A wire management device
By introducing the design of adjusting parts to connect wire management parts in the wire management device, the problem that the existing wire management device cannot adapt to wires of different sizes is solved, and more efficient wire fixing and stability is achieved, improving the wire management effect and device reliability.
Patent Information
- Application Number
- CN202011505139.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-12-18
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2040-12-18
AI Technical Summary
The existing wire management device cannot adapt to wires of different sizes, resulting in low usage efficiency and limited use scenarios.
A wire management device including a base and wire management component is designed. The wire management component connects the wire management component through an adjusting member to adjust the size of the wire area to adapt to wires of different sizes.
By adjusting the size of the wire capacitance area, the wire management device can better stabilize or fix the wire, reduce the probability of wire falling off, and improve the wire management effect and the reliability of the device.
Smart Images

Figure CN112886504B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of wire management devices, and in particular, to a wire management device. Background Art
[0002] The development of electronic technology and information technology has flooded modern people's lives with a large number of electronic digital products. Whether in the office or at home, people's desktops are often filled with various digital products that are in use or on standby. When multiple products are charging or transferring data simultaneously, the messy and intertwined data cables on the desktop not only reduce people's usage experience but also greatly affect the aesthetics.
[0003] If the width of the gap for inserting wires in the wire organizer is not adjustable, it is difficult to adapt to wires of different sizes, seriously affecting the usage efficiency and limiting the usage scenarios. Summary of the Invention
[0004] The main technical problem to be solved by this application is to provide a wire management device that can effectively improve the problem of poor wire management in the existing technology.
[0005] To solve the above technical problem, one technical solution adopted by this application is: to provide a wire management device, including: a base and a wire management component. The wire management component includes an adjusting member disposed on the base and a wire management member. The wire management member is used to enclose a wire receiving area for wire threading, and the adjusting member is connected to the wire management member and is used to adjust the size of the wire receiving area.
[0006] The beneficial effect of this application is: by setting the adjusting member to be connected to the wire management member, which is used to adjust the size of the wire receiving area enclosed by the wire management member, it can thereby adapt to wires of different sizes, enrich the practicality of the wire management device, and also facilitate the threading of wires by adjusting the size of the wire receiving area. After threading, the size of the wire receiving area can be adjusted again to better stabilize or fix the wires and reduce the probability of wire detachment. In this way, a better wire management effect can be achieved, and the reliability of the wire management device can be improved. Brief Description of the Drawings
[0007] In order to more clearly illustrate the technical solutions in the embodiments of this application, the following will briefly introduce the drawings required for description in the embodiments. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings. Among them:
[0008] Figure 1 is a three-dimensional structural schematic diagram of an embodiment of the wire management device of this application;
[0009] Figure 2 is Figure 1 a schematic side view of the structure of the wire management device shown;
[0010] Figure 3 is Figure 1 Another structural side view schematic diagram of the cable management device shown;
[0011] Figure 4 It is a structural schematic diagram of Case 1 of the first implementation manner of the cable management device embodiment of the present application;
[0012] Figure 5 It is another structural schematic diagram of Case 1 of the first implementation manner of the cable management device embodiment of the present application;
[0013] Figure 6 It is yet another structural schematic diagram of Case 1 of the first implementation manner of the cable management device embodiment of the present application;
[0014] Figure 7 It is a structural schematic diagram of the cable management device embodiment of the present application when the adjusting member is an elastic buckle;
[0015] Figure 8 It is another structural schematic diagram of the cable management device embodiment of the present application when the adjusting member is an elastic buckle;
[0016] Figure 9 It is a structural schematic diagram of Case 2 of the first implementation manner of the cable management device embodiment of the present application;
[0017] Figure 10 It is another structural schematic diagram of Case 2 of the first implementation manner of the cable management device embodiment of the present application;
[0018] Figure 11 It is yet another structural schematic diagram of Case 2 of the first implementation manner of the cable management device embodiment of the present application;
[0019] Figure 12 It is yet another structural schematic diagram of the cable management device embodiment of the present application when the adjusting member is an elastic buckle;
[0020] Figure 13 It is a structural schematic diagram of Case 1 of the second implementation manner of the cable management device embodiment of the present application;
[0021] Figure 14 It is a structural schematic diagram of Case 2 of the second implementation manner of the cable management device embodiment of the present application;
[0022] Figure 15 is Figure 13 Cross-sectional structural schematic diagram along the V-V cutting line;
[0023] Figure 16 It is a structural schematic diagram of the cable management device embodiment of the present application when the adjusting member is a fixed buckle;
[0024] Figure 17This is another structural schematic diagram of an embodiment of the cable management device of the present application in which the adjusting member is a fixing buckle. DETAILED DESCRIPTION
[0025] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0026] After long-term research, the inventor of this application found that since the number of wires used by people in their daily life, office and other scenes, such as mobile phone data cables, computer power cables, display connection cables, HDMI cables or other cables, is increasing, the use of a wire management device can achieve a certain organization effect, but if the size of the gap for embedding the wires in the wire management device cannot be adjusted, this will also make the wire management device unable to adapt to wires of different sizes and unable to adapt to different scenes. In order to solve the above technical problems, this application provides the following embodiments.
[0027] like Figure 1 As shown, the cable management device 1 described in the cable management device embodiment of the present application comprises: a base 10 and a cable management component 20. The cable management component 20 is disposed on the base 10.
[0028] The base 10 can be fixed to an installation location, such as a table, a platform or a wall, or other areas and locations that can be used to place or install the base 10. The base 10 can be arranged in a plate shape or a block shape, and of course, can also be in other shapes.
[0029] One side of the base 10 can be used to set the cable management assembly 20, and the side of the base 10 away from the cable management assembly 20 can be fixed to the installation position. There are many structures and methods for fixing the base 10 to the installation position, and several of them are exemplified below.
[0030] like Figure 2 In the example shown, a bonding member 11 is provided on the side of the base 10 facing away from the cable management assembly 20, which is used to be fixed to the installation position by bonding. The bonding member 11 can be a double-sided adhesive tape, solid glue or glue, etc., and is fixed to the installation position by adhesive bonding. In this way, the cable management device 1 can be installed quickly, which is quick and convenient.
[0031] like Figure 3 In the example shown, the cable management device 1 may include a first magnetic member 121 and a second magnetic member 122. The first magnetic member 121 is disposed on the base 10. The second magnetic member 122 is used to be disposed at the installation position. The first magnetic member 121 and the second magnetic member 122 can fix the base 10 at the installation position by attracting each other. In this way, the cable management device 1 can be quickly disassembled and assembled.
[0032] For example, an elastic clip (not shown in the figure) may be provided on a side of the base 10 facing away from the wire management assembly 20. The opening of the elastic clip faces away from the base 10, that is, faces outward, and can be clamped at the installation position, thereby making the base 10 relatively fixed.
[0033] The wire management assembly 20 is used to organize or place the wire 30. The wire 30 can be a wire, a data line, or a power supply of various electrical or electronic devices, and of course, it can also be other types of wires 30. In this embodiment, the number of wire management assemblies 20 is one or at least two. If the number of wire management assemblies 20 is at least two, the at least two wire management assemblies 20 can be arranged side by side at intervals, so that the wire management device 1 can organize multiple wires 30 at the same time.
[0034] As Figure 4 shown, the wire management assembly 20 may include a wire management member 21 and an adjusting member 22 provided on the base 10. The wire management member 21 is used to enclose a wire receiving area 210 for the wire 30 to pass through. The wire receiving area 210 is for the wire 30 to pass through. For example, the wire management member 21 itself can form the wire receiving area 210, or the wire management member 21 can jointly form the wire receiving area 210 with the base 10 and the adjusting member 22. The wire receiving area 210 can be arranged in a circular shape. The wire 30 passes through the wire receiving area 210, and the wire management member 21 can be used to lock, hook, or support the wire 30, thereby achieving the wire management effect. Specifically, the wire management member 21 can be arranged in a rope shape, a filament shape, or a sheet shape. For example, the wire management member 21 can be a nylon rope, a plastic rope, a hemp rope, a fiber filament, a metal rope, or a metal wire, etc., or it can also be in a sheet form. The wire management member 21 can be configured to have a relatively small friction coefficient compared to materials such as rubber, so as to reduce the wear on the wire 30 caused by the user when pulling.
[0035] The adjusting member 22 can be connected to the wire management member 21 and is used to adjust the size of the wire receiving area 210. The size of the wire receiving area 210 will affect the effect of the wire 30 passing through and being fixed. In this embodiment, the size of the wire receiving area 210 refers to the theoretical size of the wire receiving area 210, or it can be the maximum size that can be achieved based on the current structural form of the wire management device 1. For example, the wire management member 21 is a nylon rope. If the nylon rope forms a circle, that is, the wire receiving area 210. Since the nylon rope is not a rigid object, it may freely droop or present a "shrunken" state under normal conditions. In this state, the area of the wire receiving area 210 is actually very small, but it can be artificially restored to a larger state. Regardless of the state, in a certain structure, the wire receiving area 210 will theoretically have a maximum area, that is, the size of the wire receiving area 210. Therefore, in this embodiment, the size of the wire receiving area 210 can refer to the maximum size that the wire receiving area 210 surrounded by the wire management member 21 can theoretically reach based on the current structure of the wire management device 1.
[0036] In this embodiment, by providing an adjusting member 22 to connect the wire arranging member 21, it is used to adjust the size of the wire receiving area 210 surrounded by the wire arranging member 21, so as to adapt to wires 30 of different sizes, enrich the practicability of the wire arranging device 1, and it is also possible to facilitate the threading of the wire 30 by adjusting the size of the wire receiving area 210. After threading, the size of the wire receiving area 210 can be adjusted again, which can better stabilize or fix the wire 30 and reduce the probability of the wire 30 falling off. In this way, a better wire arranging effect can be achieved and the reliability of the wire arranging device 1 can be improved.
[0037] There are various structures and methods for the adjusting member 22 to adjust the size of the wire receiving area 210. This embodiment exemplarily proposes the following implementation methods.
[0038] The first implementation method: As Figures 4 to 8 , at least one end of the wire arranging member 21 is movably connected to the adjusting member 22, so that at least one end of the wire arranging member 21 can move relative to the adjusting member 22 to adjust the length of the wire arranging member 21 for surrounding the wire receiving area 210, and then adjust the size of the wire receiving area 210. In other words, through the relative position of the wire arranging member 21 and the adjusting member 22, an effect similar to that the wire arranging member 21 can be telescopic is achieved, so that the size of the wire receiving area 210 can be increased or decreased.
[0039] By providing that at least one end of the wire arranging member 21 is movably connected to the adjusting member 22, the wire arranging member 21 can move relative to the adjusting member 22, so that the size of the wire receiving area 210 can be quickly adjusted, and the operation is convenient, the structure is simple, and the practicability is strong.
[0040] Regarding the connection relationship among the wire arranging member 21, the adjusting member 22 and the base 10, there can also be various situations in the first implementation method. The following specifically gives several exemplary situations.
[0041] Situation 1: As Figure 4 and Figure 5 shown, the adjusting member 22 is connected to the base 10, for example, it can be fixed to the base 10. One end of the wire arranging member 21 can be connected to the base 10 or the adjusting member 22, for example, fixed to the base 10 or the adjusting member 22. Among them, Figure 4 shows that one end of the wire arranging member 21 is connected to the base 10, Figure 5One end of the cable management member 21 is shown connected to the adjusting member 22. The other end of the cable management member 21 is movably connected to the adjusting member 22, and the other end of the cable management member 21 can move relative to the adjusting member 22. Specifically, one end of the cable management member 21 can be fixed, and the other end is configured to be movable. The section of the cable management member 21 extending from one end thereof to the adjusting member 22 is used to enclose a wire receiving area 210. By pulling the other end of the cable management member 21, the length of the above-mentioned section can be adjusted, and thus the size of the wire receiving area 210 can be adjusted. That is, by moving the other end of the cable management member 21 relative to the adjusting member 22, the length of the cable management member 21 from one end thereof to the adjusting member 22 is adjusted, and then the size of the wire receiving area 210 is adjusted. Optionally, the adjusting member 22 is detachably fixed to the base 10. For example, snap fixation, buckle fixation, screw fixation, etc.
[0042] On the basis of Case 1, it can be further deformed as follows: As Figure 6 shown, one end of the cable management member 21 may not be fixed to the base 10. Instead, another adjusting member 22 is used to connect one end of the cable management member 21. In other words, the number of adjusting members 22 of the cable management assembly 20 can be two. One end of the cable management member 21 is movably connected to one adjusting member 22, and the other end of the cable management member 21 is movably connected to another adjusting member 22. In this way, the movable adjustment of both ends of the cable management member 21 can be achieved, making the adjustment of the size of the wire receiving area 210 more flexible and convenient.
[0043] Regarding the above description, as Figure 7 and Figure 8 shown, the adjusting member 22 can be an elastic buckle, which specifically can include a buckle body 221, an elastic support member 222, and a pressing member 223. The buckle body 221 can be provided with a through hole 2210. The pressing member 223 is provided with a threading hole 2230. The pressing member 223 is movably inserted into the buckle body 221 in a direction perpendicular to the axis of the through hole 2210. The elastic support member 222 is disposed inside the buckle body 221 and is used to elastically support the pressing member 223. Specifically, the axes of the through hole 2210 and the threading hole 2230 are parallel or substantially parallel. Optionally, the axis of the through hole 2210 is parallel to the side surface of the base 10 where the adjusting member 22 is provided. In this embodiment, parallel can allow a certain error range, such as -5° - 5°, and within this error range, it can be considered parallel. Of course, the axis of the through hole 2210 is perpendicular to the side surface of the base 10 where the adjusting member 22 is provided. In this embodiment, perpendicular can allow a certain error range, such as -5° - 5°, and within this error range, it can be considered perpendicular. Optionally, the above-mentioned elastic support member 222 is a spring.
[0044] When the pressing member 223 moves into the buckle body 221 to the first position, the elastic support member 222 is compressed, and the threading hole 2230 and the through hole 2210 are communicated. When the pressing member 223 moves out of the buckle body 221 to the second position under the elastic abutment of the elastic support member 222, the threading hole 2230 and the through hole 2210 are arranged in a staggered manner. Among them, Figure 7 It shows that the pressing member 223 is located at the second position. Figure 8 It shows that the pressing member 223 is located at the first position. The pressing member 223 can move between the first position and the second position when being pressed.
[0045] Such as Figure 4 and Figure 5 shown, the other end of the wire management member 21 passes through the through hole 2210 and the threading hole 2230. Such as Figure 6 shown, one end of the wire management member 21 passes through the through hole 2210 and the threading hole 2230 of one adjusting member 22, and the other end of the wire management member 21 passes through the through hole 2210 and the threading hole 2230 of another adjusting member 22. In this way, the wire management member 21 can move in the through hole 2210 and the threading hole 2230 when the pressing member 223 moves to the corresponding position in the direction of the first position. The corresponding position where the pressing member 223 moves to the first position is related to the thickness of the wire 30. Within the range from this corresponding position to the first position, the wire management member 21 can move in the through hole 2210 and the threading hole 2230, and thus the size of the wire accommodating area 210 can be adjusted.
[0046] When the pressing member 223 moves to the second position to the corresponding position, it is blocked. Similarly, the corresponding position where the pressing member 223 moves to the second position is related to the thickness of the wire 30. Within the range from this corresponding position to the second position, the wire management member 21 can be blocked, specifically blocked between the upper edge of the through hole 2210 of the buckle body 221 and the lower edge of the threading hole 2230, and thus the size of the wire accommodating area 210 can be kept relatively stable, which is convenient for fixing the wire 30.
[0047] Optionally, a clamping block 2231 can be convexly arranged on the circumferential side of the end of the pressing member 223 facing the buckle body 221. Such as Figure 7 shown, the clamping block 2231 can abut against the upper edge of the through hole 2210 of the buckle body 221 during the process of the pressing member 223 moving out of the buckle body 221, and the pressing member 223 is located at the second position. Such as Figure 8 shown, the clamping block 2231 can abut against the lower edge of the through hole 2210 of the buckle body 221 during the process of the pressing member 223 moving into the buckle body 221, and the pressing member 223 is located at the first position.
[0048] By setting the adjusting member 22 as the elastic buckle with the above structure, the positional relationship between the wire arranging member 21 and the adjusting member 22 can be quickly adjusted by pressing the pressing member 223. Furthermore, the length of the section of the wire arranging member 21 surrounding the wire accommodating area 210 can be quickly changed, realizing the quick adjustment of the size of the wire accommodating area 210. The structure is simple and reliable and can adapt to wire materials 30 of different sizes. Moreover, when the user inadvertently pulls the wire material 30, due to the elasticity of the elastic buckle, it can play a buffering role, and the size of the wire accommodating area 210 will expand relatively, thereby giving a larger margin for the wire material 30 to move and preventing the wire material 30 from being pulled and broken. Thus, the wire material 30 can be well protected.
[0049] Case 2: As Figure 9 and Figure 10 shown, the adjusting member 22 is connected to the base 10, for example, it can be fixed to the base 10. Both ends of the wire arranging member 21 are movably connected to the adjusting member 22, and both ends of the wire arranging member 21 can move relative to the adjusting member 22 respectively to adjust the length of the wire arranging member 21 for surrounding the wire accommodating area 210, thereby adjusting the size of the wire accommodating area 210. When adjusting the size of the wire accommodating area 210, the two ends of the wire arranging member 21 can be moved relative to the adjusting member 22 respectively by pulling, so that the size of the wire accommodating area 210 can be adjusted conveniently and quickly.
[0050] On the basis of Case 2, it can be further deformed as follows: As Figure 11 shown, both ends of the wire arranging member 21 are movably connected to the adjusting member 22 and are further connected to the base 10, specifically, it can be fixed to the base 10. And the adjusting member 22 is movable relative to the base 10. Thus, by dragging the adjusting member 22 relative to the base 10, that is, relative to both ends of the wire arranging member 21, the adjustment of the size of the wire accommodating area 210 can be realized.
[0051] As Figure 9 shown, the adjusting member 22 in the above Case 1 can be used to adjust the wire arranging member 21, that is, the adjusting member 22 as Figure 7 and Figure 8 shown, which has a through hole 2210 and a threading hole 2230. Both ends of the wire arranging member 21 can be connected to the same adjusting member 22 simultaneously and pass through the through hole 2210 and the threading hole 2230 of the same adjusting member 22 simultaneously. Furthermore, both ends of the wire arranging member 21 can be movably connected to the adjusting member 22, and thus the size of the wire accommodating area 210 can be adjusted.
[0052] In the wire arranging assembly 20 as Figure 10 and Figure 11 shown, the structure of the adjusting member 22 can be substantially the same as the structure of the adjusting member 22 as Figure 7 and Figure 8 shown. The main difference is that: As Figure 12As shown, the buckle body 221 of the adjusting member 22 is provided with two through holes 2210 arranged at intervals, and the pressing member 223 is provided with two through holes 2230 arranged at intervals. The two through holes 2210 and the two through holes 2230 correspond to each other one by one. When the pressing member 223 moves into the buckle body 221 to the first position, the elastic support member 222 is compressed, and the through holes 2230 and the through holes 2210 are in one-to-one correspondence and communication.
[0053] Optionally, the pressing member 223 can be an integral structure, that is, when the pressing member 223 is pressed, the two through holes 2230 move synchronously. Optionally, the pressing member 223 can also be a split structure, that is, it includes two pressing sub-members arranged in parallel. Each pressing sub-member can be independently pressed and can move independently. Correspondingly, the elastic support member 222 can also be a split structure, that is, it includes two elastic sub-members arranged in parallel, which support the two pressing sub-members one by one, so that asynchronous adjustment in the two through holes 2230 can be realized, and more usage scenarios can be adapted.
[0054] Of course, based on the cable management component 20 as shown in Figure 11 The same adjusting member 22 as shown in Figure 7 and Figure 8 is used to realize the corresponding functions. The two ends of the cable management member 21 are movably connected to the adjusting member 22 and are further fixed to the base 10. Among them, the two ends of the cable management member 21 pass through the same through hole 2210 and the through hole 2230 of the same cable management member 21.
[0055] Second embodiment: As shown in Figure 13 and Figure 14 The adjusting member 22 is slidably arranged on the base 10. The two ends of the cable management member 21 can approach or move away from each other, and thus the size of the adjusting wire accommodating area 210 can be adjusted.
[0056] Case 1: As shown in Figure 13 One end of the cable management member 21 is connected to the base 10, for example, it can be fixed to the base 10. The other end of the cable management member 21 is connected to the adjusting member 22. The adjusting member 22 is used to slide relative to the base 10 to drive the other end of the cable management member 21 to move, and thus the size of the adjusting wire accommodating area 210. In this way, by sliding the other end of the cable management member 21 relative to the base 10 along with the adjusting member 22, the two ends of the cable management member 21 approach or move away from each other, and thus the area between the two ends of the cable management member 21 becomes tighter or looser, realizing the adjustment of the size of the wire accommodating area 210.
[0057] Optionally, the other end of the cable management member 21 can be fixed to the adjusting member 22.
[0058] Optionally, the other end of the cable management member 21 is movably connected to the adjusting member 22. The structure of the adjusting member 22 can be the same as that of the adjusting member 22 in the above first embodiment, that is, an elastic buckle. In this way, multi-stage adjustment can be achieved. The adjusting member 22 slides relative to the base 10, and the wire receiving area 210 can be adjusted. The other end of the cable management member 21 moves further relative to the adjusting member 22 to achieve further adjustment of the wire receiving area 210.
[0059] Case 2: As Figure 14 shown, the number of adjusting members 22 is two, and both ends of the cable management member 21 are respectively connected to the two adjusting members 22 in one-to-one correspondence. The two adjusting members 22 can be arranged at intervals and are respectively slidably arranged on the base 10. Each of the two adjusting members 22 can slide relative to the base 10 to drive the cable management member 21 to move, thereby adjusting the size of the wire receiving area 210. In this way, both ends of the cable management member 21 slide relative to the base 10 along with their respective corresponding adjusting members 22, so that the two ends of the cable management member 21 approach or move away from each other, and further, the area between the two ends of the cable management member 21 becomes tighter or looser, realizing the adjustment of the size of the wire receiving area 210.
[0060] For the above two cases, as Figures 13 to 15 shown, each adjusting member 22 is provided with a slider 215. The base 10 is provided with a chute 13 that cooperates with the slider 215. The slider 215 is slidably embedded in the chute 13. The sliding cooperation between the slider 215 and the chute 13 enables the two ends of the cable management member 21 to approach or move away from each other. Further, the base 10 is further provided with a locking groove 14 located on at least one side of the chute 13 and communicating with the chute 13. The base 10 is provided with a locking member 15. The locking member 15 is movably embedded in the locking groove 14, and the locking member 15 is used to move in the locking groove 14 and then abut against the slider 215 to lock the slider 215. Further, one or more fixing grooves 2150 are arranged in parallel on the slider 215. The fixing grooves 2150 cooperate with the locking member 15. When the locking member 15 extends into the fixing groove 2150, the slider 215 can be locked to limit further movement of the adjusting member 22.
[0061] Third Embodiment: On the basis of the first embodiment, the adjusting member 22 is not fixed to the base 10, but can slide relative to the base 10 like the second embodiment. In this way, integrating the advantages of the first embodiment and the second embodiment, multi-functional and multi-method adjustment can be achieved, and the degree of freedom of adjustment can be improved.
[0062] For example, for Figure 5 , Figure 9 and Figure 10For the structure shown, the adjusting member 22 can also slide relative to the base 10 further. The sliding fit structure can be the sliding fit structure described in the second embodiment above. Further, the sliding grooves 13 corresponding to different wire management assemblies 20 can be communicated, that is, multiple adjusting members 22 can all slide within the same sliding groove 13. The extending length of the sliding groove 13 can be the same as, or approximately the same as, or slightly less than the extending length of the base 10. In this way, the adjusting member 22 can freely adjust its position within the sliding groove 13, thereby enabling the wire management device 1 to be more suitable for use in more scenarios and being more convenient.
[0063] In this embodiment, one end of the wire management member 21 being fixed to the base 10 or the adjusting member 22 can include the end of one end of the wire management member 21 being fixed to the base 10 or the adjusting member 22, and other positions adjacent to the end of one end of the wire management member 21 being fixed to the base 10 or the adjusting member 22. That is, the above situations can all be considered as one end of the wire management member 21 being fixed to the base 10 or the adjusting member 22, and it is not limited to "end fixing". The other end of the wire management member 21 being fixed to the adjusting member 22 or the base 10 can include the end of the other end of the wire management member 21 being fixed to the base 10 or the adjusting member 22, and other positions adjacent to the end of the other end of the wire management member 21 being fixed to the base 10 or the adjusting member 22. That is, the above situations can all be considered as the other end of the wire management member 21 being fixed to the base 10 or the adjusting member 22, and it is not limited to "end fixing".
[0064] Optionally, in addition to being the elastic buckle described above, the adjusting member 22 can also be Figure 16 and Figure 17 the fixed buckle 22a shown. For example, the fixed buckle 22a can include two components, one of which is the pressing member 221a and the other is the fixing member 222a. The pressing member 221a and the fixing member 222a are rotatably connected. The wire management member 21 is passed through between the fixing member 222a and the pressing member 221a. The pressing member 221a can press the wire management member 21 by rotating relative to the fixing member 222a, or release the pressing on the wire management member 21.
[0065] Specifically, a receiving groove 2220a is formed on one side of the fixing member 222a. The pressing member 221a is rotatably connected within the receiving groove 2220a or rotatably connected outside the receiving groove 2220a to cover the receiving groove 2220a. The pressing member 221a is used to press the wire arranging member 21. Specifically, the wire arranging member 21 can pass through between the pressing member 221a and the fixing member 222a to reach the receiving groove 2220a. When the pressing member 221a rotates to cover the receiving groove 2220a, it can press the wire arranging member 21, thereby restricting the movement of the wire arranging member 21. When the pressing member 221a rotates to expose the receiving groove 2220a, it does not press the wire arranging member 21 or releases the pressing on the wire arranging member 21, so that the wire arranging member 21 can move between the pressing member 221a and the fixing member 222a. Further, a pressing sub - portion 2211a protrudes from the side of the pressing member 221a facing the receiving groove 2220a. The pressing sub - portion 2211a can be serrated, or can also be in a block shape. If at least one adjusting member 22 in the wire arranging assembly 20 is a fixing buckle 22a, then the connection relationship and positional relationship among the wire arranging member 21, the base 10, and the adjusting member 22 can refer to the descriptions of the above two embodiments. The fixing buckle 22a and the above - mentioned elastic buckle can be used simultaneously, that is, the wire arranging assembly 20 can include a fixing buckle 22a and an elastic buckle.
[0066] In summary, by providing the adjusting member 22 to connect the wire arranging member 21 and used to adjust the size of the wire receiving area 210 surrounded by the wire arranging member 21, it can thus adapt to wire materials 30 of different sizes, enrich the practicality of the wire arranging device 1, and can better stabilize or fix the wire materials 30, reducing the probability of the wire materials 30 falling off. In this way, a better wire arranging effect can be achieved, and the reliability of the wire arranging device 1 can be improved.
[0067] The above are only the embodiments of the present application, and do not limit the patent scope of the present application accordingly. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present application, or directly or indirectly applied in other related technical fields, shall be equally included in the patent protection scope of the present application.
Claims
1. A wire management device, characterized in that, comprising: a base; a wire management component, including an adjusting member and a wire management member disposed on the base, the wire management member being used to enclose a wire receiving area for wire threading, the adjusting member being connected to the wire management member and used to adjust the size of the wire receiving area; at least one end of the wire management member is movably connected to the adjusting member, so that during the movement of at least one end of the wire management member relative to the adjusting member, the length of the wire management member for enclosing the wire receiving area can be adjusted, thereby adjusting the size of the wire receiving area; the adjusting member is connected to the base, one end of the wire management member is connected to the base or the adjusting member, the other end of the wire management member is movably connected to the adjusting member, and the other end of the wire management member can move relative to the adjusting member to adjust the length of the wire management member from one end thereof to the adjusting member, thereby adjusting the size of the wire receiving area; the adjusting member is an elastic buckle, including a buckle body, an elastic support member and a pressing member. The buckle body is provided with a through hole, and the pressing member is provided with a threading hole. The pressing member is movably inserted into the buckle body in a direction perpendicular to the axis of the through hole. The elastic support member is disposed in the buckle body and used to elastically support the pressing member. Wherein, when the pressing member moves into the buckle body to a first position, the elastic support member is compressed, the threading hole and the through hole are communicated, and the other end of the wire management member penetrates through the through hole and the threading hole, so that the wire management member can move in the through hole and the threading hole when the pressing member moves to a corresponding position in the first position. When the pressing member is elastically abutted by the elastic support member and moves out of the buckle body to a second position, the threading hole and the through hole are arranged in a dislocation manner, so that the wire management member can be blocked when the pressing member moves to a corresponding position in the second position.
2. The wire management device according to claim 1, characterized in that: the adjusting member is connected to the base, and both ends of the wire management member are movably connected to the adjusting member, and both ends of the wire management member can move relative to the adjusting member respectively to adjust the length of the wire management member for enclosing the wire receiving area, thereby adjusting the size of the wire receiving area.
3. The wire management device according to claim 1, characterized in that: the buckle body is provided with two spaced through holes, the pressing member is provided with two spaced threading holes, the pressing member is movably inserted into the buckle body in a direction perpendicular to the axis of the through hole, and the elastic support member is disposed in the buckle body and used to elastically support the pressing member; Wherein, when the pressing member moves towards the buckle body to the first position, the elastic support member is compressed, and the threading holes and the through holes are in one-to-one correspondence and communication; both ends of the wire arranging member are respectively inserted into the corresponding through holes and threading holes, so that the wire arranging member can move in the through holes and the threading holes when the pressing member moves towards the first position to the corresponding position; when the elastic support member elastically returns to abut against the pressing member away from the buckle body to the second position, the threading holes and the through holes are arranged in a dislocation manner, so that the wire arranging member is stopped when the pressing member moves towards the second position to the corresponding position.
4. The wire arranging device according to claim 1, characterized in that: The adjusting member is a fixed buckle, including a pressing member and a fixing member. The pressing member and the fixing member are rotatably connected. The fixing member is connected to the base. The wire arranging member is inserted between the fixing member and the pressing member. The pressing member can press the wire arranging member by rotating relative to the fixing member, or release the pressing on the wire arranging member, so that at least one end of the wire arranging member can move relative to the fixing member to adjust the length for enclosing the wire accommodating area.
5. The wire arranging device according to claim 1, characterized in that: The adjusting member is slidably arranged on the base. One end of the wire arranging member is connected to the base, and the other end of the wire arranging member is connected to the adjusting member. The adjusting member is used to drive the other end of the wire arranging member to move by sliding relative to the base, so as to adjust the size of the wire accommodating area; or, the number of the adjusting members is two, and both ends of the wire arranging member are respectively connected to the two adjusting members in one-to-one correspondence. The two adjusting members are arranged at intervals and are respectively slidably arranged on the base. Each of the two adjusting members can drive the wire arranging member to move by sliding relative to the base, so as to adjust the size of the wire accommodating area.
6. The wire arranging device according to claim 5, characterized in that: The adjusting member is provided with a slider, and the base is provided with a chute. The slider is slidably embedded in the chute; the base is further provided with locking grooves on both sides of the chute and communicating with the chute. The base is provided with a locking member, and the locking member is movably embedded in the locking groove. The locking member is used to abut against the slider to lock the slider.
7. The wire arranging device according to any one of claims 1-6, characterized in that: The wire arranging member is arranged in a rope shape, a filament shape or a sheet shape; and / or, an adhesive is provided on the side of the base facing away from the wire arranging member and the adjusting member for fixing to the installation position by adhesion; and / or, the wire arranging device includes a first magnetic member and a second magnetic member. The first magnetic member is arranged on the base, and the second magnetic member is used to be arranged at the installation position. The first magnetic member and the second magnetic member can fix the base to the installation position by mutual attraction; and / or, the number of the wire arranging assemblies is at least two, and they are arranged side by side at intervals.
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