CN217529544U - Automatic tin pick-up machine for cable - Google Patents

Automatic tin pick-up machine for cable Download PDF

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Publication number
CN217529544U
CN217529544U CN202221354932.2U CN202221354932U CN217529544U CN 217529544 U CN217529544 U CN 217529544U CN 202221354932 U CN202221354932 U CN 202221354932U CN 217529544 U CN217529544 U CN 217529544U
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tin
weld
component
cable
help
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CN202221354932.2U
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Chinese (zh)
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徐国林
施荣欣
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Zhenqing Xiamen Technology Co ltd
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Zhenqing Xiamen Technology Co ltd
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Abstract

The utility model relates to a tin sticky equipment technical field, concretely relates to automatic tin sticky machine of cable, which comprises a frame body, be provided with anchor clamps mechanism on the frame body, feeding mechanism, first help weld the mechanism, tin sticky mechanism, the second helps to weld mechanism and unloading mechanism, feeding mechanism sets up in frame body one end, first help to weld the mechanism and the second helps to weld the mechanism and establish respectively in tin sticky mechanism both sides, and first help to weld the mechanism and be close to feeding mechanism and set up, unloading mechanism sets up the one end of keeping away from feeding mechanism at the frame body, feeding mechanism conveys the cable to first helping to weld mechanism one side, anchor clamps mechanism centre gripping cable loops through first help to weld the mechanism, tin sticky mechanism and second help to weld the mechanism. The utility model discloses an arm control anchor clamps subassembly snatchs the cable and accomplishes tin sticky work, and is quicker, improves work efficiency, and first help to weld mechanism, tin sticky mechanism and second and help to weld the mechanism and all can rise to same level with the liquid of splendid attire in it, make the cable tin sticky more even, more convenient.

Description

Automatic tin pick-up machine for cable
Technical Field
The utility model relates to a tin sticky equipment field, specificly relate to an automatic tin sticky machine of cable.
Background
The wire and the cable are indispensable raw materials in the electronic industry; many electric wire and cable are when using, sinle silk one end in the cable needs the riveting terminal, the other end needs the tin sticky, traditional automatic tin sticky machine during operation, increase along with the machined part, the working solution in scaling powder feed bin and the tin stove is less and less, the liquid level reduces, it is the same to be difficult to guarantee to treat that the working solution that processed cable surface is stained with, need artifical regular supplementary raw materials, extravagant labour, even so also be difficult to accomplish unanimously, liquid tin surface and air contact in the tin stove in addition, easy cooling solidifies, the direct contact cable, influence cable quality, and current tin sticky machine clamp when holding electric wire and cable and carry out the tin sticky transmission rate slower, work efficiency is not high.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome above-mentioned technical problem, provide an automatic tin sticky machine of cable.
In order to achieve the above object, the utility model adopts the following technical scheme: the utility model provides an automatic tin pick-up machine of cable, includes the frame body, be provided with anchor clamps mechanism, feeding mechanism, first help weld mechanism, tin pick-up mechanism, second on the frame body and help and weld mechanism and unloading mechanism, feeding mechanism sets up in frame body one end, first help weld mechanism and second help weld the mechanism and divide and establish in tin pick-up mechanism both sides, and first help and weld the mechanism and be close to feeding mechanism and set up, unloading mechanism sets up the one end of keeping away from feeding mechanism at the frame body, feeding mechanism with cable transfer to first help weld mechanism one side, anchor clamps mechanism centre gripping cable loops through first help weld mechanism, tin pick-up mechanism and second and help and weld the mechanism.
Further, feeding mechanism includes wire clamping component, tow chain and sharp module, sharp module one end is fixed on the frame body, and the setting of the outstanding frame body of the other end, the tow chain sets up in wire clamping component below, tow chain drive wire clamping component moves along sharp module axis direction.
Furthermore, be provided with a plurality of wire clamping grooves on the wire clamping component, wire clamping groove equidistance interval sets up.
Further, the clamp mechanism comprises a mechanical arm and a clamp assembly, the mechanical arm is arranged on the rack body, and the clamp assembly is connected with the mechanical arm through a clamp connecting piece and can rotate on the mechanical arm.
Furthermore, the first welding assisting mechanism and the second welding assisting mechanism are identical in structure and respectively comprise a supporting seat, a driving mechanism, a charging box and a liquid level sensor, the charging box is fixedly arranged on the supporting seat, the driving mechanism is arranged on one side of the charging box, and the liquid level sensor is arranged on the other side of the charging box.
Furthermore, the driving mechanism comprises an air cylinder, a driving assembly and a connecting plate, the charging box comprises a soldering flux inner groove, a soldering flux outer groove and a soldering flux cover, the soldering flux inner groove is formed in the soldering flux outer groove, the air cylinder is connected with the driving assembly to control the driving assembly to lift, one end of the connecting plate is connected with the driving assembly, the other end of the connecting plate is fixedly connected with the inner wall of the soldering flux inner groove, and the soldering flux inner groove is controlled to lift in the soldering flux outer groove.
Further, the tin sticky component comprises a bottom plate, an anti-sputtering metal plate, a tin slag scraping component, an air exhaust component, an inner tin bath component, a detection tin liquid component and a tin furnace component, wherein the anti-sputtering metal plate is arranged above the bottom plate, the tin slag scraping component is arranged on the bottom plate and can move axially to open and close the inner tin bath component, the air exhaust component is arranged on the anti-sputtering metal plate, the inner tin bath component is arranged in the tin furnace component and can lift in the tin furnace component, the tin furnace component is arranged on the bottom plate, and the detection tin liquid component is arranged on one side close to the inner tin bath component.
It can be known from the above description that the utility model discloses, compare with prior art, the utility model provides an automatic tin sticky machine of cable has following advantage:
1. the utility model discloses well anchor clamps mechanism includes arm and anchor clamps subassembly, and the anchor clamps subassembly can snatch the cable that the clamp wire subassembly was placed horizontally fast through the arm, and the anchor clamps subassembly can rotate with the one end that the cable needs the tin sticky down, when the quick removal snatchs, can accurate drive the cable again and accomplish scaling powder, tin sticky, refrigerated tin sticky step, improve work efficiency, simultaneously, the arm can be in the time of working, the clamp wire subassembly can be got back to initial position automatically and make things convenient for the staff to place new cable and carry out follow-up work, more orderly, high-efficient;
2. the first soldering assisting mechanism and the second soldering assisting mechanism are identical in structure, the material loading box of the first soldering assisting mechanism is filled with soldering flux to achieve the purpose of adhering the soldering flux to the cable, the second soldering assisting mechanism is filled with cold water to play a role in cooling and reinforcing after the tin of the cable in the tin adhering mechanism is completely adhered, and the inner groove of the soldering flux can be controlled to ascend and descend by the air cylinder and the driving assembly, so that the liquid level of the soldering flux/cold water is always maintained at a height convenient for the cable to be uniformly adhered with the soldering flux/cooled and fixed, and the subsequent tin adhering/cooling and fixing effects cannot be influenced by the fact that the liquid level of the inner groove of the soldering flux is reduced and the liquid level descends;
3. but scrape tin sediment subassembly automatic start-stop interior tin bath subassembly, but the liquid level that interior tin bath subassembly automatic rise made liquid tin rises to a take the altitude during use and makes things convenient for the even tin sticky of cable, can descend closed when not using, makes liquid tin keep high temperature, and difficult cooling solidifies the influence cable tin sticky quality, still is provided with the detection tin liquid subassembly, ensures that liquid tin volume is sufficient.
Drawings
FIG. 1 is a schematic view of an automatic tin pick-up machine for cables according to the present invention;
FIG. 2 is an enlarged view of reference A in FIG. 1;
FIG. 3 is an enlarged view of reference B in FIG. 1;
FIG. 4 is a schematic view of a first welding-aid mechanism of the present invention;
fig. 5 is a schematic view of the tin pick-up mechanism of the present invention.
Detailed Description
The technical solution 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 efforts shall belong to the protection scope of the present invention.
It is noted that the terms "comprises" and "comprising," and any variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, system, article, or apparatus that comprises a list of steps or elements is not necessarily limited to those steps or elements expressly listed, but may include other steps or elements not expressly listed or inherent to such process, method, article, or apparatus.
Referring to fig. 1-5, an automatic tin pick-up machine for cables comprises a machine frame body 1, wherein a clamp mechanism 2, a feeding mechanism 3, a first soldering assisting mechanism 4, a tin pick-up mechanism 5, a second soldering assisting mechanism 6 and a blanking mechanism 7 are arranged on the machine frame body 1, the feeding mechanism 3 is arranged at one end of the machine frame body 1, the first soldering assisting mechanism 4 and the second soldering assisting mechanism 6 are respectively arranged at two sides of the tin pick-up mechanism 5, the first soldering assisting mechanism 4 is arranged close to the feeding mechanism 3, the blanking mechanism 7 is arranged at one end, far away from the feeding mechanism 3, of the machine frame body 1, the feeding mechanism 3 conveys cables 8 to one side of the first soldering assisting mechanism 4, and the clamp mechanism 2 clamps the cables 8 to sequentially pass through the first soldering assisting mechanism 4, the tin pick-up mechanism 5 and the second soldering assisting mechanism 6. The utility model discloses a mechanical arm control anchor clamps subassembly snatchs cable 8 and accomplishes tin sticky work, and is more quick accurate, improves work efficiency, and first help weld mechanism 4, tin sticky mechanism 5 and second help weld mechanism 6 and all can rise to same level with the liquid of splendid attire in it, make cable 8 tin sticky more even, more convenient, can not make in it not have liquid or the liquid volume not enough lead to the tin sticky not even enough and influence the problem appearance of cable 8 quality.
Feeding mechanism 3 includes wire clamping component 31, tow chain 32 and sharp module 33, sharp module 33 one end is fixed on frame body 1, and the outstanding frame body 1 setting of the other end, tow chain 32 sets up in wire clamping component 31 below, tow chain 32 drive wire clamping component 31 moves along sharp module 33 axis direction, be provided with a plurality of wire clamping grooves on the wire clamping component 31, wire clamping groove equidistance interval sets up, can horizontally place five at least cables 8 on the wire clamping component 31, and cable 8 needs the one end of tin sticky to move towards unified direction, and tow chain 32 drives wire clamping component 31 and moves toward first help welding machine structure 4 direction, makes things convenient for clamp mechanism 2 to get cable 8 simultaneously and carries out follow-up flow step, and when cable 8 was on clamp mechanism 2, wire clamping component 31 moved back initial position again and carried out the manual work and places cable 8, and the repeated work provides work efficiency.
Anchor clamps mechanism 2 includes arm 21 and anchor clamps subassembly 22, arm 21 sets up on frame body 1, anchor clamps subassembly 22 passes through the anchor clamps connecting piece and is connected with arm 21 to can rotate on arm 21, anchor clamps subassembly 22 can press from both sides the cable 8 clamp of level on pressing from both sides line subassembly 31 and carry out the upset, make the one end that cable 8 needs the tin sticky down, it is more firm when making cable 8 remove, be stained with the scaling powder, the tin sticky, steerable its position submergence that only needs the tin sticky when the water cooling in liquid, and can not let 8 submergings overlength of cable and influence finished product quality.
The first welding assisting mechanism 4 and the second welding assisting mechanism 6 are identical in structure and respectively comprise a supporting seat 41, a driving mechanism 42, a charging box 43 and a liquid level sensor 44, the charging box 43 is fixedly arranged on the supporting seat 41, the driving mechanism 42 is arranged on one side of the charging box 43, the liquid level sensor 44 is arranged on the other side of the charging box 43, the driving mechanism 42 comprises an air cylinder 421, a driving assembly 422 and a connecting plate 423, the charging box 43 comprises an inner soldering flux groove 431, an outer soldering flux groove 432 and a soldering flux cover 633, the inner soldering flux groove is arranged in the outer soldering flux groove 432, the air cylinder 421 is connected with the driving assembly 422 to control the driving assembly 422 to lift, one end of the connecting plate 423 is connected with the driving assembly 422, the other end of the connecting plate is fixedly connected with the inner wall of the inner soldering flux groove 431 to control the inner soldering flux groove 431 to lift in the outer soldering flux groove 432, the flux is filled in the flux inner groove 431 of the first soldering assisting mechanism and used for being stained with the flux to facilitate subsequent tin staining, the cold water is filled in the flux inner groove 431 of the second soldering assisting mechanism and used for cooling and fixing the cable 8 stained with the tin, the flux is poured into the flux inner groove 431 of the first soldering assisting mechanism 4, the flux inner groove 431 is lifted in the flux outer groove 432 through the driving mechanism 42, the cable 8 is enabled to be stained with the flux more uniformly, the liquid level sensor 44 is arranged, the liquid level of the flux inner groove 431 can be detected in real time, when the defect occurs, a container filled with the flux in the rack body 1 can be automatically sucked, an operator only needs to fill the flux in the container, the flux does not need to pour into the flux inner groove 431, the operation principle is more convenient and safe, and the operation principle of the second soldering assisting mechanism 6 is the same.
The tin dipping component comprises a bottom plate 51, an anti-sputtering metal plate 52, a tin slag scraping component 53, an air pumping component 54, an inner tin bath component 55, a tin liquid detecting component 56 and a tin furnace component 57, wherein the anti-sputtering metal plate 52 is arranged above the bottom plate 51, the tin slag scraping component 53 is arranged on the bottom plate 51 and can move axially to open and close the inner tin bath component 55, the air pumping component 54 is arranged on the anti-sputtering metal plate 52, the inner tin bath component 55 is arranged in the tin furnace component 57 and can lift in the tin furnace component 57, the tin furnace component 57 is arranged on the bottom plate 51, the tin liquid detecting component is arranged on one side close to the inner tin bath component 55, the bottom plate 51 plays a role in bearing the anti-sputtering metal plate 52, the tin slag scraping component 53, the air pumping component 54, the inner tin bath component 55, the tin liquid detecting component 56 and the tin furnace component 57, when the anti-sputtering metal plate 52 is used for preventing tin dipping, when the cable 8 is conveyed to the upper part of the tin pick-up component by the mechanical arm 21, the tin slag scraping component 53 automatically and axially moves back and forth to open the inner tin bath component 55 and scrape the solidified part of the liquid tin in the inner tin bath component 55 to prevent the liquid tin from overflowing, the cable 8 descends, the inner tin bath component 55 is lifted by an air pump to immerse the end of the cable 8 needing tin pick-up into the liquid tin, the mechanical arm 21 drives the cable 8 to ascend when tin pick-up is completed, the air pumping component 54 blows the tin at high temperature to blow off the redundant liquid tin at the tin pick-up end of the cable 8, only a layer of tin with uniform thickness is reserved, the tin furnace component 57 keeps high temperature constantly to ensure that the liquid tin in the inner tin bath component 55 is not easy to contact with air to solidify, the tin liquid component is detected to be arranged at one side close to the inner tin bath component 55 to monitor that the liquid tin in the inner tin bath component 55 is always kept sufficient, the liquid level can not drop, and the tin dipping of the cable 8 is avoided being influenced.
The utility model provides a pair of automatic tin sticky machine of cable has following advantage: the utility model discloses well anchor clamps mechanism includes arm and anchor clamps subassembly, and the anchor clamps subassembly can snatch the cable that the clamp wire subassembly was placed horizontally fast through the arm, and the anchor clamps subassembly can rotate with the one end that the cable needs the tin sticky down, when the quick removal snatchs, can accurate drive the cable again and accomplish scaling powder, tin sticky, refrigerated tin sticky step, improve work efficiency, simultaneously, the arm can be in the time of working, the clamp wire subassembly can be got back to initial position automatically and make things convenient for the staff to place new cable and carry out follow-up work, more orderly, high-efficient; the first soldering assisting mechanism and the second soldering assisting mechanism are identical in structure, the material loading box of the first soldering assisting mechanism is filled with soldering flux to achieve the purpose of adhering the soldering flux to the cable, the second soldering assisting mechanism is filled with cold water, the cooling and reinforcing effects are achieved after the tin adhering of the cable in the tin adhering mechanism is finished, and the inner soldering flux groove can be controlled to lift through the air cylinder and the driving assembly, so that the liquid level of the soldering flux/cold water is always maintained at a height convenient for the cable to be uniformly adhered with the soldering flux/be cooled and fixed, and the subsequent tin adhering/cooling and fixing effects cannot be influenced due to the fact that the liquid level of the inner soldering flux groove is reduced and the liquid level drops; the tin bath subassembly in scraping tin sediment subassembly can automatic start and stop, and the tin bath subassembly can rise automatically and make the liquid level of liquid tin rise to the uniform tin sticky of certain height convenience cable during the use, can descend closed when not using, makes liquid tin keep high temperature, and difficult cooling solidifies the influence cable tin sticky quality, still is provided with the detection tin liquid subassembly, ensures that liquid tin volume is sufficient.
The aforesaid is only a plurality of concrete implementation manners of the utility model, nevertheless the utility model discloses a design concept is not limited to this, and the ordinary use of this design is right the utility model discloses carry out immaterial change, all should belong to the act of infringement the protection scope of the utility model.

Claims (7)

1. An automatic tin sticky machine of cable which characterized in that: including the frame body, be provided with anchor clamps mechanism, feeding mechanism, first helping and weld mechanism, tin sticky mechanism, second on the frame body and help and weld mechanism and unloading mechanism, feeding mechanism sets up in frame body one end, first helping to weld mechanism and second help and weld the mechanism and divide in tin sticky mechanism both sides, and first help and weld the mechanism and be close to the feeding mechanism setting, unloading mechanism sets up the one end of keeping away from feeding mechanism at the frame body, feeding mechanism with cable transfer to first helping to weld mechanism one side, anchor clamps mechanism centre gripping cable loops through first helping and welds mechanism, tin sticky mechanism and second and helps and weld the mechanism.
2. The automatic tin pick-up machine for cables as claimed in claim 1, wherein: the feeding mechanism comprises a wire clamping assembly, a drag chain and a linear module, one end of the linear module is fixed on the rack body, the other end of the linear module protrudes out of the rack body, the drag chain is arranged below the wire clamping assembly, and the drag chain drives the wire clamping assembly to move along the axis direction of the linear module.
3. The automatic tin pick-up machine for cables as claimed in claim 2, wherein: the wire clamping assembly is provided with a plurality of wire clamping grooves which are arranged at equal intervals.
4. The automatic tin pick-up machine for cables as claimed in claim 1, wherein: the clamp mechanism comprises a mechanical arm and a clamp assembly, the mechanical arm is arranged on the rack body, and the clamp assembly is connected with the mechanical arm through a clamp connecting piece and can rotate on the mechanical arm.
5. The automatic tin pick-up machine for cables as claimed in claim 1, wherein: the first welding assisting mechanism and the second welding assisting mechanism are identical in structure and respectively comprise a supporting seat, a driving mechanism, a charging box and a liquid level sensor, the charging box is fixedly arranged on the supporting seat, the driving mechanism is arranged on one side of the charging box, and the liquid level sensor is arranged on the other side of the charging box.
6. The automatic tin pick-up machine for cables as claimed in claim 5, wherein: the driving mechanism comprises an air cylinder, a driving assembly and a connecting plate, the charging box comprises a soldering flux inner groove, a soldering flux outer groove and a soldering flux cover, the soldering flux inner groove is formed in the soldering flux outer groove, the air cylinder is connected with the driving assembly to control the driving assembly to lift, one end of the connecting plate is connected with the driving assembly, the other end of the connecting plate is fixedly connected with the inner wall of the soldering flux inner groove, and the soldering flux inner groove is controlled to lift in the soldering flux outer groove.
7. The automatic tin pick-up machine for cables as claimed in claim 1, wherein: the tin dipping component comprises a bottom plate, an anti-sputtering metal plate, a tin slag scraping component, an air exhaust component, an inner tin bath component, a detection tin liquid component and a tin furnace component, wherein the anti-sputtering metal plate is arranged above the bottom plate, the tin slag scraping component is arranged on the bottom plate, and can move axially to open and close the inner tin bath component, the air exhaust component is arranged on the anti-sputtering metal plate, the inner tin bath component is arranged in the tin furnace component and can lift in the tin furnace component, the tin furnace component is arranged on the bottom plate, and the detection tin liquid component is arranged on one side close to the inner tin bath component.
CN202221354932.2U 2022-06-01 2022-06-01 Automatic tin pick-up machine for cable Active CN217529544U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221354932.2U CN217529544U (en) 2022-06-01 2022-06-01 Automatic tin pick-up machine for cable

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221354932.2U CN217529544U (en) 2022-06-01 2022-06-01 Automatic tin pick-up machine for cable

Publications (1)

Publication Number Publication Date
CN217529544U true CN217529544U (en) 2022-10-04

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221354932.2U Active CN217529544U (en) 2022-06-01 2022-06-01 Automatic tin pick-up machine for cable

Country Status (1)

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CN (1) CN217529544U (en)

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