CN214488653U - Ultrasonic hot melting and cutting device for conducting wire - Google Patents

Ultrasonic hot melting and cutting device for conducting wire Download PDF

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Publication number
CN214488653U
CN214488653U CN202023146248.9U CN202023146248U CN214488653U CN 214488653 U CN214488653 U CN 214488653U CN 202023146248 U CN202023146248 U CN 202023146248U CN 214488653 U CN214488653 U CN 214488653U
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China
Prior art keywords
wire
motion
clamping jaw
hot
hot melt
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CN202023146248.9U
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Chinese (zh)
Inventor
王广州
吴浩
陈贵立
潘愈琳
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Anhui xinmingya Electronics Co.,Ltd.
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Suzhou Industrial Park Xinmingya Electronic Technology Co ltd
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Abstract

The utility model relates to a hot melt cutting device, concretely relates to wire ultrasonic wave hot melt cutting device, include the hot melt platform, connect silo and unloading module, hot melt platform low reaches are equipped with the unloading module, unloading module downside is equipped with connect the silo, just connect the silo to be fixed in the hot melt bench, the unloading module includes backup pad, motion motor, motion lead screw, motion guide rail, sliding block and wire clamping jaw, backup pad one end is fixed hot melt platform one side, fixed mounting has in the backup pad the motion guide rail, install in the motion guide rail the motion lead screw, just the motion lead screw with the sliding block is connected, just the sliding block with the motion guide rail is connected, be fixed with on the sliding block the wire clamping jaw. The utility model discloses a wire ultrasonic wave hot melt cutting device can realize the automatic hot melt of wire and tailor as required, need not to think intervention, has improved the hot melt speed of wire greatly.

Description

Ultrasonic hot melting and cutting device for conducting wire
Technical Field
The utility model relates to a hot melt cutting device field, concretely relates to wire ultrasonic wave hot melt cutting device.
Background
Wire, refers to the material used as wire and cable, and also refers to wire in the industry. Typically made of copper or aluminum, and also made of silver wire (which is electrically and thermally conductive) to conduct electricity or heat. Conventional wires are directly connected to the circuit board. However, in the existing lead produced by my department, because one end of the lead is connected with a sensor, the surface of the lead needs to be subjected to hot pressing treatment before leaving a factory, and a fixing lug is formed at one end of the lead to limit the positioning of the sensor, so that one end of each lead needs to be subjected to hot melting of a rubber sheet of the lead, and thus the fixing lug is formed.
The conventional heat-melting process is to cut the wire 17 into a fixed length and then heat-melt the wire to form the fixing lug 16, but this method has the following problems: firstly, cutting is carried out, then, hot melting is carried out, the working procedures are not connected, the turnover is needed, and more manpower is occupied; the speed rate is relatively slow during hot melting, and the actual requirements of enterprises cannot be met due to the manual feeding and discharging.
SUMMERY OF THE UTILITY MODEL
In order to solve the defects of the prior art, the utility model provides a wire ultrasonic hot melting cutting device, which realizes the automatic blanking process of the wire after hot melting by arranging the blanking module, does not need human intervention, and improves the production rate of the product; through setting up the hot melt platform, realized cutting the automation of wire, cut and go on with the hot melt together, avoided the turnover of wire, saved the manpower.
The technical scheme of the utility model is that:
the utility model provides a wire ultrasonic wave hot melt cutting device, including hot melt platform and unloading module, hot melt platform low reaches are equipped with the unloading module, the unloading module includes backup pad, motion motor, motion lead screw, motion guide rail, sliding block and wire clamping jaw, backup pad one end is fixed hot melt platform one side, fixed mounting has in the backup pad the motion guide rail, install in the motion guide rail the motion lead screw, just the motion lead screw with the sliding block is connected, just the sliding block with the motion guide rail is connected, be fixed with on the sliding block the wire clamping jaw, the motion motor with the motion lead screw is connected.
Preferably, a cutting module is arranged inside one side of the hot melting table connected with the blanking module, the cutting module comprises an upper cutter and a lower cutter, the bottom of the upper cutter is connected with an upper cutting cylinder, and the bottom of the lower cutter is connected with a lower cutting cylinder.
Preferably, the hot melting table is provided with a wire coil, the wire coil is connected with the hot melting table through a rotating shaft, the middle of the hot melting table is provided with a hot melting groove, the upper stream of the hot melting groove is provided with a wire feeding roller, and the lower side of the wire feeding roller is provided with a wire guide hole.
Preferably, the lower side of the blanking module is further provided with a material receiving groove, and the material receiving groove is fixed on the hot melting table.
Preferably, the wire clamping jaw comprises a first clamping jaw, a guide sleeve is arranged at the upper end of the first clamping jaw, a telescopic cylinder is arranged on one side of the guide sleeve, the telescopic cylinder extends out of the guide sleeve and is connected with the second clamping jaw, and the second clamping jaw is parallel to the first clamping jaw.
Preferably, there are two of the wire feed rollers, and the two wire feed rollers are parallel to each other.
When the utility model works, firstly, the wire is fixed on the wire coil, then the wire passes through the wire feeding roller in sequence, passes through the upper part of the hot melting groove and then passes through the wire hole to extend out of the hot melting platform to enter between the first clamping jaw and the second clamping jaw, then the telescopic cylinder extends out to drive the second clamping jaw to move along the guide sleeve, after the first clamping jaw and the second clamping jaw clamp the wire, the motion motor drives the motion screw rod to rotate, further drives the wire clamping jaw on the sliding block to move along the motion screw rod to prevent the wire from moving, pulls the wire, after pulling a specified distance, the wire feeding roller and the motion motor stop working, the upper cutting cylinder drives the upper cutting knife to move, the lower cutting cylinder drives the lower cutting knife to move, the upper cutting knife and the lower cutting knife are closed to cut off the wire, go up the cutter with the cutter is divided down, simultaneously the wire feed roller rotates, telescopic cylinder drives the motion of second clamping jaw makes first clamping jaw with the separation of second clamping jaw, and the wire after the hot melt falls into connect the silo in, the motion motor reverse motion extremely the hot melt platform is terminal, then at the centre gripping wire to drive the wire and follow the motion lead screw motion.
The utility model discloses the beneficial effect who reaches does:
by arranging the lead feeding roller and the cutting module, the accurate control of the cutting length of the lead is realized, and the consistency of the length of the lead is ensured; the blanking module is arranged, so that the automatic blanking process of the lead after hot melting is realized, manual intervention is not needed, and the production rate of the product is improved; through setting up the hot melt platform, realized cutting the automation of wire, cut and go on with the hot melt together, avoided the turnover of wire, saved the manpower.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a schematic view of a wire clamp jaw configuration.
FIG. 3 is a schematic diagram of a cutting module.
Fig. 4 is a structural view of a lead.
In the figure, 1, a hot melting table; 2. a material receiving groove; 3. a blanking module; 11. a cutting module; 12. a wire coil; 13. a hot melting tank; 14. a wire feed roller; 15. a wire guide hole; 16. fixing the ear; 17. a wire; 111. an upper cutter; 112. an upper cutting cylinder; 113. a lower cutter; 114. a lower cutting cylinder; 31. a support plate; 32. a moving guide rail; 33. a slider; 34. a wire clamping jaw; 35. a motion motor; 36. a motion screw rod; 341. a first jaw; 342. a guide sleeve; 343. a second jaw; 344. a telescopic cylinder.
Detailed Description
To facilitate understanding of the present invention for those skilled in the art, embodiments of the present invention will be described below with reference to the accompanying drawings.
As shown in fig. 1 to 3, the utility model provides a wire ultrasonic wave hot melt cutting device, including hot melt platform 1 and unloading module 3, hot melt platform 1 can cut wire 17, also can cooperate other equipment to carry out the hot melt to wire 17 to form fixed ear 16, hot melt platform 1 low reaches are equipped with unloading module 3, unloading module 3 is used for with the hot melt wire 17 pulling after cutting to connect silo 2 top, unloading module 3 includes backup pad 31, motion motor 35, motion lead screw 36, motion guide rail 32, sliding block 33 and wire clamping jaw 34, backup pad 31 one end is fixed in hot melt platform 1 one side, fixed mounting has motion guide rail 32 on backup pad 31, backup pad 31 is used for fixing motion guide rail 32, install in the motion guide rail 32 motion lead screw 36, just motion lead screw 36 with sliding block 33 is connected, the sliding block 33 is connected with the moving guide rail 32, the wire clamping jaw 34 is fixed on the sliding block 33, the moving motor 35 is connected with the moving screw rod 36, and the moving motor 35 drives the moving screw rod 36 to rotate so as to drive the sliding block 33 to move on the moving guide rail 32.
In this embodiment, a cutting module 11 is arranged inside one side of the hot melting table 1 connected to the blanking module 3, the cutting module 11 includes an upper cutter 111 and a lower cutter 113, the bottom of the upper cutter 111 is connected to an upper cutter cylinder 112, the bottom of the lower cutter 113 is connected to a lower cutter cylinder 114, when a wire 17 is cut, the upper cutter cylinder 112 drives the upper cutter 111 to move, and the lower cutter cylinder 114 drives the lower cutter 113 to move, so that a contact point of the upper cutter 111 and the lower cutter 113 is on an axis of the wire 17, and it is ensured that the cutting process of the wire 17 does not affect the normal transmission of the wire.
In this embodiment, it is equipped with wire book 12 to melt on the platform 1, wire book 12 through a pivot with melt platform 1 and connect, melt platform 1 middle part is equipped with hot melting tank 13, hot melting tank 13 upper reaches are equipped with wire feed roller 14, wire feed roller 14 downside is equipped with wire guide 15, wire book 12 is used for holding wire 17, guarantees certain wire 17 storage capacity, and external motor or belt can drive wire roller 14 rotates, wire feed roller 14's lower surface with wire 17 in close contact with to drive wire 17 and continue downstream movement, hot melting tank 13 is used for cooperating external equipment to carry out the hot melt to wire 17, in order to form fixed ear 16.
In this embodiment, the unloading module 3 downside still is equipped with and connects silo 2, connect silo 2 to fix 1 one side of hot melt platform for accept the wire 17 after cutting.
In this embodiment, the wire clamping jaw 34 includes a first clamping jaw 341, a guide sleeve 342 is disposed at an upper end of the first clamping jaw 341, a telescopic cylinder 344 is disposed at one side of the guide sleeve 342, the telescopic cylinder 344 extends out of the guide sleeve 342 and is connected with a second clamping jaw 343, the second clamping jaw 343 is parallel to the first clamping jaw 341, and by disposing the telescopic cylinder 344, the second clamping jaw 343 can be driven to move back and forth along the guide sleeve 342, so that the first clamping jaw 341 and the second clamping jaw 343 can be closed and opened.
In this embodiment, there are two wire feed rollers 14, and two wire feed rollers 14 are parallel to each other, and through recording the number of turns or the angle of the movement of wire feed roller 14, the accurate calculation of the wire length is realized, and when wire feed roller 14 moves a specified number of turns or an angle, cutting module 11 and blanking module 3 can perform corresponding cutting action and blanking action.
When the utility model works, firstly, the lead 17 is fixed on the lead roll 12, then the lead 17 sequentially passes through the lower surface of the lead feeding roller 14, passes through the upper part of the hot melting tank 13, then passes through the lead hole 15 to extend out of the hot melting table 1, enters between the first clamping jaw 341 and the second clamping jaw 343, then the telescopic cylinder 344 extends out to drive the second clamping jaw 343 to move along the guide sleeve 342, after the lead is clamped by the first clamping jaw 341 and the second clamping jaw 343, the motion screw 36 is driven by the motion motor 35 to rotate, further the lead clamping jaw 34 on the sliding block 33 is driven to move along the direction of the motion screw 36, the lead is pulled, after a specified distance is pulled, the lead feeding roller 14 and the motion motor 35 stop working, the upper cutting cylinder 112 drives the upper cutting knife 111 to move, the lower cutting cylinder 114 drives the lower cutting knife 113 to move, the upper cutter 111 and the lower cutter 113 are closed, the wire 17 is cut off, the upper cutter 111 and the lower cutter 113 are separated, meanwhile, the wire feeding roller 14 rotates, the telescopic cylinder 344 drives the second clamping jaw 343 to move, so that the first clamping jaw 341 and the second clamping jaw 343 are separated, the hot-melted wire falls into the material receiving groove 2, the moving motor 35 moves in the reverse direction to the tail end of the hot melting table 1, then the wire 17 is clamped, and the wire 17 is driven to move along the moving screw rod 36.
The utility model discloses the beneficial effect who reaches does:
by arranging the wire feeding roller 14 and the cutting module 11, the accurate control of the cutting length of the wire is realized, and the consistency of the length of the wire is ensured; the blanking module 3 is arranged, so that the automatic blanking process of the lead after hot melting is realized, manual intervention is not needed, and the production rate of the product is improved; through setting up hot melt platform 1, realized cutting the automation of wire, cut and go on with the hot melt together, avoided the turnover of wire, saved the manpower.
The above-mentioned embodiments of the present invention do not limit the scope of the present invention. Any modification, equivalent replacement, and improvement made within the spirit and principle of the present invention should be included in the protection scope of the claims of the present invention.

Claims (6)

1. The utility model provides a wire ultrasonic wave hot melt cutting device which characterized in that: including hot melt platform (1) and unloading module (3), hot melt platform (1) low reaches are equipped with unloading module (3), unloading module (3) are including backup pad (31), motion motor (35), motion lead screw (36), motion guide rail (32), sliding block (33) and wire clamping jaw (34), backup pad (31) one end is fixed hot melt platform (1) one side, fixed mounting is gone up in backup pad (31) motion guide rail (32), install in motion guide rail (32) motion lead screw (36), just motion lead screw (36) with sliding block (33) are connected, just sliding block (33) with motion guide rail (32) are connected, be fixed with on sliding block (33) wire clamping jaw (34), motion motor (35) with motion lead screw (36) are connected.
2. The ultrasonic hot-melt cutting device for the conducting wires according to claim 1, wherein: the hot melting table (1) is provided with a cutting module (11) inside one side connected with the blanking module (3), the cutting module (11) comprises an upper cutter (111) and a lower cutter (113), the bottom of the upper cutter (111) is connected with an upper cutting cylinder (112), and the bottom of the lower cutter (113) is connected with a lower cutting cylinder (114).
3. The ultrasonic hot-melt cutting device for the conducting wires according to claim 1 or 2, wherein: the hot melting platform is characterized in that a wire coil (12) is arranged on the hot melting platform (1), the wire coil (12) is connected with the hot melting platform (1) through a rotating shaft, a hot melting groove (13) is arranged in the middle of the hot melting platform (1), a wire feeding roller (14) is arranged on the upper stream of the hot melting groove (13), and a wire guide hole (15) is formed in the lower side of the wire feeding roller (14).
4. The ultrasonic hot-melt cutting device for the conducting wires according to claim 1 or 2, wherein: the lower side of the blanking module (3) is further provided with a material receiving groove (2), and the material receiving groove (2) is fixed on the hot melting table (1).
5. The ultrasonic hot-melt cutting device for the conducting wires according to claim 1 or 2, wherein: the wire clamping jaw (34) comprises a first clamping jaw (341), a guide sleeve (342) is arranged at the upper end of the first clamping jaw (341), a telescopic cylinder (344) is arranged on one side of the guide sleeve (342), the telescopic cylinder (344) extends out of the guide sleeve (342) and is connected with a second clamping jaw (343), and the second clamping jaw (343) is parallel to the first clamping jaw (341).
6. The ultrasonic hot-melt cutting device for the conducting wires according to claim 3, wherein: the number of the wire feeding rollers (14) is two, and the two wire feeding rollers are parallel to each other.
CN202023146248.9U 2020-12-24 2020-12-24 Ultrasonic hot melting and cutting device for conducting wire Active CN214488653U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023146248.9U CN214488653U (en) 2020-12-24 2020-12-24 Ultrasonic hot melting and cutting device for conducting wire

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023146248.9U CN214488653U (en) 2020-12-24 2020-12-24 Ultrasonic hot melting and cutting device for conducting wire

Publications (1)

Publication Number Publication Date
CN214488653U true CN214488653U (en) 2021-10-26

Family

ID=78210224

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023146248.9U Active CN214488653U (en) 2020-12-24 2020-12-24 Ultrasonic hot melting and cutting device for conducting wire

Country Status (1)

Country Link
CN (1) CN214488653U (en)

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20220419

Address after: 239000 standardized workshop No. 10, Photoelectric Industrial Park (East District), Dingcheng Economic Development Zone, Dingyuan County, Chuzhou City, Anhui Province

Patentee after: Anhui xinmingya Electronics Co.,Ltd.

Address before: 215100 building 16, Xinghua Industrial Park, No. 2, Shuangma street, Suzhou Industrial Park, Jiangsu Province

Patentee before: Suzhou Industrial Park xinmingya Electronic Technology Co.,Ltd.

TR01 Transfer of patent right