding displacement apparatus for bending as claimed in claim 3, it is characterised in that:The rotating eccentricity pin and described first is determined The gripping channel for clamping winding displacement is formed between the pin of position.
5. automatic winding displacement apparatus for bending as claimed in claim 1, it is characterised in that:Second bending mechanism, which includes second, to be determined Position pin, and pivot about to drive the relatively described second alignment pin generation of the winding displacement secondary with second alignment pin The rotation briquetting of bending.
6. automatic winding displacement apparatus for bending as claimed in claim 5, it is characterised in that:Second bending mechanism also includes driving Second alignment pin moves or driven second alignment pin to the side away from the machining position to the direction of the machining position To the first mobile driver element.
7. automatic winding displacement apparatus for bending as claimed in claim 5, it is characterised in that:Second bending mechanism also includes driving The rotation briquetting is moved to the direction of the machining position or the driving rotation briquetting is moved to the direction away from the machining position The second dynamic driver element.
8. automatic winding displacement apparatus for bending as claimed in claim 5, it is characterised in that:Second bending mechanism also includes being used for The side that three bendings are carried out to winding displacement rotates briquetting;Winding displacement occurs after secondary bending to the direction that the side rotates briquetting, described Direction movement and ejection winding displacement generation three bending of the bending driving of side rotation briquetting towards winding displacement.
9. automatic winding displacement apparatus for bending as claimed in claim 8, it is characterised in that:The side rotates briquetting one towards winding displacement Side has the bending drive surface of curved convex shape, and the side rotates briquetting under the driving of the 3rd driver element to reach Dynamic, the bending drive surface compresses the flat cable bending to rectangular shape.
10. the automatic winding displacement apparatus for bending as described in claim any one of 1-9, it is characterised in that:Several described machining positions Place is respectively arranged with a rotating disk fixture for being used to position workpiece, and the winding displacement for being connected to workpiece is in stretch out in the rotating disk fixture Hanging shape.
CN201621492285.6U 2016-12-30 2016-12-30 Automatic winding displacement apparatus for bending Active CN206596344U (en)

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Application Number Priority Date Filing Date Title
CN201621492285.6U CN206596344U (en) 2016-12-30 2016-12-30 Automatic winding displacement apparatus for bending

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Application Number Priority Date Filing Date Title
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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108247570A (en) * 2018-01-25 2018-07-06 深圳市固诺泰科技有限公司 A kind of method for wearing bus cable device and wear winding displacement automatically
CN109550818A (en) * 2019-01-23 2019-04-02 佛山市镭戈斯数控设备有限公司 A kind of metal plate bending automatic production line
CN110614304A (en) * 2019-10-28 2019-12-27 江苏创源电子有限公司 Watch antenna bending device
CN111295054A (en) * 2020-03-31 2020-06-16 东莞市沃德精密机械有限公司 FPC forming equipment
CN111747042A (en) * 2020-07-09 2020-10-09 数码模冲压技术(武汉)有限公司 Rotary automatic positioning device of automobile thick plate transfer cylinder
CN113319217A (en) * 2021-05-28 2021-08-31 江苏创源电子有限公司 Pre-bending detection equipment

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108247570A (en) * 2018-01-25 2018-07-06 深圳市固诺泰科技有限公司 A kind of method for wearing bus cable device and wear winding displacement automatically
CN109550818A (en) * 2019-01-23 2019-04-02 佛山市镭戈斯数控设备有限公司 A kind of metal plate bending automatic production line
CN110614304A (en) * 2019-10-28 2019-12-27 江苏创源电子有限公司 Watch antenna bending device
CN111295054A (en) * 2020-03-31 2020-06-16 东莞市沃德精密机械有限公司 FPC forming equipment
CN111747042A (en) * 2020-07-09 2020-10-09 数码模冲压技术(武汉)有限公司 Rotary automatic positioning device of automobile thick plate transfer cylinder
CN113319217A (en) * 2021-05-28 2021-08-31 江苏创源电子有限公司 Pre-bending detection equipment

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