Aluminum alloy hoop for forging spliced cable
By designing the aluminum alloy hoop for spliced cable forging, and connecting the hinges and locking parts to form multiple cable cavity, the complex structure of the existing cable fixing device is solved, and the simplification and stability of cable position fixing operation is achieved.
Patent Information
- Application Number
- CN202422782982.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-11-15
AI Technical Summary
The existing cable fixing device has a complex structure, which requires multiple steps to fix the cable position, which increases the time for positioning and installation.
An aluminum alloy hoop for forging of spliced cables is designed, including a first hoop assembly and a second hoop assembly, which is fixed by a hinge connection and a locking member to form a plurality of cable cavity, which can flexibly adjust the opening diameter, so as to facilitate the placement and fixation of the cable.
The cable position fixing operation steps are simplified, the positioning and installation time is reduced, the structure is simple, the use is convenient, and the connection stability is improved.
Smart Images

Figure CN223194330U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of power facilities, and more particularly to an aluminum alloy clamp for splicing cable forging. Background Art
[0002] During the current cable laying process, in order to prevent the cables from shifting, forged clamps are often used to position the cables, which has the effect of fixing and protecting the cables. They are mainly made of aluminum alloy and have the characteristics of light weight, high strength and corrosion resistance.
[0003] Currently, when multiple cables are forged, multiple sets of clamps are required to fix the position of individual cables. Due to the complex structure of traditional cable fixing devices, multiple steps are required to limit the position of the cables, which makes the positioning and installation process inconvenient and increases the time required to fix the cable position. In view of this, we propose a spliced aluminum alloy clamp for cable forging. Utility Model Content
[0004] The purpose of the utility model is to overcome the shortcomings of the existing technology, adapt to actual needs, and provide a spliced cable forging aluminum alloy clamp to solve the technical problem that the current cable fixing device is often complex in structure, resulting in multiple steps required to limit the cable position, causing inconvenience in operation during positioning and installation, and increasing the time required to fix the cable position.
[0005] To solve the above technical problems, the present invention provides the following technical solutions: a spliced aluminum alloy clamp for cable forging, comprising a first clamp assembly and a second clamp assembly, wherein a hinge is fixedly connected between the right ends of the first clamp assembly and the second clamp assembly, and a locking member is installed at the left ends of the first clamp assembly and the second clamp assembly, and the distance between the first clamp assembly and the second clamp assembly from the hinge to the locking member forms three cable cavities of different sizes;
[0006] The first clamp assembly includes a first clamp A, a first clamp B and a first clamp C that are spliced together, and the second clamp assembly includes a second clamp A, a second clamp B and a second clamp C that correspond to the positions of the first clamp A, the first clamp B and the first clamp C in sequence;
[0007] The first clamp A and the second clamp A have a first splicing groove on the side opposite to the extended edge on the right side, and the first clamp B and the second clamp B have a splicing block combined with the first splicing groove on the opposite side of the two extended edges close to the first clamp A. The first clamp C and the second clamp C have a second splicing groove combined with the splicing block on the side opposite to the two extended edges close to the first clamp B.
[0008] The utility model can form multiple cable cavities by combining a first clamp assembly composed of a first clamp A, a first clamp B, and a first clamp C with a second clamp assembly composed of a second clamp A, a second clamp B, and a second clamp C. The opening diameter can be flexibly adjusted with the hinge connection, which is easy to place the cable. Then, under the connection of the locking piece, the side ends of the first clamp assembly and the second clamp assembly can be fixedly combined to achieve the effect of locking connection. Through such structural coordination, the steps of multiple cable fixing operations can be reduced, and the time required for cable position fixing is effectively reduced. The structural coordination is simple and easy to use.
[0009] Preferably, a through slot is provided on the top of the extended edge on the side facing each other of the first clamp A and the first clamp C, a positioning slot corresponding to the position of the through slot is provided on the top of the splicing block, and a plug-in plate passing through the through slot and combining with the positioning slot is fixed on the bottom of the extended edge on the side facing each other of the second clamp A and the second clamp C.
[0010] Preferably, the locking member includes a U-shaped clip, and diamond-shaped clip strips are fixed on the facing sides of the U-shaped clip, and the sides opposite to the left extension edges of the first clamp A and the second clamp A are provided with diamond-shaped clip grooves combined with the diamond-shaped clip strips.
[0011] Preferably, a support block inserted between the extended edges of the first and second clamps A is fixed on the vertical side of the U-shaped clamp, and elastic pads fitted with the two extended edges are fixed on the upper and lower sides of the support block.
[0012] Preferably, the opposite sides of both ends of the U-shaped clamp are both set to arc chamfers, and the angles formed by the arc chamfers on both sides and the extended edges of the first clamp A and the second clamp A are acute angles.
[0013] Preferably, the inclined sides of the diamond-shaped clip are inclined toward the front side of the U-shaped clip, and the corners of the U-shaped clip are made of elastic material.
[0014] Compared with the prior art, the beneficial effects of the present invention are:
[0015] 1. The utility model can form multiple cable cavities by combining the first clamp assembly composed of the first clamp A, the first clamp B, and the first clamp C with the second clamp assembly composed of the second clamp A, the second clamp B, and the second clamp C. The hinge connection can flexibly adjust the opening diameter, which is easy to place the cable. Then, under the connection of the locking piece, the side ends of the first clamp assembly and the second clamp assembly can be fixedly combined to achieve the effect of locking connection. Through such structural coordination, the steps of multiple cable fixing operations can be reduced, and the time required for cable position fixing is effectively reduced. The structural coordination is simple and easy to use.
[0016] 2. The utility model can also assemble the first clamp A, the first clamp B, the first clamp C or the second clamp A, the second clamp B, the second clamp C together through the cooperation of the first splicing groove, the splicing block and the second splicing groove. The sliding clamping method is easy to assemble, and the plug-in plate is inserted through the through groove and inserted into the limit in the clamping groove to fix the position of the combination, so that the combined first clamp assembly remains stably connected. Such structural cooperation can reduce the difficulty of connection operation between structures, enhance splicing strength, and improve structural cooperation effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0018] Figure 2 This is a schematic diagram of the split structure of the utility model;
[0019] Figure 3 This is a schematic structural diagram of the locking member in the present utility model;
[0020] Figure 4 This is a schematic diagram of the front structure of the utility model;
[0021] Figure 5 It is a schematic diagram of the partial structure of the utility model;
[0022] Figure 6 for Figure 2 Schematic diagram of the enlarged structure of part A;
[0023] Figure 7 This is a schematic diagram of a usage state of the utility model.
[0024] Explanation of the numbers in the figure: 1. First clamp assembly; 2. Second clamp assembly; 3. Hinge; 4. Locking piece; 401. U-shaped clip; 402. Diamond clip; 403. Support block; 404. Elastic pad; 405. Arc chamfer; 5. First clamp A; 6. First clamp B; 7. First clamp C; 8. Second clamp A; 9. Second clamp B; 10. Second clamp C; 11. First splicing groove; 12. Splicing block; 13. Second splicing groove; 14. Through groove; 15. Positioning groove; 16. Insert plate; 17. Diamond clip. DETAILED DESCRIPTION
[0025] like Figures 1 to 7As shown, the utility model relates to a spliced aluminum alloy clamp for cable forging, comprising a first clamp assembly 1 and a second clamp assembly 2, a hinge 3 fixedly connected between the right ends of the first clamp assembly 1 and the second clamp assembly 2, a locking piece 4 installed at the left ends of the first clamp assembly 1 and the second clamp assembly 2, and three cable cavities of different sizes are formed between the first clamp assembly 1 and the second clamp assembly 2 from the hinge 3 to the locking piece 4; the first clamp assembly 1 and the second clamp assembly 2 are made of aluminum alloy, which has the advantages of light weight and corrosion resistance, and can be used stably for a long time in a humid or corrosive environment. The first clamp assembly 1 and the second clamp assembly 2 are connected by the hinge 3, which can be conveniently flipped to adjust the opening angle, which is convenient for placing cables. The opening size can be fixed by cooperating with the locking piece 4 to limit the position, thereby fixing the positions of multiple cables.
[0026] The first clamp assembly 1 includes a first clamp A5, a first clamp B6 and a first clamp C7 that are spliced together, and the second clamp assembly 2 includes a second clamp A8, a second clamp B9 and a second clamp C10 that correspond to the positions of the first clamp A5, the first clamp B6 and the first clamp C7 in sequence; the first clamp A5 and the first clamp C7, the first clamp B6 and the second clamp B9, the second clamp A8 and the second clamp C10 have the same shape.
[0027] The first clamp A5 and the second clamp A8 have a first splicing groove 11 formed on the side opposite to the extended edge on the right side, and the first clamp B6 and the second clamp B9 have a splicing block 12 integrally formed on the two extended edges facing each other on the side close to the first clamp A5, and the first clamp C7 and the second clamp C10 have a second splicing groove 13 combined with the splicing block 12 formed on the side opposite to the extended edge on the side close to the first clamp B6; the opening of the first splicing groove 11 and the second splicing groove 13 can facilitate the insertion of the splicing block 12, thereby completing the connected assembly operation and achieving the effect of integrated connection.
[0028] In an embodiment of the present utility model, a through groove 14 is provided at the top of the extended edge on the opposite side of the first clamp A5 and the first clamp C7, a retaining groove 15 corresponding to the position of the through groove 14 is provided at the top of the splicing block 12, and an inserting plate 16 passing through the through groove 14 and combined with the retaining groove 15 is fixed at the bottom of the extended edge on the opposite side of the second clamp A8 and the second clamp C10; the through groove 14 and the retaining groove 15 allow the inserting plate 16 to be inserted therein when the second clamp assembly 2 moves downward, thereby achieving the effect of fixing the connection position and further improving the stability of the connection position.
[0029] In an embodiment of the present utility model, the locking member 4 includes a U-shaped clip 401, and a diamond-shaped clip strip 402 is fixed on the facing sides of the U-shaped clip 401, and the sides opposite to the left extended edges of the first clamp A5 and the second clamp A8 are provided with a diamond-shaped clip groove 17 combined with the diamond-shaped clip strip 402; through the setting of the U-shaped clip 401, the two ends of the first clamp A5 and the second clamp A8 can be limited, and the combination of the diamond-shaped clip strip 402 and the diamond-shaped clip groove 17 can limit the position of the U-shaped clip 401, thereby maintaining the stability of the side end limitation of the first clamp A5 and the second clamp A8.
[0030] In an embodiment of the present utility model, a support block 403 is fixedly provided on the vertical side of the U-shaped clamp 401 and inserted between the extended edges of the first clamp A5 and the second clamp A8, and elastic pads 404 are fixedly provided on the upper and lower sides of the support block 403 and fit with the two extended edges; the design of the support block 403 and the elastic pad 404 can support the size of the opening between the side ends of the first clamp A5 and the second clamp A8, thereby enhancing the stability of the position setting of the U-shaped clamp 401. At the same time, due to the elastic effect of the elastic pad 404, a gap can be reserved for squeezing and moving at both ends when disassembling the U-shaped clamp 401, thereby reducing the difficulty of disassembling the U-shaped clamp 401.
[0031] In an embodiment of the present utility model, the opposite sides of the two ends of the U-shaped clamp 401 are set to arc chamfers 405, and the angles formed by the arc chamfers 405 on both sides and the extended edges of the first clamp A5 and the second clamp A8 are acute angles; the design of the arc chamfers 405 can increase the support points for flipping the two sides of the U-shaped clamp 401, making it easy to lift the two ends of the U-shaped clamp 401 upward, so that the diamond-shaped clamping strip 402 can be separated from the diamond-shaped clamping slot 17, and the limit is released.
[0032] In an embodiment of the present invention, the inclined edge of the diamond-shaped clip 402 is inclined toward the front side of the U-shaped clip 401, and the material at the corner of the U-shaped clip 401 is elastic material; tilting to this side can reduce the resistance to movement during installation, and the design of the elastic material can deform when squeezed, making it easier for the diamond-shaped clip 402 to be combined or separated with the diamond-shaped slot 17.
[0033] Working principle: This embodiment provides a spliced aluminum alloy clamp for cable forging. When in use, first insert the splicing blocks 12 on the extended edges on both sides of the first clamp B6 into the first splicing groove 11 and the second splicing groove 13 on the extended edges of the first clamp A5 and the first clamp C7, respectively, so as to assemble the three into a first clamp assembly 1. Then, the second clamp A8, the second clamp B9, and the second clamp C10 can be assembled into a second clamp assembly 2 in the same way. After completion, the opening angle can be adjusted by the hinge 3 structure connected between the first clamp C7 and the second clamp C10, so that three cable cavities can be formed, which is convenient for The positions of multiple cables are fixed separately. After the cables are placed, the first clamp assembly 1 and the second clamp assembly 2 can be merged, and then the locking member 4 is inserted into the side position to limit the opening. The U-shaped clamp 401 drives the diamond clamping strip 402 to move and enter the interior of the diamond clamping groove 17, so that the U-shaped clamp 401 can be fixed on the outside of the side ends of the first clamp A5 and the second clamp A8 to fix the positions of the two, thereby completing the cable fixing work. The overall structural coordination can effectively reduce the operating steps of fixing the positions of multiple cables, effectively reducing the operation time, and the structural coordination is simple and easy to use.
[0034] The embodiments disclosed in the present invention are preferred embodiments, but are not limited to them. Ordinary technicians in this field can easily understand the spirit of the present invention based on the above embodiments and make different extensions and changes. As long as they do not deviate from the spirit of the present invention, they are all within the scope of protection of the present invention.
Claims
1. A spliced cable forging aluminum alloy clamp, characterized in that: The invention comprises a first clamp assembly (1) and a second clamp assembly (2), wherein a hinge (3) is fixedly connected between the right ends of the first clamp assembly (1) and the second clamp assembly (2), a locking member (4) is installed at the left ends of the first clamp assembly (1) and the second clamp assembly (2), and three cable cavities of different sizes are formed between the first clamp assembly (1) and the second clamp assembly (2) in the distance from the hinge (3) to the locking member (4); The first clamp assembly (1) comprises a first clamp A (5), a first clamp B (6) and a first clamp C (7) which are spliced together, and the second clamp assembly (2) comprises a second clamp A (8), a second clamp B (9) and a second clamp C (10) which correspond to the positions of the first clamp A (5), the first clamp B (6) and the first clamp C (7) in sequence; The first clamp A (5) and the second clamp A (8) are provided with a first splicing groove (11) on the side opposite to the extending edge on the right side. The first clamp B (6) and the second clamp B (9) are provided with a splicing block (12) integrally formed on the two extending edges facing each other on the side close to the first clamp A (5). The first clamp C (7) and the second clamp C (10) are provided with a second splicing groove (13) on the side opposite to the extending edge on the side close to the first clamp B (6).
2. The aluminum alloy clamp for spliced cable forging according to claim 1, characterized in that: A through slot (14) is provided through the top of the extended edge on the side facing the first clamp A (5) and the first clamp C (7), a locking slot (15) corresponding to the position of the through slot (14) is provided on the top of the splicing block (12), and a plug plate (16) is fixedly provided on the bottom of the extended edge on the side facing the second clamp A (8) and the second clamp C (10), which passes through the through slot (14) and is connected to the locking slot (15).
3. The aluminum alloy clamp for splicing cable forging according to claim 1, characterized in that: The locking member (4) comprises a U-shaped clamping member (401), and diamond-shaped clamping strips (402) are fixedly provided on the facing sides of the U-shaped clamping member (401), and diamond-shaped clamping grooves (17) are provided on the sides of the first clamping hoop (5) and the second clamping hoop (8) that are away from the left extending edges and are combined with the diamond-shaped clamping strips (402).
4. The aluminum alloy clamp for spliced cable forging according to claim 3, characterized in that: A support block (403) is fixedly provided on the vertical side of the U-shaped clamp (401) and is inserted between the extension edges of the first clamp A (5) and the second clamp A (8). Elastic pads (404) are fixedly provided on the upper and lower sides of the support block (403) and are in contact with the two extension edges.
5. The aluminum alloy clamp for splicing cable forging according to claim 3, characterized in that: The opposite sides of both ends of the U-shaped clamp (401) are both provided with arc chamfers (405), and the included angles formed between the arc chamfers (405) on both sides and the extended edges of the first clamp A (5) and the second clamp A (8) are acute angles.
6. The aluminum alloy clamp for splicing cable forging according to claim 3, characterized in that: The inclined edge of the diamond-shaped clamping strip (402) is inclined toward the front side of the U-shaped clamping piece (401), and the material at the corners of the U-shaped clamping piece (401) is elastic material.