Wire coiling and placing device with adjustable radius

By designing a disc wire-setting device with adjustable radius, the problem of low efficiency and easy damage in underwater navigation body detection is solved, and efficient, safe and beautiful cable management and storage is achieved.

CN120057677APending Publication Date: 2025-05-30KUNMING SHIP EQUIPMENT RESEARCH & TESTING CENTER (CHINA SHIPBUILDING CORP 750 TEST SITE)
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Patent Information

Application Number
CN202311691283.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-11
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

During the comprehensive function detection process of underwater navigation bodies, the cables are inefficient in wire collection and collection due to different materials, different lengths, and lack of special coil devices, resulting in low efficiency of wire collection and collection, and inconvenient storage, which affects the detection efficiency and cable life.

Method used

Design a disc wire-setting device with adjustable radius, including a mobile base, a bow bracket, an adjustable radius winding disc, a snap structure and a winding disc radius locking structure. These components enable flexible adjustment and fixation of the cables, avoid twisting and deformation, and provide a convenient storage method.

Benefits of technology

It improves the operator's wire collection and collection efficiency, reduces the risk of cable damage, realizes neat and beautiful storage of cables, simplifies the movement and installation process, and is suitable for cables of different types and sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a wire coiling and placing device with an adjustable radius. The device comprises a movable base (1); the support (2) is connected to the upper portion of the movable base (1), and a plurality of connecting platforms (21) used for being connected with the radius-adjustable wire spools (3) are arranged on the support (2); a radius-adjustable wire spool (3), wherein the radius-adjustable wire spool (3) is detachably connected to the connecting platform (21); the buckle structure (4) is detachably connected to the wire spool (3) with the adjustable radius; and the wire spool radius locking structure (5) is detachably connected to the bottom of the radius-adjustable wire spool (3). The device is convenient to use, safe and reliable, and the wire taking and winding efficiency of operators can be effectively improved; and meanwhile, the coiling radius can be freely adjusted according to the thickness of the cable, and the twisting deformation problem caused by manual coiling can be effectively solved.
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Description

Technical Field

[0001] The present invention relates to a wire coiling and placing device, specifically a wire coiling and placing device with adjustable radius, mainly used for uniformly arranging various cables required during the assembly, adjustment and detection of an underwater vehicle or the comprehensive function detection of an underwater vehicle, belonging to the technical field of auxiliary wire coiling and placing tooling for the assembly, adjustment and detection or function detection of an underwater vehicle. Background Art

[0002] Generally, during the comprehensive function detection of an underwater vehicle, since the outer shell materials of several cables are different (such as nylon braided, stainless steel, PVC, PE, etc.), the lengths are different and the diameters are between 3 mm and 40 mm, the cables need to be taken out from the wire reel box placed on the ground of the rear panel and unfolded and connected to the corresponding detection equipment to carry out relevant detections. After the detection, the several cables also need to be removed from the corresponding detection equipment and manually coiled and recycled into the wire reel box. Since there is no dedicated wire coiling and placing device for this wire taking and recycling operation, the following problems exist during the wire taking and recycling process:

[0003] (1) Due to the limited internal volume of the wire reel box and no area division, all the cables will inevitably be stacked together, resulting in entanglement with each other when taking the wires, which takes time to arrange the wires, with low work efficiency, and there is also a risk of cable damage caused by pulling.

[0004] (2) Due to the practical factor of facilitating the access to the cables at any time, for each cable, only the parts that are not often used are coiled and tied according to their lengths, while the parts that need to be unfolded and used at any time are only coiled and placed. Although it is slightly better than the situation of no tying at all, there is still a problem of entanglement with each other when taking the wires.

[0005] (3) Due to different wire coiling habits of different operators, the cables are very likely to produce certain torsional deformation during the recycling process. Over time, it will affect the smoothness of the cables during recycling and coiling, and in severe cases, it may even cause damage to the internal structure of the cables.

[0006] (4) Since both wire taking and recycling are pure manual operations without any auxiliary devices, there is a risk of deformation of the plugs at the free ends of the cables due to accidental dropping.

[0007] (5) Since the wire reel box only has a loading function, when the detection table needs to be moved to other locations, the entire wire reel box can only be lifted and placed on the top of the detection table to move together with the detection table. However, since the cables in the wire reel box are heavy and the reserved wire length at the fixed end of the cables is limited from the wire reel box, during the process of lifting from the ground and placing it on the top of the detection table, 2 people are required to cooperate to avoid damage to the cables caused by insufficient reserved wire length and being pulled, and to prevent the wire reel box from accidentally falling.

[0008] (6) Since some of the cable coils are relatively heavy after being coiled, some special cables can only be stored separately to prevent them from being crushed. However, this increases the storage area and fails to meet the requirements of tidiness and beauty. In short, it is often very inconvenient.

[0009] Therefore, developing a safe, reliable and easy-to-use cable coiling and placing bow-shaped frame device is the key to solving the above technical problems. Summary of the Invention

[0010] In view of the many defects and deficiencies in the above-mentioned background technology, the present invention has been improved and innovated. The purpose is to provide a cable coiling and placing device that is easy to use, safe and reliable, and can effectively improve the efficiency of cable taking and winding by operators.

[0011] Another object of the present invention is to be able to freely adjust the coiling radius according to the thickness of the cable and effectively solve the problem of twisting and deformation caused by manual cable coiling.

[0012] To solve the above problems and achieve the above object of the invention, an adjustable-radius cable coiling and placing device of the present invention is realized by adopting the following design structure and the following technical solutions:

[0013] As an improvement of an adjustable-radius cable coiling and placing device of the present invention, it includes:

[0014] A moving base (1);

[0015] A bracket (2), the bracket (2) is connected above the moving base (1), and several connecting platforms (21) for connecting a radius-adjustable winding disc (3) are provided on the bracket (2);

[0016] A radius-adjustable winding disc (3), the radius-adjustable winding disc (3) is detachably connected to the connecting platform (21);

[0017] A buckle structure (4), the buckle structure (4) is detachably connected to the radius-adjustable winding disc (3);

[0018] A winding disc radius locking structure (5), the winding disc radius locking structure (5) is detachably connected to the bottom of the radius-adjustable winding disc (3).

[0019] As an improvement of the above of the present invention, the radius-adjustable winding disc (3) includes:

[0020] An upper end plate (31) of the winding disc, several upper end plate sliding holes (311) are circumferentially and throughly opened on the upper end plate (31) of the winding disc;

[0021] A lower end plate (32) of the winding disc, a hole is throughly opened in the middle of the lower end plate (32) of the winding disc;

[0022] A radius-adjustable winding disc body (33), the radius-adjustable winding disc body (33) is connected to the middle hole of the lower end plate (32) of the winding disc;

[0023] A connecting column (34), one end of the connecting column (34) is connected to the upper end plate (31) of the winding disc, and the other end of the connecting column (34) is connected to the upper surface of the radius-adjustable winding disc body (33);

[0024] A limiting column (35), the limiting columns (35) are symmetrically connected to both sides of the bottom end of the lower end plate (32) of the winding disc.

[0025] As a further improvement of the above of the present invention, the radius-adjustable winding disc body (33) includes:

[0026] A winding disc housing (331), a plurality of winding disc housing sliding holes (3311) are circumferentially and throughly opened on the end cover of the winding disc housing (331), and a plurality of winding link sliding holes (3312) are circumferentially and throughly opened on the side wall of the winding disc housing (331);

[0027] A winding disc shell cover (332), the winding disc shell cover (332) is rotatably connected to the opening end of the winding disc housing (331), and a plurality of arc-shaped connection holes (3321) are throughly opened on the winding disc shell cover (332);

[0028] A winding link (333), one side end of the winding link (333) is correspondingly connected to the winding disc housing sliding hole (3311) and the arc-shaped connection hole (3321), and the other side end of the winding link (333) is correspondingly connected to the upper end plate sliding hole (311);

[0029] Wherein, a snap connection threaded hole for connecting the snap structure (4) is also opened on the lower end plate (32) of the winding disc; a locking structure threaded connection hole (3322) for connecting the winding disc radius locking structure (5) is also opened at the bottom end of the winding disc shell cover (332).

[0030] As a further improvement of the above of the present invention, the winding disc housing (331) is integrally in a columnar structure with one end closed and hollow inside, and a recess for placing the snap structure (4) is also inwardly opened on one side of the winding disc housing (331);

[0031] The winding link (333) includes:

[0032] A first vertical short rod, one end of the first vertical short rod is slidably connected in the winding disc housing sliding hole (3311), and the other end of the first vertical short rod is slidably connected in the corresponding arc-shaped connection hole (3321);

[0033] A second vertical long rod, the upper end of the second vertical long rod is connected in the corresponding upper end plate sliding hole (311);

[0034] The transverse connecting rod, one end of the transverse connecting rod is vertically connected to the middle part of the first vertical short rod, and the other end of the transverse connecting rod passes through the wire winding connecting rod sliding hole (3312) and is vertically connected to the lower end of the second vertical long rod;

[0035] Among them, a through hole is also penetrated and opened in the middle of the wire winding disc cover (332).

[0036] As a further improvement of the present invention described above, the mobile base (1) includes:

[0037] The mounting frame (11), the mounting frame (11) is integrally in a square frame structure;

[0038] The moving device (12), the moving device (12) is connected to the four corners of the bottom of the mounting frame (11);

[0039] Among them, a braking device is also provided on the moving device (12) to cooperate with it to complete the work.

[0040] As a further improvement of the present invention described above, the bracket (2) is integrally in a "bow" shape or an intersecting "bow" shape structure, and at least one reinforcing rod (7) is also connected to one side of the bracket (2).

[0041] As a further improvement of the present invention described above, at least one connecting platform (21) is provided on each layer of the bracket (2), two positioning holes (22) are penetrated and opened on the connecting platform (21), and an installation hole (23) for installing a radius-adjustable wire winding disc (3) is also penetrated and opened between the two positioning holes (22).

[0042] As a further improvement of the present invention described above, the buckle structure (4) includes:

[0043] The buckle base (41), the buckle base (41) is connected to the buckle connection threaded hole on the lower end plate (32) of the wire winding disc through a fastener;

[0044] The clamping member (42), the clamping member (42) is clamped above the buckle base (41);

[0045] The cover plate (43), the cover plate (43) is connected to the opening of the buckle base (41) to limit the clamping member (42) within the buckle base (41);

[0046] The adjusting member (44), one end of the adjusting member (44) passes through the middle of the cover plate (43) and is connected to the clamping member (42), and the other end of the adjusting member (44) is threadedly connected to the cover plate (43);

[0047] Among them, the buckle structure (4) is used to connect the end of the cable (6).

[0048] As a further improvement of the above of the present invention, the snap base (41) is integrally in a V-shaped structure, and counterbores are throughly opened at both ends of the snap base (41);

[0049] The clamping member (42) is integrally in a V-shaped structure, and grooves adapted to be snap-connected to the snap base (41) are opened in the middle of both ends of the clamping member (42);

[0050] The cover plate (43) is detachably mounted above the opening of the snap base (41) through a fastener, and a threaded hole adapted to the screw rod is throughly opened in the middle of the cover plate (43);

[0051] The adjusting member (44) includes a screw rod and an adjusting nut fixed to one end of the screw rod.

[0052] As a further improvement of the above of the present invention, the radius locking structure (5) of the winding disc includes:

[0053] A connecting piece (51);

[0054] A handle (52), the middle and lower part of the handle (52) is connected to one end of the connecting piece (51), and the bottom of the handle (52) is threadedly connected to the threaded connection hole (3321) of the locking structure;

[0055] A locking member (53), the locking member (53) is threadedly connected to the other end of the connecting piece (51);

[0056] Wherein, an anti-slip pad is further connected to the top end of the locking member (53).

[0057] The working principle is:

[0058] During work, before using the detection table, the operator removes the detachable radius-adjustable winding disc (3) from the bow-shaped bracket (2) as needed, rolls out the cable (6) of the radius-adjustable winding disc (3), loosens the adjusting member (44) to take out the plug at the movable end of the cable (6), connects the cable plug to the device to be detected of the existing structure, and turns on the detection table to perform relevant detections to complete the taking operation of each cable (6);

[0059] After the detection is completed, the operator removes the cable plug from the device to be detected, fixes the plug at the movable end through the snap structure (4), rolls up the cable (6) of the radius-adjustable winding disc (3), and finally puts the radius-adjustable winding disc (3) back on the bow-shaped bracket (2), and fixes it through the two stainless steel limit posts (35) at the bottom of the lower end plate (32) of the winding disc to complete the retraction operation of each cable (6).

[0060] In the present invention, the device to be detected is used in an underwater vehicle or other corresponding equipment occasions that need to connect cables or wires to be used.

[0061] The beneficial effects of the present invention compared with the prior art are as follows:

[0062] 1. The present invention can effectively improve the efficiency of the operator in taking and winding the wire, as well as the neatness, beauty, safety and reliability during the process of taking and winding the wire;

[0063] 2. The present invention can effectively solve the problem that due to different wire coiling habits of different operators, the wire is twisted and deformed, which affects the smoothness of wire coiling, and even seriously damages the internal structure of the wire when it is severe;

[0064] 3. The present invention can avoid the risk that the plug at the free end of the wire may be deformed due to accidental dropping during pure manual operation without auxiliary devices;

[0065] 4. The present invention can avoid the risk that the wire is damaged by being pulled when moving together with the detection table due to insufficient length of the reserved wire. At the same time, it does not require two people to cooperate in handling, saving time and effort;

[0066] 5. The present invention adopts an arch-shaped frame support structure, which can provide a separate placement space for each wire, avoiding the risk of wire stacking and damage;

[0067] 6. The present invention adopts an arch-shaped frame support structure. On the premise of meeting the structural rigidity, a reinforcing rod is connected to one side of the support for reinforcement. There is no obstruction in the front and back, which can effectively solve the problem of the wire passing through the inside of the arch-shaped support. Moreover, it has the advantages of beautiful external structure, material saving, small floor area, beauty and neatness;

[0068] 7. The radius-adjustable wire winding disc of the present invention adopts a mechanical expansion structure, and the operator can freely adjust the wire coiling radius according to the thickness of the wire, and can also effectively solve the problem of twisting and deformation caused by manual wire coiling;

[0069] 8. The buckle structure of the present invention adopts a connecting thread pair structure, which can adapt to the thickness of the wire by adjusting the radius of the clamping member and the buckle base, fix the plug at the movable end of the wire on the lower end plate of the winding disc, and play a protective role;

[0070] 9. The present invention adopts a universal wheel moving base, which is convenient to move, and only one person is required to operate during the moving process, saving manpower. BRIEF DESCRIPTION OF THE DRAWINGS

[0071] The following further details the specific embodiments of the present invention with reference to the drawings, wherein:

[0072] Figure 1 is one of the usage state diagrams of the present invention;

[0073] Figure 2 is the second usage state diagram of the present invention;

[0074] Figure 3 It is the third usage state diagram of the present invention;

[0075] Figure 4 It is the overall structural schematic diagram of the present invention;

[0076] Figure 5 It is the structural schematic diagram of the mobile base (1) component of the present invention;

[0077] Figure 6 It is the structural schematic diagram of the bracket (2) component of the present invention;

[0078] Figure 7 It is the schematic diagram of the connection relationship between the radius-adjustable wire reel (3) component and the buckle structure (4) component of the present invention;

[0079] Figure 8 It is the schematic diagram of the connection relationship between the radius-adjustable wire reel (3) component, the buckle structure (4) component and the wire reel radius locking structure (5) component of the present invention;

[0080] Figure 9 It is the partial plane schematic diagram of the present invention;

[0081] Figure 10 It is the present invention Figure 9 The partial enlarged view at position A;

[0082] Figure 11 It is one of the partial exploded structural schematic diagrams of the present invention;

[0083] Figure 12 It is one of the partial exploded structural schematic diagrams of the present invention;

[0084] Figure 13 It is the structural schematic diagram of the buckle structure (4) component of the present invention;

[0085] Among them, the reference numerals in the figure: 1 - mobile base, 11 - mounting bracket, 12 - moving device;

[0086] 2 - bracket, 21 - connecting platform, 22 - positioning hole, 23 - mounting hole;

[0087] 3 - radius-adjustable wire reel, 31 - upper end plate of wire reel, 32 - lower end plate of wire reel, 33 - radius-adjustable wire reel body, 34 - connecting column, 35 - limiting column, 311 - upper end plate sliding hole, 331 - wire reel housing, 332 - wire reel housing cover, 333 - wire winding link, 3311 - wire reel housing sliding hole, 3312 - wire winding link sliding hole, 3321 - arc-shaped connecting hole, 3322 - locking structure threaded connection hole;

[0088] 4 - buckle structure, 41 - buckle base, 42 - clamping member, 43 - cover plate, 44 - adjusting member;

[0089] 5 - Winding disk radius locking structure, 51 - Connecting piece, 52 - Handle, 53 - Locking piece;

[0090] 6 - Cable;

[0091] 7 - Reinforcing rod;

[0092] 8 - Detection device. Detailed implementation mode

[0093] The technical solutions of the present invention will be further described in detail below in conjunction with the accompanying drawings and specific implementation modes. It should be noted that, without conflict, the embodiments in this application and the features in the embodiments can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and embodiments.

[0094] As shown in the specification appendix Figure 1 To the specification appendix Figure 13 A wire coiling and placing device with adjustable radius shown, comprising:

[0095] Moving base 1;

[0096] Bracket 2, the bracket 2 is connected above the moving base 1, and several connecting platforms 21 for connecting the radius-adjustable winding disk 3 are provided on the bracket 2;

[0097] Radius-adjustable winding disk 3, the radius-adjustable winding disk 3 is detachably connected to the connecting platform 21;

[0098] Snap structure 4, the snap structure 4 is detachably connected to the radius-adjustable winding disk 3;

[0099] Winding disk radius locking structure 5, the winding disk radius locking structure 5 is detachably connected to the bottom of the radius-adjustable winding disk 3.

[0100] In the present invention, the winding disk radius locking structure 5 is used to lock the adjusted or determined radius of the radius-adjustable winding disk 3, so that the radius of the radius-adjustable winding disk 3 does not change easily, meeting the winding requirements.

[0101] Furthermore, as Figure 7 And Figure 8 Shown, the radius-adjustable winding disk 3 includes:

[0102] Winding disk upper end plate 31, several upper end plate sliding holes 311 are circumferentially and throughly opened on the winding disk upper end plate 31;

[0103] Winding disk lower end plate 32, a hole is throughly opened in the middle of the winding disk lower end plate 32;

[0104] Radius-adjustable winding disk body 33, the radius-adjustable winding disk body 33 is connected to the hole in the middle of the winding disk lower end plate 32;

[0105] Connecting column 34, one end of the connecting column 34 is connected to the upper end plate 31 of the winding disc, and the other end of the connecting column 34 is connected to the upper surface of the radius-adjustable winding disc body 33;

[0106] Limit column 35, the limit columns 35 are symmetrically connected to both sides of the bottom end of the lower end plate 32 of the winding disc.

[0107] In the present invention, the upper end plate 31 of the winding disc is integrally in a circular plate-like structure; the lower end plate 32 of the winding disc is integrally in a circular plate-like structure; there are several connecting columns 34; the limit column 35 is integrally in a conical shape.

[0108] Further, as Figures 10 to 12 shown, the radius-adjustable winding disc body 33 includes:

[0109] Winding disc housing 331, a plurality of winding disc housing sliding holes 3311 are circumferentially and penetratingly formed in the end cover of the winding disc housing 331, and a plurality of winding link sliding holes 3312 are circumferentially and penetratingly formed in the side wall of the winding disc housing 331;

[0110] Winding disc cover 332, the winding disc cover 332 is rotatably connected to the opening end of the winding disc housing 331, and a plurality of arc-shaped connection holes 3321 are penetratingly formed in the winding disc cover 332;

[0111] Winding link 333, one side end of the winding link 333 is correspondingly connected to the winding disc housing sliding hole 3311 and the arc-shaped connection hole 3321, and the other side end of the winding link 333 is correspondingly connected to the upper end plate sliding hole 311;

[0112] Among them, a snap connection threaded hole for connecting the snap structure 4 is further formed on the lower end plate 32 of the winding disc; a locking structure threaded connection hole 3322 for connecting the winding disc radius locking structure 5 is further formed at the bottom end of the winding disc cover 332.

[0113] In the present invention, the winding link sliding hole 3312 is arranged directly below the corresponding winding disc housing sliding hole 3311; both the upper end plate sliding hole 311 and the winding disc housing sliding hole 3311 are oblong holes.

[0114] Further, as Figure 12 shown, the winding disc housing 331 is integrally in a columnar structure with one end closed and internally hollow, and a recess for placing the snap structure 4 is further formed inward on one side of the winding disc housing 331;

[0115] The winding link 333 includes:

[0116] The first vertical short rod, one end of the first vertical short rod is slidably connected in the winding disc housing sliding hole 3311, and the other end of the first vertical short rod is slidably connected in the corresponding arc-shaped connection hole 3321;

[0117] The second vertical long rod, the upper end of the second vertical long rod is connected in the corresponding upper end plate sliding hole 311;

[0118] The transverse connecting rod, one end of the transverse connecting rod is vertically connected to the middle of the first vertical short rod, and the other end of the transverse connecting rod passes through the winding connecting rod sliding hole 3312 and is vertically connected to the lower end of the second vertical long rod;

[0119] Wherein, a through hole is also formed through the middle of the winding disc cover 332.

[0120] In the present invention, an opening is also formed through the winding disc housing 331 on one side of the recessed portion.

[0121] Further, as Figure 5 shown, the moving base 1 includes:

[0122] The mounting frame 11, the mounting frame 11 is integrally in a square frame structure;

[0123] The moving device 12, the moving device 12 is connected to the four corners of the bottom of the mounting frame 11;

[0124] Wherein, a braking device is also provided on the moving device 12 to cooperate with it to complete the work.

[0125] In the present invention, the moving device 12 includes moving wheels and / or universal wheels, and the moving base 1 is formed by tightly connecting an aluminum profile square mounting frame 11 with 4 universal wheels.

[0126] Further, as Figure 6 shown, the bracket 2 is integrally in a "bow" shape or an intersecting "bow" shape structure, and at least one reinforcing rod 7 is also connected to one side of the bracket 2.

[0127] Specifically, as Figure 6 shown, each layer of the bracket 2 is provided with at least one connecting platform 21, two positioning holes 22 are formed through the connecting platform 21, and an installation hole 23 for installing the radius-adjustable winding disc 3 is also formed through between the two positioning holes 22.

[0128] In the present invention, the installation hole 23 formed in the middle of the connecting platform 21 can accommodate the winding disc radius locking structure 5 in the normal use space of the radius-adjustable winding disc 3.

[0129] Further, as Figure 13 shown, the buckle structure 4 includes:

[0130] The buckle base 41, the buckle base 41 is connected to the buckle connection threaded hole on the lower end plate 32 of the winding disc through a fastener;

[0131] The clamping member 42 is clamped above the snap base 41;

[0132] The cover plate 43 is connected to the opening of the snap base 41 to limit the clamping member 42 within the snap base 41;

[0133] The adjusting member 44, one end of the adjusting member 44 passes through the middle of the cover plate 43 and is connected to the clamping member 42, and the other end of the adjusting member 44 is threadedly connected to the cover plate 43;

[0134] Among them, the snap structure 4 is used to connect the end of the cable 6.

[0135] In the present invention, the snap structure 4 is a stainless steel composite structure, and the snap structure 4 is suitable for fixing the ends of cables with diameters ranging from 3 mm to 40 mm.

[0136] Specifically, as Figure 13 shown, the snap base 41 is integrally in a V-shaped structure, and counterbores are throughly opened at both ends of the snap base 41;

[0137] The clamping member 42 is integrally in a V-shaped structure, and grooves adapted for snap connection with the snap base 41 are opened in the middle of both ends of the clamping member 42;

[0138] The cover plate 43 is detachably installed above the opening of the snap base 41 through a fastener, and a threaded hole adapted for the screw rod is throughly opened in the middle of the cover plate 43;

[0139] The adjusting member 44 includes a screw rod and an adjusting nut fixed at one end of the screw rod.

[0140] In the present invention, the fastener is a bolt, and the operator adjusts the opening distance between the clamping member 42 and the snap base 41 by rotating the adjusting nut, thereby realizing the fixation of the end of the cable 6.

[0141] Furthermore, as Figure 10 shown, the winding disc radius locking structure 5 includes:

[0142] The connecting piece 51;

[0143] The handle 52, the middle and lower part of the handle 52 is connected to one end of the connecting piece 51, and the bottom of the handle 52 is threadedly connected to the locking structure threaded connection hole 3321;

[0144] The locking member 53 is threadedly connected to the other end of the connecting piece 51;

[0145] Among them, an anti-slip pad is further connected to the top pressing end of the locking member 53.

[0146] In the present invention, the connecting piece 51 is integrally in the shape of a rectangular parallelepiped plate; the middle and lower parts of the handle 52 are fixedly connected or rotatably connected to one end of the connecting piece 51; the handle 52 is a rubber spherical or elliptical handle, and an operator holds the handle 52 to rotate the winding disc housing cover 332, thereby driving the rotation of the winding disc housing cover 332, so as to adjust the winding radius of the radius-adjustable winding disc 3; the locking member 53 is a bolt, and the operator adjusts the locking member 53 to be tightly connected to the surface of the lower end plate 32 of the winding disc, so as to lock the winding radius of the radius-adjustable winding disc 3. Among them, the anti-slip pad is a rubber anti-slip pad, which can better prevent slipping and also better protect the surface of the lower end plate 32 of the winding disc.

[0147] In summary, a more specific implementation manner of the present invention is:

[0148] As Figure 1 and Figure 2 shown, before using an adjustable-radius wire-winding and wire-placing device with the above-described design structure, it is necessary to install the already manufactured bow-shaped frame device as a spare.

[0149] The specific usage steps are as follows:

[0150] When adjusting the radius of the radius-adjustable winding disc body 33, the operator first rotates the adjusting member 44 according to the different thicknesses and lengths of the cable 6, so that the clamping member 42 moves upward; then, the operator rotates the winding disc housing cover 332 through the handle 52 to adjust the positions of several winding connecting rods 333, and drives the rotation of the winding disc housing cover 332 through the handle 52 to adjust the radius of the circular column formed by enclosing the 6 winding connecting rods 333; finally, after determining the radius of the 6 winding connecting rods 333, the operator rotates the locking member 53 again, so that the tightening end of the locking member 53 is aligned with the lower end plate 32 of the winding disc at this moment for tightening and fixing, and finally realizes flexible adjustment of the radius of the radius-adjustable winding disc body 33;

[0151] When coiling the wire and placing it on the bracket 2, after the operator adjusts the above-mentioned wire coiling radius, first straighten and lay the movable end cable 6 of the wire to be coiled flat on the ground, then place the radius-adjustable winding disc 3 at the movable end of the cable 6, and then the operator places the movable end of the cable 6 between the buckle base 41 and the clamping member 42, and then fixes the movable end of the cable 6 on the buckle structure 4 by rotating the locking member 53. Immediately afterwards, the operator manually rolls towards the fixed end of the cable 6 to wind the cable 6. After coiling, lift the radius-adjustable winding disc 3 and place it on the connecting platform 21 of the corresponding bracket 2, and place it by aligning the two positioning holes 22 on the bracket 2 with the two stainless steel limit posts 35 at the bottom of the radius-adjustable winding disc 3, so as to fix the radius-adjustable winding disc 3 itself. When the radius-adjustable winding disc 3 pays out the wire, just operate the above steps in reverse.

[0152] During the above usage process, the radius-adjustable wire winding disc 3 is flexibly adjusted according to actual needs. Generally, it is only necessary to adjust the radius during the initial wire winding, and then it can remain stationary unless the wire winding model needs to be changed. Moreover, it is used on the cables on the rear panel of the detection table. One of the characteristics of these cables is that one end is fixed and the other end is movable. The movable end is convenient for connecting the object to be detected or detaching from the object to be detected. The second characteristic is that there are many of them and they vary in thickness, length and width. Therefore, since the present invention is designed as a multi-layer wire winding rack and to protect these special cables from mechanical brute force damage, the wire winding and wire taking processes are all manual operations to protect the cable ends from touching the ground or being knocked, and also to prevent the electric wire winding cables from being dragged on the ground.

[0153] In summary, the advantages of the present invention in the specific implementation are as follows:

[0154] 1. The design structure of the present invention is simple, reasonable and novel. The radius locking structure 5 of the wire winding disc is used to lock the adjusted or determined radius of the radius-adjustable wire winding disc 3, so that the radius of the radius-adjustable wire winding disc 3 does not easily change, meeting the wire winding requirements.

[0155] 2. Since the present invention is designed with a moving device 12, the moving device 12 is a moving wheel and / or a universal wheel, and the moving base 1 is formed by tightly connecting an aluminum profile square mounting frame 11 and 4 universal wheels.

[0156] 3. The fastener of the present invention is a bolt. The operator adjusts the opening distance between the clamping member 42 and the buckle base 41 by rotating the adjusting nut, thereby realizing the fixation of the end of the cable 6.

[0157] 4. Since the present invention is designed with a connecting piece 51, the connecting piece 51 is in an overall cuboid plate-like structure; the middle and lower part of the handle 52 is fixedly connected or rotatably connected to one end of the connecting piece 51; the handle 52 is a rubber spherical or elliptical handle. The operator holds the handle 52 to rotate the wire winding disc cover 332, thereby driving the wire winding disc cover 332 to rotate, and thus being able to adjust the wire winding radius of the radius-adjustable wire winding disc 3.

[0158] 5. The locking member 53 of the present invention is a bolt. The operator adjusts the locking member 53 to be tightly connected to the surface of the lower end plate 32 of the wire winding disc, thereby locking the wire winding radius of the radius-adjustable wire winding disc 3.

[0159] 6. Since the present invention is designed with an anti-slip pad, and the anti-slip pad is a rubber anti-slip pad, therefore, the anti-slip pad can better prevent sliding and at the same time can better protect the surface of the lower end plate 32 of the wire winding disc.

[0160] 7. The present invention has strong practicability and wide applications. It can also be used for system debugging and detection before the test of underwater vehicles and for insulation detection and object function detection before overland passing tests as needed. In addition, it can be used in other fields, such as in the construction field or the tobacco field, for sorting and retracting the required cables.

[0161] Finally, it should be noted that the above description is only a preferred embodiment of the present invention, and it is not a limitation of the present invention in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes. However, any simple modification, equivalent change, and modification made to the above embodiments based on the technical essence of the present invention without departing from the technical solution content of the present invention still fall within the protection scope of the technical solution of the present invention.

Claims

1. A wire coiling and placing device with adjustable radius, characterized in that, it includes: A moving base (1); A bracket (2), the bracket (2) is connected above the moving base (1), and several connecting platforms (21) for connecting a radius-adjustable wire coiling disc (3) are provided on the bracket (2); A radius-adjustable wire coiling disc (3), the radius-adjustable wire coiling disc (3) is detachably connected to the connecting platform (21); A buckle structure (4), the buckle structure (4) is detachably connected to the radius-adjustable wire coiling disc (3); A wire coiling disc radius locking structure (5), the wire coiling disc radius locking structure (5) is detachably connected to the bottom of the radius-adjustable wire coiling disc (3).

2. The wire coiling and placing device with adjustable radius according to claim 1, characterized in that, the radius-adjustable wire coiling disc (3) includes: An upper end plate (31) of the wire coiling disc, several upper end plate sliding holes (311) are circumferentially and throughly opened on the upper end plate (31) of the wire coiling disc; A lower end plate (32) of the wire coiling disc, a hole is throughly opened in the middle of the lower end plate (32) of the wire coiling disc; A radius-adjustable wire coiling disc body (33), the radius-adjustable wire coiling disc body (33) is connected to the hole in the middle of the lower end plate (32) of the wire coiling disc; A connecting column (34), one end of the connecting column (34) is connected to the upper end plate (31) of the wire coiling disc, and the other end of the connecting column (34) is connected to the upper surface of the radius-adjustable wire coiling disc body (33); Limit columns (35), the limit columns (35) are symmetrically connected to both sides of the bottom end of the lower end plate (32) of the wire coiling disc.

3. The wire coiling and placing device with adjustable radius according to claim 2, characterized in that, the radius-adjustable wire coiling disc body (33) includes: A wire coiling disc housing (331), several wire coiling disc housing sliding holes (3311) are circumferentially and throughly opened on the end cover of the wire coiling disc housing (331), and several wire coiling link sliding holes (3312) are circumferentially and throughly opened on the side wall of the wire coiling disc housing (331); A wire coiling disc cover (332), the wire coiling disc cover (332) is rotatably connected to the opening end of the wire coiling disc housing (331), and several arc-shaped connecting holes (3321) are throughly opened on the wire coiling disc cover (332); A wire coiling link (333), one side end of the wire coiling link (333) is correspondingly connected to the wire coiling disc housing sliding holes (3311) and the arc-shaped connecting holes (3321), and the other side end of the wire coiling link (333) is correspondingly connected to the inside of the upper end plate sliding holes (311); Among them, a buckle connection threaded hole for connecting the buckle structure (4) is also opened on the lower end plate (32) of the wire coiling disc; a locking structure threaded connection hole (3322) for connecting the wire coiling disc radius locking structure (5) is also opened at the bottom end of the wire coiling disc cover (332).

4. The wire coiling and placing device with adjustable radius according to claim 3, characterized in that, the wire coiling disc housing (331) is integrally in a columnar structure with one end closed and the inside hollow, and a concave part for placing the buckle structure (4) is also inwardly opened on one side of the wire coiling disc housing (331); The wire coiling link (333) includes: The first vertical short rod, one end of the first vertical short rod is slidably connected in the sliding hole (3311) of the winding disc housing, and the other end of the first vertical short rod is slidably connected in the corresponding arc-shaped connection hole (3321); The second vertical long rod, the upper end of the second vertical long rod is connected in the corresponding upper end plate sliding hole (311); The transverse connecting rod, one end of the transverse connecting rod is vertically connected to the middle of the first vertical short rod, and the other end of the transverse connecting rod passes through the winding connecting rod sliding hole (3312) and is vertically connected to the lower end of the second vertical long rod; Among them, a through hole is also penetrated in the middle of the winding disc cover (332).

5. An adjustable radius wire coiling and placing device according to claim 1, characterized in that, The moving base (1) includes: The mounting frame (11), the mounting frame (11) is integrally in a square frame structure; The moving device (12), the moving device (12) is connected to the four corners of the bottom of the mounting frame (11); Among them, a braking device that cooperates with it to complete the work is also provided on the moving device (12).

6. An adjustable radius wire coiling and placing device according to claim 1, characterized in that, The bracket (2) is integrally in a "bow" shape or an intersecting "bow" shape structure, and at least one reinforcing rod (7) is also connected to one side of the bracket (2).

7. An adjustable radius wire coiling and placing device according to claim 6, characterized in that, Each layer of the bracket (2) is provided with at least one connecting platform (21), two positioning holes (22) are penetrated in the connecting platform (21), and an installation hole (23) for installing the radius-adjustable winding disc (3) is also penetrated between the two positioning holes (22).

8. An adjustable radius wire coiling and placing device according to claim 1, characterized in that, The buckle structure (4) includes: The buckle base (41), the buckle base (41) is connected to the buckle connection threaded hole on the lower end plate (32) of the winding disc through a fastener; The clamping member (42), the clamping member (42) is clamped above the buckle base (41); The cover plate (43), the cover plate (43) is connected to the opening of the buckle base (41) to limit the clamping member (42) in the buckle base (41); The adjusting member (44), one end of the adjusting member (44) passes through the middle of the cover plate (43) and is connected to the clamping member (42), and the other end of the adjusting member (44) is threadedly connected to the cover plate (43); Among them, the buckle structure (4) is used to connect the end of the cable (6).

9. An adjustable radius wire coiling and placing device according to claim 8, characterized in that, The buckle base (41) is integrally in a V-shaped structure, and counterbores are penetrated at both ends of the buckle base (41); The clamping member (42) is integrally in a V-shaped structure, and grooves adapted to be clamped with the buckle base (41) are opened in the middle of both ends of the clamping member (42); The cover plate (43) is detachably installed above the opening of the buckle base (41) through a fastener, and a threaded hole adapted to the screw rod is penetrated in the middle of the cover plate (43); The adjusting member (44) includes a screw rod and an adjusting nut fixed to one end of the screw rod.

10. An adjustable-radius wire coiling and placing device according to claim 1, characterized in that, the radius locking structure (5) of the wire coiling disc includes: a connecting piece (51); a handle (52), the middle and lower part of the handle (52) is connected to one end of the connecting piece (51), and the bottom of the handle (52) is threadedly connected to the locking structure threaded connection hole (3321); a locking member (53), the locking member (53) is threadedly connected to the other end of the connecting piece (51); wherein, an anti-slip cushion is further connected to the top end of the locking member (53).