Cable production take-up device

By introducing extrusion parts and guide parts into the cable production take-up device, the problem of cable outer skin bending is solved, the cable is evenly wound and the skin is protected, and the winding quality is improved.

CN223357111UActive Publication Date: 2025-09-19SHANGHAI LIKUN PHOTOELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202422963195.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-09-19
Estimated Expiration
2034-12-03

AI Technical Summary

Technical Problem

During the winding process of existing cable production winding devices, the outer sheath of the cable may be deformed and bent due to external forces, making it difficult to fit evenly on the reel, thus affecting the winding effect.

Method used

A cable production take-up device is designed, which includes a wire pressing box and a wire taking-up box. The wire pressing box is equipped with an extruding piece and a guiding piece. The extruding piece is used to extrude the curved part of the cable outer skin, and the guiding piece is used to guide the cable so that it is evenly reeled into the wire taking-up box.

Benefits of technology

The straight line of the deformation part of the cable outer surface is realized, the uniformity and effect of cable winding are improved, the damage of the cable outer skin is avoided, and the winding quality is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of take-up devices, in particular to a cable production take-up device which comprises a wire pressing box and a take-up box arranged on one side of the wire pressing box, a take-up assembly is arranged in the take-up box, a processing cavity is formed in the wire pressing box, and a wire inlet and a wire outlet are formed in the two sides of the processing cavity respectively. An extrusion part for extruding the cable is arranged in the processing cavity, a guide part for guiding the cable is further arranged in the processing cavity, and the cable enters the take-up box through the cable inlet, the extrusion part and the cable outlet to be wound. According to the take-up device for cable production, due to the arrangement of the extrusion piece, when a cable passes through the extrusion piece, a bent part possibly existing on the outer surface of the cable can be extruded, a deformed part can be pressed to be straight, and compared with the prior art, the take-up device for cable production can take up the cable after the deformed part of the cable is pressed to be straight when the cable is taken up; and the winding effect of the cable is better.
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Description

Technical Field

[0001] The utility model relates to the technical field of wire take-up devices, in particular to a wire take-up device for cable production. Background Art

[0002] Cables are essential infrastructure in modern society, widely used in fields such as power, communications, and transportation. Cables transmit electrical energy. In the cable production process, the take-up device is a key piece of equipment, responsible for reeling the finished cable for storage, transportation, and use.

[0003] For example, the patent with announcement number CN221853728U discloses a wire and cable production take-up device, including a take-up frame, a take-up shaft is rotatably arranged on the take-up frame, a take-up drum is fixedly arranged on the take-up shaft, a driving mechanism for driving the take-up drum to rotate is provided on the take-up frame, a winding mechanism for guiding the cable to be wound evenly is provided on one side of the take-up frame, the winding mechanism includes a winding frame, a winding screw, a friction wheel and a winding motor, the winding frame is arranged on one side of the take-up frame, and the winding screw rotates It is connected to the winding frame, the output end of the winding motor is connected to the winding screw, the friction wheel is threadedly connected to the winding screw, and the winding frame is provided with a guide mechanism for guiding the friction wheel; although the take-up device has the effect of uniformly winding and improving product quality, during the production process of the cable, the outer skin of the cable may be deformed due to external force, causing it to bend. If it is not processed and directly wound up, the cable is difficult to fit the reel better. However, the take-up device does not mention how to solve this problem, so it needs to be improved. Utility Model Content

[0004] The purpose of the present invention is to provide a cable production take-up device to solve the problems raised in the above background technology.

[0005] To achieve the above objectives, the present invention provides the following technical solutions:

[0006] A cable production take-up device comprises a wire pressing box and a take-up box arranged on one side thereof, wherein a wire take-up assembly is arranged in the wire pressing box, a processing chamber is arranged in the wire pressing box, a wire inlet and a wire outlet are respectively arranged on both sides of the processing chamber, an extrusion piece for extruding the cable is arranged in the processing chamber, and a guide piece for guiding the cable is also arranged in the processing chamber, and the cable enters the take-up box through the wire inlet, the extrusion piece and the wire outlet to be taken up.

[0007] Preferably, the extrusion member includes a rotatable pressure wheel arranged in the processing chamber, the outer wall of the pressure wheel is provided with an annular groove along its circumference for the cable to pass through, a plurality of rotatable pulleys are relatively provided in the processing chamber, a pressure belt is provided between the pulleys, the pressure wheel is used to press the pressure belt to achieve tensioning of the pressure belt, and the cable passes through the annular groove where the pressure wheel and the pressure belt cooperate.

[0008] Preferably, the guide member includes a first guide wheel arranged in the processing chamber and close to the wire inlet, the first guide wheel is rotatably arranged, and a first connecting arm with one end extending from the wire outlet is also provided in the processing chamber, the extending end of the first connecting arm is provided with a rotatable second guide wheel, the extending end of the first connecting arm is provided with a connecting plate through the second connecting arm, and the connecting plate is provided with a rotatable third guide wheel. The cable enters the extrusion member after being guided by the first guide wheel, and the cable extends into the wire collection box after being guided by the second guide wheel and the third guide wheel.

[0009] Preferably, a wire taking-up cavity is provided in the wire taking-up box, and the wire taking-up assembly includes a shell provided in the wire taking-up cavity, a rotatable wire drum bearing shaft is provided on the shell, and a driving motor is provided in the shell for driving the wire drum bearing shaft to rotate.

[0010] Preferably, a baffle is provided at one end of the wire drum bearing shaft, an external thread is provided at the other end of the wire drum bearing shaft, and a nut is threadedly connected to the other end of the wire drum bearing shaft.

[0011] Preferably, the guide member further comprises a reserved plate provided in the processing chamber and close to the cable outlet, and a baffle is provided on a side of the reserved plate away from the processing chamber, and the baffle is used to confine the cable to the reserved plate.

[0012] Compared with the prior art, the beneficial effects of the present invention are:

[0013] 1. The utility model, through the setting of the extrusion piece, can squeeze the possible curved part on the outer skin of the cable when the cable passes through the extrusion piece, and can straighten the deformed part. Compared with the existing ones, the cable production take-up device in the utility model can straighten the deformed part of the cable before reeling it in, so that the cable reeling effect is better.

[0014] 2. The present invention provides a guide member so that the cable is guided when it is input into the guide member and into the take-up cavity, so that the cable can be better reeled onto the reeling assembly. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 The utility model is a schematic diagram of the overall structure of a cable production take-up device.

[0016] Figure 2 for Figure 1 Enlarged view of point A in the middle.

[0017] Figure 3 for Figure 1 Enlarged view of point B in the middle.

[0018] Figure 4 This is a structural diagram of the medium-voltage wire box and the wire collection box of the present invention.

[0019] Figure 5 for Figure 4 Enlarged view of point C in the middle.

[0020] Figure 6 This is an exploded view of the wire take-up box, housing and wire reel in the utility model.

[0021] The meaning of each number in the figure is:

[0022] 100, crimping box; 101, processing chamber; 102, wire inlet; 103, wire outlet; 110, wire take-up box; 111, wire take-up chamber; 112, wire reel; 120, housing;

[0023] 200, first connecting arm; 210, second guide wheel; 220, second connecting arm;

[0024] 300, connecting plate; 310, third guide wheel;

[0025] 400, pressure wheel; 410, pulley; 411, pressure belt; 420, first guide wheel;

[0026] 500, reserved plate; 510, baffle;

[0027] 600, bobbin bearing shaft; 610, stopper plate; 611, external thread; 620, nut. DETAILED DESCRIPTION

[0028] In order to further understand the content of the present invention, the present invention is described in detail with reference to the accompanying drawings and embodiments. It should be understood that the embodiments are merely for explanation of the present invention and are not intended to limit the present invention.

[0029] The following is combined with Figures 1-6 This embodiment is described in further detail.

[0030] See also Figure 1-Figure 4In this embodiment, a cable production and wire-winding device includes a wire pressing box 100 and a wire-winding box 110 arranged on one side thereof. The wire-winding box 110 is provided with a wire-winding assembly, and a processing chamber 101 is provided in the wire pressing box 100. A wire inlet 102 and a wire outlet 103 are respectively provided on both sides of the processing chamber 101. An extrusion piece for extruding the cable is provided in the processing chamber 101. A guide piece for guiding the cable is also provided in the processing chamber 101. The cable enters the wire-winding box 110 through the wire inlet 102, the extrusion piece, and the wire outlet 103 to be wound.

[0031] In this embodiment, the processing chamber 101 is provided with an opening on one side, and a closable box door (not shown in the figure) is provided at the opening. One side of the box door is mounted on the wire crimping box 100 by a hinge, and the other side is detachably mounted on the wire crimping box 100 by a buckle.

[0032] Specifically, the wire take-up box 110 is arranged on one side of the wire pressing box 100 where the wire outlet 103 is opened. The wire take-up box 110 is provided with a wire take-up cavity 111 with an upper end opening. The wire take-up assembly is arranged in the wire take-up cavity 111. The cable enters the wire take-up cavity 111 through the wire inlet 102, the extruded piece, and the wire outlet 103, and is wound onto the winding assembly.

[0033] By setting the extrusion piece, when the cable passes through the extrusion piece, any curved portion on the outer skin of the cable can be squeezed, and the deformed portion can be straightened. Compared with the existing ones, the cable production take-up device in this embodiment can straighten the deformed portion of the cable before reeling it in, so that the cable reeling effect is better.

[0034] Among them, by setting the guide member, the cable is guided when it is input into the take-up cavity 111, so that it can be better reeled onto the reeling assembly;

[0035] During actual use of this embodiment, an observation window is provided on the box door to facilitate observation of the situation in which the extruding member extrudes the cable.

[0036] Combine Figure 1-4 As shown, in this embodiment, the extrusion member includes a rotatable pressure wheel 400 arranged in the processing chamber 101, and the outer wall of the pressure wheel 400 is provided with an annular groove along its circumference for the cable to pass through. A plurality of rotatable pulleys 410 are relatively provided in the processing chamber 101, and a pressure belt 411 is sleeved between the pulleys 410. The pressure wheel 400 is used to press the pressure belt 411 to achieve tensioning of the pressure belt 411, and the cable passes through the annular groove where the pressure wheel 400 and the pressure belt 411 cooperate.

[0037] In this embodiment, the cable is output from the annular groove where the pressure wheel 400 and the pressure belt 411 cooperate, so that the pressure wheel 400 rotates and the pressure belt 411 rotates to drive the cable output, so that the cable is squeezed by the annular groove and the pressure belt 411, and any bends on the cable are shaped and straightened, thereby squeezing the cable before entering the cable reel box 110, so that the cable can be reeled.

[0038] Among them, a rotatable rotating shaft is provided in the processing chamber 101, and the pressure wheel 400 and the pulley 410 are fixedly connected to the corresponding rotating shaft. A driving chamber is provided on the other side of the wire pressing box 100, and a motor for driving the corresponding rotating shaft is provided in the driving chamber. Starting the motor can drive the pressure wheel 400 and the pulley 410 to rotate, thereby driving the movement and transportation of the cable in the annular groove;

[0039] Specifically, a controller is provided in the wire crimping box 100 and above the processing chamber 101 , and the controller can control the start and stop of the motor.

[0040] Combine Figure 1-4 As shown, in this embodiment, the guide member includes a first guide wheel 420 arranged in the processing chamber 101 and close to the wire inlet 102, the first guide wheel 420 is rotatably arranged, and a first connecting arm 200 with one end extending from the wire outlet 103 is further provided in the processing chamber 101, and the protruding end of the first connecting arm 200 is provided with a rotatable second guide wheel 210, and the protruding end of the first connecting arm 200 is provided with a connecting plate 300 through the second connecting arm 220, and the connecting plate 300 is provided with a rotatable third guide wheel 310. The cable enters the extrusion member after being guided by the first guide wheel 420, and the cable extends into the wire collection box 110 after being guided by the second guide wheel 210 and the third guide wheel 310.

[0041] In this embodiment, the cable enters the processing chamber 101 from the cable inlet 102, circles half a circle around the first guide wheel 420, and then enters the annular groove. It moves along the annular groove and around the pressure wheel 400 at the position where it contacts the pressure belt 411, and exits the processing chamber 101 from the cable outlet 103. The cable extending from the processing chamber 101 circles half a circle around the second guide wheel 210 and the third guide wheel 310, and finally enters the cable collection box 110. Through the above multiple guides, the cable can enter the cable collection box 110 relatively smoothly.

[0042] One end of the first connecting arm 200 is detachably mounted in the processing chamber 101 by screws, and the second connecting arm 220 is detachably connected to the connecting plate 300 and the first connecting arm 200 by screws. Thus, the second connecting arm 220, the connecting plate 300, and the first connecting arm 200 can be manufactured and installed separately, reducing production difficulty.

[0043] Specifically, the first guide wheel 420 is rotatably mounted on the side wall of the processing chamber 101 via a rotating shaft. The first connecting arm 200 and the connecting plate 300 are provided with a fixed shaft. The second guide wheel 210 and the third guide wheel 310 are rotatably mounted on the corresponding fixed shaft via bearings, thereby achieving rotatable installation of the second guide wheel 210 and the third guide wheel 310.

[0044] The outer side walls of the first guide wheel 420 , the second guide wheel 210 and the third guide wheel 310 are all provided with guide grooves along their circumferences, and the cables can slide in the corresponding guide grooves.

[0045] Combine Figure 1-5 As shown, in this embodiment, the guide member also includes a reserved plate 500 arranged in the processing chamber 101 and close to the outlet 103. A baffle 510 is provided on the side of the reserved plate 500 away from the processing chamber 101. The baffle 510 is used to limit the cable to the reserved plate 500.

[0046] In this embodiment, when the cable is detached from the pressure wheel 400, the cable can slide on the reserved plate 500 and come out of the outlet 103. As a result, the cable does not directly contact the side wall of the outlet 103, thereby preventing the cable from being scratched by the side wall of the outlet 103 and causing damage to the cable sheath.

[0047] The baffle 510 is provided so that when the cable moves on the reserved plate 500, it will not separate from the width direction of the reserved plate 500, but can move along the extension direction of the reserved plate 500. In addition, the surface of the reserved plate 500 is relatively smooth and will not damage the outer skin of the cable.

[0048] Specifically, the first guide wheel 420 can also lift the cable entering the processing chamber 101 to prevent the cable from being scratched by the side wall of the cable inlet 102 when entering the processing chamber 101 from the cable inlet 102, thereby damaging the cable sheath.

[0049] Combine Figure 1-6 As shown, in this embodiment, a wire taking-up chamber 111 is provided in the wire taking-up box 110, and the wire taking-up assembly includes a shell 120 provided in the wire taking-up chamber 111, a rotatable wire drum bearing shaft 600 is provided on the shell 120, and a driving motor for driving the wire drum bearing shaft 600 to rotate is provided in the shell 120.

[0050] In this embodiment, starting the drive motor can drive the cable drum bearing shaft 600 to rotate, thereby driving the cable drum 112 located on the cable drum bearing shaft 600 to rotate, so that the cable entering the cable take-up cavity 111 is wound on the cable drum 112;

[0051] The side wall of the housing 120 is provided with a heat dissipation slot (not shown in the figure), and the heat generated by the second motor when it is working can be better dissipated from the heat dissipation slot;

[0052] Specifically, a side door is provided on one side of the wire receiving box 110 near the opening of the processing chamber 101. One side of the side door is connected to the wire receiving box 110 by rotating through a hinge, and the other side is detachably installed on the wire receiving box 110 by a buckle, thereby realizing the opening and closing of the side door, so that the wire reel 112 can be disassembled and assembled on the wire reel bearing shaft 600.

[0053] Combine Figure 1-6 As shown, in this embodiment, a baffle 610 is provided at one end of the wire drum bearing shaft 600 , an external thread 611 is provided at the other end of the wire drum bearing shaft 600 , and a nut 620 is threadedly connected to the other end of the wire drum bearing shaft 600 .

[0054] In this embodiment, when installing the cable drum 112 on the cable drum bearing shaft 600, the cable drum 112 is first inserted into the cable drum bearing shaft 600, and then the nut 620 is rotated. The nut 620 rotates on the external thread 611 and the cable drum 112 is pressed against the baffle 610. At this time, when the cable drum bearing shaft 600 rotates, the cable drum 112 can be driven to rotate, and the squeezed cable can be reeled;

[0055] Specifically, in order to improve the stability of the wire drum supporting shaft 600 driving the wire drum 112 to rotate, the inner side wall of the wire drum 112 and the wire drum supporting shaft 600 are slidably engaged through a keyway.

[0056] When the cable needs to be reeled up, the cable is extended into the processing chamber 101 from the cable inlet 102, and after wrapping half a circle around the first guide wheel 420, it enters the annular groove, moves around the pressure wheel 400 at the position where the annular groove contacts the pressure belt 411, and is output from the processing chamber 101 from the cable outlet 103. It wraps half a circle around the second guide wheel 210 and the third guide wheel 310 respectively. After one end of the cable is fixed to the wire drum 112, the motor is started to drive the pressure wheel 400, the pulley 410 and the wire drum bearing shaft 600 to rotate, and at the same time, the drive motor is started to rotate the wire drum 112 located on the wire drum bearing shaft 600, so that the cable is finally reeled on the wire drum 112.

[0057] In short, the above description is only a preferred embodiment of the present invention. All equivalent changes and modifications made according to the scope of the patent application of the present invention should fall within the scope of the present invention patent.

Claims

1. A cable production take-up device, comprising a wire pressing box (100) and a wire take-up box (110) arranged on one side thereof, wherein a wire take-up assembly is arranged in the wire take-up box (110), characterized in that: A processing chamber (101) is provided in the crimping box (100), and a wire inlet (102) and a wire outlet (103) are respectively provided on both sides of the processing chamber (101). An extrusion piece for extruding the cable is provided in the processing chamber (101), and a guide piece for guiding the cable is also provided in the processing chamber (101). The cable passes through the wire inlet (102), the extrusion piece, and the wire outlet (103) and enters the wire reel box (110) to be reeled.

2. A cable production take-up device according to claim 1, characterized in that: The extrusion member includes a rotatable pressure wheel (400) arranged in a processing chamber (101), an annular groove for the cable to pass through is provided on the outer wall of the pressure wheel (400) along its circumference, a plurality of rotatable pulleys (410) are relatively provided in the processing chamber (101), a pressure belt (411) is sleeved between the pulleys (410), the pressure wheel (400) is used to press the pressure belt (411) to achieve tensioning of the pressure belt (411), and the cable passes through the annular groove at the matching position of the pressure wheel (400) and the pressure belt (411).

3. A cable production take-up device according to claim 2, characterized in that: The guide member comprises a first guide wheel (420) provided in the processing chamber (101) and close to the line inlet (102); the first guide wheel (420) is rotatably arranged; a first connecting arm (200) is further provided in the processing chamber (101), one end of which extends from the line outlet (103); a rotatable second guide wheel (210) is provided at the extended end of the first connecting arm (200); a connecting plate (300) is provided at the extended end of the first connecting arm (200) through the second connecting arm (220); a rotatable third guide wheel (310) is provided on the connecting plate (300); the cable enters the extrusion member after being guided by the first guide wheel (420); and the cable extends into the wire take-up box (110) after being guided by the second guide wheel (210) and the third guide wheel (310).

4. A cable production take-up device according to claim 1, characterized in that: A wire taking-up chamber (111) is provided in the wire taking-up box (110), and the wire taking-up assembly includes a housing (120) provided in the wire taking-up chamber (111). A rotatable wire drum bearing shaft (600) is provided on the housing (120), and a driving motor is provided in the housing (120) for driving the wire drum bearing shaft (600) to rotate.

5. A cable production take-up device according to claim 4, characterized in that: One end of the wire drum bearing shaft (600) is provided with a stopper (610), the other end of the wire drum bearing shaft (600) is provided with an external thread (611), and the other end of the wire drum bearing shaft (600) is threadedly connected with a nut (620).

6. A cable production take-up device according to claim 3, characterized in that: The guide member further comprises a reserved plate (500) arranged in the processing chamber (101) and close to the cable outlet (103); a baffle (510) is provided on a side of the reserved plate (500) away from the processing chamber (101); and the baffle (510) is used to restrict the cable on the reserved plate (500).

Citation Information

Patent Citations

  • Take-up device for wire and cable production

    CN221853728U