Threading and feeding pinch roller set for tin-coated wire preparation
By designing a wire feeding pressure roller assembly for tin-clad wire preparation, the problem of difficult cutting and manufacturing during the traditional tin-clad wire transfer process was solved, achieving efficient transfer and cutting, reducing the thrust required for feeding and wire delivery, and improving production efficiency and product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2026-03-10
AI Technical Summary
Traditional solder-coated wires are difficult to cut and manufacture during the wire transfer process, which makes it difficult to contain the solder-coated material and requires a large feeding force.
A wire feeding pressure roller assembly for tin-clad wire preparation was designed, including a bearing plate, a transfer roller, a winch, a conveying pressure roller, a belt transmission mechanism, and a pressing mechanism. The efficient transfer and cutting of tin-clad wire are achieved through the coordinated work of these components.
It achieves efficient transfer and cutting of tin-clad wire, reduces the thrust required for feeding and wire feeding, and improves production efficiency and product quality stability.
Smart Images

Figure CN223983266U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mechanical equipment technical field, and concretely relates to a threading feeding pressure wheel group for tin -clad wire preparation. BACKGROUND
[0002] A wire wrapped with tin foil paper outside is usually called tin -clad copper wire, and it is a kind of special wire, which combines the conductivity of copper and the corrosion resistance of tin, and is widely used in electrical connection and signal transmission;
[0003] After searching, it is found that the content of the application No. CN201621185376.5 is: a coiling machine, the utility model relates to the field of building material processing machinery, and discloses a coiling machine, which comprises a rack, characterized by: a coiling device arranged on the rack, the coiling device comprising a feeding pressure wheel group arranged on the feeding direction of the to-be-coiled profile and horizontally conveying the profile forward;A forming pressure wheel group horizontally adjacent to the feeding pressure wheel group is arranged, which rolls and forms the to-be-coiled profile conveyed by the feeding pressure wheel group;A first bending pressure wheel group horizontally adjacent to the forming pressure wheel group is arranged, which bends the to-be-coiled profile into a ring shape;A second bending pressure wheel group is arranged horizontally adjacent to the first bending pressure wheel group;A bending adjustment pressure wheel group for adjusting the outer diameter of the to-be-coiled profile is arranged on the side of the first bending pressure wheel group;A guide bracket is arranged below the forming pressure wheel group and the first bending pressure wheel group, through the coiling machine, manual bending work can be replaced, automatic coiling processing O-shaped ring is realized, not only the production efficiency is greatly improved, and the product quality is more stable, and it is more safe for the operator;
[0004] Nowadays, the wire material transmission of the traditional tin -clad wire is difficult to cut, make and transfer, which can easily cause the tin -soldered wrapping material to be difficult to store, resulting in the need for greater pushing force for feeding and sending the wire. UTILITY MODEL CONTENT
[0005] (I) technical problem solved
[0006] In view of the defects of the prior art, the utility model aims at providing a threading feeding pressure wheel group for tin -clad wire preparation, and the wire material transmission of the traditional tin -clad wire is difficult to cut, make and transfer, which can easily cause the tin -soldered wrapping material to be difficult to store, resulting in the need for greater pushing force for feeding and sending the wire.
[0007] (II) technical scheme
[0008] In order to achieve the above object, the utility model provides the following technical scheme, a kind of threading feeding pressure wheel group for tin-coated wire preparation, the technical scheme used is as follows: including the interlinking mechanism, the interlinking mechanism includes a bearing plate, the top of the bearing plate is provided with bearing pedestal, the top middle part of the bearing pedestal is vertically provided with connecting strut, the top middle part of the connecting strut is vertically provided with the transfer roller shaft of tin-coated wire transmission, the top of the transfer roller shaft is provided with the surface of the transfer sleeve of the surface of the cladding fixed for cladding, the transfer sleeve is sequentially arranged in the top middle part of bearing pedestal.
[0009] As a preferred scheme of the utility model: the side wall middle part of the bearing pedestal is sequentially provided with transfer mechanism;
[0010] The transfer mechanism includes a plurality of capstans sequentially arranged in the side wall middle part of the bearing pedestal, and adjusting grooves are arranged between the capstans.
[0011] As a preferred scheme of the utility model: the adjusting grooves are each provided with a first access base for fixing, the first access bases are each connected to corresponding tin-coated wire transmission, and connecting guide rods for transmission are respectively arranged on both sides of the bearing plate, the connecting guide rods are symmetrically arranged on both sides of the bearing plate, and a plurality of conveying pressure wheels for supporting are sequentially arranged on the top surface of the bearing plate.
[0012] As a preferred scheme of the utility model: the sides of the conveying pressure wheels are provided with connecting plates, the top of the connecting plate is provided with a positioning screw for limiting on both sides, an upper tin groove is formed in the middle of the connecting plate, and an L-shaped tightening seat for fixing is arranged on the side of the plate surface of the connecting plate.
[0013] As a preferred scheme of the utility model: the bottom middle part of the L-shaped tightening seat is attached to a pipe joint plate, the top side of the pipe joint plate is provided with a connecting block, and the side of the connecting block is provided with a belt transmission mechanism.
[0014] As a preferred scheme of the utility model: the belt transmission mechanism includes a T-shaped block mounted on the side of the connecting block, a conveying roller shaft is arranged in the middle of the T-shaped block, a motor assembly plate is arranged in the top middle part of the T-shaped block, and a motor roller shaft is arranged on the side wall of the plate surface of the motor assembly plate.
[0015] As a preferred scheme of the utility model: the end of the motor roller shaft is provided with a transfer disc, a driving belt is sleeved between the transfer discs, a driving roller shaft is transversely mounted on the back middle part of the T-shaped block, and a second access base for supporting is arranged on the back of the driving roller shaft.
[0016] As a preferred scheme of the utility model: the second access base middle part is equipped with fixed control support plate, the fixed control support plate middle part is equipped with middle part intercommunication pipe, the back of intercommunication pipe is connected with carding sleeve, the middle part of carding sleeve is equipped with opening for wearing.
[0017] As a preferred scheme of the utility model: the back of carding sleeve is equipped with tin solder base, the top middle part of tin solder base is equipped with solder tin box, the top middle part of solder tin box is equipped with solder tin groove, the groove back of solder tin groove is equipped with compression mechanism.
[0018] The compression mechanism includes the compression box of being placed in the side of solder tin box, the box body top middle part of compression box is equipped with synchronous transmission wheel, the bottom of synchronous transmission wheel is equipped with for worm gear, the side wall of worm gear is equipped with worm.
[0019] As a preferred scheme of the utility model: the side wall of compression box is equipped with support plate, the middle part of support plate is equipped with square slot, the top side of square slot is equipped with connecting horizontal plate, the surface of connecting horizontal plate is equipped with link connection block, the back middle part of link connection block;
[0020] The surface of connecting horizontal plate is equipped with a plurality of push sliding plates in proper order, the surface of push sliding plate is equipped with guide slot in proper order, the middle part of guide slot is equipped with elbow, the middle part of elbow is equipped with for access push head.
[0021] The drive base is equipped between push sliding plate, the four corners of drive base are equipped with fold pressing driving piece, the four corners of bearing plate are all equipped with cross conveying roller shaft.
[0022] (Three) beneficial effects
[0023] Compared with the prior art, the utility model provides a threading feeding compression wheel group for tin wire preparation, has the following beneficial effects:
[0024] 1) through the adoption of bearing plate and the bearing base on the top adaptation, the transmission roller shaft direction is transmitted to the tin wire, after the axial movement of transmission roller shaft, the end of transmission sleeve is connected, the tin solder package structure is directly transmitted, and the position of access base is realized transmission.
[0025] 2) The solder wire is guided by the access base and the slot structure of the upper solder bath. The connecting plate structure reaches the slot position of the upper solder bath and is directly transferred to the pipe connection plate to achieve smooth transfer. The drive roller and the transfer disc drive the conveyor roller to achieve unified transmission of the solder wire. According to the slot area of the solder bath, it is transferred to the middle cavity of the synchronous transfer wheel for extrusion transfer. From one end of the square slot, it is quickly and conveniently bundled by pushing the sliding plate. Attached Figure Description
[0026] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0027] Figure 2 This is a side view of the present invention.
[0028] Figure 3 This is a schematic diagram of the connecting guide rod structure of this utility model;
[0029] Figure 4 This is a structural diagram of the solder base of this utility model;
[0030] Figure 5 This is one of the structural diagrams of the folding and pressing actuating piece of this utility model;
[0031] Figure 6 This is the second structural diagram of the folding and pressing actuating piece of this utility model.
[0032] In the diagram: 1. Connecting mechanism; 11. Bearing plate; 12. Bearing base; 121. Transfer roller; 122. Covering sleeve; 123. Transfer sleeve; 13. Connecting strut;
[0033] 2. Transmission mechanism; 21. Winch; 22. Adjustment groove; 24. First access base; 25. Connecting guide rod; 26. Conveying pressure roller; 27. Connecting plate; 28. Positioning screw; 29. Soldering tank; 291. L-shaped upper tensioning seat; 292. Pipe connection plate; 293. Connecting block;
[0034] 3. Belt conveyor mechanism; 31. T-block; 32. Conveyor roller; 33. Motor mounting plate; 34. Motor roller; 35. Transfer disc; 36. Drive belt; 37. Drive roller; 38. Second access base; 39. Fixed control support plate; 391. Connecting conduit; 392. Combing sleeve; 393. Opening; 394. Soldering base; 396. Solder box; 397. Solder bath;
[0035] 4. Pressing mechanism; 41. Pressing box; 42. Synchronous transmission wheel; 43. Worm gear; 44. Support plate; 45. Square slot; 46. Connecting horizontal plate; 47. Connecting block; 48. Push sliding plate; 49. Guide groove; 491. Bending head; 492. Drive base; 493. Bending and pressing actuating plate; 494. Conveying roller shaft. Detailed Implementation
[0036] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0037] In the description of this utility model, unless otherwise stated, "a plurality of" means two or more; the terms "upper," "lower," "left," "right," "inner," "outer," "front end," "rear end," "head," "tail," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. In addition, the terms "first," "second," "third," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0038] Please see Figure 1 - Figure 6 This embodiment proposes a wire feeding pressure roller assembly for tin-clad wire preparation, including a wire threading mechanism 1. The wire threading mechanism 1 includes a support plate 11. A support base 12 is provided on the top of the support plate 11. A connecting support rod 13 is vertically provided at the top center of the support base 12. A transfer roller 121 for tin-clad wire transfer is vertically provided at the top center of the connecting support rod 13. A transfer sleeve 123 for covering and fixing the surface of the covering sleeve 122 is provided on the top of the transfer roller 121. The transfer sleeves 123 are arranged sequentially at the top center of the support base 12.
[0039] In this embodiment: a transmission mechanism 2 is sequentially provided in the middle of the side wall of the bearing base 12;
[0040] The transmission mechanism 2 includes a plurality of winches 21 arranged sequentially in the middle of the side wall of the bearing base 12, and an adjustment groove 22 is provided between the winches 21.
[0041] The bearing base 12 and the adjusting groove 22 are hinged at one end, and the surface of the bearing base 12 is used for transmission.
[0042] In this embodiment: each of the adjusting grooves 22 is provided with a first access base 24 for fixing, and each of the first access bases 24 is connected to the corresponding solder wire for transmission. The two sides of the bearing plate 11 are respectively provided with connecting guide rods 25 for transmission. The connecting guide rods 25 are symmetrically arranged on both sides of the bearing plate 11. The top surface of the bearing plate 11 is provided with a number of conveying pressure rollers 26 for support.
[0043] The bearing plate 11 and the corresponding conveying roller 26 are pressed on the surface to peel off the material before it is transferred and moved.
[0044] In this embodiment: several conveying rollers 26 are provided with connecting plates 27 on their sides, and the top two sides of the connecting plates 27 are respectively provided with positioning screws 28 for limiting the position. The middle part of the connecting plates 27 is provided with an upper solder groove 29, and the side of the connecting plate 27 is provided with an L-shaped upper clamping seat 291 for fixing.
[0045] After the L-shaped upper tension seat 291 and the upper tin bath 29 are inserted into the slot, the conveying pressure roller 26 is used to achieve high-efficiency transmission.
[0046] In this embodiment: a pipe connection plate 292 is attached to the middle of the bottom end of the L-shaped upper tension seat 291, a connecting block 293 is provided on the top side of the pipe connection plate 292, and a belt transmission mechanism 3 is provided on the side of the connecting block 293.
[0047] The L-shaped upper tightening structure is assembled by connecting the pipe plate 292 and the connecting block 293.
[0048] In this embodiment: the belt transmission mechanism 3 includes a T-block 31 installed on the side of the connecting block 293, a conveying roller 32 is provided in the middle of the T-block 31, a motor mounting plate 33 is provided at the top center of the T-block 31, and a motor roller 34 is provided on the side wall of the motor mounting plate 33.
[0049] The motor assembly plate 33 and the axial end of the motor roller 34 are used to perform displacement after starting rotation.
[0050] In this embodiment: a transmission disc 35 is provided at the end of the motor roller 34, a drive belt 36 is sleeved between the transmission discs 35, a drive roller 37 is horizontally installed in the middle of the back of the T-block 31, and a second access base 38 for support is provided on the back of the drive roller 37.
[0051] The use of drive roller 37 and corresponding second access base 38 enables extrusion molding on the surface of the corresponding transfer disk 35.
[0052] In this embodiment: a fixed control support plate 39 is provided in the middle of the second access base 38, a central connecting conduit 391 is provided in the middle of the fixed control support plate 39, a combing sleeve 392 is connected to the back of the connecting conduit 391, and an opening 393 for insertion is provided in the middle of the combing sleeve 392.
[0053] The combing sleeve 392 and the hole 393 are used to implement the corresponding combing transfer.
[0054] In this embodiment: a soldering base 394 is provided on the back of the combing sleeve 392, a solder box 396 is provided at the top center of the soldering base 394, a solder groove 397 is provided at the top center of the solder box 396, and a pressing mechanism 4 is provided on the back of the groove of the solder groove 397.
[0055] The clamping mechanism 4 includes a clamping box 41 placed on the side of the solder box 396. A synchronous transmission wheel 42 is provided at the top center of the clamping box 41. A worm gear is provided at the bottom of the synchronous transmission wheel 42. A worm 43 is provided on the side wall of the worm gear.
[0056] The synchronous transmission wheel 42 and the worm gear are used to mesh and control the rotation of the worm 43.
[0057] In this embodiment: the side wall of the pressing box 41 is provided with a support plate 44, the middle of the support plate 44 is provided with a square slot 45, the top edge of the square slot 45 is provided with a connecting horizontal plate 46, the surface of the connecting horizontal plate 46 is provided with a connecting block 47, and the middle of the back of the connecting block 47 is provided with a connecting block 47.
[0058] The connecting horizontal plate 46 and the connecting block 47, as well as the slot of the specific square slot 45, are used to form a transfer of the solder-clad wire.
[0059] In this embodiment: a plurality of push sliding plates 48 are sequentially provided on the surface of the connecting horizontal plate 46, and guide grooves 49 are sequentially opened on the surface of the push sliding plates 48. A bending head 491 is provided in the middle of the guide groove 49, and a push head for access is provided in the middle of the bending head 491.
[0060] The purpose of using the guide groove 49 and one end of the bending head 491 is to transfer the insertion end and perform corresponding bending to form a cut.
[0061] In this embodiment: a drive base 492 is provided between the push sliding plates 48, and each of the four corners of the drive base 492 is provided with a bending and actuating piece 493, and each of the four corners of the bearing plate 11 is provided with a conveying roller shaft 494 in a cross shape.
[0062] The conveyor roller shaft 494 of the drive base 492 is folded at one end along the axial direction.
[0063] In practical use, the first step is to transfer the tin-clad wire material that needs to be transferred.
[0064] At this time, the operator uses the support plate 11 as the mounting base structure. The soldered wire material is transferred from one end of the transfer roller 121. The structure between the transfer roller 121 and the sleeve 122 is used to transfer the soldered wire directly to the sleeve end of the transfer sleeve 123. The displacement structure of the sleeve end is used to transfer it to the top surface of the sleeve of the transfer sleeve 123. The wire moves directly along the connecting guide rod 25 and then passes through the middle cavity of the conveying pressure roller 26.
[0065] According to the surface of the solder bath 29, the solder is directly guided through the board surface of the connecting plate 27 and into the corresponding solder bath 397. One end of the solder bath is directly guided to one end of the square slot 45 at the rear end, directly reaching the hole position at the rear end. According to the hole position, the corresponding specific hole position is directly used to reach one end of the specific connecting block 47 until it is connected from the specific hole position. The one end of the square slot 45 is directly guided into the position of the rear pressing mechanism 4.
[0066] Step 2: Specific handling of the materials used in the implementation of the corresponding conveyor roller 494;
[0067] At this time, the user uses one end of the corresponding guide groove 49 to close the specific middle part. The user then moves directly towards the center according to one end of the corresponding bending head 491. After moving towards the center, the corresponding material preparation is achieved. The user then moves towards the center according to the corresponding bending and pushing piece 493, achieving mutual pushing and output of the material.
[0068] After rotating axially according to the corresponding conveyor roller shaft 494, the specific structural movement was uniformly achieved.
[0069] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit the scope of protection of this utility model. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the essence and scope of the technical solutions of this utility model.
Claims
1. A threading and feeding pressure wheel set for tin-plated wire production, comprising a threading mechanism (1), characterized in that, The threading mechanism (1) comprises a bearing plate (11), the top of the bearing plate (11) is provided with a bearing base (12), the middle of the top end of the bearing base (12) is vertically provided with a connecting support rod (13), the middle of the top end of the connecting support rod (13) is vertically provided with a delivery roller shaft (121) for tin foil wire delivery, the top of the delivery roller shaft (121) is provided with a delivery sleeve (123) for the surface of the cladding fixing sleeve (122), and the delivery sleeve (123) is sequentially arranged in the middle of the top end of the bearing base (12).
2. The threading and feeding pressure wheel set for tin foil wire manufacturing according to claim 1, wherein: The middle of the side wall of the bearing base (12) is sequentially provided with a delivery mechanism (2). The delivery mechanism (2) comprises a plurality of capstans (21) sequentially arranged in the middle of the side wall of the bearing base (12), and adjusting grooves (22) are arranged between the capstans (21).
3. The threading and feeding pressure wheel set for tin foil wire manufacturing according to claim 2, wherein: The first access base (24) for fixing is arranged between the adjusting grooves (22), a plurality of the first access bases (24) are in communication with corresponding tin foil wire delivery conveying, connecting guide rods (25) for conveying are correspondingly arranged on both sides of the bearing plate (11), the connecting guide rods (25) are symmetrically arranged on both sides of the bearing plate (11), and a plurality of conveying pressure rollers (26) for supporting are sequentially arranged on the top surface of the bearing plate (11).
4. The threading and feeding pressure wheel set for tin foil wire manufacturing according to claim 3, wherein: The side of the conveying pressure roller (26) is provided with a connecting plate (27), the top of the connecting plate (27) is provided with a positioning screw (28) for limiting on both sides, the middle of the connecting plate (27) is provided with an upper tin groove (29), and the side of the plate surface of the connecting plate (27) is provided with an L-shaped upper tightening base (291) for fixing.
5. The threading and feeding pressure wheel set for tin foil wire manufacturing according to claim 4, wherein: The bottom end of the L-shaped upper tightening base (291) is attached with a pipe connecting plate (292), the top end of the pipe connecting plate (292) is provided with a connecting block (293), and the side of the connecting block (293) is provided with a belt delivery mechanism (3).
6. The threading and feeding pressure wheel set for tin foil wire manufacturing according to claim 5, wherein: The belt delivery mechanism (3) comprises a T-shaped block (31) mounted on the side of the connecting block (293), a conveying roller shaft (32) is arranged in the middle of the T-shaped block (31), a motor mounting plate (33) is arranged in the middle of the top end of the T-shaped block (31), and a motor roller shaft (34) is arranged on the side wall of the plate surface of the motor mounting plate (33).
7. The threading and feeding pressure wheel set for tin foil wire manufacturing according to claim 6, wherein: The end of the motor roller shaft (34) is provided with a delivery disc (35), the middle of the delivery disc (35) is sleeved with a driving belt (36), a driving roller shaft (37) is transversely mounted on the back of the T-shaped block (31), and the back of the driving roller shaft (37) is provided with a second access base (38) for supporting.
8. The threading and feeding pressure wheel set for tin foil wire manufacturing according to claim 7, wherein: The middle of the second access base (38) is provided with a fixed control support plate (39), the middle of the fixed control support plate (39) is provided with a middle communication conduit (391), the back of the communication conduit (391) is in communication with a carding sleeve (392), and the middle of the carding sleeve (392) is provided with an opening (393) for penetration.
9. The threading and feeding pressure wheel set for tin foil wire manufacturing according to claim 8, wherein: The back of the carding sleeve (392) is provided with a soldering base (394), the middle of the top end of the soldering base (394) is provided with a soldering box (396), the middle of the top end of the soldering box (396) is provided with a soldering groove (397), the back of the groove of the soldering groove (397) is provided with a pressing mechanism (4); The pressing mechanism (4) includes a pressing box (41) arranged on the side of the soldering box (396), the middle of the top end of the box body of the pressing box (41) is provided with a synchronous transmission wheel (42), the bottom of the synchronous transmission wheel (42) is provided with a worm gear, and the sidewall of the worm gear is provided with a worm (43).
10. The threading and feeding pressure wheel set for tin foil wire manufacturing according to claim 9, wherein: The sidewall of the pressing box (41) is provided with a supporting plate (44), the middle of the supporting plate (44) is provided with a square slot (45), the top side of the square slot (45) is provided with a connecting horizontal plate (46), the surface of the connecting horizontal plate (46) is provided with a connecting block (47), the middle of the back of the connecting block (47) is provided with a bending head (491), and the middle of the bending head (491) is provided with a push head for connection. The surface of the connecting horizontal plate (46) is sequentially provided with a plurality of push sliding plates (48), the surface of the push sliding plate (48) is sequentially provided with a guide groove (49), the middle of the guide groove (49) is provided with a bending head (491), and the middle of the bending head (491) is provided with a push head for connection. The driving base (492) is arranged between the push sliding plates (48), the four corners of the driving base (492) are provided with bending and stirring pieces (493), and the four corners of the bearing plate (11) are cross-shapedly provided with conveying roller shafts (494).
Citation Information
Patent Citations
Roll up circle machine
CN206169006U