Cage stranding machine for processing and producing litz wires

By introducing an adjustable roller mechanism and a multi-strand wire integration mechanism into the cage stranding machine, the problems of offset and uneven tension during the stranding of multi-strand fine wires are solved, achieving accurate wire position and uniform tension, thus improving stranding quality and equipment adaptability.

CN121601349APending Publication Date: 2026-03-03TONGLING JINGXUN SPECIAL ENAMELLED WIRE
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Patent Information

Application Number
CN202511794579.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-02
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

Existing cage stranding machines are prone to deviation, entanglement, or damage during the stranding of multiple fine conductors, and the conductors are slack or have uneven tension when exiting the machine, making them unsuitable for Litz wires of different diameters.

Method used

An adjustable roller mechanism and a multi-strand wire feeding and integration mechanism were designed, including adjustable nylon rollers and multiple nylon positioning rings. The height of the rollers is controlled by a support airbag to ensure accurate wire positioning and uniform tension.

Benefits of technology

It improves stranding quality, reduces wire wear, enhances the versatility and adaptability of equipment, reduces production costs, and improves production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a cage stranding machine for processing and producing litz wires, and relates to the technical field of cage stranding, the cage stranding machine comprises a stranding machine body, and the left side and the right side of the stranding machine body are respectively provided with a wire outlet seat and a wire inlet seat which are placed on the ground; wherein the wire outlet seat is provided with a riding wheel mechanism with adjustable wire outlet height, and the wire inlet seat is provided with a wire guiding mechanism integrating a plurality of strands of inlet wires. According to the cage stranding machine for processing and producing the Litz wires, the supporting wheel mechanism realizes rapid and accurate adjustment of the wire outlet height through the adjustable supporting air bag and the nylon supporting wheel A, so that the cage stranding machine can adapt to the Litz wires with different diameters and ensure that the tension of the wires is uniform during wire outlet, the universality and the adaptability of equipment are improved, and the production efficiency is improved. The height of the riding wheels is easy and convenient to adjust and high in precision due to the inflation and deflation mechanism of the air bag, the production efficiency and the product quality are remarkably improved, and the wire guiding mechanism can accurately guide and integrate multiple strands of thin wires through the design of integrating multiple strands of inlet wires and utilizing multiple nylon riding wheels B and nylon positioning rings.
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Description

Technical Field

[0001] This invention relates to the field of cage winding technology, specifically to a cage winding machine for processing and producing Leeds wire. Background Technology

[0002] A Litz wire cage stranding machine is a specialized piece of equipment for producing Litz wire. It is mainly used to strand multiple fine conductors into one to form the desired cable product. Litz wire is made of multiple thin insulated conductors and is widely used in high-frequency transformers, medical devices, environmental protection equipment, home appliances, motors, electrical appliances and other fields. Litz wire helps reduce losses caused by the skin effect and proximity effect at higher frequencies and is suitable for high-frequency applications such as high-frequency transformers, choke coils, and switching power supplies.

[0003] Chinese patent CN111681837A discloses a cage-type stranding machine with a safety protection mechanism, including an inner stranding guide device, a stranding guide disc, and a tail mounting disc. The tail mounting disc and the stranding guide disc are fixedly connected by a connecting column. When the cage-type stranding machine with the safety protection mechanism described in this invention is working, since several inner stranding guide wheels and several outer stranding guide wheels can move at the same speed, the quality of multi-layer stranding is improved. The position of the strands is easy to adjust during the stranding process, and the adjustment process will not cause the unwinding speed of several raw material wires to be inconsistent, thereby improving the quality of the stranded wire.

[0004] Firstly, although the cage stranding machine described in the aforementioned document is equipped with inner and outer stranding guide devices at the inlet, it lacks a mechanism for precisely integrating multiple fine conductors. When these conductors enter the cage stranding machine, they are prone to deviation, tangling, or damage, affecting the stranding quality. Secondly, the aforementioned document differs significantly from existing technologies. Existing cage stranding machines typically have fixed support rollers on the outlet seat, and the height of these rollers is fixed. Since the diameters of the multiple Litz wires after cage stranding vary, fixed-height rollers cannot accommodate Litz wires of different diameters, potentially leading to conductor slack or uneven tension during outlet. Summary of the Invention

[0005] To address the shortcomings of existing technologies, this invention provides a cage stranding machine for processing and producing Litz wire, which has advantages such as facilitating the production of Litz wire and solving the problem of wire slack or uneven tension that may occur during wire exit.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a cage winch for processing and producing Leeds wire, comprising a winch body, wherein a wire outlet seat and a wire inlet seat are respectively provided on the left and right sides of the winch body and placed on the ground.

[0007] The cable outlet is equipped with a support roller mechanism with adjustable cable outlet height, and the cable inlet is equipped with a conductor mechanism that integrates multiple inlet wires.

[0008] The roller support mechanism is as follows:

[0009] Two support plates: Both are horizontally fixed to the left side of the cable outlet;

[0010] Four positioning rods: arranged in pairs in a rectangular shape, and each rod is fixed inside the two support plates;

[0011] Two sliding blocks: respectively fitted on the outside of the two sets of positioning rods, and slidably fitted with the positioning rods;

[0012] One rotating rod: It is rotatably connected between two opposing sides of the slide blocks via bearings;

[0013] A nylon roller A: located at the center of the outer surface of its fixed rotating rod;

[0014] Two suspension rods: each is vertically fixed to the upper surface of the two slide blocks, and one end of each rod extends through and to the upper side of the upper support plate;

[0015] A suspension plate: which is fixed to the top of the two suspension rods;

[0016] One support airbag: It is fixed to the upper surface of the upper support plate and located on the lower side of the hanging plate, fitting snugly against the hanging plate.

[0017] A rotating inflatable base: It is fixed to the upper surface of the upper support plate and near its left side;

[0018] A connecting pipe: It is fixed between the air outlet of the rotating inflatable seat and the supporting airbag.

[0019] Furthermore, the two support plates are symmetrically distributed above and below the outlet of the cable outlet, and each support plate has four mounting holes on its upper side, with four positioning rods fixed to the support plate through the mounting holes.

[0020] Furthermore, each of the two slide blocks has two sliding openings, and the slide blocks are slidably connected to the positioning rod through the sliding openings, and the two do not detach from each other.

[0021] Furthermore, the length of the positioning rod is greater than the length of the lifting rod, and the two lifting rods are symmetrically distributed on the front and rear sides of the nylon support roller A.

[0022] Furthermore, the longitudinal section of the supporting airbag is annular, and all the hanging rods pass through the supporting airbag and are set perpendicularly to the hanging plate.

[0023] Furthermore, the conductor mechanism includes two support tubes, a support plate, a base plate, several mounting pieces, several support rods, and several nylon rollers B;

[0024] The two support tubes are vertically fixed, and the left support tube is vertically fixed to the right side of the inlet seat. The tray is sleeved on the outside of the left support tube, and the base plate is sleeved on the outside of the right support tube and fits against the right side of the left support tube. Several mounting pieces are fixed between the tray and the base plate on opposite sides. Several support rods are rotatably connected between the opposite sides of two adjacent base plates via bearings, and several nylon rollers B are fixed to several support rods respectively.

[0025] Furthermore, the wire mechanism also includes several nylon positioning rings, and several wire inlet holes A are opened on the right side of the substrate, and the several nylon positioning rings are respectively fixed inside the several wire inlet holes A.

[0026] Furthermore, the wire guide mechanism also includes a protective cover fixed to the right side of the right base plate, with both ends of the protective cover being open and enclosing the nylon support roller B.

[0027] Furthermore, the outer diameter of the support tube on the right is smaller than the outer diameter of the support tube on the left, and the outer diameters of the two support tubes are respectively adapted to the openings on the tray and the base plate, and the multiple mounting pieces are equidistantly distributed along the axis of the base plate.

[0028] Furthermore, multiple support plates are fixed on the right side of the winch body, and two base rods are slidably connected to each support plate. A nylon support wheel C is fixed to one end of each base rod, and the base rod is fixed to the support plate by bolts. A wire inlet hole B corresponding to the nylon support wheel C is opened on the right side of the winch body, and a nylon protective sleeve is fixed inside the wire inlet hole B.

[0029] Compared with the prior art, the technical solution of this application has the following beneficial effects:

[0030] 1. The cage winding machine for processing Litz wire features an adjustable support air bladder and nylon support roller A, enabling rapid and precise adjustment of the wire exit height. This not only adapts to Litz wires of different diameters, ensuring uniform conductor tension during exit, but also improves the equipment's versatility and adaptability, reducing production costs. Furthermore, the air bladder's inflation and deflation mechanism makes the adjustment of the support roller height simple and highly accurate, significantly improving production efficiency and product quality.

[0031] 2. The cage stranding machine used for processing Leeds wire features a multi-strand feed mechanism designed with multiple nylon rollers B and nylon positioning rings to precisely guide and integrate the multiple fine wires. This ensures accurate positioning of the wires upon entering the cage stranding machine, improving stranding quality. Simultaneously, the protective cover and nylon protective sleeve effectively protect the wires from wear during feed and output, ensuring the integrity of the wire surface and further enhancing product quality.

[0032] 3. The design of the nylon rollers C and the inlet hole B on the cage winding machine for processing Litz wire further optimizes the wire feeding process. Multiple nylon rollers C guide multiple strands of Litz wire and guide them into the cage winding machine through the inlet hole B, ensuring smooth wire entry. This not only improves the stability of wire feeding but also further protects the wire through the nylon protective sleeve, reducing wear, extending the service life of the wire, and improving the overall performance and reliability of the equipment. Attached Figure Description

[0033] Figure 1 This is a schematic diagram of the structure of the present invention;

[0034] Figure 2 This is a schematic diagram of the roller support mechanism of the present invention;

[0035] Figure 3 This is a schematic diagram of the conductor mechanism of the present invention;

[0036] Figure 4 This is a schematic diagram of the connection structure between the mounting plate and the base rod of the present invention.

[0037] In the diagram: 1. Winch body, 2. Outlet seat, 3. Inlet seat, 4. Roller mechanism, 41. Support plate, 42. Positioning rod, 43. Slide, 44. Rotating rod, 45. Nylon roller A, 46. Hanging rod, 47. Hanging plate, 48. Support airbag, 49. Rotary inflatable seat, 410. Connecting pipe, 5. Wire mechanism, 51. Support pipe, 52. Support plate, 53. Base plate, 54. Mounting piece, 55. Support rod, 56. Nylon roller B, 57. Nylon positioning ring, 58. Protective cover, 6. Support piece, 7. Base rod, 8. Nylon roller C. Detailed Implementation

[0038] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0039] Please see Figure 1-4 The cage winch for processing Leeds wire in this embodiment includes a winch body 1, and a wire outlet seat 2 and a wire inlet seat 3 placed on the ground are respectively provided on the left and right sides of the winch body 1.

[0040] Among them, the cable outlet 2 is equipped with a support roller mechanism 4 with adjustable cable outlet height, and the cable inlet 3 is equipped with a conductor mechanism 5 that integrates multiple inlet wires;

[0041] The roller support mechanism 4 is as follows:

[0042] Two support plates 41: Both are horizontally fixed to the left side of the cable outlet 2;

[0043] Four positioning rods 42: arranged in pairs in a rectangular shape, and all fixed inside the two support plates 41;

[0044] Two sliding blocks 43: respectively fitted on the outside of the two sets of positioning rods 42, and slidably fitted with the positioning rods 42;

[0045] A rotating rod 44: It is rotatably connected between two slide blocks 43 on opposite sides via a bearing;

[0046] A nylon roller A45: located at the center of the outer surface of its fixed rotating rod 44;

[0047] Two suspension rods 46: respectively vertically fixed to the upper surface of the two slides 43, and one end of each rod extends through and to the upper side of the upper support plate 41;

[0048] A hanging plate 47: which is fixed to the top of two hanging rods 46;

[0049] A support airbag 48 is fixed to the upper surface of the upper support plate 41 and located on the lower side of the hanging plate 47, and is in close contact with the hanging plate 47.

[0050] A rotating inflatable base 49: It is fixed to the upper surface of the upper support plate 41 and near its left side;

[0051] A connecting pipe 410: It is fixed between the air outlet of the rotating inflatable seat 49 and the supporting airbag 48.

[0052] It should be noted that the roller support mechanism 4, through the inflation and deflation mechanism of the support airbag 48, quickly and accurately controls the height of the nylon roller A45, adapting to Litz wires of different diameters, ensuring uniform tension of the conductor when exiting the wire, improving the versatility and adaptability of the equipment, and reducing production costs. The conductor mechanism 5, through multiple nylon rollers B56 and nylon positioning rings 57, precisely guides and integrates multiple strands of fine conductors, ensuring accurate positioning of the conductors when entering the cage stranding machine, improving stranding quality, and reducing conductor offset and wear during the wire entry process. A nylon protective sleeve is fixed inside the wire inlet hole B to further protect the conductors from wear, ensuring the integrity of the conductor surface and improving product quality. The roller height can be quickly adjusted through the inflation and deflation mechanism of the rotating air seat 49 and connecting pipe 410, which is simple to operate and highly accurate, significantly improving production efficiency and product quality. The design of the roller support mechanism 4 includes two support plates 41, four positioning rods 42, and two sliding seats 43, ensuring stable and reliable roller height adjustment process and reducing vibration and wear during equipment operation.

[0053] The two support plates 41 are symmetrically distributed above and below the outlet of the cable outlet 2, and each support plate 41 has four mounting holes on its upper side. The four positioning rods 42 are fixed to the support plates 41 through the mounting holes. The two slides 43 each have two sliding openings, and the slides 43 are slidably connected to the positioning rods 42 through the sliding openings, and the two do not separate from each other. The length of the positioning rods 42 is greater than the length of the hanging rods 46. The two hanging rods 46 are symmetrically distributed on the front and rear sides of the nylon support roller A45. The longitudinal section of the support airbag 48 is annular, and the hanging rods 46 all pass through the support airbag 48 and are set perpendicularly to the hanging plate 47.

[0054] It should be noted that in the above content:

[0055] Structural stability and symmetry: The two support plates 41 are symmetrically distributed vertically around the cable outlet of the cable outlet seat 2, which enhances the overall stability of the roller support mechanism 4 and ensures that it maintains balance during adjustment and operation.

[0056] Installation and Fixing Reliability: The four mounting holes on the upper side of each support plate 41 are used to fix the four positioning rods 42, which improves the installation accuracy and fixing reliability of the positioning rods 42 and enhances the structural strength of the entire roller support mechanism 4.

[0057] Sliding connection and flexibility: The two slide blocks 43 are slidably connected to the positioning rod 42 through the sliding port, and the two do not disengage from each other. This sliding connection method ensures both the flexibility of the roller support mechanism 4 and the stable connection between the components during the adjustment process.

[0058] Reasonable size design: The length of the positioning rod 42 is greater than the length of the hanging rod 46. This size design allows the slide 43 to have enough space when sliding, avoiding interference with the hanging rod 46 and improving the adjustment range and flexibility of the roller mechanism 4.

[0059] Symmetrical distribution and balance: The two suspension rods 46 are symmetrically distributed on the front and rear sides of the nylon roller A45. This symmetrical distribution helps to maintain the balance of the roller mechanism 4 during operation and reduce vibration and wear.

[0060] Design of support airbag 48: The longitudinal section of support airbag 48 is annular, and the hanging rod 46 passes through support airbag 48 and is set perpendicular to the hanging plate 47. This not only improves the support effect of support airbag, but also enhances the stability and reliability of support roller mechanism 4 during height adjustment.

[0061] The conductor mechanism 5 includes two support tubes 51, a support plate 52, a base plate 53, several mounting pieces 54, several support rods 55, and several nylon rollers B56.

[0062] Two support tubes 51 are vertically fixed, and the left support tube 51 is vertically fixed to the right side of the inlet seat 3. The support plate 52 is sleeved on the outside of the left support tube 51, and the base plate 53 is sleeved on the outside of the right support tube 51 and fits against the right side of the left support tube 51. Several mounting pieces 54 are fixed between the opposite sides of the support plate 52 and the base plate 53. Several support rods 55 are rotatably connected between the opposite sides of two adjacent base plates 53 through bearings, and several nylon rollers B56 are fixed to several support rods 55 respectively.

[0063] It should be noted that the wire guide mechanism 5 is vertically fixed by two support tubes 51. The left support tube 51 is vertically fixed to the right side of the wire inlet seat 3, ensuring the structural stability of the entire wire guide mechanism 5 and providing a solid foundation for the precise guidance of the wires. The support plate 52 and the base plate 53 are respectively sleeved on the outside of the left and right support tubes 51, and the base plate 53 is in close contact with the right side of the left support tube 51, which helps to accurately control the wire inlet direction and ensure that multiple wires can accurately enter the stranding area. Several mounting plates 54 are fixed between the support plate 52 and the base plate 53, and several support rods 55 are rotatably connected between adjacent base plates 53 through bearings. This not only enhances the flexibility of the wire guide mechanism 5, but also facilitates adjustment according to the specifications and quantity of the wires. Several nylon rollers B56 are fixed on the support rods 55. The nylon material has good wear resistance and low coefficient of friction, which can effectively reduce the wear of the wires during the wire inlet process, protect the wire surface, and improve product quality.

[0064] The wire guiding mechanism 5 also includes several nylon positioning rings 57. Several wire inlet holes A are opened on the right side of the substrate 53, and several nylon positioning rings 57 are fixed inside the several wire inlet holes A. The wire guiding mechanism 5 also includes a protective cover 58 fixed to the right side of the right substrate 53. Both ends of the protective cover 58 are open and wrap around the nylon support roller B56. The outer diameter of the right support tube 51 is smaller than the outer diameter of the left support tube 51, and the outer diameters of the two support tubes 51 are respectively adapted to the plate openings opened on the support plate 52 and the substrate 53. Multiple mounting pieces 54 are equidistantly distributed along the axis of the substrate 53.

[0065] It should be noted that the wire guide mechanism 5 achieves precise guidance and positioning of multiple wires by fixing several nylon positioning rings 57 in several wire inlet holes A opened on the right side of the substrate 53. This ensures that the wires are accurately positioned when entering the stranding area, improving the stranding quality. The wire guide mechanism 5 also includes a protective cover 58 fixed to the right side of the substrate 53. The protective cover 58 has open ends and wraps around nylon support rollers B56, effectively protecting the wires from wear during the wire feeding process, ensuring the integrity of the wire surface, and further improving the product quality. The outer diameter of the right support tube 51 is smaller than the outer diameter of the left support tube 51, and the outer diameters of the two support tubes 51 are adapted to the plate openings opened on the support plate 52 and the substrate 53, respectively. This ensures that the various components of the wire guide mechanism 5 can fit together tightly, enhancing the structural stability and reliability of the entire mechanism. Multiple mounting pieces 54 are equidistantly distributed along the axis of the substrate 53, which not only improves the structural stability of the wire guide mechanism 5 but also ensures the uniform distribution of the wires during the wire feeding process, further improving the uniformity and quality of stranding.

[0066] The winch body 1 has multiple support plates 6 fixed on its right side. Each support plate 6 has two base rods slidably connected to it. One end of each base rod 7 is fixed with a nylon support wheel C8. The base rod 7 is fixed to the support plate 6 by bolts. The winch body 1 has a wire inlet hole B corresponding to the nylon support wheel C8 on its right side, and a nylon protective sleeve is fixed inside the wire inlet hole B.

[0067] It should be noted that multiple support plates 6 are fixed on the right side of the stranding machine body 1, and two base rods 7 are slidably connected to each support plate 6. This multi-point support design enhances the structural stability of the wire feeding area and ensures the stability of the wire during the wire feeding process. The base rods 7 and the support plates 6 are fixed with bolts. This connection method not only ensures the stability of the base rods 7, but also allows for flexible adjustment according to the specifications and quantity of the wires, improving the adaptability of the equipment. A nylon support wheel C8 is fixed to one end of the base rod 7. The nylon material has good wear resistance and low coefficient of friction, which can effectively reduce the wear of the wires during the wire feeding process and protect the surface of the wires. The right side of the stranding machine body 1 has a wire feeding hole B corresponding to the nylon support wheel C8, and a nylon protective sleeve is fixed inside the wire feeding hole B to further protect the wires from wear, ensure the smoothness of the wires when entering the stranding area, and improve the wire feeding efficiency and product quality.

[0068] Finally, in this application, the multiple strands of Litz wire that need to be cage-stranded are guided into the cage-stranding machine through multiple inlet holes A and multiple inlet holes B. At inlet hole A, multiple nylon support rollers B56 and nylon positioning rings 57 are used for guidance, and protective covers 58 are used for protection. At inlet hole B, the multiple strands of Litz wire are guided by multiple nylon support rollers C8 and enter the cage-stranding machine through inlet hole B. After the cage-stranding is completed, the wire exits from the outlet seat 2. Since the number of multiple strands of Litz wire is different and the diameter is different after cage-stranding, the outlet wheel of the same height cannot be well adapted. Under the action of the support roller mechanism 4, the height of the nylon support roller A45 can be quickly and accurately controlled by the airbag to adapt to Litz wires of different diameters.

[0069] The working principle of the above embodiment is as follows: The wire passes through multiple inlet holes A on the base plate 53. Each inlet hole A is fixed with a nylon positioning ring 57 to ensure the accurate position of the wire when entering the cage winding machine. The wire is guided by multiple rotatable nylon support rollers B56 to further ensure the stability of the wire. The wire enters the inlet hole B of the cage winding machine through a protective cover 58. Both ends of the protective cover 58 are open and wrap around the nylon support rollers B56 to effectively protect the wire from wear. The winding machine body 1 adjusts the speed of the motor to ensure that the winding speed of the wire meets the process requirements. According to the diameter of the wire and the winding requirements, the inflation amount of the support airbag 48 in the support roller mechanism 4 is adjusted. Through the inflation and deflation mechanism of the airbag, the height of the nylon support roller A45 is quickly and accurately controlled to ensure uniform tension of the wire when exiting the machine. Specifically, the height of the support airbag 48 is adjusted by inflating or deflating the support airbag 48 by rotating the inflation seat 49. The height change of the support airbag 48 is transmitted through the hanging plate 47 and the hanging rod 46. The sliding block 43 moves up and down along the positioning rod 42, causing the rotating rod 44 and the nylon support roller A45 to move up and down, thereby adjusting the height of the nylon support roller A45. The twisted wire passes through the nylon support roller A45 on the wire exit seat 2, reducing friction and wear of the wire during the exit process. After twisting, it is collected by the subsequent take-up reel. After the multi-strand Litz wire comes out from the wire mechanism 5 on the wire inlet seat 3, it passes through multiple nylon support rollers C8 in sequence. The nylon support rollers C8 are fixed to the base. At one end of rod 7, the base rod 7 is fixed to the support plate 6 by bolts, ensuring the stability of the nylon support roller C8 and also allowing for adjustment of the position of the nylon support roller C8. The nylon support roller C8 guides the multi-strand Litz wire, ensuring the accurate position of the wire when entering the cage stranding machine, further reducing the offset and wear of the wire during the wire feeding process. After being guided by the nylon support roller C8, the multi-strand Litz wire enters the stranding area of ​​the cage stranding machine through the wire inlet hole B. A nylon protective sleeve is fixed inside the wire inlet hole B, which also protects the wire from wear.

[0070] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0071] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A cage winch for processing Leeds wire, comprising a winch body (1), characterized in that: The winch body (1) is provided with a wire outlet (2) and a wire inlet (3) placed on the ground on the left and right sides respectively. Among them, the outlet seat (2) is provided with an adjustable outlet height support roller mechanism (4), and the inlet seat (3) is provided with a multi-strand inlet wire integration conductor mechanism (5). The roller support mechanism (4) is as follows: Two support plates (41): Both are horizontally fixed to the left side of the cable outlet (2); Four positioning rods (42): arranged in a rectangular shape in pairs, and all fixed inside the two support plates (41); Two sliding blocks (43): respectively fitted on the outside of the two sets of positioning rods (42), and slidingly attached to the positioning rods (42); A rotating rod (44): It is rotatably connected between two slides (43) on opposite sides via a bearing; A nylon roller A (45): at the center of the outer surface of its fixed rotating rod (44); Two suspension rods (46): respectively vertically fixed to the upper surface of the two slides (43), and one end of each rod extends through and to the upper side of the upper support plate (41); A hanging plate (47): which is fixed to the top of the two hanging rods (46); A support airbag (48): It is fixed to the upper surface of the upper support plate (41) and located on the lower side of the hanging plate (47) and is in close contact with the hanging plate (47); A rotating inflatable base (49): which is fixed to the upper surface of the upper support plate (41) and near its left side; A connecting pipe (410): It is fixed between the air outlet of the rotating inflatable seat (49) and the supporting airbag (48).

2. The cage winding machine for processing Leeds wire according to claim 1, characterized in that: The two support plates (41) are symmetrically distributed above and below the outlet of the cable outlet (2), and each support plate (41) has four mounting holes on its upper side. The four positioning rods (42) are fixed between the support plate (41) and the mounting holes.

3. The cage winding machine for processing Leeds wire according to claim 1, characterized in that: Each of the two slide blocks (43) has two sliding openings, and the slide blocks (43) are slidably connected to the positioning rod (42) through the sliding openings, and the two are not separated from each other.

4. The cage winding machine for processing Leeds wire according to claim 1, characterized in that: The length of the positioning rod (42) is greater than the length of the lifting rod (46), and the two lifting rods (46) are symmetrically distributed on the front and rear sides of the nylon support roller A (45).

5. A cage winding machine for processing Leeds wire according to claim 1, characterized in that: The longitudinal section of the support airbag (48) is annular, and the hanging rods (46) all pass through the support airbag (48) and are set perpendicularly to the hanging plate (47).

6. A cage winding machine for processing Leeds wire according to claim 1, characterized in that: The wire guide mechanism (5) includes two support tubes (51), a support plate (52), a base plate (53), several mounting pieces (54), several support rods (55), and several nylon rollers B (56). The two support tubes (51) are vertically fixed, and the left support tube (51) is vertically fixed to the right side of the inlet seat (3). The tray (52) is sleeved on the outside of the left support tube (51). The base plate (53) is sleeved on the outside of the right support tube (51) and fits against the right side of the left support tube (51). Several mounting pieces (54) are fixed between the tray (52) and the base plate (53) on opposite sides. Several support rods (55) are rotatably connected between the opposite sides of two adjacent base plates (53) through bearings. Several nylon rollers B (56) are fixed to several support rods (55) respectively.

7. A cage winding machine for processing Leeds wire according to claim 6, characterized in that: The wire mechanism (5) also includes several nylon positioning rings (57). Several wire inlet holes A are provided on the right side of the substrate (53), and several nylon positioning rings (57) are respectively fixed inside several wire inlet holes A.

8. A cage winding machine for processing Leeds wire according to claim 6, characterized in that: The wire guide mechanism (5) also includes a protective cover (58) fixed to the right side of the right base plate (53). Both ends of the protective cover (58) are open and enclose the nylon support roller B (56).

9. A cage winding machine for processing Leeds wire according to claim 6, characterized in that: The outer diameter of the support tube (51) on the right is smaller than the outer side of the support tube (51) on the left, and the outer diameters of the two support tubes (514) are adapted to the openings on the tray (52) and the base plate (53), respectively. The multiple mounting pieces (54) are equidistantly distributed along the axis of the base plate (53).

10. A cage winding machine for processing Leeds wire according to claim 1, characterized in that: Multiple support plates (6) are fixed on the right side of the winch body (1). Two base rods (7) are slidably connected to each support plate (6). A nylon support wheel C (8) is fixed to one end of each base rod (7). The base rod (7) is fixed to the support plate (6) by bolts. A wire inlet hole B corresponding to the nylon support wheel C (8) is opened on the right side of the winch body (1), and a nylon protective sleeve is fixed inside the wire inlet hole B.

Citation Information

Patent Citations

  • Cage type stranding machine with safety protection mechanism

    CN111681837A