CN216491629U - Multi-fold cable manager - Google Patents

Multi-fold cable manager Download PDF

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Publication number
CN216491629U
CN216491629U CN202122841696.9U CN202122841696U CN216491629U CN 216491629 U CN216491629 U CN 216491629U CN 202122841696 U CN202122841696 U CN 202122841696U CN 216491629 U CN216491629 U CN 216491629U
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China
Prior art keywords
support
cable manager
cable
rail
outer support
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CN202122841696.9U
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Chinese (zh)
Inventor
于其
李岩
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Asia Pacific CIS Wuxi Co Ltd
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Asia Pacific CIS Wuxi Co Ltd
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Priority to CN202122841696.9U priority Critical patent/CN216491629U/en
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Abstract

The utility model relates to a multi-fold cable manager, which comprises an inner layer frame consisting of an even number of inner frames which are connected in a rotating way from head to tail, wherein two ends of the inner layer frame are respectively and rotatably arranged at one end of the corresponding outer frame, and the other ends of the two outer frames are respectively and rotatably arranged on an inner rail and an outer rail of the same sliding rail; when the sliding rail is contracted, the inner support and the outer support are both arranged at the end part of the sliding rail in a folding way, and when the sliding rail slides out and extends, the outer support connected with the inner rail moves along with the sliding rail, so that the inner support and the outer support are sequentially unfolded until the cable manager is completely unfolded when the sliding rail extends to the longest; the utility model realizes compact folding of the cable manager in a limited space by the head-to-tail connection of the plurality of inner supports, can obtain a large stroke when being unfolded, and can improve the space utilization rate when the cable manager is installed in the cabinet.

Description

Multi-fold cable manager
Technical Field
The utility model relates to the technical field of slide rail application, in particular to a multi-fold cable manager.
Background
The server is installed by being guided into the cabinet through the sliding rail, and the cable connected with the server is usually connected to the back of the server and is wired and wired by adopting the cable manager, so that enough space needs to be reserved between the server and the cabinet for accommodating the cable manager and the cable on the cable manager; when the server slides outwards along with the sliding rail, the cable manager carries the cables on the cable manager to be gradually unfolded along with the movement of the server until the sliding rail slides out to be extended to the maximum stroke, and the cable manager is completely unfolded.
When the space between the server and the cabinet is narrow and the required stroke of the cable manager is large, the cable manager structure in the prior art cannot be normally installed or used.
SUMMERY OF THE UTILITY MODEL
The applicant aims at the defects in the prior art and provides a multi-folding type cable manager with a reasonable structure, so that the cable manager can be compactly folded in a limited space, can obtain a large stroke when being unfolded, and can improve the space utilization rate when the cable manager is installed in a cabinet.
The technical scheme adopted by the utility model is as follows:
a multi-fold cable manager comprises an inner layer frame consisting of an even number of inner supports which are connected end to end in a rotating mode, two ends of the inner layer frame are respectively and rotatably installed at one end of the corresponding outer support, and the other ends of the two outer supports are respectively and rotatably installed on an inner rail and an outer rail of the same sliding rail.
As a further improvement of the above technical solution:
and a connecting piece is arranged between the outer support and the inner rail or the outer rail of the sliding rail, the connecting piece is fixedly arranged with the sliding rail, and the connecting piece is rotationally connected with the end part of the outer support.
The inner supports, the inner supports and the outer supports and the connecting pieces are respectively in rotary connection through rotating pieces.
The connecting piece extends towards the direction of the outer bracket to form a folding lug, and the folding lug is rotationally connected with the outer bracket through a rotating piece.
The end parts connected between the inner support and the outer support and between the adjacent inner supports extend to form protruding parts, through holes penetrating up and down are formed in each protruding part, and the through holes of the two connected protruding parts are located on the same vertical line and are provided with rotating parts together.
And the inner support and the outer support are both provided with cable frames, and the cable frames are ribbons, plastic buckling baskets or metal buckling baskets.
The inner support and the outer support are both vertically arranged sheet structures, the inner supports are grouped in pairs, and cable frames are arranged on opposite side surfaces of the two inner supports in the same group; and a cable frame is arranged on the side surface of the outer support opposite to the side surface.
The two inner brackets in the same group are oppositely bent and extended at the mutually rotatably connected end parts to form a bent part.
The inner support and the outer support are both sheet structures which are horizontally arranged, and cable frames are arranged on the top surface of the inner support and the top surface of the outer support.
The inner support and the outer support are both injection-molded parts or sheet metal parts.
The utility model has the following beneficial effects:
the utility model has compact and reasonable structure and convenient and reliable use, when the slide rail is contracted, the inner support and the outer support are both arranged at the end part of the slide rail in a folding way, when the slide rail slides out and extends, the outer support connected with the inner rail moves along with the slide rail, so that the inner support and the outer support are sequentially unfolded until the cable manager is completely unfolded when the slide rail extends to the longest; the cable managers in the limited space are compactly folded and accommodated through the head-to-tail connection of the inner supports, and a large stroke can be obtained when the cable managers are unfolded, so that the space utilization rate is improved when the cable managers are installed in the cabinet;
the utility model also comprises the following advantages:
when the number of the inner supports is two, the inner supports and the outer supports jointly form the cable manager with the M-shaped structure, the cable manager can be accommodated in a space of 75mm after being folded, and a large stroke of 1000mm is obtained when the cable manager is unfolded, so that the space utilization effect is very obvious, the use is reliable, and the practicability is good.
Drawings
Fig. 1 is a schematic view of the present invention installed on a slide rail and unfolded.
Fig. 2 is a schematic view (embodiment one) of the present invention in a folded state.
Fig. 3 is an exploded view of the present invention (embodiment one).
Fig. 4 is a schematic view of the present invention in the unfolded state (embodiment one).
FIG. 5 is a schematic view of the present invention in a folded state (embodiment II).
Fig. 6 is an exploded view of fig. 5.
Wherein: 1. a slide rail; 2. a connecting member; 3. a cable frame; 4. an outer support; 5. an inner support; 6. a rotating member; 11. an inner rail; 12. an outer rail; 21. ear folding; 51. a bending section; 52. a projection.
Detailed Description
The following describes embodiments of the present invention with reference to the drawings.
As shown in fig. 1 and 2, the multi-fold cable manager of the present embodiment includes an inner frame formed by an even number of inner frames 5 connected end to end in a rotating manner, two ends of the inner frame are respectively rotatably mounted at one end of the corresponding outer frame 4, and the other ends of the two outer frames 4 are respectively rotatably mounted on an inner rail 11 and an outer rail 12 of the same slide rail 1.
When the slide rail 1 is contracted, the inner support 5 and the outer support 4 are both arranged at the end part of the slide rail 1 in a folding way, and when the slide rail 1 slides out and extends, the outer support 4 connected with the inner rail 11 moves along with the slide rail, so that the inner support 5 and the outer support 4 are sequentially unfolded until the cable manager is completely unfolded when the slide rail 1 extends to the longest; by the end-to-end engagement of the inner supports 5, a compact folding, accommodation of the cable manager in a limited space is achieved, while a large stroke can be obtained when deployed.
A connecting piece 2 is arranged between the outer support 4 and an inner rail 11 or an outer rail 12 of the sliding rail 1, the connecting piece 2 is fixedly arranged with the sliding rail 1, and the connecting piece 2 is rotatably connected with the end part of the outer support 4.
The inner supports 5, the inner supports 5 and the outer supports 4, and the outer supports 4 and the connecting pieces 2 are rotatably connected through rotating pieces 6.
The connecting piece 2 extends towards the direction of the outer bracket 4 to form a folding lug 21, and the folding lug 21 is rotatably connected with the outer bracket 4 through a rotating piece 6.
The end parts connected between the inner support 5 and the outer support 4 and between the adjacent inner supports 5 extend to form convex parts 52, through holes penetrating up and down are formed in each convex part 52, and the two connected convex parts 52 are stacked up and down, so that the through holes are positioned on the same vertical line and are provided with the rotating parts 6 together.
Both the inner support 5 and the outer support 4 are injection molded parts or sheet metal parts.
The inner bracket 5 and the outer bracket 4 are both provided with a cable frame 3, the cable frame 3 is a ribbon, a plastic buckle basket or a metal buckle basket, and the cable is fixed relative to the cable manager through the cable frame 3.
The first embodiment is as follows:
as shown in fig. 3 and 4, the inner support 5 and the outer support 4 are both vertically arranged sheet structures, the inner supports 5 are grouped in pairs, and the cable frames 3 are installed on the opposite side surfaces of the two inner supports 5 in the same group; the cable frame 3 is mounted on the opposite side of the outer support 4.
The two inner brackets 5 of the same group are bent and extended towards each other at the end parts which are rotatably connected with each other to form bent parts 51, and the bent parts 51 are arranged to leave a space for installing the cable frame 3 and routing wires on the side surfaces of the inner brackets 5.
The inner support 5 and the outer support 4 in this embodiment are injection molded parts.
In this embodiment, the two folding lugs 21 on the connecting member 2 are arranged at an interval from top to bottom, and the two folding lugs 21 vertically contain the end of the outer bracket 4 from top to bottom and jointly mount the rotating member 6.
In this embodiment, the rotating member 6 is a rotating shaft.
In this embodiment, the outer bracket 4 and the inner bracket 5 are provided with holes through which the wall surface of the cable frame 3 passes and which penetrate vertically, and the side surface of the cable frame 3 is attached to the side surfaces of the outer bracket 4 and the inner bracket 5.
Example two:
as shown in fig. 5 and 6, the inner support 5 and the outer support 4 are both horizontally arranged sheet structures, and the cable frame 3 is mounted on the top surfaces of the inner support 5 and the outer support 4.
The inner support 5 and the outer support 4 in this embodiment are sheet metal parts.
In this embodiment, the number of the folding ears 21 on the connecting member 2 is one and is arranged at the lower edge, and the folding ears 21 are attached to the bottom surface of the outer bracket 4 and jointly mount the rotating member 6.
In this embodiment, the rotating member 6 is a hinge screw, which mounts two sheets stacked up and down and can rotate relatively.
In this embodiment, the bottom surface of the cable frame 3 is fixedly mounted on the inner bracket 5 and the outer bracket 4.
In this embodiment, the cable frame 3 may be a U-shaped structure with an upward opening, two vertical arms of the cable frame 3 pass through the inner bracket 5 and the outer bracket 4 from bottom to top, the bottom of the cable frame 3 is fixedly locked with the inner bracket 5 and the outer bracket 4, and the two vertical arms are fixed to each other after the cable is arranged in the cable frame 3; the inner bracket 5 and the outer bracket 4 can be provided with grooves for installing and containing the cable frame 3 and limiting the movement of the cable frame in the length direction.
When the number of the inner supports 5 is two, the inner supports 5 and the outer supports 4 together form the cable manager with an M-shaped structure, the cable manager can be accommodated in a space of 75mm after being folded, and a large stroke of 1000mm is obtained when the cable manager is unfolded, so that the space utilization effect is very obvious, the use is reliable, and the practicability is good.
The folding storage rack is compact in structure and convenient to use, realizes folding storage of the cable manager in a small space, can obtain a large stroke after being unfolded, and effectively helps to improve the space utilization rate when the cable manager is installed in the cabinet.
The above description is intended to illustrate the present invention and not to limit the present invention, which is defined by the scope of the claims, and may be modified in any manner within the scope of the present invention.

Claims (10)

1. A multifold cable manager, its characterized in that: the inner layer frame is composed of an even number of inner frames (5) which are connected end to end in a rotating mode, two ends of the inner layer frame are respectively installed at one end of the corresponding outer frame (4) in a rotating mode, and the other ends of the two outer frames (4) are respectively installed on an inner rail (11) and an outer rail (12) of the same sliding rail (1) in a rotating mode.
2. The multi-fold cable manager of claim 1, wherein: a connecting piece (2) is arranged between the outer support (4) and an inner rail (11) or an outer rail (12) of the sliding rail (1), the connecting piece (2) is fixedly arranged with the sliding rail (1), and the connecting piece (2) is rotatably connected with the end part of the outer support (4).
3. The multi-fold cable manager of claim 2, wherein: the inner supports (5), the inner supports (5) and the outer supports (4) and the connecting pieces (2) are respectively in rotary connection through rotating pieces (6).
4. A multi-fold cable manager, as recited in claim 3, wherein: the connecting piece (2) extends towards the direction of the outer bracket (4) to form a folding lug (21), and the folding lug (21) is rotatably connected with the outer bracket (4) through a rotating piece (6).
5. A multi-fold cable manager, as recited in claim 3, wherein: the end parts connected between the inner support (5) and the outer support (4) and between the adjacent inner supports (5) extend to form protruding parts (52), through holes penetrating up and down are formed in each protruding part (52), and the through holes of the two connected protruding parts (52) are located on the same vertical line and are provided with rotating parts (6) together.
6. The multi-fold cable manager of claim 1, wherein: the inner support (5) and the outer support (4) are both provided with cable frames (3); the cable frame (3) is a ribbon, a plastic buckle basket or a metal buckle basket.
7. The multi-fold cable manager of claim 6, wherein: the inner support (5) and the outer support (4) are both vertically arranged sheet structures, the inner supports (5) are grouped in pairs, and the opposite side surfaces of the two inner supports (5) in the same group are provided with cable frames (3); and the side surface of the outer support (4) opposite to the side surface is provided with a cable frame (3).
8. The multi-fold cable manager of claim 7, wherein: the two inner supports (5) of the same group are bent and extended towards each other at the end parts which are mutually rotatably connected to form a bent part (51).
9. The multi-fold cable manager of claim 6, wherein: the cable frame is characterized in that the inner support (5) and the outer support (4) are both of sheet structures which are horizontally arranged, and the cable frame (3) is arranged on the top surface of the inner support (5) and the top surface of the outer support (4).
10. The multi-fold cable manager of claim 1, wherein: the inner support (5) and the outer support (4) are both injection-molded parts or sheet metal parts.
CN202122841696.9U 2021-11-18 2021-11-18 Multi-fold cable manager Active CN216491629U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122841696.9U CN216491629U (en) 2021-11-18 2021-11-18 Multi-fold cable manager

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122841696.9U CN216491629U (en) 2021-11-18 2021-11-18 Multi-fold cable manager

Publications (1)

Publication Number Publication Date
CN216491629U true CN216491629U (en) 2022-05-10

Family

ID=81397355

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122841696.9U Active CN216491629U (en) 2021-11-18 2021-11-18 Multi-fold cable manager

Country Status (1)

Country Link
CN (1) CN216491629U (en)

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