CN206794530U - Slide folds cylinder shaping mechanism - Google Patents

Slide folds cylinder shaping mechanism Download PDF

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Publication number
CN206794530U
CN206794530U CN201720455849.7U CN201720455849U CN206794530U CN 206794530 U CN206794530 U CN 206794530U CN 201720455849 U CN201720455849 U CN 201720455849U CN 206794530 U CN206794530 U CN 206794530U
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CN
China
Prior art keywords
stacker
flanging
connecting plate
block
pressure strip
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn - After Issue
Application number
CN201720455849.7U
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Chinese (zh)
Inventor
陈晓升
黄日明
钟燕雄
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangdong Esquel Textiles Co Ltd
Guilin Esquel Textiles Co Ltd
Original Assignee
Guangdong Esquel Textiles Co Ltd
Guilin Esquel Textiles Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Guangdong Esquel Textiles Co Ltd, Guilin Esquel Textiles Co Ltd filed Critical Guangdong Esquel Textiles Co Ltd
Priority to CN201720455849.7U priority Critical patent/CN206794530U/en
Application granted granted Critical
Publication of CN206794530U publication Critical patent/CN206794530U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a kind of slide to fold cylinder shaping mechanism.The slide, which folds cylinder shaping mechanism, includes support meanss, apparatus for bending and crimping unit.Support meanss have substrate, stacker and driving part of giving up the throne, stacker are actively installed on substrate, and driving part of giving up the throne is connected to stacker;Apparatus for bending has connecting plate, pressure strip, folded block, elastomeric element and bending driving part;Pressure strip is connected to the lower surface of connecting plate by elastomeric element, and the lower surface of connecting plate is also associated with folded block, and folded block is located at pressure strip side;Bending driving part moves for drive connection plate;Crimping unit has flanging block and flanging driving part;Flanging block is actively installed on substrate, and flanging block between stacker there is interval and the interval to form slot to make way in an initial condition;Flanging driving part is used to drive flanging block to move along substrate.The slide folds cylinder shaping mechanism saving manpower, saving time, producing efficiency is high and finished product error rate is small.

Description

Slide folds cylinder shaping mechanism
Technical field
Garment production field is the utility model is related to, cylinder shaping mechanism is folded more particularly to a kind of slide.
Background technology
At present when making slide and folding cylinder (namely FOLDER) mould, widespread practice is human hand by the material of well cutting Material by bending, the process such as beat and shaped.The slide made at present by making this method by hand folds cylinder mould Tool has error is big, producing efficiency is low etc..
Utility model content
Based on this, it is necessary to provide a kind of saving manpower, save the time, the slide that producing efficiency is high and finished product error rate is small Fold cylinder shaping mechanism.
A kind of slide folds cylinder shaping mechanism, including:
Support meanss, the support meanss have substrate, stacker and driving part of giving up the throne, and the stacker activity is set On the substrate, the driving part of giving up the throne is connected to the stacker, and the driving part of giving up the throne can drive described hold Joint chair moves along the substrate;
Apparatus for bending, the apparatus for bending have connecting plate, pressure strip, folded block, elastomeric element and bending drive division Part;The pressure strip is connected to the lower surface of the connecting plate by the elastomeric element, and the lower surface of the connecting plate also connects The folded block is connected to, the folded block is located at the pressure strip side, described when the elastomeric element is in original state Pressure strip protrudes relative to the lower surface folded block of the connecting plate, when compressing the elastomeric element, the bending Block protrudes relative to the lower surface pressure strip of the connecting plate;The bending driving part be connected to the connecting plate with For driving the connecting plate to move;And
Crimping unit, the crimping unit have flanging block and flanging driving part;The flanging block is actively installed on institute State on substrate, the flanging block between the stacker there is interval and the interval to form slot to make way in an initial condition;Institute State flanging driving part and be connected to the flanging block for driving the flanging block to be moved along the substrate;When the bending Driving part drive the connecting plate towards the stacker push when, the stacker is close to the pressure strip and described in compressing Elastomeric element, and the folded block is embedded to the slot to make way.
In one of the embodiments, the quantity of the folded block is two, and two folded blocks are respectively positioned at described The relative both sides of pressure strip, interval between two folded blocks not less than the stacker width, when the bending is driven Dynamic component drive the connecting plate towards the stacker push when, the stacker is close to the pressure strip and compresses the bullet Property part, and two folded blocks are embedded to two slots to make way respectively;
The quantity of the flanging block and the flanging driving part are two;Two flanging blocks are located at institute respectively State the relative both sides of stacker;Two flanging driving parts are connected respectively two flanging blocks.
In one of the embodiments, the upper surface of the substrate has spacing groove, and the stacker is connected to described The groove bottom of spacing groove, two flanging blocks are respectively at two side notches of the spacing groove;It is described spacing One of side wall of groove has resigning hole, and the stacker is relative with the resigning hole, and the driving part of giving up the throne can The stacker edge is driven to pull out the spacing groove out of described resigning hole.
In one of the embodiments, the folded block is elongated, and the pressure strip is elongated, the folded block Major axis is parallel with the major axis of the pressure strip;
The stacker is elongated, and the flanging block is elongated, major axis and the stacker of the flanging block Major axis is parallel.
In one of the embodiments, the length of the stacker, the length of the flanging block with the spacing groove Width between two side walls is equal, and two ends of the flanging block contact with described spacing two side walls of groove respectively matches somebody with somebody Close.
In one of the embodiments, the size of the pressure strip is consistent with the size of the upper surface of the stacker.
In one of the embodiments, the lower surface of the connecting plate is connected with multiple guide pillars, and the guide pillar is relative to institute The height for stating connecting plate lower surface is more than the pressure strip in its natural state apart from the height of the connecting plate lower surface;It is described Substrate is provided with multiple guide holes, and multiple guide holes correspond with multiple guide pillars.
In one of the embodiments, the support meanss also have location-plate, and the location-plate is connected to the undertaking On seat.
In one of the embodiments, the elastomeric element and the connecting plate detachable connection.
In one of the embodiments, the elastomeric element has multiple bearing spring blocks, and multiple bearing spring blocks are located at described The lower surface of connecting plate, multiple bearing spring blocks are connected to the pressure strip.
Above-mentioned slide folds cylinder shaping mechanism, and there is provided support meanss, apparatus for bending, crimping unit, is filled by supporting The stacker and the pressure strip of apparatus for bending put realize the fixation of folding cylinder to be formed, pass through the bending driving part of apparatus for bending Drive folded block to push the bending for realizing folding cylinder edge to be formed, then drive stacker to exit by driving part of giving up the throne and allow Position, bending driving part drive folded block to rise a certain distance, and the flanging driving part having finally by crimping unit drives Dynamic flanging block moves along substrate, and flanging block touches the folding cylinder edge after bending, and further extruding to fold cylinder Edge further towards fold with realize fold cylinder bound edge.Above-mentioned slide, which folds cylinder shaping mechanism, can automate realization folding The flanging shaping of folded cylinder, saves manpower, saves the time, folds cylinder sizing efficiency high, the shaping of production folds cylinder error per batch Small, standardization height.
Above-mentioned slide folds cylinder shaping mechanism, sets two folded blocks, can realize the folding for folding the relative both sides of cylinder Curved and flanging is time saving and energy saving.
Above-mentioned slide folds cylinder shaping mechanism, multiple guide pillars is connected with the lower surface of connecting plate, guide pillar is relative to even The height of fishplate bar lower surface is more than pressure strip in its natural state apart from the height of connecting plate lower surface;So that guide pillar is in normal shape Pressure strip can be exceeded under state, multiple guide holes are provided with substrate, multiple guide holes correspond with multiple guide pillars, put connecting plate shifting It is dynamic to realize and mutually be embedded cooperations when being depressed on stacker, convenient contraposition and position, can also after being mutually embedded Prevent the displacement of connecting plate.
Above-mentioned slide folds cylinder shaping mechanism, location-plate is provided with also on stacker, the effect of location-plate is to be used for The placement to be processed for folding cylinder, the cylinder to be processed that folds are placed according to the position of location-plate, you can realize determining for folding cylinder to be processed Position, avoid displacement of the folding cylinder to be processed on stacker.
Brief description of the drawings
Fig. 1 is the support meanss and crimping unit cooperation schematic diagram that an embodiment slide folds cylinder shaping mechanism;
Fig. 2 is the apparatus for bending schematic diagram that slide shown in Fig. 1 folds cylinder shaping mechanism;
Fig. 3 is support meanss shown in Fig. 1, crimping unit and apparatus for bending cooperation schematic diagram shown in Fig. 2;
Fig. 4 is folding cylinder schematic diagram to be processed;
Fig. 5 folds cylinder schematic diagram for shaping.
Description of reference numerals
10th, slide folds cylinder shaping mechanism;100th, support meanss;110th, substrate;111st, guide hole;120th, stacker;130、 Give up the throne driving part;140th, location-plate;200th, apparatus for bending;210th, connecting plate;211st, guide pillar;220th, pressure strip;230th, bending Block;240th, elastomeric element;300th, crimping unit;310th, flanging block;320th, flanging driving part;400th, slot to make way;20th, it is to be processed Fold cylinder;30th, shaping folds cylinder.
Embodiment
For the ease of understanding the utility model, the utility model is more fully retouched below with reference to relevant drawings State.Preferred embodiment of the present utility model is given in accompanying drawing.But the utility model can come in fact in many different forms It is existing, however it is not limited to embodiment described herein.On the contrary, the purpose for providing these embodiments is made to public affairs of the present utility model Open the understanding more thorough and comprehensive of content.
It should be noted that when element is referred to as " being fixed on " another element, it can be directly on another element Or there may also be element placed in the middle.When an element is considered as " connection " another element, it can be directly connected to To another element or it may be simultaneously present centering elements.
Unless otherwise defined, all of technologies and scientific terms used here by the article is led with belonging to technology of the present utility model The implication that the technical staff in domain is generally understood that is identical.It is simply in term used in the description of the present utility model herein The purpose of description specific embodiment, it is not intended that in limitation the utility model.Term as used herein "and/or" includes The arbitrary and all combination of one or more related Listed Items.
Referring to shown in Fig. 1 and Fig. 3, the present embodiment relate to a kind of slide and fold cylinder shaping mechanism 10.The slide folds cylinder Shaping mechanism 10 includes support meanss 100, apparatus for bending 200, crimping unit 300 and control device.Further, control dress It can be PCL to put.
Shown in Figure 1, support meanss 100 have substrate 110, stacker 120 and driving part 130 of giving up the throne.Give up the throne Driving part 130 can be drive cylinder.Stacker 120 is actively installed on substrate 110, and driving part 130 of giving up the throne, which is connected to, to be held Joint chair 120, driving part 130 of giving up the throne can drive stacker 120 to be moved along substrate 110.Further, control device is electrical It is connected to driving part 130 of giving up the throne.
Shown in Figure 2, apparatus for bending 200 has connecting plate 210, pressure strip 220, folded block 230, elastomeric element 240 And bending driving part.Pressure strip 220 is connected to the lower surface of connecting plate 210 by elastomeric element 240, connecting plate 210 Lower surface is also associated with folded block 230.Folded block 230 is located at the side of pressure strip 220, when elastomeric element 240 is in original state When, pressure strip 220 protrudes relative to the lower surface of connecting plate 210 compared with folded block 230.When elasticity of compression part 240, folded block 230 protrude relative to the lower surface of connecting plate 210 compared with pressure strip 220;Bending driving part (not shown in accompanying drawing) is connected to Fishplate bar 210 moves for drive connection plate 210.Further, control device is electrically connected at bending driving part.
Referring to shown in Fig. 1 and Fig. 3, crimping unit 300 has flanging block 310 and flanging driving part 320.Flanging block 310 are actively installed on substrate 110, and flanging block 310 has interval between stacker 120 in an initial condition and the interval is formed Slot to make way 400.Flanging driving part 320 is connected to flanging block 310 and moved for driving flanging block 310 along substrate 110.When Bending driving part drive connection plate 210 towards stacker 120 push when, stacker 120 is close to pressure strip 220 and the elasticity of compression Part 240, folded block 230 are embedded to slot to make way 400.Further, control device is electrically connected at flanging driving part 320。
Shown in Figure 2, further, the quantity of folded block 230 is two.Two folded blocks 230 are respectively positioned at compression The relative both sides of plate 220, the width of interval between two folded blocks 230 not less than stacker 120.When bending driving part drives Dynamic connecting plate 210 towards stacker 120 push when, stacker 120 is close to pressure strip 220 and elasticity of compression part 240, two foldings It is embedded respectively for curved piece 230 to two slots to make way 400.The quantity and flanging driving part 320 of flanging block 310 are two. Two flanging blocks 310 are respectively positioned at the relative both sides of stacker 120.Two flanging driving parts 320 are connected respectively two Flanging block 310.Above-mentioned slide folds cylinder shaping mechanism 10, sets two folded blocks 230 and two flanging blocks 310, can The bending for folding the relative both sides of cylinder and flanging are realized, it is time saving and energy saving.
Referring to shown in Fig. 1 and Fig. 3, further, the upper surface of substrate 110 has spacing groove.Stacker 120 is connected to The groove bottom of spacing groove.Two flanging blocks 310 are respectively at two side notches of spacing groove.Spacing groove is wherein One side wall has resigning hole, and stacker 120 is relative with resigning hole, driving part 130 of giving up the throne can drive stacker 120 along from Spacing groove is pulled out in resigning hole.
Shown in Figure 2, further, folded block 230 is elongated, and pressure strip 220 is elongated, folded block 230 Major axis is parallel with the major axis of pressure strip 220.
Referring to shown in Fig. 1 and Fig. 3, stacker 120 is elongated, and flanging block 310 is elongated, the major axis of flanging block 310 It is parallel with the major axis of stacker 120.The length of stacker 120, the length of flanging block 310 are between spacing two side walls of groove Width it is equal, two ends of flanging block 310 are engaged with spacing two side walls of groove respectively.The size of pressure strip 220 It is consistent with the size of the upper surface of stacker 120.
Referring to shown in Fig. 1 and Fig. 2, further, the lower surface of connecting plate 210 is connected with multiple guide pillars 211, guide pillar 211 It is more than pressure strip 220 in its natural state apart from the height of the lower surface of connecting plate 210 relative to the height of the lower surface of connecting plate 210 Degree;Substrate 110 is provided with multiple guide holes 111, and multiple guide holes 111 correspond with multiple guide pillars 211.Above-mentioned slide folds cylinder Shaping mechanism 10, multiple guide pillars 211 are connected with the lower surface of connecting plate 210, guide pillar 211 is relative to the lower surface of connecting plate 210 Height be more than pressure strip 220 in its natural state apart from the height of the lower surface of connecting plate 210;So that guide pillar 211 is in normal shape Pressure strip 220 can be exceeded under state, multiple guide holes 111 are provided with substrate 110, multiple guide holes 111 and multiple guide pillars 211 are one by one It is corresponding, when putting the movement of connecting plate 210 and being depressed on stacker 120, it can realize and mutually be embedded cooperations, convenient contraposition and position, After being mutually embedded, the displacement of connecting plate 210 is also possible to prevent.
Referring to shown in Fig. 1 and Fig. 3, further, support meanss 100 also have location-plate 140, and location-plate 140 is connected to On stacker 120.Above-mentioned slide folds cylinder shaping mechanism 10, and location-plate 140, location-plate are provided with also on stacker 120 140 effect is the placement for folding cylinder 20 to be processed, and the cylinder 20 to be processed that folds is placed according to the position of location-plate 140, i.e., The positioning to be processed for folding cylinder 20 can be achieved, avoid displacement of the folding cylinder 20 to be processed on stacker 120.
It is shown in Figure 2, further, the lower surface detachable connection of elastomeric element 240 and connecting plate 210.Elasticity Part 240 has multiple bearing spring blocks, and multiple bearing spring blocks are located at the lower surface of connecting plate 210, and multiple bearing spring blocks are connected to pressure strip 220。
Above-mentioned slide folds cylinder shaping mechanism 10, there is provided support meanss 100, apparatus for bending 200, crimping unit 300, The fixation of folding cylinder 20 to be processed is realized by the stacker 120 of support meanss 100 and the pressure strip 220 of apparatus for bending 200, is led to The bending driving part for crossing apparatus for bending 200 drives folded block 230 to push the bending for realizing folding cylinder edge to be formed, then passes through Driving part 130 of giving up the throne driving stacker 120 exits resigning, and bending driving part drives folded block 230 to rise a certain distance, Now, the part of a folded block 230 still part is stuck on the position for folding cylinder bending, and folded block 230 can be used for folding Cylinder progress is spacing, and walking for cylinder is folded when being placed on flanging;The flanging driving part having finally by crimping unit 300 320 driving flanging blocks 310 move along substrate 110, and flanging block 310 touches the folding cylinder edge after bending, and further Extruding to fold cylinder edge further towards folding to realize the bound edge of folding cylinder, obtains shaping and fold cylinder 30.Above-mentioned drawing Cylinder, which folds cylinder shaping mechanism 10, can automate the flanging shaping for realizing folding cylinder, save manpower, save the time, fold cylinder and shape Efficiency high, per batch, the shaping folding cylinder error of production is small, it is high to standardize.
Each technical characteristic of embodiment described above can be combined arbitrarily, to make description succinct, not to above-mentioned reality Apply all possible combination of each technical characteristic in example to be all described, as long as however, the combination of these technical characteristics is not deposited In contradiction, the scope that this specification is recorded all is considered to be.
Embodiment described above only expresses several embodiments of the present utility model, and its description is more specific and detailed, But therefore it can not be interpreted as the limitation to the utility model patent scope.It should be pointed out that for the common of this area For technical staff, without departing from the concept of the premise utility, various modifications and improvements can be made, these all belong to In the scope of protection of the utility model.Therefore, the protection domain of the utility model patent should be determined by the appended claims.

Claims (10)

1. a kind of slide folds cylinder shaping mechanism, it is characterised in that including:
Support meanss, the support meanss have substrate, stacker and driving part of giving up the throne;The stacker is actively installed on institute State on substrate, the driving part of giving up the throne is connected to the stacker, and the driving part of giving up the throne can drive the stacker Moved along the substrate;
Apparatus for bending, the apparatus for bending have connecting plate, pressure strip, folded block, elastomeric element and bending driving part;Institute The lower surface that pressure strip is connected to the connecting plate by the elastomeric element is stated, the lower surface of the connecting plate is also connected with Folded block is stated, the folded block is located at the pressure strip side, when the elastomeric element is in original state, the pressure strip Protruded relative to the lower surface of the connecting plate folded block, when compressing the elastomeric element, the folded block is relative In the lower surface of the connecting plate, the pressure strip protrudes;The bending driving part is connected to the connecting plate for driving The dynamic connecting plate movement;And
Crimping unit, the crimping unit have flanging block and flanging driving part;The flanging block is actively installed on the base On plate, the flanging block between the stacker there is interval and the interval to form slot to make way in an initial condition;The folding Side driving part is connected to the flanging block for driving the flanging block to be moved along the substrate;When the bending drives Part drive the connecting plate towards the stacker push when, the stacker is close to the pressure strip and compresses the elasticity Part, and the folded block is embedded to the slot to make way.
2. slide according to claim 1 folds cylinder shaping mechanism, it is characterised in that the quantity of the folded block is two Individual, interval of two folded blocks respectively between the relative both sides of the pressure strip, two folded blocks is not less than The width of the stacker, it is described to hold when the bending driving part drives the connecting plate to be pushed towards the stacker Joint chair is close to the pressure strip and compresses the elastomeric element, and two folded blocks are embedded to two slots to make way respectively It is interior;
The quantity of the flanging block and the flanging driving part are two;Two flanging blocks are held positioned at described respectively The relative both sides of joint chair;Two flanging driving parts are connected respectively two flanging blocks.
3. slide according to claim 2 folds cylinder shaping mechanism, it is characterised in that the upper surface of the substrate has limit Position groove, the stacker are connected to the groove bottom of the spacing groove, and two flanging blocks are respectively positioned at described spacing logical At two side notches of groove;One of side wall of the spacing groove has resigning hole, the stacker and the resigning Hole is relative, and the driving part of giving up the throne can drive the stacker edge to pull out the spacing groove out of described resigning hole.
4. slide according to claim 3 folds cylinder shaping mechanism, it is characterised in that the folded block is elongated, institute State that pressure strip is elongated, the major axis of the folded block is parallel with the major axis of the pressure strip;
The stacker is elongated, and the flanging block is elongated, the major axis of the flanging block and the major axis of the stacker It is parallel.
5. slide according to claim 4 folds cylinder shaping mechanism, it is characterised in that the length of the stacker, described Width of the length of flanging block between described spacing two side walls of groove is equal, two ends of the flanging block respectively with Described two side walls of spacing groove are engaged.
6. the slide according to claim 1-5 any one folds cylinder shaping mechanism, it is characterised in that the pressure strip Size is consistent with the size of the upper surface of the stacker.
7. the slide according to claim 1-5 any one folds cylinder shaping mechanism, it is characterised in that the connecting plate Lower surface is connected with multiple guide pillars, and the guide pillar is more than the pressure strip in nature relative to the height of the connecting plate lower surface The height of connecting plate lower surface described in distance under state;The substrate is provided with multiple guide holes, multiple guide holes and multiple institutes State guide pillar one-to-one corresponding.
8. the slide according to claim 1-5 any one folds cylinder shaping mechanism, it is characterised in that the support meanss Also there is location-plate, the location-plate is connected on the stacker.
9. the slide according to claim 1-5 any one folds cylinder shaping mechanism, it is characterised in that the elastomeric element With the connecting plate detachable connection.
10. the slide according to claim 1-5 any one folds cylinder shaping mechanism, it is characterised in that the elastic portion Part has multiple bearing spring blocks, and multiple bearing spring blocks are located at the lower surface of the connecting plate, and multiple bearing spring blocks are connected to institute State pressure strip.
CN201720455849.7U 2017-04-27 2017-04-27 Slide folds cylinder shaping mechanism Withdrawn - After Issue CN206794530U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720455849.7U CN206794530U (en) 2017-04-27 2017-04-27 Slide folds cylinder shaping mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720455849.7U CN206794530U (en) 2017-04-27 2017-04-27 Slide folds cylinder shaping mechanism

Publications (1)

Publication Number Publication Date
CN206794530U true CN206794530U (en) 2017-12-26

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Application Number Title Priority Date Filing Date
CN201720455849.7U Withdrawn - After Issue CN206794530U (en) 2017-04-27 2017-04-27 Slide folds cylinder shaping mechanism

Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106881415A (en) * 2017-04-27 2017-06-23 广东溢达纺织有限公司 Slide folds cylinder shaping mechanism

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106881415A (en) * 2017-04-27 2017-06-23 广东溢达纺织有限公司 Slide folds cylinder shaping mechanism
CN106881415B (en) * 2017-04-27 2018-08-10 广东溢达纺织有限公司 Slide folds cylinder shaping mechanism

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Granted publication date: 20171226

Effective date of abandoning: 20180810