Additional recycling tool of cable winding wheel and cable winding device
By installing multiple additional recycling tools on the cable reel wheel, a single drive source synchronously winding of multiple cables of different outer diameters is solved, and the problems of excessive land use and high labor costs in the prior art are solved, and the efficiency of cable recycling is improved.
Patent Information
- Application Number
- CN202422004277.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-08-16
AI Technical Summary
Existing cable reel wheels require multiple rotors and workers to prepare, resulting in excessive footprint and high labor costs.
An additional recycling tool for cable retracting wheel is designed. By installing multiple additional recycling tooling on the retracting wheel, a single drive source synchronously winding of multiple cables of different outer diameters is achieved.
Reduces the number of rotary racks and construction workers required, saves public space and labor costs, and improves the efficiency of cable recycling.
Smart Images

Figure CN222892823U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of cable winding accessories, in particular to an additional recovery tooling of a cable winding wheel and a cable winding device. Background Art
[0002] Large equipment is required for construction at the construction site, so the equipment needs to be powered before work. The construction site and the power supply may pass through public places, so some cables may be buried underground. Different equipment has different power requirements, and different equipment may need to use cables with different outer diameters. When the construction is completed, the cables in public places need to be recycled. The existing recycling process requires the preparation of multiple reel wheels to retract different cables, and each reel wheel requires a corresponding rotating frame to provide support, and multiple workers are required to drive the reel wheel to rotate. In this way, the rotating frame needs to occupy too much public space and increase labor costs. Utility Model Content
[0003] The purpose of the utility model is to propose an additional recovery tooling for a cable reel, which is installed on a reel with a reeling function, and can introduce a reeling groove based on the existing reeling function of the reel. When a plurality of additional recovery tooling are installed around the reel, the reeling capacity can be added to the reel, so that a single driving source can drive a single reel to synchronously reel cables of multiple different outer diameters.
[0004] The utility model also provides a cable reeling device, which uses the additional recovery tooling of the cable reeling wheel installed on the reeling wheel.
[0005] To achieve this purpose, the utility model adopts the following technical solutions:
[0006] An additional recovery tool for a cable reel, which is used to be installed around the reel, and the additional recovery tool comprises: a tool body and a wheel fastener;
[0007] The tooling body is provided with a winding groove and a locking groove; the locking groove is used to be clamped on the winding wheel; the wheel fastener is movably adjusted and limited in the locking groove; one end of the wheel fastener extends into the locking groove from one of the inner side walls of the locking groove, and forms a clamp with the other opposite inner side wall of the locking groove; the clamp has a clamping function and is used to clamp on the winding wheel.
[0008] Optimally, the tooling body comprises: an outer L-shaped member and an inner L-shaped member;
[0009] The outer L-shaped member is provided with an outer vertical plate and an outer horizontal plate perpendicular to each other, and an outer L-shaped groove is formed between the outer vertical plate and the outer horizontal plate;
[0010] The inner L-shaped member is provided with an inner vertical plate and an inner horizontal plate which are perpendicular to each other, and an inner L-shaped groove is formed between the inner vertical plate and the inner horizontal plate;
[0011] One end of the inner transverse plate is connected to the outer vertical plate, and the winding groove is formed between the inner L-shaped groove and the outer vertical plate; the locking groove is formed between the outer vertical plate, the outer transverse plate and the inner transverse plate; the wheel fastener is movably adjusted and limited to the outer transverse plate.
[0012] Optimally, the plurality of wheel fasteners are arranged in sequence along the depth direction of the locking groove.
[0013] Preferably, one of the outer vertical plate and the inner horizontal plate is provided with a limit slot, and the other of the two is provided with a limit block; the limit block is detachably connected to the limit slot to connect the outer vertical plate with the inner horizontal plate.
[0014] It can be optimized to further include: splitting the screw;
[0015] The outer transverse plate is provided with a transverse plate through hole, and the inner transverse plate is provided with a transverse plate threaded hole; the disassembly screw passes through the transverse plate through hole and is threadedly engaged with the transverse plate threaded hole, so that the limit block is limited in the limit slot.
[0016] Preferably, the limiting block is a T-shaped block; and the limiting slot is a T-shaped slot.
[0017] Preferably, the wheel fastener is a screw; the tooling body is provided with a wheel thread opening on one of the inner side walls of the locking groove; one end of the wheel thread opening is connected to the locking groove, and the other end of the wheel thread opening is connected to the outside of the tooling body; the wheel fastener is threadedly engaged with the wheel thread opening, and the wheel fastener forms the clamp at the end away from the wheel thread opening and the other opposite inner side wall of the locking groove.
[0018] A cable reeling device, comprising: a reeling wheel and an additional recovery tooling for the above-mentioned cable reeling wheel;
[0019] A plurality of the additional recovery tools are installed on the reel and are distributed around the rotating shaft of the reel.
[0020] Optimally, the winding wheel comprises: a wheel body, a wheel rotating disc and a driving shaft;
[0021] The rotating disc is installed at both ends of the wheel body, and the rotating disc is connected to the wheel body for synchronous rotation; the driving shaft passes through the rotating disc, and the driving shaft is connected to the rotating shaft of the wheel body;
[0022] A plurality of the additional recovery tools are installed around the rotary disk, and the clamp of each of the additional recovery tools is fixed to the rotary disk.
[0023] Preferably, the rotary disc is provided with a plurality of clamping grooves distributed around the driving shaft as the center, and the clamping groove is provided with a clamping edge at the outer edge of the rotary disc; the clamping mouth clamps the clamping edge, and the winding groove is limited to the outer edge of the rotary disc.
[0024] Compared with the prior art, one of the above technical solutions has the following beneficial effects:
[0025] The present invention provides an additional recovery tooling for a cable reel, which is installed on a reel with a reeling function. A reeling groove can be introduced based on the existing reeling function of the reel. When a plurality of additional recovery tooling are installed around the reel, additional reeling capacity can be provided on the reel, so that a single driving source can drive a single reel to synchronously reel cables of various outer diameters, thereby solving the problem that the existing reeling wheel needs to prepare a plurality of rotating frames, which occupies too much construction area and requires more construction personnel. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a structural schematic diagram of one embodiment of a cable winding device;
[0027] Figure 2 It is a schematic diagram of the structure of one embodiment of the additional recovery tooling;
[0028] Figure 3 It is a schematic diagram of the exploded structure of one embodiment of the additional recovery tooling.
[0029] in:
[0030] Tool body 1, wheel fastener 2; disassembling screw 3; winding wheel 4; rotating frame 5;
[0031] Rolling groove 101, locking groove 102; clamping mouth 103;
[0032] External L-shaped member 11, internal L-shaped member 12; limit slot 13, limit block 14; wheel thread opening 15;
[0033] External vertical plate 111, external horizontal plate 112; external L-shaped groove 113; horizontal plate through hole 114;
[0034] Inner vertical plate 121, inner horizontal plate 122, inner L-shaped groove 123; horizontal plate threaded hole 124;
[0035] Wheel body 41 , wheel rotating disc 42 , driving shaft 43 ; clamping groove 44 ; clamping edge 441 . DETAILED DESCRIPTION
[0036] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention.
[0037] In the description of the present utility model, it is necessary to understand that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "left", "right", "front", "back", "vertical", "horizontal", "top", "bottom", "inside", "outside", "inner side", "outer side", "inner end", "outer end", "axial", "radial", "circumferential" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present utility model. In addition, the features defined as "first" and "second" may explicitly or implicitly include one or more of the features, which are used to distinguish and describe the features, without distinction of order or importance. In the description of the present utility model, unless otherwise specified, "multiple" means more than two.
[0038] like Figure 1-3 , an additional recovery tool for a cable reel, which is used to be installed around the reel 4, and the additional recovery tool comprises: a tool body 1 and a wheel fastener 2;
[0039] The tooling body 1 is provided with a winding groove 101 and a locking groove 102; the locking groove 102 is used to be clamped on the winding wheel 4; the wheel fastener 2 is movably adjusted to be limited in the locking groove 102; one end of the wheel fastener 2 extends into the locking groove 102 from one of the inner side walls of the locking groove 102, and forms a clamp 103 with the other opposite inner side wall of the locking groove 102; the clamp 103 has a clamping function and is used to clamp on the winding wheel 4.
[0040] The present solution provides an additional recovery tooling for a cable reel, which is installed on a reel 4 with a reeling function, and can introduce a reeling groove 101 based on the existing reeling function of the reel 4. When a plurality of additional recovery tooling are installed around the reel 4, additional reeling capacity can be added to the reel 4, so that a single driving source can drive a single reel 4 to synchronously reel in a plurality of cables with different outer diameters, thereby solving the problem that the existing reel 4 needs to prepare a plurality of rotating frames 5, which occupies too much construction area and requires more construction personnel.
[0041] After the reel 4 is lifted up, the bottom of the reel 4 is suspended in the air, and the reel 4 can be rotated relatively to the rotary frame 5; the locking groove 102 can be clamped on the reel 4, and the wheel fastener 2 can be driven to move, and the wheel fastener 2 extends from an inner wall of the locking groove 102 and moves toward the other opposite inner wall direction of the locking groove 102, and a clamping opening 103 is formed between one end of the wheel fastener 2 and the inner wall facing the end, that is, only after the reel 4 is set in the locking groove 102, one end of the wheel fastener 2 can be made to abut against the reel 4, so that the additional recovery tooling is fixed on the reel 4; because the reel 4 is already suspended in the air, only one staff member needs to be equipped on one side of the reel 4, and after installing an additional recovery tooling, the reel 4 is continuously rotated, and the vacant part of the reel 4 is transferred to the position of the staff member, and then the additional recovery tooling is installed at the vacant position; in this way, after the reel 4 rotates one circle, the additional recovery tooling can be installed around the reel 4. When multiple additional recycling tools are located on the same rotation plane of the winding wheel 4, the winding groove 101 can be located on the same plane. In addition to being able to wind up cables of larger sizes, the rotation of the winding wheel 4 can also wind up other cables of smaller sizes through multiple winding grooves 101. Therefore, the present solution can wind up different cables separately on the same winding wheel 4 without the need to prepare more winding wheels 4, thereby eliminating more rotating racks 5, avoiding the situation where multiple rotating racks 5 occupy too much public space, and saving more human resources.
[0042] Optimally, the tooling body 1 comprises: an outer L-shaped member 11 and an inner L-shaped member 12;
[0043] The outer L-shaped member 11 is provided with an outer vertical plate 111 and an outer horizontal plate 112 which are perpendicular to each other, and an outer L-shaped groove 113 is formed between the outer vertical plate 111 and the outer horizontal plate 112;
[0044] The inner L-shaped member 12 is provided with an inner vertical plate 121 and an inner horizontal plate 122 which are perpendicular to each other, and an inner L-shaped groove 123 is formed between the inner vertical plate 121 and the inner horizontal plate 122;
[0045] One end of the inner transverse plate 122 is connected to the outer vertical plate 111, and the winding groove 101 is formed between the inner L-shaped groove 123 and the outer vertical plate 111; the locking groove 102 is formed between the outer vertical plate 111, the outer transverse plate 112 and the inner transverse plate 122; the wheel fastener 2 is movably adjusted and limited to the outer transverse plate 112.
[0046] The present solution has a simple structure, and its tool body 1 can be mainly decomposed into two L-shaped structures, which are mainly divided into an outer L-shaped part 11 with a larger size and an inner L-shaped part 12 with a smaller size; the inner transverse plate 122 of the inner L-shaped part 12 is connected to the outer vertical plate 111 of the outer L-shaped part 11, and the inner L-shaped part 12 passes horizontally through the outer L-shaped groove 113, so that a winding groove 101 of the tool body 1 is formed between the outer vertical plate 111 and the inner L-shaped groove 123; at the same time, the outer vertical plate 111 forms a locking groove 102 with the outer transverse plate 112 and the inner transverse plate 122; in this way, the present solution can be assembled into the tool body 1 through two L-shaped structures, and the two are cleverly combined to form a winding groove 101 for winding up the cable and a locking groove 102 for fixing, which greatly reduces the manufacturing cost of the additional recovery tooling, thereby reducing the cost of winding.
[0047] Optimally, the plurality of wheel fasteners 2 are arranged in sequence along the depth direction of the locking groove 102 .
[0048] For some embodiments, only the end of the wheel fastener 2 can be pressed against the winding wheel 4, and the end of the wheel fastener 2 and the inner wall of the locking groove 102 can jointly clamp the winding wheel 4; and in the optimal embodiment, the number of wheel fasteners 2 can be multiple, and each wheel fastener 2 is arranged in sequence along the depth direction of the locking groove 102, so that multiple wheel fasteners 2 can be pressed against the winding wheel 4 at the same time, and the fixing ability of the winding wheel 4 is increased.
[0049] Optimally, one of the outer vertical plate 111 and the inner transverse plate 122 is provided with a limit slot 13, and the other is provided with a limit block 14; the limit block 14 is detachably connected to the limit slot 13 to connect the outer vertical plate 111 with the inner transverse plate 122.
[0050] In this solution, the outer vertical plate 111 and the inner horizontal plate 122 are preferably designed as detachable structures. Specifically, the outer vertical plate 111 can be provided with a limit card slot 13 (or a limit card block 14), and the inner horizontal plate 122 can be provided with a limit card block 14 (or a limit card slot 13). When it is necessary to assemble the tooling body 1, the limit card block 14 of the limit card block 14 can be installed in the limit card slot 13 of the outer vertical plate 111, so that the outer vertical plate 111 is connected to the inner horizontal plate 122. In this way, the assembly and disassembly of the tooling body 1 are convenient, and the tooling body 1 can be disassembled into two L-shaped structures. Two adjacent L-shaped structures can be stacked at the L-shaped groove, which is convenient for storage and transportation.
[0051] It can be optimized to further include: splitting the screw 3;
[0052] The outer transverse plate 112 is provided with a transverse plate through hole 114, and the inner transverse plate 122 is provided with a transverse plate threaded hole 124; the disassembly screw 3 passes through the transverse plate through hole 114 and is threadedly engaged with the transverse plate threaded hole 124, so that the limit block 14 is limited in the limit slot 13.
[0053] In this solution, the relative positions of the outer L-shaped member 11 and the inner L-shaped member 12 can be limited by disassembling the screw rod 3; specifically, the disassembling screw rod 3 freely passes through the transverse plate through hole 114 of the outer L-shaped member 11, and then is threadedly engaged with the transverse plate threaded hole 124 of the inner L-shaped member 12. Since the limiting slot 13 and the limiting block 14 are already mutually engaged, the disassembling screw rod 3 directly limits the inner transverse plate 122, so that the relative position of the inner transverse plate 122 and the outer vertical plate 111 can be fixed, thereby limiting the movement of the limiting block 14 along the length direction of the limiting slot 13, and the outer L-shaped member 11 and the inner L-shaped member 12 are connected as a whole.
[0054] Optimally, the limiting block 14 is a T-shaped block; and the limiting slot 13 is a T-shaped slot.
[0055] The limiting block 14 is a T-shaped block, and the limiting slot 13 is a T-shaped slot. The T-shaped structure allows the limiting block 14 and the limiting slot 13 to extend in different directions respectively, thereby increasing the contact area between the limiting block 14 and the limiting slot 13 in multiple directions and improving the fixing stability.
[0056] Optimally, the wheel fastener 2 is a screw; the tooling body 1 is provided with a wheel thread opening 15 on one of the inner side walls of the locking groove 102; one end of the wheel thread opening 15 is connected to the locking groove 102, and the other end of the wheel thread opening 15 is connected to the outside of the tooling body 1; the wheel fastener 2 is threadedly engaged with the wheel thread opening 15, and the wheel fastener 2 forms the clamp 103 at the end away from the wheel thread opening 15 and the other opposite inner side wall of the locking groove 102.
[0057] The wheel fastener 2 is preferably a screw, and the wheel fastener 2 is threadedly engaged with the wheel thread opening 15 of an inner wall of the locking groove 102 at the screw portion, and a clamping opening 103 is formed between one end of the screw portion at the wheel thread opening 15 and the other inner wall of the locking groove 102, and the screw will rest on the clamping edge 441 of the winding wheel 4 to fix the entire additional recovery tooling on the winding wheel 4.
[0058] A cable reeling device, comprising: a reel 4 and an additional recovery tooling for the cable reel mentioned above;
[0059] A plurality of the additional recovery tools are installed on the reel 4 and are distributed around the rotating shaft of the reel 4 .
[0060] This solution can be determined based on the actual shape of the reel 4, and the additional recovery tooling can be installed around the reel 4, as long as the additional recovery tooling is distributed around the rotational range of the reel 4 with the rotation axis of the reel 4 as the center; when the reel 4 rotates, the reel 4 itself can reel in the cable A, and at the same time, the rotation of the reel 4 drives the additional recovery tooling distributed around it to rotate synchronously, thereby reeling in the cable B through the reeling groove 101 of the additional recovery tooling; in this way, the additional recovery tooling of this solution can add additional reeling capacity to the reel 4, solving the problem that the existing reel 4 needs to prepare multiple rotating frames 5, which occupies too much construction area and requires more construction personnel.
[0061] Optimally, the winding wheel 4 comprises: a wheel body 41, a rotating disc 42 and a driving shaft 43;
[0062] The rotating disc 42 is installed at both ends of the wheel body 41, and the rotating disc 42 is connected to the wheel body 41 for synchronous rotation; the driving shaft 43 passes through the rotating disc 42, and the driving shaft 43 is connected to the rotating shaft of the wheel body 41;
[0063] A plurality of the additional recovery tools are installed around the rotary disk 42 , and the clamp 103 of each of the additional recovery tools is fixed to the rotary disk 42 .
[0064] The additional recovery tooling of the present scheme can be installed at any position of the winding wheel 4, and in the optimal embodiment, a rotating disk 42 is respectively provided at both ends of the wheel body 41, and the rotating disk 42 rotates synchronously with the wheel body 41; therefore, when a group of additional recovery tooling is installed on the rotating disk 42 on one side, a batch of cables can be reeled up on one side of the wheel body 41; therefore, a single winding wheel 4 can be installed with two rotating disks 42, and each rotating disk 42 can be installed with a group of additional recovery tooling, and each group of additional recovery tooling recycles one cable, that is, a single winding wheel 4 can reel up three cables at the same time, and a single driving source can be used to drive a single winding wheel 4 to rotate so as to synchronously reel up cables of multiple different outer diameters.
[0065] Optimally, the rotary disc 42 is provided with a plurality of clamping grooves 44 distributed around the driving shaft 43 as the center, and the clamping groove 44 is provided with a clamping edge 441 at the outer edge of the rotary disc 42; the clamping mouth 103 clamps the clamping edge 441, and the winding groove 101 is limited to the outer edge of the rotary disc 42.
[0066] like Figure 1The rotary disc 42 is provided with a plurality of clamping grooves 44, and the clamping grooves 44 are distributed around the driving shaft 43 as the center. Therefore, as long as the additional recovery tooling is installed in the clamping grooves 44, the additional recovery tooling can be installed on the winding wheel 4; and since the number of the clamping grooves 44 can be multiple, a plurality of additional recovery tools can be accommodated, so that the additional recovery tools are arranged along the outer edge of the rotary disc 42, so that the winding groove 101 is limited to the outer edge of the rotary disc 42. When the rotary disc 42 rotates with the wheel body 41, the winding grooves 101 distributed around it continuously reel in the cable, thereby limiting the cable to the same rotation plane.
[0067] Although the embodiments of the present invention have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.
Claims
1. An additional recovery tool for a cable reel, characterized in that: Used to be installed around the reel, the additional recovery tooling includes: a tooling body and a wheel fastener; The tooling body is provided with a winding groove and a locking groove; the locking groove is used to be clamped on the winding wheel; the wheel fastener is movably adjusted and limited in the locking groove; one end of the wheel fastener extends into the locking groove from one of the inner side walls of the locking groove, and forms a clamp with the other opposite inner side wall of the locking groove; the clamp has a clamping function and is used to clamp on the winding wheel.
2. The additional recovery tool for the cable reel according to claim 1, characterized in that: The tooling body comprises: an outer L-shaped part and an inner L-shaped part; The outer L-shaped member is provided with an outer vertical plate and an outer horizontal plate perpendicular to each other, and an outer L-shaped groove is formed between the outer vertical plate and the outer horizontal plate; The inner L-shaped member is provided with an inner vertical plate and an inner horizontal plate which are perpendicular to each other, and an inner L-shaped groove is formed between the inner vertical plate and the inner horizontal plate; One end of the inner transverse plate is connected to the outer vertical plate, and the winding groove is formed between the inner L-shaped groove and the outer vertical plate; the locking groove is formed between the outer vertical plate, the outer transverse plate and the inner transverse plate; the wheel fastener is movably adjusted and limited to the outer transverse plate.
3. The additional recovery tool for the cable reel according to claim 2, characterized in that: The plurality of wheel fasteners are arranged in sequence along the depth direction of the locking groove.
4. The additional recovery tool for the cable reel according to claim 3, characterized in that: One of the outer vertical plate and the inner horizontal plate is provided with a limit slot, and the other of the two is provided with a limit block; the limit block is detachably connected to the limit slot to connect the outer vertical plate with the inner horizontal plate.
5. The additional recovery tool for the cable reel according to claim 4, characterized in that: Also includes: Split screw; The outer transverse plate is provided with a transverse plate through hole, and the inner transverse plate is provided with a transverse plate threaded hole; the disassembly screw passes through the transverse plate through hole and is threadedly engaged with the transverse plate threaded hole, so that the limit block is limited in the limit slot.
6. The additional recovery tool for the cable reel according to claim 5, characterized in that: The limit card block is a T-shaped card block; the limit card slot is a T-shaped slot.
7. An additional recovery tool for a cable reel according to any one of claims 1 to 6, characterized in that: The wheel fastener is a screw; the tooling body is provided with a wheel thread opening on one of the inner side walls of the locking groove; one end of the wheel thread opening is connected to the locking groove, and the other end of the wheel thread opening is connected to the outside of the tooling body; the wheel fastener is threadedly engaged with the wheel thread opening, and the wheel fastener forms the clamp at the end away from the wheel thread opening and the other opposite inner side wall of the locking groove.
8. A cable winding device, characterized in that: include: A reel and an additional recovery tool for a cable reel as claimed in any one of claims 1 to 7; A plurality of the additional recovery tools are installed on the reel and are distributed around the rotating shaft of the reel.
9. A cable winding device according to claim 8, characterized in that: The winding wheel comprises: a wheel body, a wheel rotating disc and a driving shaft; The rotating disc is installed at both ends of the wheel body, and the rotating disc is connected to the wheel body for synchronous rotation; the driving shaft passes through the rotating disc, and the driving shaft is connected to the rotating shaft of the wheel body; A plurality of the additional recovery tools are installed around the rotary disk, and the clamp of each of the additional recovery tools is fixed to the rotary disk.
10. A cable winding device according to claim 9, characterized in that: The rotary disc is provided with a plurality of clamping grooves distributed around the driving shaft as the center, and the clamping groove is provided with a clamping edge at the outer edge of the rotary disc; the clamping mouth clamps the clamping edge, and the winding groove is limited to the outer edge of the rotary disc.