CN217546554U - Server slide rail set spare - Google Patents

Server slide rail set spare Download PDF

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Publication number
CN217546554U
CN217546554U CN202220846106.3U CN202220846106U CN217546554U CN 217546554 U CN217546554 U CN 217546554U CN 202220846106 U CN202220846106 U CN 202220846106U CN 217546554 U CN217546554 U CN 217546554U
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China
Prior art keywords
rail
connector
sliding rail
locking
plate
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Active
Application number
CN202220846106.3U
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Chinese (zh)
Inventor
张胜利
强志成
陈佳敏
张晓春
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Wuxi Haidaer Precision Slides Co ltd
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Wuxi Haidaer Precision Slides Co ltd
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Priority to CN202220846106.3U priority Critical patent/CN217546554U/en
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Publication of CN217546554U publication Critical patent/CN217546554U/en
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Abstract

The utility model provides a server slide rail set spare, it need not distinguish the installation of being convenient for to the left and right sides of slide rail set spare when the installation. It includes interior rail and outer rail, offer the mounting hole that is used for being connected with server machine case on the interior rail, offer the pilot hole that is used for being connected with the installing support on the outer rail, interior rail and outer rail rear end are equipped with the connector that is used for being connected with the reason line frame respectively, the mounting hole uses sliding rail set's axis as symmetry axis symmetric distribution, the pilot hole uses sliding rail set's axis as symmetry axis symmetric distribution, the connector includes main connector and reserve connector, main connector and reserve connector use sliding rail set's axis as symmetry axis symmetric distribution.

Description

Server slide rail set spare
Technical Field
The utility model relates to a server slide rail technical field specifically is a server slide rail set spare.
Background
The server of the data center is generally placed in the cabinet, the front end and the rear end of the server sliding rail are connected with the front end and the rear end of the cabinet through the mounting supports, and the server case is mounted in the cabinet through the server sliding rail, so that the case can be drawn out of or withdrawn from the cabinet through the sliding rail.
The server slide rail generally comprises a cable arranging frame, slide rail assemblies positioned on two sides, and mounting supports positioned on two sides, wherein the slide rail assemblies are generally divided into two sections (including an inner rail, an outer rail and a ball frame) or three sections (including an inner rail, a middle rail, an outer rail and a ball frame), the inner rail of the slide rail assemblies is used for mounting a server case, the mounting supports are used for connecting the outer rail and providing supporting force for the slide rail assemblies, the cable arranging frame is used for storing cables of the server, and generally positioned at the rear end of the slide rail assemblies and generally comprises two foldable wiring arms and supporting plates for supporting, one wiring arm is connected with the rear end of the inner rail, so that when the slide rail assemblies are opened, the wiring arms can move together to enable the cables to move along with the server case, and the supporting plates of the cable arranging frame are respectively connected with the rear ends of the outer rails of the slide rail assemblies on two sides through joints at two ends, and accordingly providing supporting force for the cable arranging frame.
When using the installation, usually can be fixed the installing support back on the rack, install the slide rail on the support again, the machine case is then installed on the inner rail, reason line frame then through connect respectively with one side sliding rail set's inner rail, the outer rail, opposite side sliding rail set's outer rail is connected, traditional sliding rail set rigidity, it must need be connected with left installing support to be located left sliding rail set, the sliding rail set that is located right side must need be connected with the installing support on right side, this need distinguish sliding rail set when just leading to the installation, inconvenient installation.
SUMMERY OF THE UTILITY MODEL
To traditional server sliding rail set spare need distinguish problem about, the utility model provides a server sliding rail set spare, it need not distinguish the installation of being convenient for to sliding rail set spare about when the installation.
The technical scheme is as follows: the utility model provides a server sliding rail set spare, its includes inner rail and outer rail, offer the mounting hole that is used for being connected with server machine case on the inner rail, offer the pilot hole that is used for being connected with the installing support on the outer rail, the inner rail with the outer rail rear end is equipped with the connector that is used for being connected with the reason line frame, its characterized in that respectively: the mounting hole uses sliding rail set's axis to distribute as symmetry axis symmetry, the pilot hole uses sliding rail set's axis to distribute as symmetry axis symmetry, the connector includes main connector and reserve connector, main connector with reserve connector uses sliding rail set's axis to distribute as symmetry axis symmetry.
It is further characterized in that:
the mounting holes comprise insertion holes for inserting the head parts of the mounting nails of the server case and waist-shaped holes communicated with the insertion holes and used for allowing the rod parts of the mounting nails of the server case to penetrate through;
the mounting bracket is connected with the outer rail through a pin shaft positioned in the assembly hole;
the main connector and the standby connector are in a hook shape and are used for being connected with a hook-shaped connector of the wire arranging frame;
the locking mechanism comprises a first locking plate, a second locking plate, a pressure spring and a locking block; when the sliding rail component is a three-section sliding rail, the locking block is positioned at the front end of the middle rail, and when the sliding rail component is a two-section sliding rail, the locking block is positioned at the front end of the outer rail; the rear end of the first lock plate is rotationally connected with the inner rail, a lock groove matched with the locking block is formed in the bottom/top of the first lock plate, the front wall and the rear wall of the lock groove are in a vertical state or are obliquely arranged towards the inside of the lock groove, an oblique guide avoiding surface is further arranged in front of the lock groove at the bottom/top of the first lock plate, when the slide rail assembly is opened and the locking block is not in contact with the first lock plate, the locking block is positioned on the guide avoiding surface and the moving path of the lock groove, the front end of the first lock plate is connected with an oblique limiting groove II on the second lock plate through a connecting pin I, the first lock plate is further connected with the inner rail through a pressure spring, and the pressure spring is used for pressing the first lock plate downwards/upwards; the second locking plate comprises a second limiting groove positioned at the rear part, a lengthened part in the middle part and an unlocking part at the front part, and the second locking plate is connected with the inner rail in a sliding manner;
when the locking block is positioned in the locking groove and the sliding rail assembly is a two-section sliding rail, the unlocking part is positioned in front of the outer rail;
when the locking block is positioned in the locking groove and the sliding rail assembly is a three-section sliding rail, the unlocking part is positioned in front of the middle rail;
the outer rail front end still installs the reinforcing plate, the shape of reinforcing plate is corresponding with the shape of outer rail, the reinforcing plate laminating the downside sets up on the front end of outer rail.
After having adopted such structure, because the mounting hole that is used for installing the server machine case, the pilot hole that is used for connecting the installing support all uses sliding rail set's axis as the symmetry axis symmetric distribution, even sliding rail set installs behind 180 degrees from one side behind the installation behind the other side still can normally be used for installing server machine case and connecting the installing support, simultaneously because sliding rail set's inner rail and outer rail all set up the connector, every connector all includes along the owner of axis symmetric distribution, be equipped with the connector, even sliding rail set installs behind the other side still can normally be used for reason line frame's installation behind 180 degrees behind the upset from one side, thereby can realize need not distinguishing the left and right sides of sliding rail set, and convenient to install and use.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of an inner rail structure;
FIG. 3 is a schematic diagram of a connector;
FIG. 4 is a schematic diagram of a middle rail structure;
FIG. 5 is a schematic rear view of FIG. 1;
fig. 6 is a schematic view of a stiffener.
Detailed Description
As shown in fig. 1 and 5, a server slide rail assembly is a three-section slide rail assembly, in this embodiment, "front" refers to a forward direction of an inner rail when the slide rail is opened, and includes an inner rail 1, an outer rail 2, and a middle rail 3 located on the inner rail 1 and the outer rail 2 and engaged with the inner rail 1 and the outer rail 2, where 4 in fig. 1 is a ball rack, and in combination with fig. 2 (the inner rail in fig. 2 is a back surface of the inner rail in fig. 1), the inner rail 1 is provided with a mounting hole 101 for connecting with a server chassis, the outer rail 2 is provided with a mounting hole 201 for connecting with a mounting bracket 5, and the mounting bracket 5 is connected with the outer rail 2 through a pin located in the mounting hole 201; referring to fig. 3, the rear ends of the inner rail 1 and the outer rail 2 are respectively provided with a connector 6 for connecting with the cable management rack 7, the mounting holes 101 are symmetrically distributed by taking the central axis of the slide rail assembly as a symmetry axis, the assembly holes 201 are symmetrically distributed by taking the central axis of the slide rail assembly as a symmetry axis, the connector 6 comprises a main connector 601 and a standby connector 602, the main connector 601 and the standby connector 602 are symmetrically distributed by taking the central axis of the slide rail assembly as a symmetry axis, and the cable management rack can be connected with the standby connector 602 after the slide rail assembly is turned.
Specifically, the mounting hole 101 includes an insertion hole 1011 into which a mounting nail head portion of the server chassis extends, and a kidney-shaped hole 1012 which is communicated with the insertion hole 1011 and through which a mounting nail rod portion of the server chassis passes, the mounting nail head portion is larger than the rod portion, the cross section of the rod portion is in a T shape, when the chassis is mounted, the head portion is firstly inserted into the insertion hole, and then the chassis is moved forward to enable the rod portion to move into the kidney-shaped hole 1012, so that the chassis can be connected with the inner rail.
The main connector 601 and the spare connector 602 are hook-shaped, and the hook-shaped portions are arranged oppositely as shown in fig. 3, and are used for connecting with the hook-shaped connector of the wire arranging frame 7 (the wire arranging frame connector can adopt the structure described in the patent document with the publication number of CN 210168360U).
With reference to fig. 2 and 4, the locking mechanism further includes a locking plate one 102, a locking plate two 103, a pressure spring 104, and a locking block 301; when the slide rail assembly is a three-section slide rail, as shown in fig. 4, the locking block 301 is located at the front end of the middle rail 3, and when the slide rail assembly is a two-section slide rail, the locking block is located at the front end of the outer rail. The rear end of a first lock plate 102 is rotatably connected with an inner rail 1 through a pin shaft, a lock groove 105 matched with a locking block is formed in the bottom of the first lock plate 102 (the top of the first lock plate if the first lock plate is used for overturning 180 degrees), the front wall and the rear wall of the lock groove 105 are in a vertical state or are obliquely arranged towards the inside of the lock groove (the front wall and the rear wall of the lock groove 105 can ensure that the locking block cannot be separated from the lock groove when being subjected to forward or backward acting force), an oblique guide avoiding surface 106 is also arranged at the front of the lock groove 105 at the bottom of the first lock plate 102 (the top of the first lock plate if the first lock plate is used for overturning 180 degrees), in the process of drawing the inner rail, when the guide avoiding surface 106 is contacted with a convex locking block, the first lock plate can rotate upwards under the action of a repeated oblique surface, when a slide rail assembly is opened and the locking block 301 is not contacted with the first lock plate 102, the locking block 301 is positioned on the moving path of the guide avoiding surface 106 and the lock groove 105, the front end of the first lock plate 102 is connected with a second oblique limiting groove 108 on a first lock plate 103 through a connecting pin 107, the first lock plate 102 is further connected with the first lock plate 102 through a pressure spring 104, and the first lock plate 102 is used for pressing a lower part of the pressure spring 104, and the lower part of the first lock plate 102 is used for overturning 180 degrees; the second locking plate 103 comprises a second limiting groove 108 located at the rear part, a lengthening part 1031 located at the middle part and an unlocking part 1032 located at the front part, and the second locking plate 103 is connected with the inner rail 1 in a sliding mode.
When taking out the server machine case, the inner rail is along with quick-witted case forward movement, it is in contact with the locking piece until the direction of locking plate one dodges the face, under the effect of continuous pulling force, because the direction dodges the face and is the inclined plane, can give the locking plate one by one ascending power and make it lift, until the locking piece gets into the locked groove, the effect of locking plate pressure spring falls down again, the locking piece can block and can't deviate from automatically in the locked groove, realize that the locking of inner rail can't return or continue to pull out, only under the effect of oblique spacing groove two through pulling locking plate two forward, can drive locking plate one once more and rotate this moment and promote the inner rail again and just can realize the unblock, because the use of locking plate two makes the application of force parallel to slide rail assembly axis when the unblock, like this even still the unblock mode is unchangeable behind the upset slide rail assembly, thereby need not distinguish about.
With reference to fig. 5, when the locking block 301 is located in the locking slot 105 and the slide rail assembly is a two-piece slide rail, the unlocking portion 1032 is located in front of the outer rail 2; when the locking block 301 is located in the locking slot 105 and the slide rail assembly is a three-section slide rail, the unlocking part 1032 is located in front of the middle rail 3; therefore, the unlocking part is prolonged, so that the unlocking part of the second locking plate of the inner rail in the locking state is exposed outside, and the use is convenient.
In addition, combine fig. 6, reinforcing plate 8 (through rivet connection on the installing support) is still installed to outer rail 2 front end, and the shape of reinforcing plate 8 is corresponding with outer rail 2's shape, and 8 laminating outer rail 2's front end downside settings of reinforcing plate, live the outer rail through the reinforcing plate parcel, when can use in the overtravel slide rail, guarantee that the track is indeformable and avoid the well rail to deviate from and alleviate and rock.
The above description is only for the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention should be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (8)

1. The utility model provides a server slide rail set spare, its includes inner rail and outer rail, set up the mounting hole that is used for being connected with server machine case on the inner rail, set up the pilot hole that is used for being connected with the installing support on the outer rail, the inner rail with the outer rail rear end is equipped with respectively and is used for the connector of being connected with reason line frame, its characterized in that: the mounting hole uses sliding rail set's axis to distribute as symmetry axis symmetric distribution, the pilot hole uses sliding rail set's axis to distribute as symmetry axis symmetric distribution, the connector includes main connector and reserve connector, main connector with reserve connector uses sliding rail set's axis to distribute as symmetry axis symmetric distribution.
2. The server rack assembly of claim 1, wherein: the mounting holes comprise insertion holes for inserting the head parts of the mounting nails of the server case and waist-shaped holes communicated with the insertion holes and used for allowing the rod parts of the mounting nails of the server case to penetrate through.
3. The server rack assembly of claim 1, wherein: the mounting bracket is connected with the outer rail through a pin shaft positioned in the assembling hole.
4. The server rack assembly of claim 1, wherein: the main connector and the standby connector are in a hook shape and are used for being connected with a hook-shaped connector of the wire arranging frame.
5. The server rack assembly of claim 1, wherein: the outer rail front end still installs the reinforcing plate, the shape of reinforcing plate is corresponding with the shape of outer rail, the reinforcing plate laminating the downside sets up on the front end of outer rail.
6. The server rack assembly of any one of claims 1-5, wherein: the locking mechanism comprises a first locking plate, a second locking plate, a pressure spring and a locking block; when the sliding rail component is a three-section sliding rail, the locking block is positioned at the front end of the middle rail, and when the sliding rail component is a two-section sliding rail, the locking block is positioned at the front end of the outer rail; the rear end of the first lock plate is rotationally connected with the inner rail, a lock groove matched with the locking block is formed in the bottom/top of the first lock plate, the front wall and the rear wall of the lock groove are in a vertical state or are obliquely arranged towards the inside of the lock groove, an oblique guide avoiding surface is further arranged in front of the lock groove at the bottom/top of the first lock plate, when the slide rail assembly is opened and the locking block is not in contact with the first lock plate, the locking block is positioned on the guide avoiding surface and the moving path of the lock groove, the front end of the first lock plate is connected with an oblique limiting groove II on the second lock plate through a connecting pin I, the first lock plate is further connected with the inner rail through a pressure spring, and the pressure spring is used for pressing the first lock plate downwards/upwards; the locking plate two is including being located the rear portion spacing groove two, the extension portion at middle part, anterior unblock portion, locking plate two with interior rail sliding connection.
7. The server rack assembly of claim 6, wherein: when the locking block is positioned in the locking groove and the sliding rail assembly is a two-section sliding rail, the unlocking part is positioned in front of the outer rail.
8. The server rack assembly of claim 6, wherein: when the locking block is located in the locking groove and the sliding rail assembly is a three-section sliding rail, the unlocking part is located in front of the middle rail.
CN202220846106.3U 2022-04-13 2022-04-13 Server slide rail set spare Active CN217546554U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220846106.3U CN217546554U (en) 2022-04-13 2022-04-13 Server slide rail set spare

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220846106.3U CN217546554U (en) 2022-04-13 2022-04-13 Server slide rail set spare

Publications (1)

Publication Number Publication Date
CN217546554U true CN217546554U (en) 2022-10-04

Family

ID=83428826

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220846106.3U Active CN217546554U (en) 2022-04-13 2022-04-13 Server slide rail set spare

Country Status (1)

Country Link
CN (1) CN217546554U (en)

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