Hot-pressing film laminating device for row-shaped wire harness
By hot-pressing film on the row wire harness and using hot melt film to form an integrated structure, the problem of removing tape after maintaining the wire harness by applying tape in the prior art is solved, and a more efficient and stable wire harness processing process is achieved.
Patent Information
- Application Number
- CN202422085816.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-08-27
AI Technical Summary
In the prior art, the wiring harness structure is maintained by applying beautiful tape, but the tape needs to be removed in the future, which is labor-consuming and time-consuming.
A hot-pressing film coating device for a row-shaped wire harness is provided, including a wire harness shaping mechanism, a hot-pressing film breaking mechanism, a wire harness cutting mechanism and a wire harness pulling mechanism. Under the action of the hot-melt film supply and clamping mechanism, the hot-melt film is hot-pressed and cut on the row-shaped wire harness under the action of the hot-melt film breaking mechanism, forming an integrated structure.
Through the thermal lamination technology, the structure of the line harness is ensured to be stable, the subsequent step of removing tape is avoided, the production efficiency is improved, and the waste work is reduced, and the stability is better than that of fixtures.
Smart Images

Figure CN222952875U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of row-shaped wire harness processing, and more specifically relates to a hot pressing laminating device for row-shaped wire harnesses. Background Art
[0002] At present, high-speed wiring harnesses have increasingly higher requirements for characteristics, and the requirements for the characteristics of product types are relatively complex. When processing row-shaped wiring harnesses, multiple cables need to be arranged into a wiring harness and the structure of the wiring harness needs to be kept stable. A common practice in the industry is to use masking tape to assist in processing. The masking tape attached to the wiring harness keeps the structure of the row-shaped wiring harness stable. After the auxiliary process is completed, the masking tape needs to be removed, and an additional removal position is required in the production process, which wastes time and labor, and does not save energy or reduce emissions. Another approach is to clamp the row-shaped wiring harness with an auxiliary fixture, which does not require tape, but has poor stability during processing. Utility Model Content
[0003] The purpose of the utility model is to provide a hot pressing laminating device for row-shaped wire harnesses in view of the deficiencies in the prior art, so as to solve the problem that the structural stability of the wire harnesses is maintained by sticking masking tape in the prior art, and the tape needs to be removed later, which is labor-intensive and time-consuming.
[0004] In order to achieve the above object, the utility model provides a hot pressing laminating device for row-shaped wire harnesses, comprising:
[0005] A wire harness shaping mechanism, a hot-pressing film-breaking mechanism, a wire harness cutting mechanism and a wire harness pulling mechanism are sequentially arranged from front to back, and a hot-melt film supply mechanism and a hot-melt film clamping mechanism are respectively arranged on both sides of the hot-pressing film-breaking mechanism;
[0006] The wire harness shaping mechanism comprises a shaping mold, which can accommodate a plurality of cables passing through and arrange the plurality of cables in a row to form a row-shaped wire harness;
[0007] The hot melt film supply mechanism includes two hot melt film storage components, and the hot melt film clamping mechanism includes two movable film clamping claws, which are respectively located at the upper side and the lower side of the moving path of the row-shaped wire harness, and are respectively used to clamp the hot melt films of the two hot melt film storage components, and can respectively pull the two hot melt films to the upper side and the lower side of the row-shaped wire harness;
[0008] The hot pressing and film cutting mechanism comprises a hot pressing plate and film cutters arranged on both sides of the hot pressing plate, which can hot press and cut the hot melt film on the upper and lower sides of the row-shaped wire harness;
[0009] The wire harness pulling mechanism can pull the row of wire harnesses and move them;
[0010] The harness cutting mechanism is capable of cutting the row-shaped harness.
[0011] Optionally, the shaping mold comprises a mold body, in which a plurality of guide holes are arranged side by side, and each of the guide holes can accommodate one of the cables.
[0012] Optionally, the wire harness shaping mechanism further includes a pair of first wire harness pressing rollers, at least one of which is connected to a first moving component, and the first moving component can drive the first wire harness pressing roller to move so as to open and close the pair of first wire harness pressing rollers.
[0013] Optionally, the hot melt film storage component includes a hot melt film roll, which is rotatably connected to one side of the hot pressure film cutting mechanism, and a material guide roller is provided on the side of the hot melt film roll close to the row-shaped wire bundle, and a suction cup component is liftably provided on the side of the material guide roller close to the row-shaped wire bundle.
[0014] Optionally, the membrane clamp includes a clamp cylinder and a pair of clamp bodies, the pair of clamp bodies are connected to the output end of the clamp cylinder, and a second movable component is connected to the side of the clamp cylinder away from the row-shaped wire bundle, and the second movable component can drive the membrane clamp to move in a direction close to or away from the row-shaped wire bundle.
[0015] Optionally, the hot pressing film cutting mechanism also includes a substrate arranged on the opposite side of the hot pressing plate, and the hot pressing plate and the substrate are respectively connected with a third moving component and a fourth moving component, and the third moving component and the fourth moving component can drive the hot pressing plate and the substrate to move toward or in the opposite direction, and the two die-cutting knives are respectively located on both sides of the row-shaped wire harness.
[0016] Optionally, the wire harness pulling mechanism comprises a wire harness clamping structure and a moving structure, wherein the moving structure is connected to the wire harness clamping structure and can drive the wire harness clamping structure to move so as to pull the row of wire harnesses to move.
[0017] Optionally, the wire harness clamping structure includes a sliding component, which is movably arranged downstream of the wire harness cutting mechanism, and a pair of wire harness clamps and a clamp driving structure are arranged on one side of the sliding component, and the pair of wire harness clamps are respectively arranged on one side of the sliding component along the vertical sliding direction, and the clamp driving structure includes a driving plate which is slidably arranged on one side of the sliding component along the horizontal direction, and the driving plate is provided with a pair of driving grooves, and the pair of driving grooves form a V-shaped arrangement, and the wire harness clamps are connected to a guide component, and the two guide components are respectively slidably embedded in the pair of driving grooves, and when the driving plate moves relative to the sliding component, the pair of wire harness clamps can open and close.
[0018] Optionally, the moving structure includes a synchronous wheel and a synchronous belt cooperating with the synchronous wheel, and the synchronous belt is connected to the sliding component via a connecting component.
[0019] Optionally, the wire harness cutting mechanism includes a wire harness positioning structure and a wire harness cutting structure, the wire harness positioning structure is arranged on the side of the wire harness cutting node close to the hot pressure film breaking mechanism and away from the wire harness pulling mechanism, the wire harness positioning structure includes a pressure plate and a pressure block respectively arranged on both sides of the row of wire harnesses, the pressure block is connected to a fifth movable component, and the fifth movable component can drive the pressure block to move toward or away from the pressure plate, and the wire harness cutting structure includes a pair of wire harness cutters, the pair of wire harness cutters are respectively arranged on both sides of the row of wire harnesses, and the pair of wire harness cutters are respectively connected to a sixth movable component and a seventh movable component, and the sixth movable component and the seventh movable component can drive the pair of wire harness cutters to move toward or away from each other.
[0020] The utility model provides a hot-pressing film coating device for row-shaped wire harnesses, and its beneficial effect is that the hot-pressing film coating device for row-shaped wire harnesses can shape multiple cables through a wire harness shaping mechanism to form a row-shaped wire harness, and the row-shaped wire harness can move along its set moving path with its production line. In this process, through the cooperation of the hot-melt film supply mechanism and the hot-melt film clamping mechanism on both sides of the hot-pressing film-breaking mechanism, two hot-melt films in the hot-melt film storage component can be respectively arranged on the upper side and the lower side of the row-shaped wire harness, and the hot-pressing plate of the hot-pressing film-breaking mechanism and the die-cutting knives on both sides of the hot-pressing plate are used to heat-press and cut the hot-melt films on the upper side and the lower side of the row-shaped wire harness on the row-shaped wire harness, so that the hot-melt films are integrally formed on the row-shaped wire harness. , ensuring the structural stability of the row-shaped wire harness. Under the action of the wire harness pulling mechanism, the row-shaped wire harness can be pulled and moved, and the moving distance can be set so that hot pressing lamination can be performed at each set position on the row-shaped wire harness. In this way, after hot pressing lamination, the row-shaped wire harness with hot pressing lamination can be cut according to needs using the wire harness cutting mechanism to ensure that each section of the cut row-shaped wire harness has hot pressing lamination, ensuring the structural stability of each section of the row-shaped wire harness, and facilitating its subsequent processing. The hot-melt film and the cable form an integrated structure, and there is no need to remove it later. Compared with the method of attaching masking tape, it is more labor-saving and time-saving. Compared with using auxiliary clamps to clamp the row-shaped wire harness, the stability during processing is better.
[0021] Other features and advantages of the present invention will be described in detail in the subsequent specific implementation section. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] The above and other objects, features and advantages of the present invention will become more apparent through a more detailed description of exemplary embodiments of the present invention in conjunction with the accompanying drawings, wherein the same reference numerals generally represent the same components in the exemplary embodiments of the present invention.
[0023] Figure 1 The figure shows the overall structure of a hot pressing laminating device for row-shaped wire harnesses according to an embodiment of the utility model.
[0024] Figure 2 A partially enlarged structural schematic diagram of a hot pressing laminating device for a row-shaped wire harness according to an embodiment of the utility model is shown.
[0025] Figure 3 A partially enlarged structural schematic diagram of a hot pressing laminating device for a row-shaped wire harness according to an embodiment of the utility model is shown.
[0026] Figure 4 A partially enlarged structural schematic diagram of a hot pressing laminating device for a row-shaped wire harness according to an embodiment of the utility model is shown.
[0027] Figure 5 A schematic diagram of the state of a row of wire harnesses processed by a hot pressing laminating device for row of wire harnesses according to an embodiment of the utility model is shown.
[0028] Description of reference numerals:
[0029] 1. Wire harness shaping mechanism; 2. Hot pressure film cutting mechanism; 3. Wire harness cutting mechanism; 4. Wire harness pulling mechanism; 5. Hot melt film supply mechanism; 6. Hot melt film clamping mechanism; 7. Row-shaped wire harness; 8. Film clamping claw; 9. Hot pressing plate; 10. Film cutter; 11. First support plate; 12. Second support plate; 13. First wire harness pressure roller; 14. Guide roller; 15. Suction cup component; 16. Base plate; 17. Wire harness clamping structure; 18. Moving structure; 19. Guide rail; 20. Sliding component; 21. Wire harness clamping claw; 22. Drive plate; 23. Drive groove; 24. Guide component; 25. Wire harness positioning structure; 26. Wire harness cutting structure; 27. Pressure plate; 28. Pressure block; 29. Wire harness cutter; 30. First coating structure; 31. Second coating structure; 32. Third coating structure. DETAILED DESCRIPTION
[0030] The preferred embodiments of the present invention will be described in more detail below. Although the preferred embodiments of the present invention are described below, it should be understood that the present invention can be implemented in various forms and should not be limited by the embodiments described herein. On the contrary, these embodiments are provided to make the present invention more thorough and complete, and to fully convey the scope of the present invention to those skilled in the art.
[0031] like Figure 1 As shown, the utility model provides a hot pressing laminating device for row-shaped wire harnesses, comprising:
[0032] A wire harness shaping mechanism 1, a hot-pressing film-breaking mechanism 2, a wire harness cutting mechanism 3 and a wire harness pulling mechanism 4 are sequentially arranged from front to back, and a hot-melt film supply mechanism 5 and a hot-melt film clamping mechanism 6 are respectively arranged on both sides of the hot-pressing film-breaking mechanism 2;
[0033] The wire harness shaping mechanism 1 comprises a shaping mold, which can accommodate multiple cables passing through and arrange the multiple cables in a row to form a row-shaped wire harness 7;
[0034] The hot melt film supply mechanism 5 includes two hot melt film storage components, and the hot melt film clamping mechanism 6 includes two movable film clamping jaws 8, which are respectively located at the upper side and the lower side of the moving path of the row-shaped wire harness 7, and are respectively used to clamp the hot melt films of the two hot melt film storage components, and can respectively pull the two hot melt films to the upper side and the lower side of the row-shaped wire harness 7;
[0035] The hot pressing and film cutting mechanism 2 includes a hot pressing plate 9 and film cutters arranged on both sides of the hot pressing plate 9, which can hot press and cut the hot melt film on the upper and lower sides of the row-shaped wire harness 7;
[0036] The wire harness pulling mechanism 4 can pull the row-shaped wire harness 7 and move it;
[0037] The wire harness cutting mechanism 3 can cut the row-shaped wire harness 7 .
[0038] Specifically, in order to solve the problem that the structure of the wiring harness is kept stable by sticking masking tape in the prior art, the tape needs to be removed later, which is labor-intensive and time-consuming; the hot-pressing laminating device for the row-shaped wiring harness 7 provided by the utility model can shape multiple cables through the wiring harness shaping mechanism 1 to form a row-shaped wiring harness 7, and the row-shaped wiring harness 7 can move along its set moving path with its production line. In this process, the hot-melt film supply mechanism 5 and the hot-melt film clamping mechanism 6 on both sides of the hot-pressing film-breaking mechanism 2 can cooperate to set the two hot-melt films in the hot-melt film storage component on the upper and lower sides of the row-shaped wiring harness 7 respectively, and use the hot pressing plate 9 of the hot-pressing film-breaking mechanism 2 and the die cutting knives 10 on both sides of the hot pressing plate 9 to heat-press and cut the hot-melt films on the upper and lower sides of the row-shaped wiring harness 7 on the row-shaped wiring harness 7. The hot melt film is integrally formed on the row-shaped wire harness 7 to ensure the structural stability of the row-shaped wire harness 7. Under the action of the wire harness pulling mechanism 4, the row-shaped wire harness 7 can be pulled and moved, and the moving distance can be set so that hot pressing coating can be performed at each set position on the row-shaped wire harness 7. In this way, after hot pressing coating, the row-shaped wire harness 7 with hot pressing coating can be cut according to needs using the wire harness cutting mechanism 3 to ensure that each section of the cut row-shaped wire harness 7 has hot pressing coating, ensuring the structural stability of each section of the row-shaped wire harness 7, and facilitating its subsequent processing. The hot melt film forms an integrated structure with the cable, and there is no need to remove it later. Compared with the method of attaching masking tape, it is more labor-saving and time-saving. Compared with using an auxiliary clamp to clamp the row-shaped wire harness 7, the stability during processing is better.
[0039] Optionally, a frame is further included, and various mechanisms included in the hot pressing laminating device for the row-shaped wire harness 7 are installed on the frame, and the frame is used to fix and support various mechanisms.
[0040] In this embodiment, the frame includes a first support plate 11 and a second support plate 12 . The first support plate 11 is provided with a through slot. The second support plate 12 passes through the through slot and is connected to the first support plate 11 . The second support plate 12 is perpendicular to the first support plate 11 .
[0041] Optionally, the shaping mold includes a mold body, in which a plurality of guide holes are arranged side by side, and each guide hole can accommodate a cable.
[0042] Specifically, the mold body can adopt an integrated structure or a split structure, and a plurality of guide holes can be formed inside the mold body. A plurality of cables pass through the plurality of guide holes respectively, and a neat row of wire harnesses 7 is formed under the action of the guide holes.
[0043] In this embodiment, the mold body is a split structure, formed by combining an upper plate and a lower plate, and a plurality of guide holes are formed between the upper plate and the lower plate.
[0044] Optionally, the wire harness shaping mechanism 1 further includes a pair of first wire harness pressing rollers 13 , at least one of which is connected to a first moving component, and the first moving component can drive the first wire harness pressing roller 13 to move so as to open and close the pair of first wire harness pressing rollers 13 .
[0045] Specifically, the pair of first wire harness pressing rollers 13 can open and close under the action of the first moving component to clamp and guide the row-shaped wire harness 7 .
[0046] Optionally, the hot melt film storage component includes a hot melt film roll, which is rotatably connected to one side of the hot pressure film breaking mechanism 2, and a material guide roller 14 is provided on the side of the hot melt film roll close to the row-shaped wire bundle 7, and a suction cup component 15 is liftably provided on the side of the material guide roller 14 close to the row-shaped wire bundle 7.
[0047] Specifically, the hot melt film roll includes a rotating disk and a hot melt film. The hot melt film is wound on the rotating disk to supply the hot melt film. The hot melt film can bypass the guide roller 14 and come to a position close to the row-shaped wire bundle 7, and can be adsorbed and positioned by the suction cup component 15. The suction cup component 15 can adopt a pneumatic suction cup to adsorb the hot melt film by vacuum. The suction cup component 15 can be connected to a lifting cylinder. After the suction cup component 15 adsorbs and positions the hot melt film, it is convenient for the two movable film clamps 8 to pull the two hot melt films to the upper and lower positions of the row-shaped wire bundle 7 respectively.
[0048] In this embodiment, the hot melt film roll, the guide roller 14 , the suction cup component 15 , etc. are all installed at one end of the second support plate 12 , and the hot melt film clamping mechanism 6 is installed at the other end of the second support plate 12 .
[0049] Optionally, the membrane clamp 8 includes a clamp cylinder and a pair of clamp bodies, the pair of clamp bodies are connected to the output end of the clamp cylinder, and a second movable component is connected to the side of the clamp cylinder away from the row-shaped wire bundle 7, and the second movable component can drive the membrane clamp 8 to move towards or away from the row-shaped wire bundle 7.
[0050] Specifically, the two film clamps 8 are driven by two second moving parts respectively, and can move towards or away from the row-shaped wire harness 7 so as to clamp and pull the hot melt film adsorbed on the suction cup part 15. Each clamp cylinder is connected to a pair of clamp bodies, and the clamping of the hot melt film is achieved by opening and closing the clamp bodies.
[0051] Optionally, the hot pressing film cutting mechanism 2 also includes a substrate 16 arranged on the opposite side of the hot pressing plate 9, and the hot pressing plate 9 and the substrate 16 are respectively connected with a third moving component and a fourth moving component, and the third moving component and the fourth moving component can drive the hot pressing plate 9 and the substrate 16 to move toward or in the opposite direction, and the two die-cutting knives 10 are respectively located on both sides of the row-shaped wire harness 7.
[0052] Specifically, the substrate 16 and the hot pressing plate 9 are relatively arranged on the lower and upper sides of the row-shaped wire bundle 7. Driven by the third moving component and the fourth moving component, the two can move toward each other and hot press the hot melt film on the upper and lower sides of the row-shaped wire bundle 7. Heat-generating components are arranged in the hot pressing plate 9 and / or the substrate 16 to meet the hot pressing requirements.
[0053] Optionally, the wire harness pulling mechanism 4 includes a wire harness clamping structure 17 and a moving structure 18. The moving structure 18 is connected to the wire harness clamping structure 17 and can drive the wire harness clamping structure 17 to move so as to pull the row-shaped wire harness 7 to move.
[0054] Specifically, the wire harness clamping structure 17 can move towards and away from the wire harness cutting mechanism 3 under the drive of the moving structure 18 , and the row of wire harnesses 7 can be clamped by the wire harness clamping structure 17 to pull the row of wire harnesses 7 .
[0055] In this embodiment, a guide rail 19 is provided on the first support plate 11 , and the harness clamping structure 17 is slidably connected to the first support plate 11 through the cooperation between the slider and the guide rail 19 .
[0056] Optionally, the wire harness clamping structure 17 includes a sliding component 20, which is movably arranged downstream of the wire harness cutting mechanism 3. A pair of wire harness clamps 21 and a clamp driving structure are arranged on one side of the sliding component 20. The pair of wire harness clamps 21 are respectively arranged on one side of the sliding component 20 along the vertical sliding direction. The clamp driving structure includes a driving plate 22 which is slidably arranged on one side of the sliding component 20 along the horizontal direction. The driving plate 22 has a pair of driving grooves 23, and the pair of driving grooves 23 form a V-shaped arrangement. The wire harness clamps 21 are connected to guide components 24, and the two guide components 24 are respectively slidably embedded in a pair of driving grooves 23. When the driving plate 22 moves relative to the sliding component 20, the pair of wire harness clamps 21 can open and close.
[0057] Specifically, the sliding component 20 is slidably arranged and can move, and the driving plate 22 on the sliding component 20 can also move relative to the sliding component 20. When the driving plate 22 moves relative to the sliding component 20, due to the effect of a pair of driving grooves 23 arranged in a V shape on the two guide components 24, a pair of wiring harness clamps 21 can be driven to open and close, thereby achieving the clamping and release of the row-shaped wiring harness 7.
[0058] In this embodiment, the guide component 24 is a guide wheel.
[0059] In this embodiment, the sliding component 20 includes a plate-shaped component, a slide rail is provided between the driving plate 22 and the sliding component 20 , and the driving plate 22 is connected to the sliding component 20 via a cylinder.
[0060] Optionally, the moving structure 18 includes a synchronous wheel and a synchronous belt matched with the synchronous wheel, and the synchronous belt is connected to the sliding component 20 through a connecting component.
[0061] Specifically, the synchronous belt can move cyclically around the synchronous wheel. When the synchronous belt moves, it can drive the sliding component 20 to move because it is connected to the sliding component 20 through the connecting component.
[0062] Optionally, the wire harness cutting mechanism 3 includes a wire harness positioning structure 25 and a wire harness cutting structure 26. The wire harness positioning structure 25 is arranged on the side of the wire harness cutting node close to the hot pressure film breaking mechanism 2 and away from the wire harness pulling mechanism 4. The wire harness positioning structure 25 includes a pressure plate 27 and a pressure block 28 respectively arranged on both sides of the row of wire harnesses 7. The pressure block 28 is connected to a fifth movable component, and the fifth movable component can drive the pressure block 28 to move toward or away from the pressure plate 27. The wire harness cutting structure 26 includes a pair of wire harness cutters 29. The pair of wire harness cutters 29 are respectively arranged on both sides of the row of wire harnesses 7. The pair of wire harness cutters 29 are respectively connected to a sixth movable component and a seventh movable component. The sixth movable component and the seventh movable component can drive the pair of wire harness cutters 29 to move toward or away from each other.
[0063] Specifically, the wire harness positioning structure 25 and the wire harness cutting structure 26 cooperate with each other. When cutting the wire harness, the wire harness positioning structure 25 moves the pressure block 28 toward the pressure plate 27 under the drive of the fifth movable component, and presses the row of wire harnesses 7 to position them. A pair of wire harness cutters 29 move toward each other under the drive of the sixth movable component and the seventh movable component, and cut the row of cables that have been pressed and positioned into segments.
[0064] In this embodiment, the wire harness positioning structure 25, the wire harness cutting structure 26 and the wire harness pulling mechanism 4 are connected to the first support plate 11 and are located on the rear side of the second support plate 12. A pair of second wire harness pressing rollers are also arranged between the wire harness positioning structure 25 and the second support plate 12. Like the first wire harness pressing roller 13, the second wire harness pressing roller can clamp and guide the wire harness.
[0065] In this embodiment, the first to seventh moving parts are all telescopic parts, which may be electric telescopic rods, air cylinders or hydraulic cylinders, etc.
[0066] In summary, when the hot pressing laminating device for the row-shaped wire harness 7 provided by the utility model is used, the processing of the row-shaped wire harness 7 is taken as an example: first, a plurality of cables are passed through a plurality of guide holes of the shaping mold to form a row-shaped wire harness 7, and the row-shaped wire harness 7 can be clamped and pulled by the wire harness pulling mechanism 4; Figure 5As shown, firstly, the row-like wire harness 7 is hot-pressed to form a first coating structure. During this process, the hot-melt film is supplied through the hot-melt film roll, and the hot-melt film is adsorbed and positioned by the suction cup component 15. Then, the hot-melt film is clamped by two film clamping claws 8 of the hot-melt film clamping mechanism 6 and moved into position, that is, two hot-melt films are respectively located at the upper and lower sides of the row-like wire harness 7; then, the hot-pressing plate 9 and the film cutter of the hot-pressing film cutting mechanism 2 are used to hot-press the hot-melt film, and the hot-pressed hot-melt film is cut off to form the first coating structure 30 on the row-like wire harness 7. At the same time, the suction cup component 15 can adsorb and position the cut hot-melt film so as to feed the material during the next coating; then, the row-like wire harness 7 is moved backward under the action of the wire harness pulling mechanism 4 so as to be The second coating structure 31 is formed in the same way as the first coating structure 30, which will not be repeated here. After the second coating structure 31 is formed, the wire harness pulling mechanism 4 is used to move the row-shaped wire harness 7 backward to form the third coating structure 32, and the wire harness cutter 29 is aligned with the position where the row-shaped wire harness 7 should be cut, and then the wire harness cutting mechanism 3 is started, and the wire harness positioning structure 25 is used to position the row-shaped wire harness 7, and the wire harness cutter 29 is used to cut the row-shaped wire harness 7. The first coating structure 30 and the second coating structure 31 are formed at both ends of the cut section of the row-shaped wire harness 7, which can well maintain the structural stability of the section of the row-shaped wire harness 7 and facilitate subsequent processing.
[0067] The various embodiments of the utility model have been described above, and the above description is exemplary, not exhaustive, and is not limited to the disclosed embodiments. Many modifications and changes are obvious to those of ordinary skill in the art without departing from the scope and spirit of the described embodiments.
Claims
1. A hot pressing laminating device for row-shaped wire harnesses, characterized in that: include: A wire harness shaping mechanism, a hot-pressing film-breaking mechanism, a wire harness cutting mechanism and a wire harness pulling mechanism are sequentially arranged from front to back, and a hot-melt film supply mechanism and a hot-melt film clamping mechanism are respectively arranged on both sides of the hot-pressing film-breaking mechanism; The wire harness shaping mechanism comprises a shaping mold, which can accommodate a plurality of cables passing through and arrange the plurality of cables in a row to form a row-shaped wire harness; The hot melt film supply mechanism includes two hot melt film storage components, and the hot melt film clamping mechanism includes two movable film clamping claws, which are respectively located at the upper side and the lower side of the moving path of the row-shaped wire harness, and are respectively used to clamp the hot melt films of the two hot melt film storage components, and can respectively pull the two hot melt films to the upper side and the lower side of the row-shaped wire harness; The hot pressing and film cutting mechanism comprises a hot pressing plate and film cutters arranged on both sides of the hot pressing plate, which can hot press and cut the hot melt film on the upper and lower sides of the row-shaped wire harness; The wire harness pulling mechanism can pull the row of wire harnesses and move them; The harness cutting mechanism is capable of cutting the row-shaped harness.
2. The hot pressing laminating device for row-shaped wire harness according to claim 1, characterized in that: The shaping mold comprises a mold body, in which a plurality of guide holes are arranged side by side, and each of the guide holes can accommodate one of the cables.
3. The hot pressing laminating device for row-shaped wire harness according to claim 1, characterized in that: The wire harness shaping mechanism further includes a pair of first wire harness pressing rollers, at least one of which is connected to a first moving component, and the first moving component can drive the first wire harness pressing roller to move so as to open and close the pair of first wire harness pressing rollers.
4. The hot pressing laminating device for row-shaped wire harness according to claim 1, characterized in that: The hot melt film storage component includes a hot melt film roll, which is rotatably connected to one side of the hot pressure film breaking mechanism. A material guide roller is arranged on the side of the hot melt film roll close to the row-shaped wire bundle, and a suction cup component is liftably arranged on the side of the material guide roller close to the row-shaped wire bundle.
5. The hot pressing laminating device for row-shaped wire harness according to claim 1, characterized in that: The membrane clamp includes a clamp cylinder and a pair of clamp bodies, the pair of clamp bodies are connected to the output end of the clamp cylinder, and a second movable component is connected to the side of the clamp cylinder away from the row-shaped wire bundle, and the second movable component can drive the membrane clamp to move in a direction close to or away from the row-shaped wire bundle.
6. The hot pressing laminating device for row-shaped wire harness according to claim 1, characterized in that: The hot pressing film cutting mechanism also includes a substrate arranged on the opposite side of the hot pressing plate, and the hot pressing plate and the substrate are respectively connected with a third moving component and a fourth moving component, and the third moving component and the fourth moving component can drive the hot pressing plate and the substrate to move toward or in the opposite direction, and the two die cutting knives are respectively located on both sides of the row-shaped wire harness.
7. The hot pressing laminating device for row-shaped wire harness according to claim 1, characterized in that: The wire harness pulling mechanism comprises a wire harness clamping structure and a moving structure. The moving structure is connected to the wire harness clamping structure and can drive the wire harness clamping structure to move so as to pull the row-shaped wire harness to move.
8. The hot pressing laminating device for row-shaped wire harnesses according to claim 7, characterized in that: The wire harness clamping structure includes a sliding component, which is movably arranged downstream of the wire harness cutting mechanism. A pair of wire harness clamps and a clamp driving structure are arranged on one side of the sliding component. The pair of wire harness clamps are respectively arranged on one side of the sliding component along a vertical sliding direction. The clamp driving structure includes a driving plate slidably arranged on one side of the sliding component along a horizontal direction. The driving plate is provided with a pair of driving grooves, and the pair of driving grooves are arranged in a V shape. The wire harness clamps are connected to a guide component, and the two guide components are respectively slidably embedded in a pair of driving grooves. When the driving plate moves relative to the sliding component, the pair of wire harness clamps can open and close.
9. The hot pressing laminating device for row-shaped wire harness according to claim 8, characterized in that: The moving structure comprises a synchronous wheel and a synchronous belt matched with the synchronous wheel, and the synchronous belt is connected to the sliding component through a connecting component.
10. The hot pressing laminating device for row-shaped wire harnesses according to claim 1, characterized in that: The wire harness cutting mechanism includes a wire harness positioning structure and a wire harness cutting structure, wherein the wire harness positioning structure is arranged on a side of the wire harness cutting node close to the hot pressure film breaking mechanism and away from the wire harness pulling mechanism, the wire harness positioning structure includes a pressure plate and a pressure block respectively arranged on both sides of the row-shaped wire harness, the pressure block is connected to a fifth movable component, and the fifth movable component can drive the pressure block to move toward or away from the pressure plate, and the wire harness cutting structure includes a pair of wire harness cutters, the pair of wire harness cutters are respectively arranged on both sides of the row-shaped wire harness, and the pair of wire harness cutters are respectively connected to a sixth movable component and a seventh movable component, and the sixth movable component and the seventh movable component can drive the pair of wire harness cutters to move toward or away from each other.