Node type server case auxiliary carrying structure

Through the combined design of the inner chassis and the outer chassis, the guide groove and slide structure are used to solve the inconvenience of the node-type server chassis handle design, efficient space utilization and security improvement are achieved, and the server handling process is simplified.

CN223065711UActive Publication Date: 2025-07-04INSPUR SUZHOU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422331731.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-24
Publication Date
2025-07-04
Estimated Expiration
2034-09-24

AI Technical Summary

Technical Problem

The handle design of existing node-type server chassis has the problem of larger size or reduced space utilization, especially the handle design that extends outward or recesses inward, causing inconvenience.

Method used

The combination design of the inner chassis and the outer chassis is adopted. The inner chassis is equipped with an operating groove and a guide groove. The slide plate and the operating plate are connected through guide columns and springs to achieve the sealing and sliding of the dust cover. Combined with the I-pin guide structure, it is convenient for server handling.

Benefits of technology

It improves the space utilization of the server, avoids the risk of sharp edges, improves operational security and simplicity of appearance, and is convenient to disassemble and assemble.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an auxiliary carrying structure for a node type server case, which belongs to the technical field of node servers and comprises an outer case and an inner case. A dustproof cover hole is formed in the outer case; an operation groove is formed in the inner case, and a guide groove is formed in the operation groove; an operation plate and a sliding plate are further included; the operation plate is provided with a guide column, a dustproof cover and a driving stop plate; a spring is arranged in the operation groove; the sliding plate abuts against the driving stop plate, and inclined upward thrust can be applied to the operation plate. The upper part of the inner case is designed in a sunken manner, so that the structure is compact, the space utilization rate is high, the risk that sharp edges become more is avoided, and the operation safety is improved; when the dustproof cover is not used, the dustproof cover hole is effectively blocked, so that the surface of the outer case is simplified, and the appearance effect is improved; and the inner case and the outer case can be positioned and clamped, so that the disassembly and assembly are convenient.
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Description

Technical Field

[0001] The utility model belongs to the technical field of node servers, and particularly relates to an auxiliary handling structure for a node-type server chassis. Background Art

[0002] A server has high-speed CPU computing power, long-term reliable operation, strong I / O external data throughput capacity, and better scalability. Generally speaking, according to the services provided by the server, the server has the ability to undertake response service requests, undertake services, and guarantee services.

[0003] Servers are essential hardware facilities in various industries. Servers can be classified into rack-mounted servers, blade servers, and tower servers according to their appearance and performance. Many products of these three types of models use a node design, that is, the chassis is divided into an inner chassis and an outer chassis. The inner chassis is not enclosed, and one or several inner chassis are installed in the outer chassis to form a closed space, and the installation method is like the pulling process of a drawer.

[0004] Among the above three types of servers, the tower server is similar to a PC computer host in shape, with a small volume and a light weight, and generally can be moved alone by one person. To facilitate the movement of the server, a part usually extends outward or is recessed inward on the common chassis as a handle, and such a design has many inconveniences. For example, extending a part outward as a handle will increase the overall size of the chassis and has risks such as more sharp edges on the outer side of the chassis; while recessing a part inward as a handle is generally fixed with the recessed structure on the inner side of the outer chassis. When applied to a node-type chassis, the inner chassis needs to be designed with an avoidance position, which will reduce the space utilization rate. Content of the Utility Model

[0005] In order to solve the problems that a part usually extends outward or is recessed inward on the common chassis as a handle, and such a design has many inconveniences, the utility model provides an auxiliary handling structure for a node-type server chassis.

[0006] The utility model is realized by the following technical solutions:

[0007] An auxiliary handling structure for a node-type server chassis includes an outer chassis and an inner chassis that can be installed in a drawer-like manner with the outer chassis; a dust cover hole is provided on the upper side of the outer chassis; a concave operation groove is provided on the upper side of the inner chassis, and L-shaped guide grooves are provided on the left and right sides of the operation groove;

[0008] It also includes an operating panel and a slide plate capable of cooperating with the forward and backward sliding guide on the upper side of the inner chassis; a guide column capable of engaging with the guide groove is installed on the operating panel, a dust cover capable of engaging and sealing the dust cover hole is installed on the upper side of the operating panel, and a downward-bent driving stop plate is provided on the operating panel; a spring connected to the slide plate is provided in the operating groove, and the direction of the force applied by the spring to the slide plate is consistent with the direction of the horizontal section of the guide groove; the slide plate abuts against the driving stop plate and can exert an oblique upward thrust on the operating panel.

[0009] A further improvement of the utility model is that an I-shaped nail is installed on the upper side of the inner chassis, and a sliding groove capable of cooperating with the I-shaped nail sliding guide is opened on the slide plate.

[0010] A further improvement of the utility model is that the slide plate is an obtuse-angle bending structure, the first bending section of which is horizontally arranged, and the slide groove is opened on the first bending section of the slide plate; the second bending section of the slide plate is inclined downward and can abut against the driving stop plate.

[0011] A further improvement of the utility model is that left and right sides of the second bending section of the slide plate are provided with hanging parts for hanging the spring.

[0012] A further improvement of the utility model is that a limiting plate capable of slidingly supporting with the bottom of the operating groove is provided at the lower end of the second bending section of the slide plate.

[0013] A further improvement of the utility model is that a downwardly bent fixed stop plate is provided at one end of the operating plate away from the driving stop plate.

[0014] A further improvement of the utility model is that one end of the operating plate close to the driving stop plate is provided with a reset stop plate capable of abutting against the outer chassis for limiting position.

[0015] A further improvement of the utility model is that an end of the operating plate away from the driving stop plate is provided with a downward-folding stop plate capable of abutting against the outer chassis.

[0016] A further improvement of the utility model is that a protective pad is provided on the lower side of one edge of the dust cover hole.

[0017] A further improvement of the utility model is that the end of the driving stop plate away from the operating plate is provided with a return bending edge.

[0018] It can be seen from the above technical solutions that the beneficial effects of the utility model are:

[0019] After the inner and outer chassis are installed together, the slide plate slides forward under the action of the spring, exerting a forward and upward thrust on the drive stop plate (operation plate), so that the guide column on the operation plate is located at the upper part of the vertical section of the guide groove, and the dust cover is inserted into the dust cover hole to achieve sealing, which can play a role in positioning the inner and outer chassis. When the server needs to be moved, the operator reaches down through the dust cover hole with his hand and presses down on the front edge of the dust cover. Under the limit of the guide column at its rear end and the upper part of the vertical section of the guide groove (with the outer chassis), the front end of the operation plate flips down, and at the same time drives the stop plate to press the slide plate backward (through the forward and backward sliding guide cooperation of the slide groove and the I-pin); then the rear edge of the dust cover is pressed down, so that the guide column slides down along the vertical section of the guide groove to the corner position, and the slide plate drives the stop plate (operation plate) forward under the forward force of the spring. Push forward to make the guide column snap into the front end of the horizontal section of the guide slot, and the slide plate abuts against the rear end of the operating panel, thereby limiting the operating panel (dust cover); put your hand into the operating slot and touch the inner side of the front edge of the dust cover hole to conveniently lift and carry the entire server; after the transportation is completed, push the dust cover (operating panel) backward to move the guide column to the corner of the guide slot, and move it to the upper part of the vertical section of the guide slot under the forward and upward force of the slide plate, thereby resetting the dust cover (operating panel). This node-type server chassis auxiliary transportation structure has a recessed design on the upper part of the inner chassis, which has a compact structure and high space utilization, and does not have the risk of more sharp edges, thereby improving the safety of operation; when not in use, the dust cover hole is effectively blocked to simplify the surface of the outer chassis and improve the appearance; and it has the function of positioning and engaging the inner chassis with the outer chassis, which is convenient for disassembly and assembly. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to more clearly illustrate the technical solution of the present invention, the drawings required for use in the description will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0021] Figure 1 It is a structural schematic diagram of a specific implementation method of the utility model.

[0022] Figure 2 This is a schematic diagram of the protective pad arrangement according to a specific implementation method of the utility model.

[0023] Figure 3 It is a schematic diagram of the inner chassis structure of a specific implementation method of the utility model.

[0024] Figure 4 It is a schematic diagram of the arrangement of the slide plate, the operating panel and the dust cover according to a specific implementation mode of the utility model.

[0025] Figure 5 This is a schematic structural diagram of a slide plate, an operating panel and a dust cover according to a specific implementation mode of the utility model from a first perspective.

[0026] Figure 6 This is a schematic structural diagram of the slide plate, operating panel and dust cover of a specific implementation mode of the utility model from a second viewing angle.

[0027] Figure 7 This is a schematic diagram of the structure of the operating panel and the dust cover according to a specific implementation manner of the utility model.

[0028] Figure 8 The figure is a schematic diagram of the structure of a slide plate according to a specific implementation mode of the utility model.

[0029] Figure 9 The figure is a schematic diagram of the structure of the dust cover and the protective pad according to a specific implementation mode of the utility model.

[0030] Figure 10 This is a schematic diagram of the first operating state of a specific implementation method of the utility model.

[0031] Figure 11 It is a schematic diagram of the second operating state of a specific implementation method of the utility model.

[0032] Figure 12 It is a schematic diagram of the third operating state of a specific implementation method of the utility model.

[0033] Figure 13 It is a schematic diagram of the fourth operating state of a specific implementation method of the utility model.

[0034] Figure 14 This is a schematic diagram of the fifth operating state of a specific implementation method of the utility model.

[0035] Figure 15 It is a schematic diagram of the sixth operating state of a specific implementation method of the utility model.

[0036] Figure 16 It is a schematic diagram of the seventh operating state of a specific implementation method of the utility model.

[0037] In the accompanying drawings: 1. outer chassis, 11. dust cover hole, 12. protective pad, 2. inner chassis, 21. operating slot, 22. I-nail, 23. guide slot, 3. dust cover, 4. operating panel, 41. guide column, 42. reset stop plate, 43. drive stop plate, 44. flip-down stop plate, 45. fixed stop plate, 5. slide plate, 51. slide slot, 52. limit plate, 53. hanging part, 6. spring. DETAILED DESCRIPTION

[0038] In order to make the purpose, features and advantages of the utility model more obvious and easy to understand, the technical scheme of the utility model will be clearly and completely described below in combination with the drawings in the specific embodiment. Obviously, the embodiments described below are only part of the embodiments of the utility model, not all of them. Based on the embodiments in this patent, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this patent.

[0039] like Figures 1-9 As shown, the utility model discloses a node-type server chassis auxiliary transport structure, comprising an outer chassis 1 of a rectangular structure and an inner chassis 2 that can be pulled out and installed with the outer chassis 1, and the inner chassis 2 can be pulled out and disassembled from the rear of the outer chassis 1;

[0040] A rectangular dust cover hole 11 is provided on the upper wall of the outer case 1; a rectangular concave operation groove 21 is provided on the upper side of the inner case 2, and L-shaped guide grooves 23 are provided on the left and right sides of the operation groove 21; the horizontal section of the guide groove 23 faces forward, and the vertical section of the guide groove 23 is upwardly connected;

[0041] The node-type server chassis auxiliary transport structure also includes an operating panel 4 and a slide plate 5 capable of cooperating with the front and rear sliding guide on the upper side of the inner chassis 2, and the operating panel 4 and the slide plate 5 are arranged up and down; the left and right sides of the rear end of the operating panel 4 are connected and installed with guide columns 41 capable of engaging with the guide groove 23, and a dust cover 3 capable of engaging and sealing the dust cover hole 11 is positioned and installed on the upper side of the operating panel 4, and a driving stop plate 43 bent vertically downward is provided in the middle of the front end of the operating panel 4; a spring 6 connected to the slide plate 5 is provided in the operating groove 21, and the direction of the force applied by the spring 6 to the slide plate 5 is consistent with the direction of the horizontal section of the guide groove 23, that is, the direction of the force applied by the spring 6 to the slide plate 5 is forward; the slide plate 5 abuts against the driving stop plate 43 and can have an oblique upward thrust on the operating panel 4.

[0042] After the inner case 2 and the outer case 1 are mounted together, the slide plate 5 slides forward under the action of the spring 6, exerting a forward and upward thrust on the driving stop plate 43 (operating plate 4), so that the guide column 41 on the operating plate 4 is located at the upper part of the vertical section of the guide groove 23, and the dust cover 3 is inserted into the dust cover hole 11 to achieve blocking, which can play a role in positioning the inner case 2 and the outer case 1. Figure 13 When the server needs to be moved, the operator reaches down through the dust cover hole 11 with his hand and presses down the front edge of the dust cover 3. The front end of the operating panel 4 is turned down under the limit of the guide column 41 at its rear end and the upper part of the vertical section of the guide groove 23 (with the outer chassis 1), and the stop plate 43 is driven to press the slide plate 5 backward (through the slide groove 51 and the I-shaped nail 22 sliding forward and backward). Figure 14As shown in the figure; then press down the rear edge of the dust cover 3, so that the guiding post 41 slides downward along the vertical section of the guiding groove 23 to the corner position. Under the forward acting force of the spring 6, the sliding plate 5 pushes the driving stop plate 43 (operating plate 4) forward, so that the guiding post 41 is stuck into the front end of the horizontal section of the guiding groove 23, and the sliding plate 5 abuts against the rear end of the operating plate 4, thereby realizing the limit of the operating plate 4 (dust cover 3), as Figure 15 shown in the figure; put your hand into the inside of the operating groove 21 and touch the inner side of the front edge of the dust cover hole 11, and the whole server can be conveniently lifted and carried; after the carrying is completed, push the dust cover 3 (operating plate 4) backward, so that the guiding post 41 moves to the corner position of the guiding groove 23, and under the forward and upward acting force of the sliding plate 5, it moves to the upper part of the vertical section of the guiding groove 23, thereby realizing the reset of the dust cover 3 (operating plate 4), as Figure 13 shown in the figure. The auxiliary carrying structure of this node-type server chassis has a sunken design on the upper part of the inner chassis, with a compact structure, high space utilization rate, and no risk of having more sharp edges, improving the safety of operation; when not in use, it effectively blocks the dust cover hole 11, simplifies the surface of the outer chassis 1, and improves the appearance effect; and it has the function of positioning and engaging the inner chassis 2 and the outer chassis 1.

[0043] As Figure 3 、 4 、5, 6, 8 shown, two symmetrically arranged I-shaped nails 22 are installed on the upper side of the inner chassis 2, and a sliding groove 51 that can be slidably guided in the front and rear directions with the I-shaped nails 22 is provided on the sliding plate 5. Through the cooperation of the sliding groove 51 and the I-shaped nails 22, the reliability of the front and rear sliding guidance of the sliding plate 5 is realized, and the structure is simple, compact, and easy to implement.

[0044] Furthermore, as Figure 5 、 6 、8 shown, the sliding plate 5 has an obtuse-angled bent structure, its first bent section is horizontally arranged, the sliding groove 51 is provided on the first bent section of the sliding plate 5 and penetrates backward; the second bent section of the sliding plate 5 is inclined downward at 45 degrees and can abut against the driving stop plate 43. The sliding plate 5 has a simple structure and is easy to form, and can realize the forward and upward acting force on the driving stop plate 43 (operating plate 4) (through the spring 6).

[0045] Furthermore, as Figure 5 、 6 、8 shown, hanging parts 53 for hanging the spring 6 are provided on the left and right sides of the second bent section of the sliding plate 5. The rear end of the spring 6 is hung on the hanging part 53, and the front end is hung on the front wall (honeycomb mesh) of the operating groove 21, realizing the forward elastic pulling of the spring 6 on the sliding plate 5.

[0046] Furthermore, as Figure 5 、 6As shown in FIG. 8 , a limit plate 52 that is bent horizontally backward is provided at the lower end of the second bending section of the slide plate 5. The limit plate 52 is supported by the sliding movement at the bottom of the operating slot 21 to achieve stability and reliability in the forward and backward movement of the slide plate 5.

[0047] like Figures 5-7 As shown, a fixed stop plate 45 bent vertically downward is provided in the middle of the rear end of the operation panel 4. When the inner case 2 and the outer case 1 are slidably inserted, the guide column 41 is at the front end of the horizontal section of the guide groove 23, the second bent section of the slide plate 5 abuts against the fixed stop plate 45, and the upper side of the dust cover 3 is limited by the inner wall of the outer case 1, so that the inner case 2 and the outer case 1 can be smoothly slidably installed.

[0048] like Figure 5 , 7 As shown, the left and right sides of the front end of the operation panel 4 are provided with reset stop plates 42 extending horizontally forward. When the dust cover 3 is engaged and sealed with the dust cover hole 11, the reset stop plates 42 are abutted and limited with the lower side of the upper wall of the outer chassis 1 (the front edge of the dust cover hole 11) to prevent the dust cover 3 from excessively protruding from the upper surface of the outer chassis 1, thereby ensuring a simple and beautiful appearance and achieving the positioning engagement of the inner chassis 2 and the outer chassis 1.

[0049] Among them, Figures 5-7 As shown, the left and right sides of the rear end of the operating panel 4 are provided with downward-turning stop plates 44 that are inclined downward by 45 degrees. During the turning process of the operating panel 4 (dust cover 3), the downward-turning stop plates 44 abut against the lower side of the upper wall of the outer chassis 1 to limit the rotation of the operating panel 4.

[0050] like Figure 2 , 12 As shown, a rubber protective pad 12 is provided at the lower side of the front edge of the dust cover hole 11, and the protective pad 12 (in the middle) and the reset stop plate 42 (on the left and right sides) are designed to avoid each other. It is convenient for the operator to hold the protective pad 12 and lift it up, so as to improve the comfort.

[0051] The lower end of the driving stop plate 43, the front end of the reset stop plate 42, the lower end of the fixed stop plate 45, and the lower end of the flip-down stop plate 44 are all provided with a back-bent edge, which not only improves the structural strength, but also makes the ends transition smoothly, realizes the smoothness of the abutment movement, and avoids relative scratches.

[0052] The assembly steps of the node-type server chassis auxiliary transport structure are as follows:

[0053] The slide groove 51 on the slide plate 5 is aligned with the I-shaped nail 22, and the slide plate 5 is moved to the rear end by sliding fit, and this position is maintained;

[0054] The dust cover 3 and the operating panel 4 are positioned and installed, and the guide column 41 is slid into the upper entrance of the guide groove 23; the spring 6 is installed, and the slide plate 5 moves forward to the front end of the horizontal section of the guide groove 23 under the pulling force of the spring 6, and is stopped by the fixed stop plate 45; at this time, the operating panel 4 (dust cover 3) is pushed forward and upward by the slide plate 5; the inner case 2 is installed into the outer case 1, and the front edge of the operating panel 4 (dust cover 3) is abutted and limited by the lower side of the upper wall of the outer case 1, so that the inner case 2 can be smoothly installed forward into the outer case 1;

[0055] After the dust cover 3 (operation panel 4) reaches the position of the dust cover hole 11 on the outer chassis 1, the dust cover 3 is blocked by the protective pad 12, such as Figure 10 As shown; the inner chassis 2 continues to move forward, the dust cover 3 (operating panel 4) is blocked by the protective pad 12, and the guide column 41 moves backward along the horizontal section of the guide groove 23 to the corner position of the guide groove 23, such as Figure 11 As shown; the upward freedom of the operating plate 4 (dust cover 3) is released, and the upward movement of the operating plate 4 is achieved by pushing the slide plate 5 upward (the guide column 41 moves upward along the vertical section of the guide groove 23), and the fixed stop plate 45 passes over the first bending section (horizontal section) of the slide plate 5 upward, releasing the forward blockage of the slide plate 5, as shown Figure 12 As shown; the slide plate 5 moves forward under the force of the spring 6 to the driving stop plate 43 to block the position, and the operating plate 4 is pushed upward until the reset stop plate 42 is blocked by the lower side of the upper wall of the outer chassis 1, so that the dust cover 3 is plugged into the dust cover hole 11 to complete the assembly, such as Figure 13 shown.

[0056] The steps for disassembling the auxiliary transport structure of the node-type server chassis are as follows:

[0057] The front edge of the dust cover 3 is pressed down, and the operating panel 4 rotates with the guide column 41 as the axis, and the sliding plate 5 is pushed backward by driving the stop plate 43, and rotates until the downward stop plate 44 is blocked by the lower side of the upper wall of the outer chassis 1. At this time, the downward freedom restriction of the operating panel 4 is released. Figure 14 As shown;

[0058] The rear edge of the dust cover 3 is pressed down, and the guide column 41 moves downward along the vertical section of the guide groove 23. The operating plate 4 (driving stop plate 43) is pushed forward by the slide plate 5 (second bending section) (force of the spring 6), so that the guide column 41 slides to the front end of the horizontal section of the guide groove 23. At this time, the slide plate 5 (second bending section) abuts against the fixed stop plate 45 to limit the position. Figure 15 As shown;

[0059] The inner chassis 2 can be pulled out of the outer chassis 1 by releasing other locking structures between the outer chassis 1 and the inner chassis 2 .

[0060] In the above Figure 15In the state, the hand can be inserted downward from the dust cover hole 11, the finger touches the protective pad 12 and pulls upward, as shown in FIG. Figure 16 As shown, the entire server can be easily transported.

[0061] After the transportation is completed, the dust cover 3 (operating panel 4, sliding plate 5) is pushed backward, and the guide column 41 moves backward along the horizontal section of the guide groove 23 to the corner position of the guide groove 23, such as Figure 11 As shown; the upward freedom of the operating plate 4 (dust cover 3) is released, and the upward movement of the operating plate 4 is achieved by pushing the slide plate 5 upward (the guide column 41 moves upward along the vertical section of the guide groove 23), and the fixed stop plate 45 passes over the first bending section (horizontal section) of the slide plate 5 upward, releasing the forward blockage of the slide plate 5, as shown Figure 12 As shown; the slide plate 5 moves forward under the force of the spring 6 to the driving stop plate 43 to block the position, and the operating plate 4 is pushed upward until the reset stop plate 42 is blocked by the lower side of the upper wall of the outer chassis 1, so that the dust cover 3 is plugged into the dust cover hole 11, as shown Figure 13 As shown, the transport is completed.

[0062] In the node-type server chassis auxiliary transport structure, after the inner chassis 2 and the outer chassis 1 are installed together, the slide plate 5 slides forward under the action of the spring 6, and has a forward and upward thrust on the driving stop plate 43 (operating plate 4), so that the guide column 41 on the operating plate 4 is located at the upper part of the vertical section of the guide groove 23, and the dust cover 3 is inserted into the dust cover hole 11 for sealing, which can play a role in positioning the inner chassis 2 and the outer chassis 1. Figure 13 When the server needs to be moved, the operator reaches down through the dust cover hole 11 with his hand and presses down the front edge of the dust cover 3. The front end of the operating panel 4 is turned down under the limit of the guide column 41 at its rear end and the upper part of the vertical section of the guide groove 23 (with the outer chassis 1), and the stop plate 43 is driven to press the slide plate 5 backward (through the slide groove 51 and the I-shaped nail 22 sliding forward and backward). Figure 14 As shown; then the rear edge of the dust cover 3 is pressed down, so that the guide column 41 slides down along the vertical section of the guide groove 23 to the corner position, and the slide plate 5 drives the stop plate 43 (operating plate 4) forward under the forward force of the spring 6, so that the guide column 41 is stuck in the front end of the horizontal section of the guide groove 23, and the slide plate 5 abuts against the rear end of the operating plate 4, thereby realizing the limiting of the operating plate 4 (dust cover 3), as shown in FIG. Figure 15 As shown; put your hand into the operating slot 21 and touch the inner side of the front edge of the dust cover hole 11, so that the entire server can be easily lifted and carried; after the carrying is completed, push the dust cover 3 (operating panel 4) backward to move the guide column 41 to the corner position of the guide slot 23, and move to the upper part of the vertical section of the guide slot 23 under the forward and upward force of the slide plate 5, so as to realize the reset of the dust cover 3 (operating panel 4), as shown in FIG. Figure 13As shown in the figure. The auxiliary handling structure of this node-type server chassis has a sunken design on the upper part of the inner chassis, with a compact structure, high space utilization rate, and no risk of having more sharp edges, thus enhancing the safety of operation; when not in use, it effectively seals the dust cover holes 11, simplifies the surface of the outer chassis 1, and improves the appearance effect; and it has the function of positioning and engaging the inner chassis 2 and the outer chassis 1, making disassembly and assembly convenient.

[0063] The various embodiments in this specification are described in a progressive manner. Each embodiment focuses on the differences from other embodiments. For the same and similar parts among the various embodiments, reference can be made to each other.

[0064] The terms "upper", "lower", "outer side", "inner side", etc. in the specification, claims and above-mentioned drawings of the present utility model, if any, are used to distinguish the relative relationship in position and do not need to be qualitatively defined. It should be understood that such used data can be interchanged under appropriate circumstances so that the embodiments of the present utility model described herein can be implemented in an order different from those illustrated or described herein. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion.

[0065] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present utility model. Various modifications to these embodiments will be obvious to those skilled in the art. The general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present utility model. Therefore, the present utility model will not be limited to the embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. An auxiliary handling structure for a node-type server chassis, characterized in that The device comprises an outer case (1) and an inner case (2) which can be pulled out and installed with the outer case (1); a dust cover hole (11) is provided on the upper side of the outer case (1); a concave operating groove (21) is provided on the upper side of the inner case (2), and L-shaped guide grooves (23) are provided on the left and right sides of the operating groove (21); The invention also comprises an operating panel (4) and a slide plate (5) capable of sliding forward and backward with the upper side of the inner case (2); a guide column (41) capable of engaging with the guide groove (23) is installed on the operating panel (4); a dust cover (3) capable of engaging and blocking the dust cover hole (11) is installed on the upper side of the operating panel (4); a downwardly bent driving stop plate (43) is provided on the operating panel (4); a spring (6) connected to the slide plate (5) is provided in the operating groove (21); the direction of the force exerted by the spring (6) on the slide plate (5) is consistent with the direction of the horizontal section of the guide groove (23); the slide plate (5) abuts against the driving stop plate (43) and can exert an oblique upward thrust on the operating panel (4).

2. The auxiliary handling structure of the node-type server chassis according to claim 1, wherein An I-shaped nail (22) is installed on the upper side of the inner case (2), and a sliding groove (51) capable of slidingly guiding with the I-shaped nail (22) is provided on the slide plate (5).

3. The auxiliary handling structure of the node-type server chassis according to claim 2, characterized in that, The slide plate (5) is an obtuse-angle bending structure, wherein the first bending section is arranged horizontally, and the slide groove (51) is provided on the first bending section of the slide plate (5); the second bending section of the slide plate (5) is arranged obliquely downward and is capable of abutting against the driving stop plate (43).

4. The auxiliary handling structure of the node-type server chassis according to claim 3, characterized in that, The left and right sides of the second bent section of the slide plate (5) are provided with hanging portions (53) for hanging the spring (6).

5. The auxiliary handling structure of the node-type server chassis according to claim 3, wherein A limiting plate (52) capable of slidingly supporting the bottom of the operating groove (21) is provided at the lower end of the second bending section of the slide plate (5).

6. The auxiliary handling structure for the node-type server chassis according to claim 3, wherein, A downwardly bent fixed stop plate (45) is provided at one end of the operating plate (4) away from the driving stop plate (43).

7. The auxiliary handling structure for a node server chassis according to claim 6, wherein One end of the operating panel (4) close to the driving stop plate (43) is provided with a reset stop plate (42) capable of abutting against the outer case (1) for limiting position.

8. The auxiliary handling structure of the node-type server chassis according to claim 6, characterized in that An end of the operating panel (4) away from the driving stop plate (43) is provided with a downward-folding stop plate (44) capable of abutting against the outer case (1).

9. The auxiliary handling structure of the node-type server chassis according to claim 1, characterized in that, A protective pad (12) is provided on the lower side of one edge of the dust cover hole (11).

10. The auxiliary handling structure of the node-type server chassis according to claim 1, characterized in that, An end of the driving stop plate (43) away from the operating plate (4) is provided with a return bend edge.