Power cable take-up machine
By adopting a support shaft and drive device design in the power cable reel, the overall support and convenient installation of the I-beam reel are achieved, solving the problems of structural strength and installation complexity in the existing technology, and improving the loading and unloading efficiency of the I-beam reel.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2026-03-24
AI Technical Summary
Existing power cable retractors can only support the sides of the I-beam reel, resulting in high structural strength requirements and complex installation and disassembly, making it difficult to efficiently support the entire I-beam reel and facilitate convenient operation.
By using a support shaft inserted into the first and second mounting cylinders, combined with a drive device and a sliding mounting seat, the overall support and convenient installation of the I-beam wheel are achieved. The sliding and rotation of the support shaft and the mounting seat simplify the loading and unloading process of the I-beam wheel.
It achieves overall support for the I-beam wheels, improves the ease of loading and unloading the I-beam wheels, reduces reliance on external equipment, and simplifies the installation and disassembly process.
Smart Images

Figure CN224030382U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of power cable production equipment, especially an electric power cable take -up machine. BACKGROUND
[0002] The electric power cable is the general term of the conductor and cable for transmitting electric energy, and is usually a multi-core structure of a plurality of conductive core wires wound with each other. After the production of the electric power cable is completed, the large spool is used for winding and then warehousing. The process of winding the electric power cable by the spool needs to use the electric power cable take -up machine.
[0003] In order to use conveniently, the electric power cable take -up machine on the market usually only supports and connects the side part (one side or both sides) of the spool and then works. However, the weight of the wound motor cable is very large, and only connecting the side part of the spool has two problems: one is that the structural strength requirement of the spool is high, and the other is that the connection mode of the spool installation is relatively complex, and the spool is relatively difficult to disassemble.
[0004] For example, the electric power cable take -up machine disclosed in the patent number 2023231888517 can only be connected to the side part of the spool, does not have the overall supporting effect on the spool, and at the same time, since the installation position of the spool is fixed, the external equipment needs to be assisted when disassembling the spool, and the operation has certain difficulty. UTILITY MODEL CONTENTS
[0005] The utility model aims at: propose a kind of electric power cable take -up machine, for the winding operation of electric power cable.
[0006] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:
[0007] A kind of electric power cable take -up machine, comprising: base frame;Mounting rack, the mounting rack is provided with two, respectively set in the direction of the two ends of the base frame;It can be slidably connected with the base frame along the length direction of the base frame sliding;First mounting seat, it can be slidably set on one of the mounting rack, the first mounting seat is provided with the first mounting cylinder that can rotate;Second mounting seat, it can be slidably set on another mounting rack, the second mounting seat is provided with the second mounting cylinder that can rotate, and is provided with the drive device of the second mounting cylinder rotation;Spool;Supporting shaft;The supporting shaft one end is inserted in the first mounting cylinder, the other end is inserted in the second mounting cylinder to be able to rotate with the second mounting cylinder, the spool is set between two mounting racks, and the spool is set on the supporting shaft.
[0008] On the basis of the above scheme and as a preferred scheme of the above scheme: the base rack comprises two groove opening direction facing each other channel steel, a plurality of connecting rods are welded between the two channel steel connection;
[0009] The lower end of the mounting rack is provided with at least two rollers supported in the groove of the channel steel on both sides, a first lead screw is arranged between the two channel steel and fixedly connected with the connecting rod, a first nut capable of rotating is arranged on the mounting rack, the first nut is in threaded connection with the first lead screw, and a first motor is arranged on the mounting rack to drive the first nut to rotate.
[0010] On the basis of the above scheme and as a preferred scheme of the above scheme: the first nut is arranged on the mounting rack through a bearing seat assembly, a first gear rigidly connected with the first nut is coaxially arranged on the first nut, a second gear is arranged on the output shaft of the first motor, and the first gear is in transmission connection with the first gear.
[0011] On the basis of the above scheme and as a preferred scheme of the above scheme: the first mounting seat and the second mounting seat are both connected with the mounting rack through a slide rail and slide block mechanism, a second lead screw capable of rotating is arranged on the mounting rack, a second motor is arranged on the mounting rack and in transmission connection with the second lead screw, and a second nut in threaded cooperation with the second lead screw is arranged on the second lead screw to connect the first mounting seat and the second mounting seat.
[0012] On the basis of the above scheme and as a preferred scheme of the above scheme: the support shaft is a circular shaft at both ends and a polygonal shaft at the middle section, the cross-sectional profile of the polygonal shaft is larger than that of the circular shaft, a blocking portion with a cross-sectional profile larger than that of the polygonal shaft is arranged at one end of the polygonal shaft, and a limiting protrusion protruding away from the polygonal shaft is arranged on the blocking portion; a insertion hole for inserting the support shaft is arranged in the middle of the spool, and the insertion hole is provided with a polygonal hole position matching the polygonal shaft; a limiting end face with a cross-sectional profile larger than that of the polygonal shaft is arranged at one end of the first mounting cylinder close to the spool, and a limiting groove with an opening direction towards the spool is arranged at one end of the second mounting cylinder close to the spool, the polygonal shaft is inserted into the insertion hole, the blocking portion abuts against the spool, the circular shaft close to the blocking portion is inserted into the second mounting cylinder, and the limiting protrusion is embedded in the limiting groove, and the circular shaft at the other end is inserted into the first mounting cylinder, and the limiting end face is close to the spool.
[0013] On the basis of the above scheme and as a preferred scheme of the above scheme: the first mounting cylinder is provided with a threaded hole, a screw threadedly matched with the threaded hole is arranged in the threaded hole, and when the circular shaft is inserted into the first mounting cylinder, rotating the screw can make the screw abut against the circular shaft.
[0014] On the basis of the above scheme and as a preferred scheme of the above scheme: the driving device comprises a third motor arranged on the second mounting seat, and the third motor is in transmission connection with the second mounting cylinder.
[0015] The power cable take-up machine has the following beneficial effects:
[0016] The power cable take-up machine can be used for winding power cables, can form overall support effect on the spool, and can improve the convenience of spool dismounting.
[0017] When in use, one end of the support shaft is inserted into the first mounting cylinder, the other end is inserted into the second mounting cylinder to be able to rotate with the second mounting cylinder, the spool is arranged between the two mounting racks, the spool is arranged on the support shaft, and then the driving device is used to drive the second mounting cylinder to drive the spool to rotate to wind power cables.
[0018] The support shaft is a long shaft and can form overall support on the spool.
[0019] The first mounting seat and the second mounting seat can be adjusted up and down on the mounting rack, and when dismounting or mounting is needed, the spool can be placed downward, so that the mounting height of the spool is adapted without the aid of external equipment (such as a forklift).
[0020] The two ends of the support shaft can be naturally inserted into the first mounting cylinder and the second mounting cylinder correspondingly, the support shaft is inserted into the spool first when mounting, the two mounting racks on the base rack are adjusted to be away from each other, then the spool is placed between the two mounting racks, the positions of the first mounting seat and the second mounting seat are further adjusted, the first mounting seat is controlled to be close to each other so that the support shaft is inserted into the first mounting cylinder and the second mounting cylinder correspondingly and mounted.
[0021] In addition to the purposes, features and advantages described above, the utility model has other purposes, features and advantages. BRIEF DESCRIPTION OF DRAWINGS
[0022] Fig. 1 is a structural schematic view of the power cable take-up machine of the utility model;
[0023] Fig. 2 is an assembly drawing of the power cable take-up machine according to the present application;
[0024] Fig. 3 is a schematic view of the installation of the first bearing;
[0025] Fig. 4 is a schematic view of the installation of the support shaft. DETAILED DESCRIPTION
[0026] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings. Obviously, the described embodiments are only some of the embodiments of the present application, but not all of the embodiments.
[0027] Referring to Figs. 1-4, the present application discloses a power cable take-up machine, which can be used for winding power cables, can form an overall support effect for the spool 500, and can improve the convenience of loading and unloading the spool 500.
[0028] In the disclosed embodiment, the power cable take-up machine comprises: a base frame 100 for support; two installation frames 200 for providing installation bases of the spool 500, which are arranged at the two ends of the base frame 100; the installation frames 200 are slidably connected to the base frame 100 along the length direction of the base frame 100; a first mounting seat 300 is arranged on one of the installation frames 200 and can slide up and down, and the first mounting seat 300 is provided with a first mounting cylinder 301 which can rotate, such as being connected through a bearing seat; a second mounting seat 400 is arranged on the other installation frame 200 and can slide up and down, and the second mounting seat 400 is provided with a second mounting cylinder 401 which can rotate and a driving device 403 for driving the second mounting cylinder 401 to rotate, such as being connected through a bearing seat; a spool 500 for winding cables; and a support shaft 600 for supporting the spool 500 and arranging the spool 500 on the first mounting seat 300 and the second mounting seat 400. Specifically, one end of the support shaft 600 is inserted into the first mounting cylinder 301, and the other end is inserted into the second mounting cylinder 401 to rotate with the second mounting cylinder 401, the spool 500 is arranged between the two installation frames 200, and the spool 500 is arranged on the support shaft 600.
[0029] In use, the support shaft 600 is inserted at one end into the first mounting cylinder 301 and at the other end into the second mounting cylinder 401 to enable rotation with the second mounting cylinder 401, the spool 500 is arranged between the two mounting frames 200, the spool 500 is arranged on the support shaft 600, and then the second mounting cylinder 401 is driven by the driving device 403 to drive the spool 500 to rotate to wind the power cable.
[0030] The support shaft 600 is a long shaft and can support the spool 500 as a whole.
[0031] The first mounting seat 300 and the second mounting seat 400 can be adjusted up and down on the mounting frame 200, and when disassembly or assembly is required, the spool 500 can be lowered downward, thereby eliminating the need for external equipment (such as a forklift) to cooperate to adapt to the installation height of the spool 500.
[0032] The two ends of the support shaft 600 can be naturally inserted into the first mounting cylinder 301 and the second mounting cylinder 401, respectively. During installation, the support shaft 600 can be inserted into the spool 500, the two mounting frames 200 on the base frame 100 are adjusted to be away from each other, the spool 500 is then placed between the two mounting frames 200, the positions of the first mounting seat 300 and the second mounting seat 400 are further adjusted, the first mounting seat 300 is controlled to approach each other to enable the support shaft 600 to be inserted into the first mounting cylinder 301 and the second mounting cylinder 401 for installation. When disassembling, only the spool 500 needs to be lowered to the appropriate position and controlled to be away from each other, which is convenient for assembly and disassembly.
[0033] The driving device 403 for driving the second mounting cylinder 401 to rotate includes a third motor 404 arranged on the second mounting seat 400, and the third motor 404 is in driving connection with the second mounting cylinder 401.
[0034] In the embodiment of the present disclosure, the base rack 100 comprises two channel steels 101 whose recess opening directions are opposite, and a plurality of connecting rods 102 are welded between the two channel steels 101; the lower end of the mounting rack 200 is rotatably provided with at least two rollers 201 supported in the recess of the channel steel 101 on both sides, respectively, a first lead screw 103 fixedly connected with the connecting rod 102 is arranged between the two channel steels 101, a first nut 105 capable of rotating is arranged on the mounting rack 200, the first nut 105 is in threaded connection with the first lead screw 103, and a first motor drive 107 is arranged on the mounting rack 200 to drive the rotation of the first nut 105. When the first motor drive 107 drives the rotation of the first nut 105, the mounting rack 200 can move on the base rack 100.
[0035] Further, in order to better control the rotation of the first nut 105, the first nut 105 is arranged on the mounting rack 200 through a bearing seat assembly 104, a first gear 106 rigidly connected with the first nut 105 is coaxially arranged on the first nut 105, a second gear 108 is arranged on the output shaft of the first motor, and the first gear 106 is in transmission connection with the second gear 108.
[0036] In the embodiment of the present disclosure, the first mounting seat 300 and the second mounting seat 400 are correspondingly connected with the mounting rack 200 through a slide rail slide block mechanism 202, the mounting rack 200 is provided with a second lead screw 204 capable of rotating, a second motor 203 is arranged on the mounting rack 200 and in transmission connection with the second lead screw 204, a second nut 205 threadedly matched with the second lead screw 204 is arranged on the second lead screw 204, the first mounting seat 300 and the second mounting seat 400 are correspondingly connected, and the up-down movement of the first mounting seat 300 and the second mounting seat 400 can be controlled through the second motor 203.
[0037] In the embodiments of the present disclosure, in order to further ensure and improve the convenience of loading and unloading the I-beam 500, the two ends of the support shaft 600 are circular shafts 601, and the middle section is a polygonal shaft 602. The cross-sectional profile of the polygonal shaft 602 is larger than that of the circular shaft 601. One end of the polygonal shaft 602 is provided with a stop portion 603 with a cross-sectional profile larger than that of the polygonal shaft 602. The stop portion 603 is provided with a limiting protrusion 604 protruding away from the polygonal shaft 602. The I-beam 500 is provided with a insertion hole 501 for inserting the support shaft 600. The insertion hole 501 is provided with a polygonal hole position matched with the polygonal shaft 602. One end of the first mounting cylinder 301 close to the I-beam 500 is provided with a limiting end surface 302 with a cross-sectional profile larger than that of the polygonal shaft 602. One end of the second mounting cylinder 401 close to the I-beam 500 is provided with a limiting groove 402 with an opening direction towards the I-beam 500. The polygonal shaft 602 is inserted into the insertion hole 501. The stop portion 603 abuts against the I-beam 500. The circular shaft 601 close to one end of the stop portion 603 is inserted into the second mounting cylinder 401, and the limiting protrusion 604 is embedded in the limiting groove 402. Thus, the support shaft 600 can rotate with the second mounting cylinder 401. The circular shaft 601 at the other end is inserted into the first mounting cylinder 301, and the limiting end surface 302 is close to the I-beam 500.
[0038] Further, the first mounting cylinder 301 is provided with a threaded hole 303. A screw 304 matched with the threaded hole 303 is arranged in the threaded hole 303. When the circular shaft 601 is inserted into the first mounting cylinder 301, rotating the screw 304 can make the screw 304 abut against the circular shaft 601. Thus, it can be ensured that the first mounting cylinder 301 rotates with the support shaft 600, and the sliding between the first mounting cylinder 301 and the support shaft 600 is avoided.
[0039] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto. Any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. A power cable take-up machine, characterized in that It includes: Base frame (100); Mounting rack (200), provided with two, respectively arranged in the two end directions of the base frame (100); can be slidingly connected with the base frame (100) along the length direction of the base frame (100); The first mounting seat (300) is slidably arranged on one of the mounting racks (200), and the first mounting seat (300) is provided with a first mounting cylinder (301) capable of rotating; The second mounting seat (400) is slidably arranged on the other mounting rack (200), and the second mounting seat (400) is provided with a second mounting cylinder (401) capable of rotating and provided with a driving device (403) for driving the second mounting cylinder (401) to rotate; Spool (500); Support shaft (600); The support shaft (600) is inserted into the first mounting cylinder (301) at one end and the second mounting cylinder (401) at the other end to rotate with the second mounting cylinder (401), and the spool (500) is arranged between the two mounting racks (200), and the spool (500) is arranged on the support shaft (600).
2. The power cable take-up machine of claim 1, wherein The base frame (100) includes two groove opening directions of the groove steel (101), and a plurality of connecting rods (102) are welded between the two groove steels (101); The lower end of the mounting rack (200) is provided with at least two rollers (201) supported in the groove of the groove steel (101) on both sides, respectively, a first lead screw (103) is arranged between the two groove steels (101) and fixedly connected with the connecting rod (102), a first nut (105) capable of rotating is arranged on the mounting rack (200), the first nut (105) is threadedly connected with the first lead screw (103), and a first motor (107) is arranged on the mounting rack (200) to drive the first nut (105) to rotate.
3. The power cable take-up machine of claim 2, wherein, The first nut (105) is arranged on the mounting rack (200) through a bearing seat assembly (104), a first gear (106) rigidly connected with the first nut (105) is coaxially arranged on the first nut (105), a second gear (108) is arranged on the output shaft of the first motor, and the first gear (106) is in transmission connection with the first gear (106).
4. The power cable take-up machine of claim 1, wherein, The first mounting seat (300) and the second mounting seat (400) are connected with the mounting rack (200) through a slide rail and slide block mechanism (202), the mounting rack (200) is provided with a second lead screw (204) capable of rotating, a second motor (203) is arranged on the mounting rack (200) and in transmission connection with the second lead screw (204), and a second nut (205) threadedly matched with the second lead screw (204) is arranged on the second lead screw (204) to connect the first mounting seat (300) and the second mounting seat (400).
5. The power cable take-up machine of claim 1, wherein, The support shaft (600) is circular shaft (601) at both ends, the middle section is a polygonal shaft (602), the cross-sectional profile of the polygonal shaft (602) is larger than the cross-sectional profile of the circular shaft (601), one end of the polygonal shaft (602) is provided with a stop portion (603) with a cross-sectional profile larger than that of the polygonal shaft (602), and the stop portion (603) is provided with a limiting convex portion (604) protruding away from the polygonal shaft (602); The spool (500) is provided with an insertion hole (501) for inserting the support shaft (600), and the insertion hole (501) is provided with a polygonal hole position matched with the polygonal shaft (602); The first mounting cylinder (301) is provided with a limiting end face (302) with a cross-sectional profile larger than that of the polygonal shaft (602) at one end close to the spool (500), and the second mounting cylinder (401) is provided with a limiting groove (402) with an opening direction towards the spool (500) at one end close to the spool (500), the polygonal shaft (602) is inserted into the insertion hole (501), the stop portion (603) abuts against the spool (500), the circular shaft (601) at one end close to the stop portion (603) is inserted into the second mounting cylinder (401), and the limiting convex portion (604) is embedded in the limiting groove (402), and the circular shaft (601) at the other end is inserted into the first mounting cylinder (301), and the limiting end face (302) is close to the spool (500).
6. The power cable take-up machine of claim 5, wherein, The first mounting cylinder (301) is provided with a threaded hole (303), and the threaded hole (303) is provided with a screw (304) matched with the threaded hole (303), when the circular shaft (601) is inserted into the first mounting cylinder (301), rotating the screw (304) can make the screw (304) abut against the circular shaft (601).
7. The power cable take-up machine of claim 1, wherein, The driving device (403) comprises a third motor (404) arranged on the second mounting seat (400), and the third motor (404) is in driving connection with the second mounting cylinder (401).