Flat cable arrangement device for weak current engineering
By designing a positioning and sliding mechanism within the housing, combined with the adjustment of the screw and moving clamp, the problem of insufficient stability of the cable due to springs and clamps is solved, achieving stable positioning and long-term reliability of the cable, adapting to the needs of different cable specifications, reducing the risk of damage, and improving the durability and reliability of the system.
Patent Information
- Application Number
- CN202423263410.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2034-12-30
AI Technical Summary
In existing low-voltage electrical engineering cable routing devices, the stability of cables is affected by external forces due to springs and clamps, which may lead to displacement or uneven stress, increasing the risk of damage and affecting the normal operation of the system.
It employs a housing, guide block, cable inlet slot, cable outlet slot, positioning mechanism, sliding mechanism, reinforcement mechanism, and angle adjustment mechanism. Through the cooperation of screw and moving clamp, it provides a durable and stable fixing force, adapts to cables of different specifications, and absorbs external impact through elastic material to ensure stable guidance of cables at different angles.
It improves the stability and reliability of cable positioning and fixing, reduces displacement and uneven stress caused by external forces, extends the service life of the system, and enhances the flexibility and safety of cabling.
Smart Images

Figure CN223858738U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the weak current engineering technical field especially relates to the weak current engineering is with the wire arrangement device. BACKGROUND
[0002] In the implementation process of weak current engineering, the arrangement and management of cables are crucial. In order to ensure that the cables are always in the right place during installation and use of equipment, and to avoid affecting the normal operation of the system due to displacement of the cables, some wire arrangement devices are usually used to position and fix the cables. At present, the wire arrangement device mainly adopts the combination of spring and clamp to effectively constrain and position the cables.
[0003] The utility model discloses a weak current engineering wire arrangement device discloses a weak current engineering wire arrangement device, including installation board, installation slot, still including containing mechanism, the four around sides of installation board are located and be used for with other installation board connection to increase the containing mechanism number's connecting mechanism, a plurality of containing mechanism passes through fixed mechanism to adjust the distance between two adjacent containing mechanisms, a plurality of weak current engineering cables are located in containing mechanism to arrange the weak current engineering cable, the utility model discloses the setting of containing mechanism is suitable for the weak current engineering cable of different diameter and places fixed, the setting of fixed mechanism is convenient according to the demand distance between two adjacent weak current engineering cables and adjusts the distance between two containing mechanisms, the setting of connecting mechanism is convenient according to actual need and adjusts the number setting installation board and containing mechanism of weak current engineering cable, can set up installation board and containing mechanism's number according to the demand of weak current engineering cable length direction simultaneously, low in cost, and convenient and flexible to use.
[0004] Although this technology can set the number of installation boards and containing mechanisms according to the demand of weak current engineering cable length direction, it is low in cost and convenient and flexible to use. However, this technology mainly provides continuous pressure on the cable through the elasticity of spring and clamp in the wire arrangement device, maintains the cable in the required position, and avoids the cable from sliding or displacing due to external force. Since the stability of spring and clamp will be affected by external force during long-term use of the cable, for example, external vibration, temperature change or other external force, the elasticity of spring may weaken, and the position of clamp may move or displace. Such displacement of clamp not only may make the cable deviate from the original arrangement position, but also may cause uneven stress on the cable during wiring, increase the risk of cable damage, and even may affect the normal operation of the weak current system. UTILITY MODEL CONTENTS
[0005] The utility model provides a weak current engineering wire arrangement device that can stably position the cable and improve the reliability and durability of cable fixation.
[0006] In view of this, the present invention provides a wiring arrangement device for low-voltage engineering, comprising:
[0007] case;
[0008] The guide block is located inside the front side of the housing;
[0009] An inlet groove is provided on the guide block. There are multiple inlet grooves, which are evenly spaced along the length of the guide block.
[0010] The cable outlet trough is located on the rear side of the housing, and the cable outlet trough is positioned opposite to the cable inlet trough.
[0011] The positioning mechanism, located inside the housing, is used to position the incoming cable.
[0012] The positioning mechanism includes:
[0013] There are multiple support blocks, which are evenly spaced along the length of the shell. The number of support blocks is the same as the number of inlet slots, and they correspond one-to-one.
[0014] The mounting groove is formed on the support block and extends from front to back through the support block;
[0015] The positioning block is located inside the lower part of the mounting slot;
[0016] Guide rods are located on the left and right ends of the outer side of the positioning block;
[0017] The movable clamping block is slidably positioned between the guide rods on the left and right sides, and is located above the positioning block;
[0018] The screw is threaded onto the support block and passes through the support block into the mounting groove. The screw is connected to the movable clamping block.
[0019] The throttle is located at the upper end of the screw.
[0020] In the above technical solution, furthermore, the housing is provided with a sliding mechanism for adjusting the position of the support block, the sliding mechanism including:
[0021] The fixing block is located inside the housing;
[0022] Guide grooves are set on the fixed blocks, and the number of guide grooves is the same as that of support blocks, and they correspond one-to-one;
[0023] The slider is slidably set in the guide groove and is connected to the support block.
[0024] In any of the above technical solutions, furthermore, reinforcement mechanisms are provided on both the front and rear sides of the support block, and the reinforcement mechanisms include:
[0025] Supporting columns are arranged around the front and back of the supporting block;
[0026] Supporting rings are arranged between the four supporting columns on the same side;
[0027] Grooves are arranged on the inner wall of the supporting ring, and there are four grooves which are evenly distributed along the circumferential direction of the supporting ring;
[0028] Rotating plates are arranged in the grooves, and the rotating plates extend from wide to narrow;
[0029] Fixed clamps are arranged at the end of the rotating plate away from the supporting ring, and the fixed clamps have the same axis as the lead-in groove, the lead-out groove, the positioning block and the movable clamp block;
[0030] Buckles are arranged on the outside of the fixed clamps, and there are two buckles which are symmetrically arranged;
[0031] Bolts are arranged between the left and right sides of the two buckles;
[0032] Nuts are threadedly arranged on the bolts.
[0033] In any of the above technical solutions, further, the fixed clamp is made of elastic material, which can adapt to cables of different sizes and effectively absorb and disperse external impact force.
[0034] In any of the above technical solutions, further, the lead-in groove is semicircular, which better adapts to the cable.
[0035] In any of the above technical solutions, further, an angle adjusting mechanism is further included, and the angle adjusting mechanism includes:
[0036] Fixed shafts are arranged inside the lead-out groove on the left and right sides;
[0037] Supporting frames are arranged between the two fixed shafts, and the supporting frames are located inside the lead-out groove;
[0038] Supporting sleeves are arranged at the upper and lower ends inside the supporting frame;
[0039] Rotating shafts are rotatably arranged in the supporting sleeves;
[0040] Guide cylinders are arranged between the two rotating shafts on the same side, the guide cylinders are consistent in number with the lead-in grooves and one-to-one corresponding, and the guide cylinders are used to lead out the positioned cable.
[0041] The beneficial effects of the utility model are:
[0042] 1. By rotating the screw, the movable clamp block clamps the cable inwardly and ensures that the cable is stably fixed at a predetermined position, the screw adjusting mechanism provides a long-lasting stable fixing force, avoids problems caused by loss of elasticity of the spring or loosening of the clamp, thereby improving the long-term reliability of the cable arrangement device, ensuring stable positioning of the cable, and by adapting to different specifications of the cable and providing flexible adjustment mode, the overall effect of the cable wiring can be effectively improved;
[0043] 2. By introducing the sliding mechanism, the cable arrangement device can adapt to different types and specifications of cables, and the sliding support block enables the arrangement device to provide flexible solutions in various engineering requirements, meet various complex cable wiring requirements, and users do not need to disassemble or reorganize the support block, but only need to realize the positioning of the support block by simple sliding adjustment, greatly improving the convenience and efficiency in the wiring process;
[0044] 3. The cable is first introduced from the introduction slot, the cable passes through the fixing clamp, the fixing clamp is adaptively rotated through the rotating plate to adjust to the size of the cable, and the fastener firmly fixes the fixing clamp on the outside of the cable through the bolt and the nut, ensuring the close cooperation of the fixing clamp and the cable, providing strong support, making the arrangement of the cable more stable and safe, and improving the reliability and durability of the system;
[0045] 4. By using an elastic material as the main component of the fixing clamp, automatic adaptation to different sizes of cables is realized, and the absorption and dispersion capacity of external impact force is enhanced, which not only improves the flexibility and stability of the cable wiring, but also effectively protects the cable from excessive pressure and friction damage, prolonging the service life of the system;
[0046] 5. By the cooperation of each component (fixed shaft, support frame, rotating shaft, guide cylinder, etc.) of the angle adjusting mechanism, the cable can be stably guided at different angles and the problem of excessive bending or misplacement can be effectively avoided, the controllability in the wiring process is improved, the device can adapt to wiring requirements of different scenes and different angles, and convenience is also provided for later maintenance and adjustment. BRIEF DESCRIPTION OF DRAWINGS
[0047] Figure 1 is the first kind of three-dimensional structure schematic diagram of the utility model;
[0048] Figure 2 is the second kind of three-dimensional structure schematic diagram of the utility model;
[0049] Figure 3 is the three-dimensional structure schematic diagram of the positioning mechanism of the utility model;
[0050] Figure 4 is the three-dimensional structure schematic diagram of the reinforcing mechanism of the utility model;
[0051] Figure 5 It is the three-dimensional structure schematic diagram of angle adjusting mechanism of the utility model;
[0052] In the drawing, the reference signs are: 1, shell; 2, guide block; 3, lead-in groove; 4, outgoing line groove; 5, positioning mechanism; 51, support block; 52, installation groove; 53, positioning block; 54, guide rod; 55, movable clamping block; 56, screw rod; 57, steering handle; 6, sliding mechanism; 61, fixed block; 62, guide groove; 63, sliding block; 7, reinforcing mechanism; 71, support column; 72, support ring; 73, recess; 74, rotating plate; 75, fixed clamp; 76, fastener; 77, bolt; 78, nut; 8, angle adjusting mechanism; 81, fixed shaft; 82, support frame; 83, support sleeve; 84, rotating shaft; 85, guide cylinder. DETAILED DESCRIPTION
[0053] The technical solutions in the embodiments of the present application will be clearly described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art belong to the scope of protection of the present application.
[0054] In the description of the present application, it should be noted that the terms used herein are only for describing the specific embodiments, and are not intended to limit the exemplary embodiments according to the present application. For the convenience of description, the sizes of the various parts shown in the drawings are not drawn in proportion to the actual proportion relationship. The techniques, methods and devices known to those of ordinary skill in the relevant art can not be discussed in detail, but under appropriate circumstances, the techniques, methods and devices should be regarded as part of the authorized description. In all examples shown and discussed herein, any specific value should be interpreted as merely exemplary, and not as a limitation. Therefore, other examples of exemplary embodiments can have different values. It should be noted that similar reference numbers and letters represent similar items in the following drawings, so once an item is defined in one drawing, it does not need to be further discussed in subsequent drawings.
[0055] Embodiment 1:
[0056] As Figures 1-4 shown, the present embodiment provides a wire arrangement device for weak current engineering, comprising:
[0057] The shell 1;
[0058] The guide block 2 is arranged on the front side inside the shell 1;
[0059] The lead-in groove 3 is arranged on the guide block 2, and the lead-in groove 3 has a plurality of and is uniformly distributed along the length direction of the guide block 2;
[0060] The wire outlet groove 4 is arranged on the rear side of the shell 1, and the wire outlet groove 4 is arranged opposite to the lead-in groove 3;
[0061] The positioning mechanism 5 is arranged in the shell 1, and is used for positioning the lead-in cable;
[0062] The positioning mechanism 5 comprises:
[0063] The support block 51 is uniformly distributed along the length direction of the inside of the shell 1, and the number of the support block 51 is consistent with the number of the lead-in groove 3 and one-to-one correspondence;
[0064] The mounting groove 52 is arranged on the support block 51, and the mounting groove 52 penetrates the support block 51 from front to back;
[0065] The positioning block 53 is arranged below the inside of the mounting groove 52;
[0066] The guide rod 54 is arranged on the left and right sides of the outside of the positioning block 53;
[0067] The movable clamping block 55 is arranged between the left and right guide rods 54, and the movable clamping block 55 is arranged above the positioning block 53;
[0068] The screw rod 56 is arranged on the support block 51 in a threaded manner, and the screw rod 56 penetrates the support block 51 and is arranged in the mounting groove 52, and the screw rod 56 is connected with the movable clamping block 55;
[0069] The handle 57 is arranged on the upper end of the screw rod 56.
[0070] In the technical solution, the cable can be stably fixed in the specified position through the unique positioning mechanism 5, and displacement caused by external vibration, temperature change and other factors is avoided. Through the design of the adjustable movable clamping block 55 and the positioning mechanism 5, different sizes and types of cables can be adapted, and accurate positioning of various cables is ensured. The design of the device simplifies the cable arrangement process, and through the adjustment of the handle 57 and the screw rod 56, the user can conveniently fix and loosen the cable, and flexibly cope with engineering requirements. Through the precise guide groove and positioning mechanism, the cable is prevented from being damaged by external force during the arrangement process, and the risk of damage to the cable caused by uneven stress is reduced.
[0071] Workflow: The cable is introduced from the outside of the device, guided into the cable arrangement device through the introduction slot 3 on the guide block 2. The multiple slots of the introduction slot 3 are evenly distributed along the length direction of the guide block 2, ensuring that the cable is uniformly guided during the introduction process, avoiding entanglement or winding of the cable. The cable entering the device will be positioned by the positioning mechanism 5. When it is necessary to fix the cable, the cable enters the installation slot 52 on the positioning block 53, and then the screw rod 56 is rotated, the movable clamp block 55 clamps the cable inward, and ensures that the cable is stably fixed at the predetermined position. The clamping force of the movable clamp block 55 can be adjusted according to the needs through the rotation of the screw rod 56. After wiring is completed, the cable is smoothly discharged through the outlet slot 4. The outlet slot 4 is located on the rear side of the shell 1 and is arranged opposite to the introduction slot 3, ensuring smooth flow of the cable in the wiring device, avoiding damage to the cable due to excessive bending or obstruction. Because the positioning mechanism 5 adopts the precise cooperation of the screw rod 56 and the movable clamp block 55, the device can effectively prevent displacement of the spring and clamp caused by external force. The screw rod 56 adjustment mechanism provides a durable and stable fixing force, avoiding problems caused by loss of spring elasticity or loose clamp, thereby improving the long-term reliability of the cable arrangement device, ensuring stable positioning of the cable. By adapting to different specifications of cables and providing flexible adjustment methods, the device not only meets the engineering needs, but also has strong scalability and adaptability, which can effectively improve the overall effect of cable wiring.
[0072] As shown in Figure 1 , Figure 3 and Figure 4 , in the present embodiment, the optimized, the shell 1 is internally provided with a sliding mechanism 6 for adjusting the position of the support block 51, the sliding mechanism 6 comprises:
[0073] The fixed block 61 is arranged inside the shell 1;
[0074] The guide groove 62 is arranged on the fixed block 61, and the guide groove 62 is consistent with the number of the support block 51 and one-to-one corresponding;
[0075] The sliding block 63 is slidably arranged in the guide groove 62, and the sliding block 63 is connected with the support block 51.
[0076] In this technical solution, depending on the type, size, and wiring requirements of the cable, the user can manually or using a special tool adjust the position of each support block 51 in the guide groove 62. A slider 63 is connected to the support block 51; the user moves the slider 63 within the guide groove 62 by sliding the support block 51, precisely adjusting the position of the support block 51. After sliding the support block 51 and adjusting it to the predetermined position, the user can ensure that each support block 51 is aligned with its corresponding inlet groove 3, thereby ensuring that the cable can be accurately introduced and stably fixed in the device. The design of the sliding mechanism 6 ensures that the position adjustment of the support block 51 will not be unstable or jammed, enabling smooth and accurate positioning. After the cable is introduced, the movable clamping block 55 in the positioning mechanism 5 is adjusted by rotating the screw 56, clamping the cable and ensuring its fixation. During this process, the adjusted position of the support block 51 provides more precise support for the cable, allowing the cable to be stably held in the required position. Even after prolonged use, the sliding mechanism 6 maintains good adjustment performance. Thanks to the cooperative design between the slider 63 and the guide groove 62, the support block 51 can slide smoothly and be precisely fixed in the desired position at any time, ensuring the stability and safety of the cable throughout its use. If the cable routing needs to be changed or adjusted, simply slide the support block 51 easily without the need for large-scale disassembly or rearrangement of the entire device.
[0077] Example 2:
[0078] This embodiment provides a wiring arrangement device for low-voltage engineering, which, in addition to the technical solutions of the above embodiments, also has the following technical features.
[0079] like Figure 1 , Figure 2 and Figure 4 As shown, in this embodiment, the optimized support block 51 is provided with reinforcement mechanisms 7 on both the front and rear sides. The reinforcement mechanism 7 includes:
[0080] Support columns 71 are arranged around the front and rear sides of the support block 51;
[0081] A support ring 72 is provided between four support columns 71 on the same side;
[0082] Grooves 73 are formed on the inner wall of the support ring 72. There are four grooves 73, which are evenly distributed along the circumferential direction of the support ring 72.
[0083] Rotating plate 74 is rotatably disposed in groove 73, and rotating plate 74 extends from wide to narrow outward;
[0084] The fixing clamp 75 is located at the end of the rotating plate 74 away from the support ring 72. The fixing clamp 75 is on the same axis as the inlet groove 3, the outlet groove 4, the positioning block 53, and the movable clamp block 55.
[0085] The fastener 76 is arranged outside the fixed clamp 75, and there are two fasteners 76, which are symmetrically arranged.
[0086] The bolt 77 is arranged between the two fasteners 76.
[0087] The nut 78 is threadedly arranged on the bolt 77.
[0088] In the technical solution, the support column 71 and the support ring 72 serve as the support of the rotating plate 74 and the fixed clamp 75, so that the fixed clamp 75 can be stably installed on the front and rear sides of the support block 51, and the axis between the fixed clamp 75 and the lead-in groove 3, the wire outlet groove 4, and the positioning block 53 and the movable clamp block 55 is consistent, so as to ensure the path of the cable arrangement. When the cable needs to be arranged, the cable is first introduced from the lead-in groove 3, passes through the fixed clamp 75, and the fixed clamp 75 is adaptively rotated through the rotating plate 74, so as to be adjusted to adapt to the size of the cable, and then the cable is introduced into the positioning block 53, and the movable clamp block 55 is clamped to the cable on the positioning block 53 through the operation of the screw rod 56, the positioned cable is introduced from the rear fixed clamp 75, and is introduced out of the cable arrangement from the wire outlet groove 4. When the cable arrangement is completed, the fastener 76 firmly fixes the fixed clamp 75 on the outside of the cable through the bolt 77 and the nut 78, and the two fasteners 76 are symmetrically arranged, so as to uniformly apply pressure and ensure the close cooperation of the fixed clamp 75 and the cable; through the adjustment of the bolt 77 and the nut 78, the clamping force of the fixed clamp 75 can be accurately controlled, so as to ensure the stability of the reinforcing mechanism 7, to adapt to different loads or wiring requirements. Once the reinforcing mechanism 7 is installed, the entire support block 51 and the cable arrangement device will remain stable during long-term operation, can uniformly distribute support force, and through the cooperation of the rotating plate 74, the fixed clamp 75 and the fastener 76, the stability of the structure is ensured, strong support is provided, the arrangement of the cable is more stable and safe, the reliability and durability of the system are improved, and different sizes of cables can be adapted.
[0089] As shown in Figure 4 In the embodiment, the fixed clamp 75 is of an elastic material, which can adapt to different sizes of cables and effectively absorb and disperse external impact force.
[0090] In this technical solution, the use of elastic material enables the fixed clamp 75 to adapt to the diameter and thickness of the cable. When the cable size changes, the elastic material can automatically adjust the clamping force to ensure that the cable is securely clamped, regardless of the size change of the cable, and the same fixing effect can be achieved. This feature enables the device to be compatible with different specifications of cables, avoiding the problem of poor fixation or difficult installation due to size mismatch. The elastic material has a certain elasticity and flexibility, which can effectively absorb external impact forces and reduce the risk of damage caused by vibration, impact or external force. For example, when the cable is subjected to external impact or vibration, the fixed clamp 75 can absorb and distribute these forces, reducing damage to the cable and other structures. This function is particularly important for weak current engineering, as these systems often need to operate in more complex environments and may be subject to mechanical vibration or impact. The elastic fixed clamp 75 not only adapts to different sizes of cables, but also improves the durability of the entire device and prolongs the service life. Due to the properties of the elastic material, it can withstand long-term workloads without losing its elasticity, thereby maintaining good clamping effect and impact absorption performance. The flexibility of the elastic material allows it to provide uniform pressure distribution when clamping the cable, without causing surface damage or frictional heating problems due to excessive pressure. Therefore, this design can effectively protect the outer layer of the cable, avoiding aging, wear and electrical failure caused by excessive clamping or friction.
[0091] Workflow: The fixed clamp 75 uses a material with good elasticity (such as rubber, silicone, elastic polymer, etc.), enabling the fixed clamp 75 to automatically adapt to different cable sizes when clamping the cable. The softness and stretchability of the elastic material allow it to adjust the clamping force according to the actual diameter or thickness of the cable after the cable is placed in the clamping area, ensuring that the cable is securely fixed without the need to adjust the size of the clamp or disassemble parts. This process is simple and fast, reducing the hassle of manual adjustment. The fixed clamp 75 uses its elastic properties to securely clamp the cable. When the cable enters the clamp, the elastic material automatically adjusts the clamping degree according to the shape and size of the cable, ensuring that the cable is stable in the device and avoiding cable slippage or loosening. When the cable arrangement device is subjected to external vibration, impact or pressure, the material of the elastic fixed clamp 75 absorbs these impact forces and distributes them to the overall structure of the clamp. The energy absorption effect of the elastic material effectively prevents the impact forces from being directly transmitted to the cable, avoiding physical damage to the cable or interference with signal transmission. Because the elastic material is relatively soft and has a low coefficient of friction, it can effectively reduce the wear on the surface of the cable, thereby reducing the risk of surface damage or electrical failure of the cable. Even after long-term use or external force, the elastic material can maintain its fixing function without damaging the cable.
[0092] Example 3:
[0093] The weak current engineering wire arrangement device provided in the embodiment has the following technical features in addition to the technical solutions in the above embodiments.
[0094] As shown in Figure 1 , Figure 2 and , in the embodiment, the optimized lead-in groove 3 is semicircular, which better adapts to the cable.
[0095] In the technical solution, the semicircular notch can effectively avoid friction or jamming during wiring and improve the smoothness of construction. By reasonably designing the shape of the notch, the friction between the cable and the groove wall can be reduced, the aging and damage of the cable caused by long-term friction can be reduced, and the service life of the equipment can be prolonged. The semicircular notch can adapt to various types and specifications of weak current cables, avoid excessive bending or uneven stress of the cable due to inappropriate notch size, and ensure smooth transition of the cable during wiring. The semicircular design of the lead-in groove 3 can keep a certain bending radius of the cable when passing through the notch, avoid affecting the transmission performance of the cable due to too sharp bending, and even damage the cable. The semicircular notch designed reasonably can improve the space utilization of the wire arrangement system, make the cable arranged more neatly in the groove, be helpful for later maintenance and inspection, and improve the aesthetics of the entire weak current system. This design provides a relatively simple installation method, workers can easily lead the cable into the groove, and if replacement or rewiring is needed, the cable can also be easily taken out and placed, reducing the complexity of later maintenance.
[0096] Embodiment 4:
[0097] The weak current engineering wire arrangement device provided in the embodiment has the following technical features in addition to the technical solutions in the above embodiments.
[0098] As shown in Figure 1 , Figure 3 and Figure 5 , in the embodiment, the optimized, further includes an angle adjusting mechanism 8, the angle adjusting mechanism 8 includes:
[0099] The fixed shaft 81 is arranged on the left and right sides inside the outlet groove 4.
[0100] The support frame 82 is arranged between the two fixed shafts 81, and the support frame 82 is located inside the outlet groove 4.
[0101] The support sleeve 83 is arranged at the upper and lower ends inside the support frame 82.
[0102] The rotating shaft 84 is rotatably arranged in the support sleeve 83.
[0103] The guide cylinder 85 is arranged between the two rotating shafts 84 on the same side, the guide cylinder 85 is consistent with the number of the lead-in groove 3 and corresponds one by one, and the guide cylinder 85 is used for leading out the positioned cable.
[0104] In the technical solution, the installer changes the angle between the guide cylinder 85 and the outlet slot 4 by rotating the rotating shaft 84 according to the actual needs on the site. During the rotation of the rotating shaft 84, the angle of the guide cylinder 85 changes, thereby adjusting the outlet direction of the cable. After the angle adjustment is completed, the installer introduces the cable into the introduction slot 3 and accurately guides the cable through the guide path corresponding to each guide cylinder 85. At this time, the guide cylinder 85 accurately guides the cable to the predetermined position through the adjusted angle, ensuring that the wiring process is smooth and unobstructed. The cable in the outlet slot 4 and under the guidance of the guide cylinder 85 has been arranged at the predetermined angle. Next, the cable can be fixed and related installation work can be carried out. The angle adjustment mechanism 8 makes the path of the cable in the wiring process more accurate, avoiding excessive bending or too tight line layout, and ensuring the neatness and safety of the wiring. Due to the flexibility of the angle adjustment mechanism 8, if the wiring path needs to be changed or the line angle needs to be adjusted later, the angle of the guide cylinder 85 can be quickly changed by adjusting the rotating shaft 84 again, which is convenient for later maintenance and adjustment work.
[0105] The embodiments of the present application are described above in combination with the drawings, and the embodiments and features in the embodiments in the present application can be combined with each other without conflict, and the present application is not limited to the above specific embodiments, which are only illustrative and not restrictive. Those skilled in the art can make many forms under the inspiration of the present application without departing from the scope of the present application, which are all within the protection of the present application.
Claims
1. A cable arrangement device for a weak current engineering, characterized by, Include: The shell (1) ; Guide block (2), set in the front side of the shell (1) inside; The introduction groove (3) is arranged on the guide block (2), the introduction groove (3) has a plurality of and is uniformly distributed along the length direction of the guide block (2) ; The outgoing groove (4) is opened in the rear side of the shell (1), and the outgoing groove (4) is arranged opposite to the introduction groove (3) ; Positioning mechanism (5), set in the shell (1) inside, for the cable introduced for positioning; The positioning mechanism (5) includes: Supporting block (51), a plurality of, uniformly distributed along the length direction inside the shell (1), the supporting block (51) is consistent with the number of introduction groove (3), and one-to-one correspondence; Mounting groove (52) is opened in the supporting block (51), and the mounting groove (52) penetrates the supporting block (51) from front to back; Positioning block (53) is arranged inside the mounting groove (52) below; Guide rod (54) is arranged outside the left and right ends of the positioning block (53) ; Dynamic clamp block (55) is arranged between the left and right guide rods (54), and the dynamic clamp block (55) is located above the positioning block (53) ; Screw rod (56) is threadedly arranged on the supporting block (51), and the screw rod (56) passes through the supporting block (51) and is located in the mounting groove (52), the screw rod (56) is connected with the dynamic clamp block (55) ; The handle (57) is arranged on the upper end of the screw rod (56).
2. The wire arrangement device for light current engineering according to claim 1, characterized in that, The shell (1) is provided with a sliding mechanism (6) for adjusting the position of the supporting block (51) inside, the sliding mechanism (6) includes: Fixed block (61) is arranged inside the shell (1) ; Guide groove (62) is arranged on the fixed block (61), the guide groove (62) is consistent with the number of supporting block (51), and one-to-one correspondence; Sliding block (63) is slidably arranged in the guide groove (62), and the sliding block (63) is connected with the supporting block (51).
3. The wire arrangement device for light current engineering according to claim 1, characterized in that, The supporting block (51) is provided with a reinforcing mechanism (7) on the front and rear sides, and the reinforcing mechanism (7) includes: Supporting column (71) is arranged around the four supporting columns (71) on the front and rear sides of the supporting block (51) ; Supporting ring (72) is arranged between the four supporting columns (71) on the same side; Groove (73) is opened in the inner wall of the supporting ring (72), the groove (73) has four, and is uniformly distributed along the circumferential direction of the supporting ring (72) ; The rotating plate (74) is arranged in the groove (73), and the rotating plate (74) extends from wide to narrow; Fixed clamp (75) is arranged at one end of the rotating plate (74) away from the supporting ring (72), the fixed clamp (75) is the same as the axis between the introduction groove (3), the outgoing groove (4) and the positioning block (53), the dynamic clamp block (55) ; Fastener (76) is arranged outside the fixed clamp (75), the fastener (76) has two, and the two fasteners (76) are symmetrically arranged; Bolt (77) is arranged between the left and right sides of the two fasteners (76). A nut (78) is threadedly arranged on the bolt (77).
4. The wire arrangement device for light current engineering according to claim 3, characterized in that, The fixing clip (75) is made of elastic material, which can adapt to cables of different sizes and effectively absorb and disperse external impact force.
5. The wire arrangement device for light current engineering according to claim 1, characterized in that, The lead-in groove (3) is semicircular, which better adapts to the cable.
6. The wire arrangement device for light current engineering according to claim 1, characterized in that, Further comprising an angle adjusting mechanism (8), which comprises: A fixing shaft (81) is arranged inside the outlet groove (4) on both sides; A support frame (82) is arranged between the two fixing shafts (81), and the support frame (82) is located inside the outlet groove (4); A support sleeve (83) is arranged inside the support frame (82) on both ends; A rotating shaft (84) is rotatably arranged in the support sleeve (83); A guide cylinder (85) is arranged between the two rotating shafts (84) on the same side, the number of the guide cylinder (85) is consistent with that of the lead-in groove (3), and they are one-to-one corresponding, the guide cylinder (85) is used for leading out the positioned cable.
Citation Information
Patent Citations
Flat cable arrangement device for weak current engineering
CN221614543U