CN110996604B - Server cabinet and fastening-free dismounting and sliding installation structure thereof - Google Patents

Server cabinet and fastening-free dismounting and sliding installation structure thereof Download PDF

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Publication number
CN110996604B
CN110996604B CN201911358281.7A CN201911358281A CN110996604B CN 110996604 B CN110996604 B CN 110996604B CN 201911358281 A CN201911358281 A CN 201911358281A CN 110996604 B CN110996604 B CN 110996604B
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CN
China
Prior art keywords
sliding
plate
mounting plate
clamping
dismounting
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CN201911358281.7A
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Chinese (zh)
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CN110996604A (en
Inventor
孙丹
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Inspur Power Commercial Systems Co Ltd
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Inspur Power Commercial Systems Co Ltd
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Priority to CN201911358281.7A priority Critical patent/CN110996604B/en
Publication of CN110996604A publication Critical patent/CN110996604A/en
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/14Mounting supporting structure in casing or on frame or rack
    • H05K7/1485Servers; Data center rooms, e.g. 19-inch computer racks
    • H05K7/1488Cabinets therefor, e.g. chassis or racks or mechanical interfaces between blades and support structures
    • H05K7/1489Cabinets therefor, e.g. chassis or racks or mechanical interfaces between blades and support structures characterized by the mounting of blades therein, e.g. brackets, rails, trays

Abstract

The invention discloses a fastening-free dismounting and sliding installation structure which comprises a front installation plate, a rear installation plate and a sliding rail, wherein the front installation plate is arranged on the side wall of the front end of a cabinet body and extends vertically, the rear installation plate is arranged on the side wall of the rear end of the cabinet body, extends vertically and is right opposite to the front installation plate, the sliding rail is transversely connected between the front installation plate and the rear installation plate and is used for the sliding installation of a server case, the front end of the sliding rail is clamped with the front installation plate, and the rear end of the sliding rail is clamped with the rear installation plate. The fastening-free dismounting and mounting sliding installation structure provided by the invention can conveniently and efficiently realize dismounting and mounting operation of the slide rail on the server cabinet without screwing the fastener when dismounting and mounting the slide rail, improves the dismounting and mounting operation efficiency of the slide rail, simplifies the dismounting and mounting operation process and reduces the dismounting and mounting operation burden of workers. The invention also discloses a server cabinet, which has the beneficial effects as described above.

Description

Server cabinet and fastening-free dismounting and sliding installation structure thereof
Technical Field
The invention relates to the technical field of servers, in particular to a fastening-free dismounting and mounting sliding mounting structure. The invention also relates to a server cabinet.
Background
With the development of the electronic technology in China, more and more electronic devices have been widely used.
Servers are important components in electronic devices, and are devices that provide computing services. Since the server needs to respond to and process the service request, the server generally has the capability of assuming and securing the service. The server is divided into a file server, a database server, an application server, a WEB server and the like according to different service types provided by the server. The main components of the server include a processor, a hard disk, a memory, a system bus, etc., similar to a general computer architecture.
In the big data era, a large number of IT devices are centrally located in a data center. These data centers include various types of servers, storage, switches, and a large number of cabinets and other infrastructure. In order to improve the integrated installation degree, all the servers are integrally installed in the server cabinet. With the continuous development of internet of things big data and cloud storage technology, a server cabinet for bearing a server tends to be large-sized.
In order to conveniently mount the server chassis in the server chassis, a sliding rail device is generally used to mount the server chassis on the rack. After the server case is installed in the opening of the cabinet, the server case is made to slide into the cabinet along the sliding rails on two sides of the cabinet in a mode of pushing the server case, and push-pull installation is achieved.
When the traditional sliding rail for the large-scale server cabinet is installed, two installation personnel, namely a front installation personnel and a rear installation personnel, are required to connect and lock the front end and the rear end of the sliding rail with the cabinet through fastening pieces such as fastening screws and nuts respectively in front of and behind the cabinet. The installation and disassembly process of the sliding rail needs a worker to sequentially screw the fasteners, and due to the fact that the number of the fasteners is large and the installation positions are not fixed, the installation and disassembly efficiency of the sliding rail is low for the worker, and the server cabinet is not beneficial to rapidly completing the installation and disassembly operation.
Therefore, how to conveniently and efficiently realize the dismounting operation of the slide rail on the server cabinet, improve the dismounting operation efficiency of the slide rail, simplify the dismounting operation flow, and reduce the dismounting operation burden of workers is a technical problem faced by the technicians in the field.
Disclosure of Invention
The invention aims to provide a fastening-free dismounting and mounting sliding mounting structure which can conveniently and efficiently realize dismounting and mounting operation of a sliding rail on a server cabinet, improve dismounting and mounting operation efficiency of the sliding rail, simplify dismounting and mounting operation flow and reduce dismounting and mounting operation burden of workers. Another object of the present invention is to provide a server rack.
In order to solve the technical problem, the invention provides a fastening-free dismounting and sliding mounting structure which comprises a front mounting plate, a rear mounting plate and a sliding rail, wherein the front mounting plate is arranged on the side wall of the front end of a cabinet body and extends along the vertical direction, the rear mounting plate is arranged on the side wall of the rear end of the cabinet body, extends along the vertical direction and is right opposite to the front mounting plate, the sliding rail is transversely connected between the front mounting plate and the rear mounting plate and is used for the sliding mounting of a server case, the front end of the sliding rail is clamped with the front mounting plate, and the rear end of the sliding rail is clamped with the rear mounting plate.
Preferably, the slide rail including be used for with the server machine case the lateral wall slip butt straight slide, set up in straight slide front end and be used for with preceding mounting panel joint complex preceding joint portion, set up in straight slide rear end and be used for with back mounting panel joint complex back joint portion.
Preferably, a plurality of front hanging holes are vertically formed in the surface of the front mounting plate, and the front clamping portion comprises a plurality of clamping hooks which are used for respectively hanging and buckling in the front hanging holes.
Preferably, the front hanging holes are staggered from each other in the transverse direction on the front mounting plate, and the hooks are staggered from each other in the transverse direction at the front end of the straight sliding plate.
Preferably, the number of the clamping hooks is 3 at the front end of the straight sliding plate, and the clamping hooks are distributed in the middle and two sides of the front end of the straight sliding plate.
Preferably, a hollow hole for reducing weight is formed in the front end of the straight sliding plate.
Preferably, a plurality of back hanging holes are vertically formed in the surface of the back mounting plate, and the back clamping portion comprises clamping elastic pieces which are arranged in the middle of the back end of the straight sliding plate and used for being abutted against the hole walls of the back hanging holes to be clamped.
Preferably, the back joint portion is still including set up in the rear end both sides of straight slide, be used for the overhead kick in the buckle strap on the surface of back hanging hole.
Preferably, the buckle strap is a U-shaped plate.
The invention also provides a server cabinet, which comprises a cabinet body and a fastening-free dismounting sliding installation structure arranged on the cabinet body, wherein the fastening-free dismounting sliding installation structure is specifically any one of the fastening-free dismounting sliding installation structures.
The invention provides a fastening-free dismounting sliding installation structure which mainly comprises a front installation plate, a rear installation plate and a sliding rail. The front mounting plate is arranged on the side wall of the front end of the cabinet body and extends and is distributed along the vertical direction. The rear mounting plate is arranged on the side wall of the rear end of the cabinet body, extends and is distributed along the vertical direction, and simultaneously keeps opposite to the front mounting plate. The front end and the rear end of the sliding rail are respectively connected to the front mounting plate and the rear mounting plate and are horizontally and transversely distributed, the sliding rail is mainly used for being in sliding butt joint with the side wall of the server case, guiding and limiting effects are provided for mounting movement of the server case, and sliding mounting of the server case in the server cabinet is achieved. Importantly, the front end of the sliding rail is connected with the front mounting plate in a clamping mode, and the rear end of the sliding rail is connected with the rear mounting plate in a clamping mode. Therefore, when the slide rail is installed on the server cabinet, the installation operation of the slide rail can be realized only by clamping the front end of the slide rail with the front installation plate on the cabinet body and simultaneously clamping the rear end of the slide rail with the rear installation plate on the cabinet body on the basis that the slide rail is kept horizontal and transverse. On the contrary, when the sliding rail is disassembled on the server cabinet, the disassembling operation of the sliding rail can be realized only by unlocking the clamping between the sliding rail and the front mounting plate and unlocking the clamping between the sliding rail and the rear mounting plate. Compared with the prior art, the fastening-free dismounting and mounting sliding mounting structure provided by the invention can conveniently and efficiently realize dismounting and mounting operation of the slide rail on the server cabinet without screwing the fastener when dismounting and mounting the slide rail, improves dismounting and mounting operation efficiency of the slide rail, simplifies dismounting and mounting operation flow and reduces dismounting and mounting operation burden of workers.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the provided drawings without creative efforts.
Fig. 1 is a schematic overall structure diagram of an embodiment of the present invention.
Fig. 2 is a detailed structural diagram of the front clamping portion shown in fig. 1.
Fig. 3 is an assembly structure diagram of the front clamping portion and the front mounting plate.
Fig. 4 is a detailed structural diagram of the rear clamping portion shown in fig. 1.
Fig. 5 is an assembly structure diagram of the rear clamping portion and the rear mounting plate.
Wherein, in fig. 1-5:
the cabinet body-1, the front mounting plate-2, the rear mounting plate-3 and the slide rail-4;
a front hanging hole-21, a rear hanging hole-31, a straight sliding plate-41, a front clamping part-42, a rear clamping part-43 and a hollow hole-44;
a clamping spring sheet-431 and a buckle strap-432.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1, fig. 1 is a schematic overall structure diagram of an embodiment of the present invention.
In a specific embodiment provided by the invention, the fastening-free dismounting sliding installation structure mainly comprises a front installation plate 2, a rear installation plate 3 and a sliding rail 4.
Wherein, the front mounting plate 2 is arranged on the side wall of the front end of the cabinet body 1 and extends and distributes along the vertical direction. The rear mounting plate 3 is arranged on the rear side wall of the cabinet body 1 and extends and distributes along the vertical direction, and simultaneously keeps opposite to the front mounting plate 2.
The front end and the rear end of the sliding rail 4 are respectively connected to the front mounting plate 2 and the rear mounting plate 3 and are horizontally and transversely distributed, the sliding support is mainly used for being in sliding butt joint with the side wall of the server case, guiding and limiting effects are provided for mounting movement of the server case, and sliding mounting of the server case in the server cabinet is achieved.
Importantly, the front end of the slide rail 4 is connected with the front mounting plate 2 in a clamping manner, and the rear end of the slide rail 4 is connected with the rear mounting plate 3 in a clamping manner. Therefore, when the slide rail 4 is installed on the server cabinet, the installation operation of the slide rail 4 can be realized only by clamping the front end of the slide rail 4 with the front installation plate 2 on the cabinet body 1 and clamping the rear end of the slide rail 4 with the rear installation plate 3 on the cabinet body 1 on the basis that the slide rail 4 is kept horizontal and horizontal. On the contrary, when the sliding rail 4 is disassembled on the server cabinet, the disassembling operation of the sliding rail 4 can be realized only by unlocking the clamping between the sliding rail 4 and the front mounting plate 2 and unlocking the clamping between the sliding rail 4 and the rear mounting plate 3.
Compared with the prior art, the fastening-free dismounting and mounting sliding mounting structure provided by the embodiment has the advantages that when the sliding rail 4 is dismounted, the fastener is not required to be screwed, the dismounting and mounting operation of the sliding rail 4 on the server cabinet can be conveniently and efficiently realized, the dismounting and mounting operation efficiency of the sliding rail 4 is improved, the dismounting and mounting operation flow is simplified, and the dismounting and mounting operation burden of workers is reduced.
In a preferred embodiment with respect to the slide rail 4, the slide rail 4 mainly comprises a straight slide plate 41, a front catching portion 42 and a rear catching portion 43. The straight sliding plate 41 is a main structure of the sliding rail 4, has an obvious length and a rectangular shape, and is mainly used for abutting against and sliding against the side wall of the server case to form a guiding and limiting effect on the side wall of the server case. The straight slide plate 41 has a smooth surface, and when it is brought into contact with the side wall of the server casing, the sliding friction between the straight slide plate and the side wall can be reduced. Generally, the length of the straight sliding plate 41 is the depth of the cabinet 1.
Further, in order to facilitate the carrying and lifting of the working personnel, the hollow hole 44 for reducing weight is formed at the front end of the straight sliding plate 41 on the basis of ensuring the structural strength of the straight sliding plate 41. Of course, the hollow hole 44 may be formed in other positions on the straight sliding plate 41, such as a middle region or a rear end position in the length direction. In addition, the straight sliding plate 41 can be provided with a gourd hole, so that the straight sliding plate can be conveniently assembled with other installation parts on the server cabinet.
The front clamping part 42 is arranged at the front end position of the straight sliding plate 41 and is mainly used for the front mounting plate 2 to form clamping fit. Similarly, the rear clamping portion 43 is disposed at the rear end of the straight sliding plate 41, and is mainly used for forming clamping fit with the rear mounting plate 3. Meanwhile, for the convenience of the connection between the front clamping portion 42 and the front mounting plate 2 and the connection between the rear clamping portion 43 and the rear mounting plate 3, the front hanging hole 21 of the embodiment is formed in the front mounting plate 2 in the vertical direction, and the rear hanging hole 31 of the embodiment is formed in the rear mounting plate 3 in the vertical direction.
As shown in fig. 2 to 3, fig. 2 is a detailed structural schematic diagram of the front clamping portion 42 shown in fig. 1, and fig. 3 is an assembly structural schematic diagram of the front clamping portion 42 and the front mounting plate 2.
In a preferred embodiment of the front clamping portion 42, the front clamping portion 42 mainly comprises a plurality of clamping hooks. Specifically, each hook may be bent backwards at the front end of the straight sliding plate 41, for example, bent to an angle of 90 ° or the like, to form a hook shape, and may be respectively hooked in each corresponding front hanging hole 21 to hook it tightly. Here, preferably, the hooks may be provided at the front end position of the straight sliding plate 41 at the same time by 3, and the front end of the straight sliding plate 41 is provided with 1 in the middle and 1 on both sides, respectively. The hooks are arranged offset from each other in the lateral direction of the straight sliding plate 41, that is, not directly arranged in the lateral direction. Correspondingly, the transverse positions of the front hanging holes 21 on the front mounting plate 2 are staggered, so that distribution conditions such as high-low-high or low-high-low are formed when the front hanging holes are matched with the clamping hooks in a clamping manner, and the clamping stability between the front hanging holes and the clamping hooks is improved. Generally, the vertical direction positioning of the slide rail 4 can be realized through the clamping connection of the hanging buckles between the clamping hooks and the front hanging holes 21.
As shown in fig. 4 to 5, fig. 4 is a detailed structural schematic view of the rear clamping portion 43 shown in fig. 1, and fig. 5 is an assembly structural schematic view of the rear clamping portion 43 and the rear mounting plate 3.
In a preferred embodiment of the rear clip portion 43, the rear clip portion 43 mainly includes a snap spring 431 and a buckle plate 432. The engaging elastic sheet 431 is disposed at the middle position of the rear end of the straight sliding plate 41, and may be in an "L" shape, and has strong elasticity. When the fastening elastic sheet 431 is installed in the corresponding rear hanging hole 31, the fastening elastic sheet 431 needs to be pulled forcefully to be bent and generate elastic deformation to a certain degree, then the fastening elastic sheet is inserted into the rear hanging hole 31, and then the force is released by releasing the hand, so that the fastening elastic sheet 431 rebounds under the action of elastic reaction force and tightly abuts against the hole wall of the rear hanging hole 31 to be clamped. Generally, the elastic deformation direction of the engaging elastic piece 431 is the horizontal direction of the straight sliding plate 41 (the width direction of the cabinet), so that the horizontal and horizontal positioning of the sliding rail 4 can be realized by the clamping and the engagement of the engaging elastic piece 431 and the rear hanging hole 31.
The buckle strap 432 is disposed at two sides of the rear end of the straight sliding plate 41, and is arranged at two sides of the snap spring 431, and the shape of the buckle strap may be a groove shape. When the fastening strap 432 is inserted into the corresponding rear hanging hole 31, the outer end of the fastening strap 432 extends out of the rear hanging hole 31, and the groove-shaped structure on the fastening strap 432 is engaged with the hole wall of the rear hanging hole 31, so that the groove sidewall of the fastening strap 432 is hooked on the outer surface of the rear hanging hole 31. Of course, the groove structure of the buckle strap 432 may also have elasticity, and when the buckle strap 432 is engaged with the hole wall of the rear hanging hole 31, a certain elastic deformation needs to be generated, so that the groove sidewall of the buckle strap 432 clamps the hole wall of the rear hanging hole 31 by using an elastic counterforce, thereby improving the clamping stability of the buckle strap 432 and the hole wall. Thus, the horizontal longitudinal positioning of the slide rail 4 can be realized by the occlusion and clamping of the buckle plate 432 to the rear hanging hole 31.
Further, in order to improve the locking degree of the snap connection of the snap plate 432 to the rear hanging hole 31, in this embodiment, the snap plate 432 may be a U-shaped plate, so that the U-shaped end surface of the U-shaped plate is hooked upside down and snapped on the hole wall of the rear hanging hole 31.
Synthesize the joint cooperation of above-mentioned preceding joint portion 42 and preceding mounting panel 2 and the joint cooperation of back joint portion 43 and back mounting panel 3, can realize the spatial direction (horizontal, horizontal vertical, vertical) location of slide rail 4 on the cabinet body 1 jointly, guarantee that the installation of slide rail 4 on the cabinet body 1 is stable to be fastened. And when dismantling slide rail 4, at first can pull block shell fragment 431 hard, make it break away from the pore wall butt to back hanging hole 31, relax slide rail 4 back on horizontal, along horizontal lateral shifting slide rail 4, make the recess column structure of each buckle butt plate 432 break away from with the pore wall interlock of back hanging hole 31, thereby relax slide rail 4 on horizontal longitudinal direction, at last along horizontal longitudinal shifting slide rail 4 again, make each trip break away from the knot of hanging hole 21 before, so far the space direction degree of freedom of slide rail 4 is all released, can dismantle from the cabinet body 1 smoothly.
This embodiment still provides a server rack, mainly includes the cabinet body and sets up exempt from to fasten dismouting sliding mounting structure on the cabinet body, and wherein, this exempt from to fasten dismouting sliding mounting structure's specific content is the same with above-mentioned relevant content, and it is no longer repeated here.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (2)

1. The fastening-free dismounting and sliding mounting structure is characterized by comprising a front mounting plate (2) which is arranged on the side wall of the front end of a cabinet body (1) and extends vertically, a rear mounting plate (3) which is arranged on the side wall of the rear end of the cabinet body (1) and extends vertically and is right opposite to the front mounting plate (2), and a sliding rail (4) which is transversely connected between the front mounting plate (2) and the rear mounting plate (3) and used for sliding mounting of a server case, wherein the front end of the sliding rail (4) is clamped with the front mounting plate (2), and the rear end of the sliding rail (4) is clamped with the rear mounting plate (3);
the sliding rail (4) comprises a straight sliding plate (41) which is used for being in sliding butt joint with the side wall of the server case, a front clamping part (42) which is arranged at the front end of the straight sliding plate (41) and used for being in clamping fit with the front mounting plate (2), and a rear clamping part (43) which is arranged at the rear end of the straight sliding plate (41) and used for being in clamping fit with the rear mounting plate (3);
the surface of the front mounting plate (2) is vertically provided with a plurality of front hanging holes (21), and the front clamping part (42) comprises a plurality of clamping hooks which are respectively used for being buckled in the front hanging holes (21);
the surface of the rear mounting plate (3) is vertically provided with a plurality of rear hanging holes (31), and the rear clamping part (43) comprises a clamping elastic sheet (431) which is arranged in the middle of the rear end of the straight sliding plate (41) and is used for being abutted and clamped with the hole wall of the rear hanging hole (31);
the rear clamping part (43) also comprises buckle butt straps (432) which are arranged on two sides of the rear end of the straight sliding plate (41) and are used for hooking the rear hanging hole (31) on the outer surface;
the transverse positions of the front hanging holes (21) on the front mounting plate (2) are staggered, and the clamping hooks are staggered at the front end of the straight sliding plate (41) along the transverse direction;
the clamping hooks are arranged at the front end of the straight sliding plate (41) simultaneously in number of 3 and are distributed in the middle and two sides of the front end of the straight sliding plate (41);
a hollow hole (44) for reducing weight is formed in the front end of the straight sliding plate (41);
the buckle strap (432) is a U-shaped plate.
2. A server cabinet, comprising a cabinet body (1) and a fastening-free dismounting sliding mounting structure arranged on the cabinet body (1), wherein the fastening-free dismounting sliding mounting structure is specifically the fastening-free dismounting sliding mounting structure of claim 1.
CN201911358281.7A 2019-12-25 2019-12-25 Server cabinet and fastening-free dismounting and sliding installation structure thereof Active CN110996604B (en)

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CN112506289B (en) * 2020-11-20 2023-02-28 浪潮电子信息产业股份有限公司 Server and mainboard quick assembly disassembly structure thereof
CN113766789A (en) * 2021-08-25 2021-12-07 郑州云海信息技术有限公司 Server cabinet and wire arrangement device thereof

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