CN216436369U - Outgoing line crimping die for processing carbon fiber electrothermal film - Google Patents

Outgoing line crimping die for processing carbon fiber electrothermal film Download PDF

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Publication number
CN216436369U
CN216436369U CN202122394359.XU CN202122394359U CN216436369U CN 216436369 U CN216436369 U CN 216436369U CN 202122394359 U CN202122394359 U CN 202122394359U CN 216436369 U CN216436369 U CN 216436369U
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carbon fiber
electrothermal film
fiber electrothermal
die
groove
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CN202122394359.XU
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Chinese (zh)
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徐立霜
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Wenjia Alkene Carbon New Energy Qingdao Co ltd
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Qingdao Huaneng New Energy Engineering Co ltd
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Abstract

The utility model relates to the technical field of mold, specifically be a crimping mould of being qualified for next round of competitions for carbon fiber electrothermal film processing, including die block and top mould, be provided with the carbon fiber electrothermal film between die block and the top mould, the last crimping of carbon fiber electrothermal film has a plurality of connecting wires, rotates on the die block to be connected with a plurality of dwangs, is provided with on the die block and presses down the structure, presses down the structure and includes two end plates and a plurality of depression bars, and the carbon fiber electrothermal film passes from dwang and depression bar between. This a crimping mould of being qualified for next round of competitions for carbon fiber electrothermal film processing through dwang and the press structure of setting on the die block, makes the carbon fiber electrothermal film can be pressed by the press structure all the time in the pan feeding groove, reaches the effect that plays the location to the carbon fiber electrothermal film, can lead to the carbon fiber electrothermal film to appear rocking and lead to the condition emergence of carbon fiber electrothermal film and connecting wire crimping dislocation because of pressure when preventing that the connecting wire crimping from receiving on the carbon fiber electrothermal film.

Description

Outgoing line crimping die for processing carbon fiber electrothermal film
Technical Field
The utility model relates to the technical field of mold, specifically be a crimping mould of being qualified for next round of competitions for carbon fiber electrothermal film processing.
Background
The electrothermal film heating system is different from a point type heating system represented by a radiator, an air conditioner and a heating plate and a line type heating system represented by a heating cable, the carbon fiber electrothermal film is a mode of the electrothermal film, the carbon fiber electrothermal film uses a carbon fiber felt and a carbon fiber wire as a heating base body, and has the advantages of large power margin, high temperature resistance, strong high heat capacity, long service life, random adjustment of power and the like, and the electrothermal film heating system is widely used in various fields of life by people at present. When processing the carbon fiber electrothermal film, need use the crimping mould to be connected the cable tie point of cable and carbon fiber electrothermal film, make the carbon fiber electrothermal film can normally let in the power, because when carrying out the crimping with carbon fiber electrothermal film and connecting wire, the pressure that the crimping produced makes the carbon fiber electrothermal film take place to rock in the mould easily, lead to the crimping point of connecting wire and carbon fiber electrothermal film to take place the displacement, thereby lead to on the unable stable crimping of connecting wire to the carbon fiber electrothermal film, influence the use of carbon fiber electrothermal film, in view of this, we provide a crimping mould of being qualified for the next round of competitions for carbon fiber electrothermal film processing.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a crimping mould of being qualified for next round of competitions for carbon fiber electrothermal film processing to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme:
a wire outlet crimping die for processing a carbon fiber electrothermal film comprises a bottom die and a top die, wherein the carbon fiber electrothermal film is arranged between the bottom die and the top die, a plurality of connecting wires are crimped on the carbon fiber electrothermal film, a bottom die pressing core is embedded at the edge of the right side of the top surface of the bottom die, a feeding groove is formed in the left side position of the top surface of the bottom die, a plurality of rotating rods are rotatably connected to the groove bottom of the feeding groove, a top die pressing core is embedded at the bottom of the top die, a convex core is integrally formed at the bottom end of the top die pressing core, cover grooves are formed in the front side edge and the rear side edge of the feeding groove, a movable groove is formed in the groove bottom of each cover groove, the movable groove is communicated with the feeding groove through a through window, a pressing structure is arranged in the feeding groove and comprises two end plates and a plurality of pressing rods rotatably connected between the two end plates, the carbon fiber electrothermal film is followed the dwang with pass between the depression bar, the end of connecting wire is located protruding core with between the die block pressure core.
Preferably, a plurality of recesses have been seted up to the tank bottom department in pan feeding groove, the dwang cover is established in the recess, the homogeneous shaping in first and last both ends of dwang has the protruding axle, and the protruding axle inserts in the inner wall of recess and with the die block rotates to be connected.
Preferably, the bottom die pressing core is fixed in the bottom die through a bolt, an air avoiding opening is formed in the right side position of the bottom die pressing core, and the connecting wire penetrates through the air avoiding opening.
Preferably, a plurality of caulking grooves are formed in the bottom of the right side of the feeding groove, supporting blocks are embedded in the caulking grooves, a plurality of mounting grooves are formed in the bottom surface of the top die, pressing blocks are embedded in the mounting grooves and press the carbon fiber electrothermal films to the top surfaces of the supporting blocks.
Preferably, the corner integrated into one piece in the outside of end plate has the lug, the lug stretches into in the activity groove, the end of depression bar stretch into the inside of end plate and with the end plate rotates and is connected.
Preferably, a concave hole is formed in the top end of the bump, a spring is sleeved in the concave hole, a cover plate is fixed on the cover groove through a bolt, and the top end of the spring is abutted to the cover plate.
Compared with the prior art, the beneficial effects of the utility model are that:
this a crimping mould of being qualified for next round of competitions for carbon fiber electrothermal film processing, through dwang and the pressing structure of setting on the die block, make when carrying out the connecting wire crimping to the carbon fiber electrothermal film, can fill in the below of pressing structure with the carbon fiber electrothermal film from the pan feeding groove, make the carbon fiber electrothermal film can be pressed by the pressing structure all the time in the pan feeding groove, reach the effect that plays the location to the carbon fiber electrothermal film, can lead to the carbon fiber electrothermal film to appear rocking and lead to the condition emergence of carbon fiber electrothermal film and connecting wire crimping dislocation because of pressure when preventing that the connecting wire from pressing to receive on the carbon fiber electrothermal film.
Drawings
Fig. 1 is a schematic view of the overall structure of embodiment 1 of the present invention;
fig. 2 is an exploded view of the overall structure of embodiment 1 of the present invention;
fig. 3 is a schematic view of a bottom mold structure in embodiment 1 of the present invention;
FIG. 4 is an enlarged view of the point A of the present invention;
fig. 5 is an exploded view of the top mold according to example 1 of the present invention;
FIG. 6 is an exploded view of a carbon fiber electrothermal film according to the present invention;
fig. 7 is a schematic view of the installation of the wire clamp according to embodiment 2 of the present invention;
fig. 8 is a schematic structural view of the middle wire clamp of the present invention.
The meaning of the individual reference symbols in the figures is:
1. bottom die; 11. pressing a core by a bottom die; 12. a feeding groove; 121. a groove; 122. rotating the rod; 13. avoiding air holes; 14. a cover groove; 141. a movable groove; 142. a window is opened; 143. a cover plate; 15. caulking grooves; 151. a support block; 2. carrying out top die; 21. top molding the core; 211. a convex core; 22. an empty avoiding groove; 23. mounting grooves; 231. a pressing block; 3. a carbon fiber electrothermal film; 31. a connecting wire; 4. a pressing structure; 41. an end plate; 411. a bump; 412. concave holes; 413. a spring; 42. a pressure lever; 5. wire clamps; 51. a base plate; 52. a splint; 53. and (5) pressing the plate.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In the description of the present invention, it is to be understood that the terms "front", "back", "left", "right", "top", "bottom", "inner", "outer", etc. indicate orientations or positional relationships based on those shown in the drawings, and are used merely for convenience in describing the present invention and for simplification of the description, and do not indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus should not be construed as limiting the present invention.
Furthermore, the terms "a", "an", and "the" mean two or more unless explicitly limited otherwise.
Example 1
Referring to fig. 1-6, the present invention provides a technical solution:
the utility model provides a crimping mould of being qualified for next round of competitions for carbon fiber electrothermal film processing, including die block 1 and top mould 2, be provided with carbon fiber electrothermal film 3 between die block 1 and the top mould 2, the crimping has a plurality of connecting wires 31 on the carbon fiber electrothermal film 3, the right side edge of 1 top surface of die block inlays and is equipped with die block pressure core 11, pan feeding groove 12 has been seted up to the left side position department of 1 top surface of die block, the bottom of top mould 2 inlays and establishes and have top mould pressure core 21 through the bolt fastening, the bottom integrated into one piece of top mould pressure core 21 has protruding core 211, die block pressure core 11 passes through the bolt fastening in die block 1, the clearance mouth 13 has been seted up to the right side position department of die block pressure core 11, connecting wire 31 passes from clearance mouth 13, the end of connecting wire 31 is located between protruding core 211 and the die block pressure core 11. Through putting into pan feeding groove 12 with carbon fiber electrothermal film 3, treat the position overlap joint of crimping on carbon fiber electrothermal film 3 at the top of top mould die core 21 and put into connecting wire 31 after again, make top mould 2 fold with die block 1 and can make protruding core 211 move towards die block die core 11 for connecting wire 31 is pressed on carbon fiber electrothermal film 3 by protruding core 211, reaches the purpose of line ball. The bottom surface of the top die 2 is provided with a clearance groove 22, the position of the clearance groove 22 corresponds to the position of the feeding groove 12, and the bottom die 1 is prevented from pressing the carbon fiber electrothermal film 3 when being folded with the top die 2.
In this embodiment, a plurality of recesses 121 have been seted up to pan feeding groove 12's tank bottom department, pan feeding groove 12's tank bottom department rotates and is connected with a plurality of dwang 122, dwang 122 cover is established in recess 121, dwang 122's first and last both ends homogeneous body shaping has protruding axle, protruding axle inserts in recess 121's the inner wall and rotates with die block 1 and be connected, when making to put into pan feeding groove 12 with carbon fiber electrothermal film 3, carbon fiber electrothermal film 3 can conveniently move along pan feeding groove 12 under dwang 122's rotation, so that the crimping department of carbon fiber electrothermal film 3 can conveniently overlap joint on die block pressure core 11.
Concretely, lid groove 14 has all been seted up to both sides edge around pan feeding groove 12, movable groove 141 has been seted up to lid groove 14's tank bottom department, be linked together through logical window 142 between movable groove 141 and the pan feeding groove 12, be provided with in the pan feeding groove 12 and press structure 4, press structure 4 to include two end plates 41 and rotate a plurality of depression bars 42 of connection between two end plates 41, carbon fiber electrothermal film 3 passes from dwang 122 and depression bar 42 between, make when putting into pan feeding groove 12 with carbon fiber electrothermal film 3, carbon fiber electrothermal film 3 can be pressed in pan feeding groove 12 by top die 2.
In addition, a convex block 411 is integrally formed at the outer corner of the end plate 41, the convex block 411 extends into the movable slot 141, and the end of the pressing rod 42 extends into the end plate 41 and is rotatably connected with the end plate 41, so that the pressing rod 42 can rotate between the two end plates 41. Shrinkage pool 412 has been seted up on the top of lug 411, the cover is equipped with spring 413 in the shrinkage pool 412, there is apron 143 through the bolt fastening on the lid groove 14, the top and the apron 143 butt of spring 413, under the spring action of spring 413, end plate 41 drives depression bar 42 and supports all the time at carbon fiber electrothermal film 3 on the surface, make carbon fiber electrothermal film 3 can be restricted in pan feeding groove 12, thereby can prevent that carbon fiber electrothermal film 3 from can taking place to rock when being pressed the line when reaching location carbon fiber electrothermal film 3 purpose.
It is worth noting that a plurality of caulking grooves 15 have been seted up to pan feeding groove 12's right side tank bottom department, the embedded tray 151 that is equipped with of caulking groove 15, a plurality of mounting grooves 23 have been seted up to the bottom surface of top mould 2, it presses the pressure piece 231 to inlay in the mounting groove 23, press the top surface at tray 151 with carbon fiber electrothermal film 3 according to pressure piece 231, tray 151 all uses rubber materials with according to pressure piece 231 to make, make die block 1 and top mould 2 when folding, tray 151 can be with 3 centre grippings of carbon fiber electrothermal film according to pressure piece 231, further prevent that the condition that carbon fiber electrothermal film 3 from appearing rocking from taking place when the line ball.
The outgoing line crimping die for processing the carbon fiber electrothermal film of the embodiment is used, firstly, the carbon fiber electrothermal film 3 is placed into the feeding groove 12, the end part of the carbon fiber electrothermal film 3 is placed into the lower part of the pressing structure 4, then the carbon fiber electrothermal film 3 is inwards pushed along the feeding groove 12, the carbon fiber electrothermal film 3 smoothly moves to the groove bottom of the feeding groove 12 under the rotation of the rotating rod 122 and the pressing rod 42, at the moment, the crimping part of the carbon fiber electrothermal film 3 is lapped on the bottom die pressing core 11, then the top die 2 and the bottom die 1 are folded to enable the convex core 211 to move towards the bottom die pressing core 11, so that the connecting line 31 is pressed on the carbon fiber electrothermal film 3 by the convex core 211, the purpose of line pressing is achieved, finally, the carbon fiber electrothermal film 3 and the connecting line 31 are crimped, the carbon fiber electrothermal film 3 is always limited in the feeding groove 12 under the limitation of the pressing structure 4, the carbon fiber electrothermal film 3 is prevented from being mistakenly crimped by the carbon fiber electrothermal film 3 and the connecting line 31 due to shaking in the process of line pressing A bit condition occurs.
Example 2
In order to prevent that carbon fiber electrothermal film 3 and connecting wire 31 from taking place to rock when the crimping, connecting wire 31 can be because of receiving pressure, lead to the condition emergence of carbon fiber electrothermal film 3 and connecting wire 31 crimping dislocation, consequently, as shown in fig. 7 and 8, the top surface of die block pressure core 11 and the bottom surface of taking away empty mouth 13 all have fastener 5 through the bolt fastening, fastener 5 includes bottom plate 51 and integrated into one piece at a pair of splint 52 on bottom plate 51 top, connecting wire 31 passes through from a pair of splint 52, make connecting wire 31 restricted between two splint 52, thereby prevent that connecting wire 31 from appearing rocking when the crimping.
In this embodiment, the pressing plate 53 made of rubber is tightly adhered to the inner side surface of the clamping plate 52, so that the connecting wire 31 can be pressed by the pressing plate 53 when being placed between the two clamping plates 52, the purpose of positioning the connecting wire 31 is further achieved, and the connecting wire 31 is prevented from loosening from the wire clamp 5.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It should be understood by those skilled in the art that the present invention is not limited by the above embodiments, and the description in the above embodiments and the description is only preferred examples of the present invention, and is not intended to limit the present invention, and that the present invention can have various changes and modifications without departing from the spirit and scope of the present invention, and these changes and modifications all fall into the scope of the claimed invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (6)

1. The utility model provides a crimping mould of being qualified for next round of competitions for carbon fiber electrothermal film processing, includes die block (1) and top mould (2), die block (1) with be provided with carbon fiber electrothermal film (3) between top mould (2), the crimping has a plurality of connecting wires (31), its characterized in that on carbon fiber electrothermal film (3): the utility model discloses a die block, including die block (1), bottom die (1), pan feeding groove (12), the tank bottom department of pan feeding groove (12) has been connected with a plurality of dwang (122) in the right side edge of die block (1) top surface, the bottom of top die (2) is inlayed and is equipped with top die pressing core (21), the bottom integrated into one piece of top die pressing core (21) has protruding core (211), lid groove (14) have all been seted up to the tank bottom department of pan feeding groove (12) both sides edge, movable groove (141) have been seted up to the tank bottom department of lid groove (14), movable groove (141) with be linked together through logical window (142) between pan feeding groove (12), be provided with in pan feeding groove (12) and press structure (4), press structure (4) including two end plates (41) and rotate a plurality of depression bars (42) of connection between two end plates (41), carbon fiber electrothermal film (3) are followed dwang (122) with pass between depression bar (42), the end of connecting wire (31) is located protruding core (211) with between die block pressure core (11).
2. The outgoing line crimping die for processing the carbon fiber electrothermal film as claimed in claim 1, wherein: a plurality of recesses (121) have been seted up to the tank bottom department in pan feeding groove (12), dwang (122) cover is established in recess (121), the homogeneous shaping in first and last both ends of dwang (122) has the protruding axle, and the protruding axle inserts in the inner wall of recess (121) and with die block (1) rotates and is connected.
3. The outgoing line crimping die for processing the carbon fiber electrothermal film as claimed in claim 1, wherein: the bottom die pressing core (11) is fixed in the bottom die (1) through a bolt, an air avoiding opening (13) is formed in the position of the right side of the bottom die pressing core (11), and the connecting wire (31) penetrates through the air avoiding opening (13).
4. The outgoing line crimping die for processing the carbon fiber electrothermal film as claimed in claim 1, wherein: a plurality of caulking grooves (15) have been seted up to the right side tank bottom department of pan feeding groove (12), caulking groove (15) are embedded to be equipped with tray (151), a plurality of mounting grooves (23) have been seted up to the bottom surface of top mould (2), it presses down piece (231) to inlay in mounting groove (23), it will to press down piece (231) carbon fiber electric heat membrane (3) press the top surface of tray (151).
5. The outgoing line crimping die for processing the carbon fiber electrothermal film as claimed in claim 1, wherein: the outside corner integrated into one piece of end plate (41) has lug (411), lug (411) stretch into in activity groove (141), the end of depression bar (42) stretch into the inside of end plate (41) and with end plate (41) rotate and be connected.
6. The outgoing line crimping die for processing the carbon fiber electrothermal film as claimed in claim 5, wherein: concave hole (412) have been seted up to the top of lug (411), spring (413) are overlapped in concave hole (412), cover groove (14) are gone up and are fixed with apron (143) through the bolt, the top of spring (413) with apron (143) butt.
CN202122394359.XU 2021-09-30 2021-09-30 Outgoing line crimping die for processing carbon fiber electrothermal film Active CN216436369U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122394359.XU CN216436369U (en) 2021-09-30 2021-09-30 Outgoing line crimping die for processing carbon fiber electrothermal film

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122394359.XU CN216436369U (en) 2021-09-30 2021-09-30 Outgoing line crimping die for processing carbon fiber electrothermal film

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CN216436369U true CN216436369U (en) 2022-05-03

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115764486A (en) * 2022-10-08 2023-03-07 江苏天创新材料科技有限公司 Graphite alkene electric heat diaphragm connecting wire pressure device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115764486A (en) * 2022-10-08 2023-03-07 江苏天创新材料科技有限公司 Graphite alkene electric heat diaphragm connecting wire pressure device
CN115764486B (en) * 2022-10-08 2023-12-22 江苏天创新材料科技有限公司 Graphene electrothermal film connecting wire pressing device

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Effective date of registration: 20230803

Address after: 266000 No. 206, Shuangyuan Road, Jihongtan street, Chengyang District, Qingdao City, Shandong Province

Patentee after: Wenjia alkene carbon new energy (Qingdao) Co.,Ltd.

Address before: 266100 room 1404-1405, high level talent entrepreneurship center, No. 153, Zhuzhou Road, Laoshan District, Qingdao City, Shandong Province

Patentee before: Qingdao Huaneng New Energy Engineering Co.,Ltd.