Wire arrangement device, cabinet assembly and electrical equipment
By designing a movable cable management device, a continuous cable routing channel is formed using constraint units, which solves the problem of cross-tangling during the storage of optical fiber cables, realizes the orderly unfolding and storage of cables, and improves the convenience of maintenance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2026-03-20
AI Technical Summary
Existing methods of storing fiber optic cables can easily lead to tangling and cross-linking, posing a potential malfunction.
A cable management device is provided, which uses constraint units to form a movable connection, allowing the cable to switch between an extended and retracted state. The movable and rotatable connection of the constraint units forms a continuously extending cable routing channel, avoiding cable clutter.
It enables the orderly unfolding and storage of cables, avoids tangling, and improves the convenience of cable maintenance and the efficiency of wiring in confined spaces.
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Figure CN224020039U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of cable equipment, and in particular to a cable arrangement, a cabinet assembly and electrical equipment. BACKGROUND
[0002] An optical fiber cable is a kind of communication cable.
[0003] In the related art, the optical fiber cable is usually stored in a cabinet and bound by a binding belt.
[0004] However, this way of storing the optical fiber cable has the problem of cross-winding of the cable, which has hidden faults. CONTENT OF THE INVENTION
[0005] The present application provides a cable arrangement to improve the convenience of cable storage and at least partially solve the above technical problems.
[0006] To achieve the above-mentioned purpose, according to the first aspect of the present application, a cable arrangement is provided, which comprises:
[0007] a constraint unit for constraining at least a part of the cable extended from the first component to the second component;
[0008] wherein the plurality of constraint units constitute a movable connection, so that the cable arrangement has an unfolded state in which the cable can be unfolded and a folded state in which the cable can be stored.
[0009] Optionally, the constraint unit comprises:
[0010] a channel member for providing a unit channel for the cable to pass through.
[0011] Optionally, adjacent constraint units constitute a rotating connection, so that the unit channels of the two constraint units can constitute at least a part of a continuous extension of the cable channel.
[0012] Optionally, the cable arrangement further comprises:
[0013] a connecting member for constituting a movable connection with the first component, the second component or the constraint unit.
[0014] Optionally, the constraint unit comprises:
[0015] a channel member for providing a unit channel for the cable to pass through.
[0016] The cable arrangement comprises two connecting members, and the unit channel of the constraint unit is arranged between the two connecting members connected to the same constraint unit.
[0017] Optionally, the channel member comprises:
[0018] a first type of frame portion for connecting the connecting member; and
[0019] a second type of frame portion for connecting the first type of frame portion;
[0020] wherein the first type of frame portion and the second type of frame portion define a unit channel of the constraint unit.
[0021] Optionally, the second type of frame portion comprises:
[0022] a first sub-frame portion connected to one of the first type of frame portions; and / or
[0023] a second sub-frame portion connected to another first type of frame portion of the same channel member; wherein, in the case that the second type of frame portion comprises the first sub-frame portion and the second sub-frame portion, the first sub-frame portion and the second sub-frame portion are located between two opposite first type of frame portions.
[0024] Optionally, wherein a plurality of the constraint units comprise:
[0025] a first type of constraint unit for connecting the first component or the second component; and
[0026] a second type of constraint unit for connecting the first type of constraint unit and / or another second type of constraint unit.
[0027] Optionally, the connecting member comprises:
[0028] a first type of connecting member for connecting two adjacent first type of constraint units or for connecting the adjacent first type of constraint unit and the second type of constraint unit.
[0029] Optionally, the connecting member further comprises:
[0030] a second type of connecting member for connecting the first type of constraint unit and the first component or for connecting the second type of constraint unit and the second component.
[0031] According to a second aspect of the present application, there is provided a cabinet assembly comprising a cable management device as described above;
[0032] The cabinet assembly further comprises:
[0033] a first component and a second component;
[0034] wherein the cable management device is connected to the first component and the second component respectively.
[0035] Optionally, the cabinet assembly further comprises:
[0036] a frame configured to movably connect with at least one of the first component and the second component;
[0037] wherein the at least one of the first component and the second component is movable relative to the frame along a first direction.
[0038] Optionally, the frame comprises:
[0039] a frame body configured to provide a receiving space for receiving the first component and the second component; and
[0040] a baffle configured to rotatably connect with the first component;
[0041] wherein the baffle is configured to rotate relative to the frame body to close or open the receiving space.
[0042] Optionally, the cabinet assembly further comprises:
[0043] a stopper configured to limit displacement of the second component relative to the frame along the first direction;
[0044] wherein the stopper is located between the frame body and the second component.
[0045] Optionally, the cabinet assembly further comprises:
[0046] a guide configured to guide a cable extending to the second component;
[0047] wherein at least a portion of the guide is connected to the second component.
[0048] Optionally, the cabinet assembly has:
[0049] a cable inlet configured to allow the cable to pass through the plurality of constraint units of the first component, so that the cable extends from the first component to the second component;
[0050] a cable outlet configured to allow the cable to pass out;
[0051] wherein the cable extends from the second component to the cable outlet via the guide, and the cable inlet and the cable outlet are located on the same side of the guide.
[0052] According to a third aspect of the present application, there is provided an electrical device comprising the cable management device or the cabinet assembly as described above.
[0053] The present application has the beneficial effect of providing a cable management device which improves the convenience of cable maintenance.
[0054] More specifically, some embodiments of the present application can produce the following specific benefits:
[0055] In the wire arrangement device, the wire arrangement device comprises a constraint unit for constraining at least a part of the cable extended from the first component to the second component, wherein a plurality of constraint units constitute a movable connection to enable the wire arrangement device to have an unfolded state enabling the cable to be unfolded and a folded state enabling the cable to be stored. By the above technical solution, the cable is constrained by the plurality of constraint units in movable connection, and the wire arrangement device has the unfolded state enabling the cable to be unfolded and the folded state enabling the cable to be stored, so that the cable can be switched between the unfolded state and the folded state. In the case that the plurality of constraint units are folded in movable connection to enable the wire arrangement device to have the folded state, the cable can be folded along a certain wire arrangement to avoid the cable being disordered after being stored, and the constraint unit can unfold the cable after being unfolded to facilitate the maintenance of the cable and the wiring in a small space.
[0056] Other features and advantages of the present application will be described in detail in the following detailed description. BRIEF DESCRIPTION OF DRAWINGS
[0057] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without any creative effort on the basis of these drawings.
[0058] In order to more completely understand the present application and its beneficial effects, the following will be described in conjunction with the drawings, wherein the same reference numerals in the following description represent the same parts.
[0059] Figure 1 is a schematic diagram of the overall structure of the wire arrangement device provided in the exemplary embodiments of the present application;
[0060] Figure 2 is a schematic diagram of the overall structure of the wire arrangement device provided in the exemplary embodiments of the present application; Figure 1 is a sectional view along A-A in the wire arrangement device;
[0061] Figure 3 is a sectional view along B-B in the wire arrangement device; Figure 1
[0062] Figure 4 is a schematic diagram of the overall structure of the wire arrangement device provided in the exemplary embodiments of the present application;
[0063] Figure 5 is a schematic diagram of the overall structure of the wire arrangement device provided in the exemplary embodiments of the present application;
[0064] Figure 6 is the overall structure schematic diagram of the first type of constraint unit in the example embodiment of the present application;
[0065] Figure 7 is the overall structure schematic diagram of the second type of constraint unit in the example embodiment of the present application;
[0066] Figure 8 is the overall structure schematic diagram of the cabinet assembly in the example embodiment of the present application;
[0067] Figure 9 is the overall structure exploded schematic diagram of the cabinet assembly in the example embodiment of the present application;
[0068] Figure 10 is the overall structure connection schematic diagram of the first component and the wire arrangement device of the cabinet assembly in the example embodiment of the present application;
[0069] Figure 11 is the overall structure exploded schematic diagram of the first component and the wire arrangement device of the cabinet assembly in the example embodiment of the present application;
[0070] Figure 12 is the overall structure connection schematic diagram of the first component and the wire arrangement device of the cabinet assembly in the example embodiment of the present application from another angle;
[0071] Figure 13 is the G-G cross-sectional structure schematic diagram provided in the example embodiment of the present application; Figure 12
[0072] is the H-H cross-sectional structure schematic diagram provided in the example embodiment of the present application; Figure 14 Figure 12 is the C-C cross-sectional structure schematic diagram provided in the example embodiment of the present application;
[0073] Figure 15 Figure 12 is the D enlarged schematic diagram provided in the example embodiment of the present application;
[0074] Figure 16 is the E enlarged schematic diagram provided in the example embodiment of the present application; Figure 13
[0075] is the F enlarged schematic diagram provided in the example embodiment of the present application; Figure 17 Figure 14 is the F enlarged schematic diagram provided in the example embodiment of the present application;
[0076] Figure 18 Figure 15 is the F enlarged schematic diagram provided in the example embodiment of the present application;
[0077] Figure 19 is a structure diagram showing the connection between the second component and the guide and the stopper provided in the exemplary embodiments of the present application;
[0078] Figure 20 is a perspective view showing that a plurality of constraint units of the wire management device of the cabinet assembly constitute a continuous wire channel in the exemplary embodiments of the present application.
[0079] Explanation of Reference Signs:
[0080] 10, wire management device; 10a, wire channel;
[0081] 100, constraint unit; 100a, first end opening; 100b, second end opening;
[0082] 110, channel member; 110a, unit channel; 111, first type frame portion;
[0083] 112, second type frame portion; 1121, first sub-frame portion; 1122, second sub-frame portion;
[0084] 120, first type constraint unit; 130, second type constraint unit;
[0085] 200, connecting member;
[0086] 210, first type connecting member; 210a, pivot hole;
[0087] 220, second type connecting member; 221, extension portion; 222, fixing portion; 223, fastening portion;
[0088] 300, first pivot;
[0089] 1, cabinet assembly;
[0090] 20, first component; 20a, screw hole;
[0091] 30, second component;
[0092] 40, frame; 410, frame body; 410a, accommodation space; 420, baffle; 430, cover plate;
[0093] 50, stopper; 60, guide; 70, stabilizing connecting member; 80, second pivot;
[0094] 1a, cable inlet; 1b, cable outlet. DETAILED DESCRIPTION
[0095] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative effort are within the protection scope of the present application.
[0096] With reference to Figure 8 , for the convenience of introduction, the up, down, left and right directions are adopted in the corresponding drawings to facilitate the introduction of the relative positional relationship between the parts in the present application, which should not be understood as the limitation of the absolute position.
[0097] And, in the present application, the first direction corresponds to the left-right direction, and here the first direction indicates the left-right direction only for the convenience of introducing the specific embodiments of the present application, and the first direction does not have an absolute corresponding relationship with the left-right direction.
[0098] The first direction of the present application is also only for expressing the relative positional relationship, and they only indicate the approximate direction, not the absolute geometric relationship.
[0099] According to the first aspect of the present application, with reference to Figures 1 to 5 and Figure 8 , the present application provides a wire arrangement device 10, comprising a constraint unit 100.
[0100] The constraint unit in the embodiments of the present application is used to constrain at least a part of the cable extended from the first component 20 to the second component 30.
[0101] Among them, the plurality of constraint units 100 in the embodiments of the present application constitute a movable connection, so that the cable passing through the plurality of constraint units 100 at least has an unfolded state and a storage state.
[0102] Through the above technical solution, the plurality of constraint units 100 in movable connection are used to constrain the cable, and the wire arrangement device 10 has an unfolded state capable of unfolding the cable and a folded state capable of storing the cable, so that the cable can be switched between the unfolded state and the storage state. In the case that the plurality of constraint units 100 are folded in a movable connection manner to make the wire arrangement device 10 have a folded state, the cable can be folded along a certain wire, avoiding the disorder of the cable after being stored, and the constraint unit 100 can unfold the cable after being unfolded, facilitating the maintenance of the cable and the wiring in a small space.
[0103] In some embodiments, with reference to Figure 5 , the constraint unit 100 in the embodiments of the present application comprises a channel piece 110.
[0104] The channel member 110 of the embodiment of the present application is used to provide a unit channel 110a for cable threading, the cable can be threaded from one end opening of the unit channel 110a to the other end opening of the unit channel 110a, and then can be threaded into the unit channel 110a of the next adjacent channel member 110, thereby achieving the effect of restraining the cable by the restraint unit.
[0105] And the arrangement of the unit channel 110a of the channel member 110 of the embodiment of the present application effectively guides the cable to achieve extension, and is also beneficial to heat dissipation of the cable.
[0106] In some embodiments, with reference to Figure 20 The adjacent restraint units 100 are rotationally connected, so that the unit channels 110a of the two restraint units 100 can constitute at least part of a continuously extended wiring channel 10a.
[0107] In the embodiment of the present application, the unit channel 110a of the restraint unit 100 constitutes a continuously extended wiring channel 10a, in this case, the cable management device 10 is in an unfolded state, and the cable can extend from the first component 20 to the second component 30, in this case, the cable is in an unfolded state, and the restraint unit 100 plays a restraining effect on the cable, avoiding free swinging of the cable, enabling the cable to extend along a straight path, avoiding deviation or entanglement caused by external interference, and also reducing damage to the cable caused by excessive bending.
[0108] It should be noted that, with reference to Figure 2 Each restraint unit has a first end opening 100a and a second end opening 100b.
[0109] In the embodiment of the present application, along the extension direction of the continuously extended wiring channel 10a, i.e. the first direction, among the three restraint units arranged in sequence, the middle restraint unit is defined as the first restraint unit, the left end restraint unit is defined as the second restraint unit, and the right end restraint unit is defined as the third restraint unit.
[0110] The first end opening 100a of the first restraint unit and the second end opening of the second restraint unit are connected, the second end opening 100b of the first restraint unit and the first end opening 100a of the third restraint unit are connected, and then the unit channels 110a of the first restraint unit, the second restraint unit and the third restraint unit are connected in communication, thereby forming a continuously extended wiring channel 10a, in this case, the cable management device 10 is in an unfolded state to make the cable unfolded or pass through straight.
[0111] When the first end opening 100a of the first constraint unit and the second end opening 100b of the second constraint unit are no longer connected, and the second end opening 100b of the first constraint unit is no longer connected to the first end opening 100a of the third constraint unit, the unit channel 110a of the constraint unit 100 is no longer connected. In this case, the cable management device 10 is in a folded state to store the cable.
[0112] Furthermore, in the embodiments of this application, the number of first end openings 100a and second end openings 100b of the channel control constraint unit 100 can be connected to achieve the control of the length dimension of the cable that can be unfolded.
[0113] In some embodiments, at least a portion of the unit channel 110a of the constraint unit 100 has a straight extending direction, so that the unit channel 110a of each constraint unit 100 can guide the cable located in the unit channel 110a in a straight direction in at least a portion, so as to achieve the effect of straight constraint on the cable and avoid the problem of the cable bending and causing damage to the wire harness inside the cable.
[0114] In some embodiments, the unit channel 110a of the constraint unit 100 has a straight extending direction. By adopting this scheme, all the cables located in the unit channel 110a of the constraint unit 100 can be straightened to further improve the protection effect of the cables during the rotation of the constraint unit 100.
[0115] In some embodiments, the wiring channel 10a formed by the unit channels 110a of the plurality of constraint units 100 has a straight extending direction.
[0116] In this embodiment, the cable routing channel 10a with a straight extension direction can further prevent the cable from bending and facilitate the cable to be laid straight along the cable routing channel 10a, thus achieving smooth cable laying.
[0117] In some embodiments, when the cable through which the plurality of constraint units 100 are routed is in a retracted state, the unit channels 110a of the plurality of constraint units 100 have parallel extending directions.
[0118] In this embodiment of the application, when the cable through which the multiple constraint units 100 are routed is in a retracted state, the unit channels 110a of the multiple constraint units 100 have parallel extending directions. That is, when the cable is in a retracted state, the multiple constraint units 100 are arranged sequentially along the first direction. In this case, the first end opening of the constraint unit 100 is not connected to the second end opening of another constraint unit 100.
[0119] refer toFigure 1 and Figure 10 The plurality of constraint units 100 are arranged in a folded manner and can accommodate the cable, that is, fold the cable.
[0120] In some embodiments, in the case where the plurality of constraint units 100 of the cable management device 10 form a flat cable channel 10a in the first direction, the cable passing through the plurality of constraint units 100 is unfolded, and the unit channels 110a of the plurality of constraint units 100 have coinciding extension directions. In this case, the unit channels 110a of the plurality of constraint units 100 are directly connected, so that the cable can be routed along the cable channel 10a, and the flatness of the routing is improved.
[0121] In some embodiments, referring to Figure 5 and Figure 9 The cable management device 10 further comprises a connecting member 200.
[0122] The connecting member 200 in the embodiments of the present application is used to connect with the first component 20.
[0123] In some other embodiments, the connecting member 200 can also be connected with the second component 30.
[0124] In some other embodiments, the connecting member 200 can also be connected with the constraint unit.
[0125] In the embodiments of the present application, the connecting member 200 is connected with the first component 20, the second component 30 or the constraint unit 100, which facilitates the connection of the first component 20, the second component 30 and the constraint unit. By using the connecting member, the first component 20 can be connected with the constraint unit 100, and the second component 30 can also be connected with the constraint unit 100, thereby achieving the accommodation of the cable.
[0126] It should be noted that in the case where the connecting member 200 in the embodiments of the present application is connected with the constraint unit, the connecting member 200 on the constraint unit 100 can move with the constraint unit 100, that is, the connecting member 200 can move with the movement of the constraint unit 100, which has higher flexibility. The cable management device 10 in the embodiments of the present application can achieve the effect of dynamically adjusting the cable.
[0127] In some embodiments, referring to Figure 5 The cable management device 10 comprises two connecting members 200, and the unit channel 110a of the constraint unit 100 is arranged between the two connecting members 200 connected to the same constraint unit 100.
[0128] In the embodiment of the present application, by arranging the unit channel 110a of the constraint unit 100 between the two connecting pieces 200 connected to the same constraint unit 100, the constraint unit 100 can be folded along a certain trajectory and angle to realize the storage of the cable, and the cable can be arranged in the unit channel 110a when the cable needs to be unfolded to realize the maintenance of the cable.
[0129] The arrangement of the connecting piece 200 in the embodiment of the present application makes the unit channel 110a of the constraint unit in the process of switching between the folded state and the unfolded state be located between the two connecting pieces 200, so that the stability is high, and the position of the constraint unit 100 can be changed, so that the cable arrangement device 10 can be flexibly switched between the folded state and the unfolded state.
[0130] In some embodiments, the channel piece 110 includes a first type of frame part 111 and a second type of frame part 112.
[0131] Reference Figures 1 to 7 The first type of frame part 111 in the embodiment of the present application is used to connect the connecting piece 200, and the second type of frame part 112 is used to connect the first type of frame part 111.
[0132] The first type of frame part 111 and the second type of frame part 112 define the unit channel 110a of the constraint unit.
[0133] In the embodiment of the present application, the unit channel 110a of the constraint unit is defined by the first type of frame part 111 and the second type of frame part 112, and the split frame part can be more flexible in assembly, such as combining different frame parts according to different cable quantity or path requirements to improve adaptability, and the separated frame part is simpler in manufacturing and reduces cost.
[0134] In some embodiments, the second type of frame part 112 includes a first sub-frame part 1121. In some embodiments, the second type of frame part 112 can also include a second sub-frame part 1122.
[0135] The first sub-frame part 1121 in the embodiment of the present application is connected to a first type of frame part 111, and the second sub-frame part 1122 is connected to another first type of frame part 111 of the same channel piece 110; wherein, in the case where the second type of frame part 112 includes the first sub-frame part 1121 and the second sub-frame part 1122, the first sub-frame part 1121 and the second sub-frame part 1122 are located between two opposite first type of frame parts 111.
[0136] The second type of frame part 112 in the embodiment of the present application is divided into the first sub-frame part 1121 and the second sub-frame part 1122, which can further improve the overall rigidity, disperse stress, avoid overload, and prolong the service life on the basis of the first type of frame part 111 as needed.
[0137] In some embodiments, at least one of the first sub-frame portion 1121 and the second sub-frame portion 1122 is spaced apart from the first type frame portion 111.
[0138] In the embodiments of the present application, at least one of the first sub-frame portion 1121 and the second sub-frame portion 1122 is spaced apart from the first type frame portion 111, which can further improve the heat dissipation effect of the cable.
[0139] In some embodiments, at least one of the first sub-frame portion 1121 and the second sub-frame portion 1122 is spaced apart from the first type frame portion 111, which can further improve the heat dissipation effect of the cable.
[0140] In some embodiments, the plurality of constraint units 100 includes a first type constraint unit 120 and a second type constraint unit 130.
[0141] The first type constraint unit 120 is used to connect the first component 20 or the second component 30, and the second type constraint unit 130 is used to connect the first type constraint unit 120 and / or another second type constraint unit 130.
[0142] Referring to Figure 2 and Figure 10 , in the cable management device 10 formed by the plurality of constraint units, the first type constraint unit 120 is a unit at the end, which can connect the first component 20 or the second component 30, and the first type constraint unit 120 is connected to the first component 20 or the second component 30, and the second type constraint unit 130 can also be connected to the first type constraint unit 120 and the second type constraint unit 130.
[0143] Referring to Figure 6 and Figure 7 , the difference between the first type constraint unit 120 and the second type constraint unit 130 is at least:
[0144] The second type constraint unit 130 is connected to the first type constraint unit 120 or another second type constraint unit, and the first type constraint unit 120 is connected to the first component 20, the second component 30 or the second type constraint unit 130.
[0145] In order to better enable the offline device to flexibly switch the cable between the deployed state and the storage state, referring to Figure 6 and Figure 7The length L1 of the first type of constraint unit 120 can be set to be smaller than the length L3 of the second type of constraint unit 130, and the width L2 of the first type of constraint unit 120 can be set to be equal to the width L4 of the second type of constraint unit 130.
[0146] In some embodiments, with reference to Figure 2 The connector 200 includes a first type of connector 210 and a second type of connector 220.
[0147] The first type of connector 210 and the second type of connector 220 in the embodiments of the present application are described below.
[0148] The first type of connector 210 in the embodiments of the present application is used to connect two adjacent first type of constraint units 120, thereby realizing the connection of the two adjacent first type of constraint units 120.
[0149] The first type of connector 210 in the embodiments of the present application is also used to connect an adjacent first type of constraint unit 120 and a second type of constraint unit 130, thereby realizing the connection of the second type of constraint unit 130 and the first type of constraint unit 120.
[0150] In some embodiments, with reference to Figure 6 The first type of connector 210 in the embodiments of the present application is configured to have a pivot hole 210a.
[0151] The pivot holes 210a of two adjacent first type of connectors 210 in the embodiments of the present application are connected by a same pivot, so as to make the two adjacent first type of constraint units 120 into rotational connection or make the second type of constraint unit 130 into rotational connection with the adjacent first type of constraint unit 120.
[0152] In the embodiments of the present application, one first type of connector 210 can be arranged at each end opening of each first type of constraint unit 120, and a unit passage 110a is formed between the two first type of connectors 210, that is, the two first type of connectors 210 are located on two sides of the unit passage 110a, so that the two end openings of the two adjacent first type of constraint units 120 can be directly opposite.
[0153] Exemplarily, the first type of connector 210 includes a rotary body having a rotation around a rotation axis, and the pivot hole 210a is configured as a through hole penetrating the rotary body along the rotation axis.
[0154] The pivot holes 210a of the first type of connectors 210 of the two adjacent first type of constraint units 120 are inserted by a same pivot, that is, the rotation axes of the pivot holes 210a of the two adjacent first type of constraint units 120 are collinear, and then the pivot is inserted into the pivot hole 210a, so as to make the two first type of constraint units 120 into rotational connection.
[0155] Similarly, the connection between the second type of constraint unit 130 and the first type of constraint unit 120 is the same as the connection between two adjacent first type of constraint units 120.
[0156] With reference to Figure 18 The rotation shaft hole 210a of the first type of connecting piece 210 of two adjacent first type of constraint units 120 is defined as a first rotation shaft 300 by a rotation shaft which is inserted into the rotation shaft hole 210a.
[0157] The second type of connecting piece 220 in the embodiments of the present application is used to connect the first type of constraint unit 120 and the first component 20, and can also be used to connect the second type of constraint unit 130 and the second component 30.
[0158] In some embodiments, with reference to Figure 4 and Figure 20 The second type of connecting piece 220 comprises an extension part 221 and a fixing part 222.
[0159] With reference to Figure 16 The extension part 221 in the embodiments of the present application is used to form or connect to the second type of constraint unit 130, and the fixing part 222 is used to fix to the first component 20 or the second component 30.
[0160] The extension part 221 and the fixing part 222 constitute a rotation connection, so that the second type of constraint unit 130 can rotate around the first component 20 or the second component 30.
[0161] Exemplarily, the fixing part 222 can be arranged on both the first component 20 and the second component 30, and the extension part 221 protrudes from the first type of constraint unit 120 and the second type of constraint unit 130. The extension part 221 and the fixing part 222 constitute a rotation connection, so that the second type of constraint unit 130 can rotate around the second component 30 or the first component 20.
[0162] Exemplarily, the extension part 221 in the embodiments of the present application can surround at least part of the fixing part 222, so that the extension part 221 can be sleeved on the fixing part 222, and the rotation process is stable, that is, the extension part can be sleeved on the outside of the fixing part 222.
[0163] The second type of connecting piece 220 in the embodiments of the present application further comprises a fastening part 223.
[0164] The fastening part 223 in the embodiments of the present application is used to limit the displacement of the constraint unit in the direction perpendicular to the rotation direction of the constraint unit, and the fixing part 222 is located between the extension part 221 and the fastening part 223.
[0165] By setting the fixing part 222 between the extension part 221 and the fastening part 223, the fastening part 223 limits the displacement of the constraint unit in the direction perpendicular to the rotation direction by mechanical limiting, eliminates the lateral deviation caused by vibration, inertia or external force, and ensures that the rotation connection only moves in the preset axial direction.
[0166] Exemplarily, the extension part 221 can be configured as a plate, the fixing part 222 can be configured as a stepped stud, and the fastening part 223 can be configured as a screw. Referring to Figure 16 , the stepped stud has a stud hole, the plate-shaped extension part 221 is sleeved on the outer peripheral wall surface of the stepped stud, at least part of the screw is inserted into the stud hole, and the end of the screw can limit the displacement of the extension plate relative to the stepped stud in the axial direction of the stepped stud, so that the extension part 221 can rotate around the axial direction of the stepped stud, thereby realizing the effect that the second constraint unit 130 can stably rotate relative to the first component 20 or the second component 30.
[0167] The second component 30 and the first component 20 in the embodiment of the present application are provided with the fixing part 222 at corresponding positions.
[0168] According to the second aspect of the present application, referring to Figure 8 and Figure 9 , a cabinet assembly 1 is provided, which comprises the wire arrangement 10 as above.
[0169] The cabinet assembly 1 further comprises a first component 20 and a second component 30, and the wire arrangement 10 is connected to the first component 20 and the second component 30, respectively.
[0170] The cabinet assembly 1 comprises the wire arrangement 10 described above. The cabinet assembly 1 has all the beneficial effects of the wire arrangement 10 described above, which will not be repeated here.
[0171] In the embodiment of the present application, the wire arrangement 10 is connected to the first component 20 and the second component 30, respectively. In this case, the unit channel 110a of each constraint unit of the wire arrangement 10 can form a continuously extended wire channel 10a by operating the first component 20 and the second component 30.
[0172] In some embodiments, the first component 20 and the second component 30 are configured as a frame structure, for example, the first component 20 and the second component 30 are configured as a U-shaped frame, and the two are trays, which serve to support the wire arrangement 10.
[0173] In some embodiments, the cabinet assembly 1 further comprises a frame 40, and the frame 40 in the embodiment of the present application is used to movably connect at least one of the first component 20 and the second component 30.
[0174] At least one of the first component 20 and the second component 30 in the embodiment of the present application can move relative to the frame 40 in the first direction.
[0175] In the embodiment of the present application, at least one of the first component 20 and the second component 30 can move relative to the frame 40 in the first direction, so that the plurality of constraint units of the wire arrangement device 10 can also move in the first direction, and the constraint units rotate relative to each other, thereby achieving the effect of reducing the occupied space of the cabinet assembly 1.
[0176] In some embodiments, referring to Figure 9 The frame 40 includes a frame body 410, a baffle 420, and a cover plate 430.
[0177] Referring to Figure 9 and Figure 11 In the embodiment of the present application, the frame body 410 is used to provide an accommodation space 410a for accommodating the first component 20 and the second component 30, and the baffle 420 is rotatably connected with the first component 20.
[0178] Figure 12 is another schematic diagram of the connection between the first component of the cabinet assembly and the wire arrangement device in the exemplary embodiment of the present application.
[0179] In the embodiment of the present application, the baffle 420 is configured to rotate relative to the frame body 410 to close or open the accommodation space 410a, and the cover plate is also configured to rotate relative to the frame body 410 to close or open the accommodation space 410a.
[0180] In the embodiment of the present application, the baffle 420 is rotatably connected with the first component 20, which can quickly close the accommodation space 410a to achieve the effects of dustproof, waterproof, and anti-misoperation, and can also be completely unfolded to achieve the effect of unobstructed operation in the maintenance mode, thereby facilitating the maintenance of electrical equipment.
[0181] Exemplarily, the baffle 420 can be connected with the first component 20 through a rotating shaft, and the rotating shaft can be used to achieve the rotatable connection between the baffle 420 and the first component 20.
[0182] The rotating shaft that achieves the rotatable connection between the baffle 420 and the first component 20 is defined as a second rotating shaft 80.
[0183] In order to ensure the stability of the connection between the baffle 420 and the first component 20 when the baffle 420 closes the accommodation space 410a, referring to Figure 17A stabilizing connector 70 can also be arranged between the baffle 420 and the first component 20. The stabilizing connector 70 can be configured as a screw. A screw hole 20a with an internal threaded surface is arranged on the first component 20. The screw is inserted into the screw hole 20a and tightened, so that the baffle 420 and the first component 20 are stably connected.
[0184] Exemplarily, the screw can be a hand screw.
[0185] Figure 13 is a schematic view of a G-G cross-sectional structure in Figure 12 provided in the exemplary embodiments of the present application.
[0186] Figure 14 is a schematic view of a H-H cross-sectional structure in Figure 12 provided in the exemplary embodiments of the present application.
[0187] Figure 15 is a schematic view of a C-C cross-sectional structure in Figure 12 provided in the exemplary embodiments of the present application.
[0188] In some embodiments, with reference to Figure 19 the cabinet assembly 1 further comprises a stopper 50.
[0189] The stopper 50 in the embodiments of the present application is used to limit the displacement of the second component 30 relative to the frame 40 in the first direction.
[0190] In the embodiments of the present application, the stopper 50 is arranged between the frame body 410 and the second component 30, forming a one-way hard stop in the first direction between the frame 40 and the second component 30, while allowing the Y / Z axis to float freely, avoiding deformation of the second component 30 caused by multi-directional coupling stress.
[0191] The stopper 50 supports the second component 30 to be pushed into the accommodation space 410a of the frame 40, i.e., locks the relative position of the second component 30 and the frame 40.
[0192] Exemplarily, the stopper 50 in the embodiments of the present application can be configured as a stopper pin.
[0193] In some embodiments, the cabinet assembly 1 further comprises a guide 60 for guiding a cable extending to the second component 30, wherein at least a part of the guide 60 in the embodiments of the present application is connected to the second component 30.
[0194] In the embodiments of the present application, by arranging the guide 60 for guiding the cable extending to the second component 30, winding of the cable at the second component 30 can be avoided.
[0195] Exemplarily, the guide 60 extending to the second component 30 can be configured as a frame structure, and of course, can also be configured as a column structure, and the embodiments of the present application do not make specific limitation thereon, and the specific structure adopted in actual use shall be subject to.
[0196] In some embodiments, with reference to Figure 8 , the cabinet assembly 1 has a cable inlet 1a and a cable outlet 1b.
[0197] The cable inlet 1a in the embodiments of the present application is used for the cable to pass through the plurality of constraint units arranged at the first component 20, so that the cable extends from the first component 20 to the second component 30, and the cable outlet 1b in the embodiments of the present application is used for the cable to pass out.
[0198] Wherein, the cable extends from the second component 30 to the cable outlet 1b around the guide 60, with reference to the figure, the cable inlet 1a and the cable outlet 1b are both located at the same side of the guide 60, achieving the effect of entering and passing out of the cable on the same side, facilitating operation.
[0199] The cabinet assembly 1 in the embodiments of the present application can arrange the plurality of first components 20 and second components 30 from top to bottom, thus achieving the effect of arranging the plurality of cable management devices 10, and being capable of storing and unfolding the plurality of cables.
[0200] The embodiments of the present application take the four-layer cable management device 10 as an example for illustration, which is respectively the first layer, the second layer, the third layer and the fourth layer from top to bottom.
[0201] In the process of passing the cable through each cable management device 10 of the plurality of cable management devices 10, in the operation of the fourth layer of the cable management device 10, the baffle 420 is opened, the first component 20 of the fourth layer is operated to move in the first direction, and at the same time, the second components 30 of the first layer, the second layer and the third layer are also operated to move in the first direction relative to the frame body 410, that is, the first component 20 and the second component 30 are respectively operated to move leftward and rightward, in this case, the unit channels 110a of the constraint units of the cable management device 10 constitute a cable routing channel 10a extending in the first direction, the cable is operated to pass through the cable opening and extend in the cable routing channel 10a of the fourth layer of the cable management device 10 at the first component 20 to the second component 30, and can extend to the cable outlet 1b around the guide 60, achieving the installation of the cable management device 10 to the cable, then the first component 20 is pushed into the accommodation space 410a of the frame body 410, and the second components 30 of the first layer, the second layer and the third layer are also pushed into the accommodation space 410a of the frame body 410, completing the installation of the cable of the fourth layer.
[0202] When the cable needs to be maintained, at least one of the first component 20 and the second component 30 is operated to move in the first direction, the first component 20 and the second component 30 are pulled out of the accommodation space 410a of the frame body 410, and the cable is switched from the storage state to the unfolded state, so that the cable can be maintained without obstacles.
[0203] During the maintenance, the baffle 420 is rotated relative to the first component 20 to open the accommodation space 410a, and the cover plate is also rotated relative to the frame body 410 to open the accommodation space 410a.
[0204] It should be noted that in the embodiments of the present application, the number and arrangement of the cable management devices 10 of the cabinet assembly 1 can be set according to actual operation, one cable management device 10 is arranged in each first component 20, and two rows of first components 20 are arranged on each layer of the cabinet assembly 1.
[0205] For example, the cabinet assembly 1 includes four first components 20, and one cable management device 10 is arranged in each first component 20, so that the cabinet assembly 1 forms a 2*4 arrangement mode, that is, two cable management devices 10 are arranged on each layer, and four layers can be arranged.
[0206] Of course, in some other embodiments, one layer, three layers, or five layers, six layers can also be arranged, which is arranged according to actual conditions.
[0207] In some other embodiments, one row or three rows or four rows can also be arranged.
[0208] Meanwhile, the number of rows and the number of columns can be matched, for example, 1*3, or 2*4, or 1*8.
[0209] In the embodiments of the present application, the first component 20 on each layer can also be integrally formed, in which case one cable management device 10 can be arranged in the first component 20, or two cable management devices 10 can be arranged, which is arranged according to actual conditions.
[0210] The number of constraint units 100 is increased or decreased according to the length of the actual cable, so that when a plurality of constraint units 100 form a straight wiring channel 10a, the length of the wiring channel 10a is changed according to the number of constraint units 100, so that when the cable management device 10 is in the unfolded state, the unit channel provided by the channel piece 110 of each constraint unit 100 can form a straight wiring channel 10a extending in the first direction, so that the cable has a certain angle of travel in the wiring channel 10a, and also has a certain path degree of freedom; and in the folded state, the length of the cable can be compressed through the movable connection between the constraint units 100, so as to improve the space utilization and the modular unit structure.
[0211] According to a third aspect of the present application, there is provided an electrical device comprising the wire arrangement 10 as above or the cabinet assembly 1 as above.
[0212] The electrical device comprises the wire arrangement 10 or the cabinet assembly 1 as above, and has all the advantages of the wire arrangement 10 or the cabinet assembly 1 as above, which will not be repeated here.
[0213] The electrical device in the embodiments of the present application includes servers, transformers and other electrical devices.
[0214] In the description of the present application, the terms "first", "second" are only for descriptive purpose, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.
[0215] In the above embodiments, the description of each embodiment has its own focus, and the parts not described in detail in a certain embodiment can be referred to the relevant description of other embodiments.
[0216] The embodiments, implementation manners and related technical features of the present application can be combined or replaced with each other without conflict.
[0217] The above is only the preferred embodiments of the present application, and does not limit the present application in any form. Any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present application without departing from the technical solution of the present application, still belongs to the scope of the technical solution of the present application.
Claims
1. A cable management device, characterized in that, The cable management device includes: A constraint unit for constraining at least a portion of a cable extending from the first component to the second component; The multiple constraint units are connected to each other so that the cable management device has an unfolded state that allows the cable to be unfolded and a folded state that allows the cable to be stored.
2. The cable management device according to claim 1, characterized in that, in, The constraint unit includes: Channel component, used to provide a unit channel for the cable to pass through.
3. The cable management device according to claim 2, characterized in that, in, The adjacent constraint units form a rotatable connection such that the unit channels of the two constraint units can form at least a portion of a continuously extending trace channel.
4. The cable management device according to claim 1, characterized in that, in, The cable management device also includes: A connector for forming a movable connection with the first component, the second component, or the constraint unit.
5. The cable management device according to claim 4, characterized in that, The constraint unit includes: Channel component, used to provide a unit channel for the cable to pass through; The cable management device includes two connectors, and the unit channel of the constraint unit is disposed between the two connectors connected to the same constraint unit.
6. The cable management device according to claim 5, characterized in that, The channel component includes: The first type of frame portion is used to connect the connector; and The second type of frame is used to connect the first type of frame; The first type of frame portion and the second type of frame portion define the unit channel of the constraint unit.
7. The cable management device according to claim 6, characterized in that, The second type of frame includes: A first sub-frame portion is connected to a first type of frame portion; and / or The second sub-frame is connected to another first-type frame of the same channel member; Wherein, in the case where the second type of frame portion includes a first sub-frame portion and a second sub-frame portion, the first sub-frame portion and the second sub-frame portion are located between two opposing first type of frame portions.
8. The cable management device according to any one of claims 4 to 7, Its features are, The plurality of constraint units include: A first type of constraint unit is used to connect the first component or the second component; and The second type of constraint unit is used to connect the first type of constraint unit and / or another second type of constraint unit.
9. The cable management device according to claim 8, characterized in that, The connector includes: The first type of connector is used to connect two adjacent first type constraint units or to connect adjacent first type constraint units and second type constraint units.
10. The cable management device according to claim 8, characterized in that, The connector also includes: The second type of connector is used to connect the first type of constraint unit to the first component or to connect the second type of constraint unit to the second component.
11. A cabinet assembly, characterized in that, Includes the cable management device as described in any one of claims 1 to 10; The cabinet assembly also includes: First component and second component; The cable management device is connected to the first component and the second component respectively.
12. The cabinet assembly according to claim 11, characterized in that, The cabinet assembly also includes: A frame for forming an active connection with at least one of the first and second components; At least one of the first component and the second component is capable of moving relative to the frame along a first direction.
13. The cabinet assembly according to claim 12, characterized in that, The framework includes: A frame for providing a receiving space to accommodate the first component and the second component; and The baffle is rotatably connected to the first component; The baffle is configured to rotate relative to the frame to close or open the receiving space.
14. The cabinet assembly according to claim 13, characterized in that, The cabinet assembly also includes: A stop element is used to limit the displacement of the second component relative to the frame along a first direction; The stop member is located between the frame and the second component.
15. The cabinet assembly according to claim 14, characterized in that, The cabinet assembly also includes: A guide for guiding the cable extending to the second component; At least a portion of the guide is connected to the second component.
16. The cabinet assembly according to claim 15, characterized in that, The cabinet assembly has: A cable inlet for the cable to pass through a plurality of the constraint units located in the first component, so that the cable extends from the first component to the second component; Cable outlet, for the cable to pass through; The cable extends from the second component, around the guide, to the cable outlet, and the cable inlet and the cable outlet are located on the same side of the guide.
17. An electrical device, characterized in that, This includes a cable management device as described in any one of claims 1 to 10 or a cabinet assembly as described in any one of claims 11 to 16.