Server cabinet

By designing a bendable sealing component in the server cabinet, the problem of a wide variety of fillers in the server cabinet is solved, and effective sealing and heat dissipation backflow prevention of idle spaces of different specifications are achieved, thereby improving management and assembly efficiency.

CN120676581APending Publication Date: 2025-09-19XFUSION DIGITAL TECH CO LTD
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Patent Information

Application Number
CN202510757279.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-06
Publication Date
2025-09-19

AI Technical Summary

Technical Problem

In the prior art, there are many types of filling pieces in server cabinets, which are inconvenient to manage and difficult to adapt to the idle positions of servers of different specifications for effective sealing and heat dissipation and backflow prevention.

Method used

A sealing component for a server cabinet is designed, including a bendable second baffle. The length of the second baffle can be adjusted by the bending portion to accommodate idle spaces of different sizes. The flexible properties of the injection molded part are utilized to achieve sealing of various sizes. The limiting structure and the snap-on structure are combined to improve assembly stability.

Benefits of technology

It realizes the easy management and adaptation of idle space of different specifications in the server cabinet, simplifies production and processing, improves assembly efficiency and stability, and meets the heat dissipation and backflow prevention needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the invention provides a server cabinet, and the cabinet comprises a cabinet body which is provided with a plurality of accommodation spaces, and the accommodation spaces are used for placing servers; the blocking assembly is arranged in the containing space and used for blocking the containing space; the plugging assembly comprises two first baffles which are inserted into the containing space in the depth direction of the containing space; the two second baffles are connected between the two first baffles, and the opening of the containing space is blocked by the second baffles; in the length direction of the second baffle, the second baffle comprises a plurality of main body parts arranged at intervals and bending parts connected between the adjacent main body parts, and every two adjacent main body parts can be oppositely bent at the bending parts so as to adjust the length of the second baffle between the two first baffles. The size of the filling piece can be adjusted according to the idle position of the server cabinet, and the idle position of the server cabinet can be conveniently filled and sealed.
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Description

Technical Field

[0001] The embodiments of the present application relate to the field of server technology, and in particular to a server cabinet. Background Art

[0002] With the widespread adoption of cloud computing, big data, and virtualization, server types, sizes, and layouts are also diversifying. When a cabinet is not fully populated with servers, fillers are often installed in unused spaces to ensure heat dissipation and prevent backflow. However, prior art uses a wide variety of fillers, often in varying sizes, tailored to server specifications, making management difficult. Summary of the Invention

[0003] An embodiment of the present application provides a server cabinet, which can adjust the size of a filling piece according to an idle position of the server cabinet, thereby facilitating filling and sealing the idle position of the server cabinet.

[0004] To achieve the above objectives, the present invention adopts the following technical solutions:

[0005] An embodiment of the present application provides a server cabinet, comprising:

[0006] The cabinet has multiple storage spaces for accommodating servers.

[0007] The blocking component is provided in the accommodation space and is used to block the accommodation space; the blocking component includes:

[0008] Two first baffles are inserted into the accommodation space along the depth direction of the accommodation space;

[0009] Two second baffles are connected between the two first baffles, and the second baffles seal the opening of the accommodating space;

[0010] Along the length direction of the second baffle, the second baffle includes a plurality of spaced main bodies and bending parts connected between adjacent main bodies. Two adjacent main bodies can be bent relative to each other at the bending parts to adjust the length of the second baffle between the two first baffles.

[0011] In an embodiment of the present application, a blocking assembly is provided in the storage space to block the storage space, thereby blocking the idle position of the cabinet storage space, thereby meeting the requirements of heat dissipation and backflow prevention for the server when part of the storage space in the server cabinet is idle. Two second baffles are connected between two first baffles, thereby facilitating assembly of the blocking assembly. Along the length of the second baffle, the second baffle is configured to include a plurality of spaced main bodies and a bent portion connecting adjacent main bodies. Thus, adjacent main bodies can be bent relative to each other at the bent portion, thereby adjusting the length of the second baffle by bending the adjacent main bodies at the bent portion, i.e., adjusting the length of the second baffle connected between the two first baffles. A second baffle of uniform specification can be connected between the two first baffles at a bent portion of a plurality of different lengths, thereby constructing blocking assemblies of various sizes and specifications, thereby facilitating blocking of idle spaces of different specifications. Thus, only one second baffle of uniform specification can be used to block multiple idle spaces of different specifications, thereby facilitating management of the blocking assembly.

[0012] In one implementation, along the thickness direction of the second baffle, the thickness of the bent portion is smaller than the thickness of the main body portion, so that adjacent main body portions are flexibly connected at the bent portion.

[0013] In the embodiment of the present application, by setting the thickness of the bending portion to be smaller than the thickness of the main body, the bending portion is formed by thinning the thickness of the second baffle, and the flexible characteristics of the second baffle as an injection molded part are utilized; in this way, the bending between adjacent main bodies can be achieved by utilizing the flexible characteristics of the injection molded part itself without introducing other components, thereby simplifying the structure of the second baffle and facilitating the processing and production of the second baffle.

[0014] In one implementation, along the thickness direction of the second baffle, the bent portion is provided with a first recessed groove, and the first recessed groove is recessed in one of the surfaces of the second baffle along the thickness direction;

[0015] Along the width direction of the second baffle, the first concave groove penetrates two surfaces of the second baffle in the width direction.

[0016] In an embodiment of the present application, a first recessed groove is provided on the bending portion, and the first recessed groove is recessed in one of the surfaces of the second baffle along the thickness direction. In this way, the second baffle can be thinned along the thickness direction by the first recessed groove, thereby forming a bending portion, which is convenient for the processing and forming of the bending portion on the first baffle; along the width direction of the second baffle, the first recessed groove runs through the two surfaces of the first baffle in the width direction. In this way, the entire width direction of the second baffle can be thinned by the first recessed groove, which is convenient for the two adjacent main bodies to be bent at the bending portion, and it is convenient to adjust the length of the second baffle between the two first baffles.

[0017] In one implementation, the first recessed groove is recessed in the surface of the second baffle facing the inner side of the cabinet, and an avoidance gap is provided at the groove edge of the first recessed groove.

[0018] In the embodiment of the present application, the first recessed groove is recessed in the surface of the second baffle facing the inner side of the cabinet body, so that when the two adjacent main bodies are bent at the bending portion, the bending portion is located on the inner side of the second baffle, which can ensure the integrity of the outer portion of the second baffle and the integrity of the sealing assembly; in addition, an avoidance notch is provided at the groove edge of the first recessed groove, so that when the bending portion is bent, the two groove edges opposite to the bending portion can avoid each other through the avoidance notch, which can ensure the bending angle of the two adjacent main bodies, facilitate the adjustment of the length of the second baffle, and thus assemble into sealing assemblies of different specifications.

[0019] In one implementation, the avoidance notch includes a chamfered notch, which facilitates the processing and forming of the avoidance notch.

[0020] In one implementation, the bent portion is provided with a second recessed groove along the thickness direction of the second baffle, and along the thickness direction of the second baffle, the second recessed groove is recessed relative to the first recessed groove on the other surface of the second baffle;

[0021] Along the width direction of the second baffle, the second concave groove penetrates two surfaces of the second baffle in the width direction.

[0022] In an embodiment of the present application, a second recessed groove is formed by recessing another surface of the second baffle opposite to the first recessed groove. In this way, the pulling of the outer side of the bending portion on the two adjacent main bodies can be reduced, making it easier to bend the two adjacent main bodies at the bending portion.

[0023] In one implementation, the width of the second recessed groove is smaller than the width of the first recessed groove.

[0024] In an embodiment of the present application, the width of the second recessed groove is set to be smaller than the width of the first recessed groove. In this way, when the length directions of the two adjacent main bodies are in the same direction, the two adjacent main bodies can be prevented from bending toward the other side, thereby improving the strength of the two adjacent main bodies on the other side.

[0025] In one implementation, the main body portion includes a first main body portion and a second main body portion, the first main body portion and the second main body portion are adjacent to each other, and the bent portion is connected between the first main body portion and the second main body portion;

[0026] The first main body is provided with a first buckle portion, and the first buckle portion can be bent relative to the first main body;

[0027] The second main body is provided with a first latch hole and a second latch hole, the first latch hole and the second latch hole are arranged side by side along the length direction of the second baffle, and the second latch hole is located on a side of the first latch hole away from the first main body;

[0028] When the length directions of the first main body portion and the second main body portion are consistent, the first buckle portion is bent relative to the first main body portion and is engaged with the first buckle hole;

[0029] When the first main body is bent relative to the second main body, the first buckle portion is engaged with the second buckle hole.

[0030] In the embodiment of the present application, a first latch portion is provided on the first main body so that the first latch portion can be bent relative to the first main body; and a first latch hole and a second latch hole are provided on the second main body, the first latch hole and the second latch hole being arranged side by side along the length direction of the second baffle, with the second latch hole being located on a side of the first latch hole facing away from the first main body. In this way, when the length directions of the first and second main bodies are aligned, the first latch portion can bend relative to the first main body and be engaged within the first latch hole. In this way, the bent portion of the first latch portion can provide support and reinforcement, thereby maintaining the first and second main bodies in the same direction, thereby facilitating the extension of the second baffle. When the length directions of the first and second main bodies are not aligned, that is, when the first and second main bodies are bent relative to each other, since the bent portion between the first and second main bodies is folded, the extension length of the first latch portion toward the second main body does not need to pass through the bent portion. The first latch portion can be engaged within the second latch hole, thereby maintaining the first and second main bodies in the bent state, ensuring the effectiveness of the bending of the first and second main bodies, and facilitating the shortening of the length of the second baffle.

[0031] In one implementation, the first main body portion is provided with a first lightening groove, so that a first reinforcing rib is formed at one end of the first main body portion facing the second main body portion, and the first buckle portion is provided on the first reinforcing rib;

[0032] The second main body is provided with a second lightening groove, and the first clamping hole is provided on the groove wall of the second lightening groove.

[0033] In some examples of the embodiments of the present application, a first lightening groove is provided in the first main body, thereby forming a first reinforcing rib at one end of the first main body toward the second main body, and the first snap portion is provided on the first reinforcing rib; in this way, it is convenient to set the first snap portion on the first main body, and it is convenient to rotate the first snap portion relative to the first main body to be consistent with the length direction of the second baffle, thereby keeping the first main body and the second main body in a state of consistent extension direction.

[0034] In addition, a second lightening groove is provided in the second main body, and the first clamping hole is provided on the groove wall of the second lightening groove, which facilitates the arrangement of the first clamping hole and reduces the difficulty of processing and producing the second baffle.

[0035] In one implementation, the second main body is provided with a third lightening groove, and the second clamping hole is provided on the groove wall of the third lightening groove.

[0036] In the embodiment of the present application, by providing the third lightening groove in the second main body and providing the second clamping hole in the groove wall of the third lightening groove, the processing and forming of the second clamping hole is facilitated, and the processing and production difficulty of the second baffle is reduced.

[0037] In one implementation, an elastic clamping arm is provided at one end of the first clamping portion facing away from the first reinforcing rib, and the elastic clamping arm is located on a side of the first clamping portion facing the second lightening groove.

[0038] In an embodiment of the present application, an elastic clamping arm is provided at the end of the first clamping portion facing away from the first reinforcing rib. In this way, when the first clamping portion is clamped into the first clamping hole or the second clamping hole, the elastic clamping arm can be deformed and clamped into the first clamping hole or the second clamping hole, thereby facilitating the clamping of the first clamping portion into the first clamping hole or the second clamping hole.

[0039] In addition, when the first snap part is removed from the first snap hole or the second snap hole, the elastic snap arm can withdraw from the first snap hole or the second snap hole by deformation, which facilitates the removal of the first snap part and the adjustment of the length of the second baffle.

[0040] In one implementation, the elastic clamping arms include two, and along the width direction of the second baffle, the two elastic clamping arms are located on both sides of the first buckle portion.

[0041] In the embodiment of the present application, an elastic latch arm is provided on either side of the first latch portion along the width direction of the second baffle. Thus, when the first latch portion is engaged with the first latch hole or the second latch hole, both sides of the first latch portion along the width direction are subjected to a latching force, thereby improving the stability of the first latch portion connecting the first and second main bodies, ensuring the stability of the second baffle after the length is adjusted, and facilitating the sealing of the idle space in the cabinet.

[0042] In one implementation, a first limiting structure is provided on a side of the first baffle facing the second baffle; the second baffle is provided with a second limiting structure, and the second limiting structure cooperates with the first limiting structure to connect the first baffle and the second baffle.

[0043] In an embodiment of the present application, a first limiting structure is set on the side of the first baffle facing the second baffle, and a second limiting structure is set on the second baffle. In this way, when connecting the first baffle and the second baffle, the first limiting structure and the second limiting structure can be cooperated to assemble the first baffle and the second baffle together, thereby facilitating the assembly of the sealing assembly.

[0044] In one implementation, the first limiting structure includes one of a limiting hole and a limiting column, and the second limiting structure includes the other of the limiting hole and the limiting column. The limiting column is inserted into the limiting hole to connect the first baffle and the second baffle.

[0045] In this way, when assembling the blocking assembly, the limiting column can be passed through the limiting hole to facilitate the connection of the first baffle plate and the second baffle plate to form the blocking assembly, thereby improving the assembly efficiency of the blocking assembly.

[0046] In one implementation, a plurality of first limiting structures are provided along the length direction of the first baffle, and the plurality of first limiting structures are arranged at intervals;

[0047] A second limiting structure is provided on each of the multiple main bodies. When any one of the multiple main bodies is bent to be consistent with the length direction of the first baffle, the second limiting structure provided on the main body cooperates with the first limiting structure.

[0048] In an embodiment of the present application, multiple first limiting structures are arranged at intervals along the length direction of the first baffle, and second limiting structures are provided on multiple main bodies. In this way, when any one of the multiple main bodies is bent to be consistent with the length direction of the first baffle, the second limiting structure on the main body can cooperate with the first limiting structure. For example, the limiting column can be passed through the limiting hole to facilitate fixing the bent main body, thereby improving the stability of the sealing assembly after assembly.

[0049] In one implementation, along the length direction of the second baffle, the ends of the two main bodies located at both ends are provided with extensions along the thickness direction of the second baffle, and the extensions are located on the inner side of the second baffle; the second limiting structure is provided on the extensions, and the second limiting structure faces the first baffle.

[0050] In the embodiment of the present application, an extension portion extending in the thickness direction is provided at the end portions of the two main body portions located at both ends of the length direction of the second baffle, and a second limiting structure is provided on the extension portion; in this way, the setting of the second limiting structure at both ends of the length direction of the second baffle is facilitated. In addition, through the setting of the extension portion, the contact area between the two ends of the length direction of the second baffle and the first baffle can be increased, which facilitates the connection and assembly of the second baffle and the first baffle when the second baffle is unfolded to the longest state, and facilitates the adaptation of the blocking component to idle spaces of different sizes.

[0051] In one implementation, the second baffle is provided with a second reinforcing rib, and the second reinforcing rib is connected between the inner side of the extension portion and the inner side of the main body portion.

[0052] In an embodiment of the present application, a second reinforcing rib is provided on the second baffle, and the second reinforcing rib is connected between the inner side of the extension portion and the inner side of the main body portion. In this way, the strength of the extension portion can be improved, thereby improving the stability of the connection between the second limiting structure provided on the extension portion and the first baffle, that is, improving the stability of the sealing assembly after assembly.

[0053] In one implementation, the first limiting structure further includes a second buckle portion, which is provided at an end portion of the first baffle and extends toward the inner side of the first baffle;

[0054] The second limiting structure further includes a third clamping hole, which is arranged on the outer surface of the second baffle. The second buckle portion is clamped in the third clamping hole to connect the first baffle and the second baffle.

[0055] In an embodiment of the present application, a third clip hole is provided on the outer surface of the second baffle, and a second clip portion is provided at the end of the first baffle, and the second clip portion extends toward the inner side of the first baffle; in this way, when the first baffle is connected to the second baffle, the second clip portion can be clipped into the third clip hole, and the limiting column can be passed through the limiting hole, so that through the cooperation between the limiting column and the limiting hole and the cooperation between the second clip portion and the third clip hole, double limitation of the first baffle and the second baffle is formed, which can improve the stability of the assembly cooperation of the first baffle and the second baffle, that is, improve the stability of the sealing component after assembly.

[0056] In one implementation, the first baffle includes a first sub-baffle and a second sub-baffle, the first sub-baffle and the second sub-baffle are overlapped along the thickness direction of the first baffle, and the first sub-baffle and the second sub-baffle are slidably connected along the width direction of the first baffle;

[0057] The second baffle includes a third sub-baffle and a fourth sub-baffle, the third sub-baffle and the fourth sub-baffle are overlapped along the thickness direction of the second baffle, and the fourth sub-baffle is slidably connected to the third sub-baffle along the width direction of the second baffle;

[0058] The third sub-baffle is connected to the first sub-baffle, and the fourth sub-baffle is connected to the second sub-baffle.

[0059] In this embodiment of the present application, the first and second sub-baffles overlap along the thickness direction of the first baffle and are slidably connected along the width direction of the first baffle. This allows the overall width of the first baffle to be adjusted by sliding the first and second sub-baffles along the width direction of the first baffle. Furthermore, the third and fourth sub-baffles overlap along the thickness direction of the second baffle and are slidably connected to the third sub-baffle along the width direction of the second baffle. This allows the overall width of the second baffle to be adjusted by sliding the third and fourth sub-baffles along the width direction of the second baffle. The third sub-baffle is connected to the first sub-baffle, and the fourth sub-baffle is connected to the second sub-baffle. After the first and second baffles are assembled to form a blocking assembly, the width of the blocking assembly can be adjusted, facilitating its adaptation to and blocking of confined spaces of varying widths. This reduces the number of components in the first and second baffles, making management of the blocking assembly easier.

[0060] In one implementation, the first sub-baffle is provided with a first guide structure, and the second sub-baffle is provided with a second guide structure, the first guide structure and the second guide structure extend along the width direction of the first baffle; the first guide structure and the second guide structure are slidably engaged to guide the first sub-baffle and the second sub-baffle along the width direction of the first baffle;

[0061] The third sub-baffle is provided with a third guide structure, and the fourth sub-baffle is provided with a fourth guide structure. The third guide structure and the fourth guide structure extend along the width direction of the second baffle; the third guide structure and the fourth guide structure slide together to guide the first sub-baffle and the second sub-baffle along the width direction of the second baffle.

[0062] In an embodiment of the present application, a first guide structure is provided on the first sub-baffle and a second guide structure is provided on the second sub-baffle, and the first guide structure and the second guide structure extend along the width direction of the first baffle; in this way, after the first sub-baffle and the second sub-baffle are assembled to form the first baffle, the first guide structure and the second guide structure can slide and cooperate with each other, and when the first sub-baffle and the second sub-baffle slide, the sliding direction of the first sub-baffle and the second sub-baffle is guided, so as to facilitate smooth adjustment of the width of the first baffle.

[0063] Similarly, a third guide structure is provided on the third sub-baffle, and a fourth guide structure is provided on the fourth sub-baffle, and the third guide structure and the fourth guide structure extend along the width direction of the second baffle; in this way, after the third sub-baffle and the fourth sub-baffle are assembled to form the second baffle, the third guide structure and the fourth guide structure can slide and cooperate with each other, and when the third sub-baffle and the fourth sub-baffle slide, the moving direction of the third sub-baffle and the fourth sub-baffle is guided, so as to facilitate smooth adjustment of the width of the second baffle.

[0064] In one implementation, one of the first guide structure and the second guide structure includes a first guide groove, and the other of the first guide structure and the second guide structure includes a first guide rail, and the first guide rail is inserted into the first guide groove;

[0065] One of the third guide structure and the fourth guide structure includes a second guide groove, and the other of the third guide structure and the fourth guide structure includes a second guide rail, which is inserted into the second guide groove.

[0066] In an embodiment of the present application, by setting one of the first guide structure and the second guide structure as a first guide groove, and setting the other of the first guide structure and the second guide structure as a first guide rail, the first guide rail is inserted into the first guide groove, so that the first guide structure and the second guide structure are convenient for cooperation, thereby improving the assembly efficiency of the first sub-baffle and the second sub-baffle; by setting one of the third guide structure and the fourth guide structure as a second guide groove, and setting the other of the third guide structure and the fourth guide structure as a second guide rail, the second guide rail is inserted into the second guide groove, so that the third guide structure and the fourth guide structure are convenient for cooperation, thereby improving the assembly efficiency of the third sub-baffle and the fourth sub-baffle.

[0067] In one implementation, the first guide groove includes a first groove portion and a second groove portion, the first groove portion extends along the thickness direction of the first baffle, the second groove portion is connected to the first groove portion, and the second groove portion extends along the length direction of the first baffle;

[0068] The first guide rail includes a first guide portion and a second guide portion, the first guide portion protruding from the second sub-baffle along the thickness direction of the first baffle, and the second guide portion is connected to the end of the first guide portion away from the second sub-baffle;

[0069] The first guide portion is inserted into the first groove portion, and the second guide portion is inserted into the second groove portion;

[0070] and / or,

[0071] The second guide groove includes a first groove portion and a second groove portion, the first groove portion extends along the thickness direction of the second baffle, the second groove portion is connected to the first groove portion, and the second groove portion extends along the length direction of the second baffle;

[0072] The second guide rail includes a first guide portion and a second guide portion, the first guide portion protruding from the fourth sub-baffle along the thickness direction of the second baffle, and the second guide portion is connected to the end of the first guide portion away from the fourth sub-baffle;

[0073] The first guide portion is inserted into the first groove portion, and the second guide portion is inserted into the second groove portion.

[0074] In an embodiment of the present application, by setting any one of the first guide groove and the second guide groove to include a first groove portion and a second groove portion that are interconnected, the extension directions of the first groove portion and the second groove portion intersect; and setting any one of the first guide rail and the second guide rail to include an intersecting first guide portion and a second guide portion, the first guide portion is inserted into the first groove portion, and the second guide portion is inserted into the second groove portion. In this way, the first guide portion and the second guide portion of the first groove portion and the second groove portion with different extension directions can be used to limit the first and second guide portions, so that in the thickness direction of the first baffle, the first sub-baffle and the second sub-baffle are stably overlapped, and in the thickness direction of the second baffle, the third sub-baffle and the fourth sub-baffle are stably overlapped, which is convenient for adjusting the width of the sealing assembly.

[0075] In one implementation, the main body of the third sub-baffle is provided with at least one third guide structure, and the main body of the fourth sub-baffle is provided with at least one fourth guide structure.

[0076] In an embodiment of the present application, at least one third guide structure is provided on the main body of the third sub-baffle, and at least one fourth guide structure is provided on the main body of the fourth sub-baffle. In this way, each main body along the length direction of the second baffle can be guided by the cooperation of its own third guide structure and fourth guide structure, thereby improving the stability of the connection between the third sub-baffle and the fourth sub-baffle.

[0077] In one implementation, along a width direction of either the first baffle or the second baffle, either the first baffle or the second baffle is provided with a positioning structure, and the positioning structure is used to limit the width of the first baffle and the second baffle.

[0078] In an embodiment of the present application, a positioning structure is provided on any one of the first baffle and the second baffle. Thus, after adjusting the widths of the first baffle and the second baffle, the width of at least one of the first baffle and the second baffle can be positioned by the positioning structure. Since the first baffle and the second baffle are connected to each other, the width of the other of the first baffle and the second baffle can be positioned at the same time, which facilitates maintaining the width of the blocking assembly and facilitates the blocking assembly to adapt to idle spaces of different sizes.

[0079] In one implementation, the positioning structure includes a positioning protrusion and a plurality of positioning grooves; the positioning protrusion is provided on the first sub-baffle, and the plurality of positioning grooves are provided on the second sub-baffle at intervals along the width direction of the second sub-baffle; the positioning protrusion is embedded in the positioning groove;

[0080] and / or,

[0081] The positioning protrusion is arranged on the third sub-baffle, and a plurality of positioning grooves are arranged on the fourth sub-baffle at intervals along the width direction of the fourth sub-baffle, and the positioning protrusion is embedded in the positioning grooves.

[0082] In an embodiment of the present application, a positioning protrusion is provided on the first sub-baffle or the third sub-baffle, and a plurality of positioning grooves are provided along the width direction on the second sub-baffle or the fourth sub-baffle. In this way, after the width of the blocking component is adjusted, the width of the blocking component can be positioned by positioning the positioning protrusion in the positioning groove, thereby simplifying the positioning method of the width of the blocking component. In addition, the processing and production procedures of the first baffle and the second baffle are simplified, which facilitates the processing, production and assembly adjustment of the blocking component.

[0083] In one implementation, the positioning protrusion is provided on an edge of the first sub-baffle facing the second sub-baffle, and notches are provided on both sides of the positioning protrusion along the length direction of the first sub-baffle, and along the width direction of the first sub-baffle, the size of the notches is larger than the size of the positioning protrusion;

[0084] and / or,

[0085] The positioning protrusion is arranged on the edge of the third sub-baffle toward the fourth sub-baffle. Notches are arranged on both sides of the positioning protrusion along the length direction of the third sub-baffle. The size of the notches is larger than the size of the positioning protrusion along the width direction of the third sub-baffle.

[0086] In an embodiment of the present application, by arranging the positioning protrusions on the edges of the first sub-baffle and the third sub-baffle in the width direction, and providing notches on both sides of the positioning protrusions, when adjusting the width of the blocking assembly, the positioning protrusions can be snapped into the positioning grooves by deformation of the connection parts with the positioning protrusions, or the positioning protrusions can be withdrawn from the positioning grooves, thereby facilitating adjustment of the width of the blocking assembly. BRIEF DESCRIPTION OF THE DRAWINGS

[0087] Figure 1 This is a schematic diagram of the overall structure of the server cabinet provided in an embodiment of the present application;

[0088] Figure 2 This is a structural diagram of a blocking component in a server cabinet provided by an embodiment of the present application;

[0089] Figure 3 This is a structural diagram of a second baffle in a server cabinet provided in an embodiment of the present application;

[0090] Figure 4 is a top view of a second baffle in a server cabinet provided in an embodiment of the present application;

[0091] Figure 5 This is another structural schematic diagram of the second baffle in the server cabinet provided in an embodiment of the present application;

[0092] Figure 6 yes Figure 4 A partial enlarged view of point A in the middle;

[0093] Figure 7 This is another structural schematic diagram of the second baffle in the server cabinet provided in an embodiment of the present application;

[0094] Figure 8 yes Figure 7 A partial enlarged view of point B in the middle;

[0095] Figure 9 yes Figure 7 A partial enlarged view of point C in the middle;

[0096] Figure 10 This is a front view of a first baffle in a server cabinet provided in an embodiment of the present application;

[0097] Figure 11 yes Figure 4 A partial enlarged view of point B in the middle;

[0098] Figure 12 This is a schematic diagram of an exploded structure of a blocking component in a server cabinet provided by an embodiment of the present application;

[0099] Figure 13 This is a schematic diagram of the overall structure of the first baffle in the server cabinet provided in an embodiment of the present application;

[0100] Figure 14 This is a schematic diagram of an exploded structure of a second baffle in a server cabinet provided in an embodiment of the present application;

[0101] Figure 15 It is along Figure 10 Cross-sectional view along line AA;

[0102] Figure 16 This is a cross-sectional view of a second baffle in a server cabinet provided in an embodiment of the present application;

[0103] Figure 17 yes Figure 15 A partial enlarged view of point F in the middle;

[0104] Figure 18 yes Figure 16 A partial enlarged view of point G in the middle;

[0105] Figure 19 This is an exploded structural view of a first baffle in a server cabinet provided by an embodiment of the present application;

[0106] Figure 20 This is another front view of the first baffle in the server cabinet provided in an embodiment of the present application;

[0107] Figure 21 It is along Figure 20 Cross-sectional view along the midline HH;

[0108] Figure 22 yes Figure 19 A partial enlarged view of point I in the middle.

[0109] Description of reference numerals:

[0110] 10-cabinet; 20-server; 30-blocking component;

[0111] 310-first baffle; 320-second baffle;

[0112] 311 - first position-limiting structure; 312 - first sub-baffle; 313 - second sub-baffle; 314 - positioning structure; 321 - main body; 322 - bending portion; 323 - second position-limiting structure; 324 - extension portion; 325 - third sub-baffle; 326 - fourth sub-baffle;

[0113] 3111-limiting hole; 3112-second buckle portion; 3121-first guide structure; 3122-first guide rail; 3131-second guide structure; 3132-first guide groove; 3141-positioning protrusion; 3142-positioning groove; 3143-notch; 321a-first main body; 321b-second main body; 3211-first buckle portion; 3212-first clamping hole; 3213-second clamping hole; 32 14 - first lightening groove; 3215 - first reinforcing rib; 3216 - second lightening groove; 3217 - third lightening groove; 3221 - first recessed groove; 3222 - avoidance notch; 3223 - second recessed groove; 3231 - limiting column; 3232 - third clamping hole; 3241 - second reinforcing rib; 3251 - third guide structure; 3252 - second guide rail; 3261 - fourth guide structure; 3262 - second guide groove;

[0114] 3211a-elastic clamping arm; 3132a-first groove portion; 3132b-second groove portion; 3122a-first guide portion; 3122b-second guide portion. DETAILED DESCRIPTION

[0115] The following will describe the technical solutions in the embodiments of the present application in conjunction with the accompanying drawings. To facilitate the clear description of the technical solutions in the embodiments of the present application, the first, second, etc. descriptions in the embodiments of the present application are only used for illustration and to distinguish the described objects. There is no order, nor does it represent a special limitation on the number of devices in the embodiments of the present application, and it does not constitute any limitation on the embodiments of the present application.

[0116] In order to enable those skilled in the art to better understand the technical solutions in this application, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the drawings in the embodiments of this application. Obviously, the described embodiments are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of this application.

[0117] It should be noted that many specific details are set forth in the following description to facilitate a full understanding of the present application. However, the present application can also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present application is not limited to the specific implementation methods disclosed below.

[0118] In the description of this application, it should be understood that the terms "upper", "lower", "horizontal", "bottom", "inner", "outer" (if any), etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended only to facilitate the description of this application and simplify the description. They do not indicate or imply that the devices or elements referred to must have a specific orientation, be constructed and operate in a specific orientation, and therefore should not be understood as limiting this application. In this application, unless otherwise expressly specified or limited, a first feature being "upper" or "lower" than a second feature may mean that the first and second features are in direct contact, or that the first and second features are in indirect contact through an intermediate medium.

[0119] In this application, unless otherwise expressly specified or limited, the terms "connected," "connected," "fixed," and the like should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integration; they can refer to direct connections or indirect connections through an intermediate medium; they can refer to internal communication between two elements or an interaction between two elements. However, the phrase "directly connected" indicates that the two connected entities are not connected through an intermediate structure, but are connected to form a whole through a connecting structure. Those skilled in the art can understand the specific meanings of the above terms in this application based on the specific circumstances.

[0120] In this application, references to "first," "second," and the like are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, features specified as "first" or "second" may explicitly or implicitly include at least one of these features.

[0121] Figure 1 This is a schematic diagram of the overall structure of a server cabinet provided in an embodiment of the present application.

[0122] With the widespread application of cloud computing, big data, and virtualization, the types, sizes, and layouts of the servers 20 have also become diversified.

[0123] For some examples, refer to Figure 1 As shown, in order to facilitate management of the server 20, the server 20 is usually set in a server cabinet.

[0124] For some examples, refer to Figure 1 As shown, the server 20 cabinet may include a cabinet body 10. The cabinet body 10 may be made of metal or hard non-metallic material. The cabinet body 10 may support and accommodate the server 20.

[0125] In some examples, the cabinet 10 may have multiple accommodating spaces (not shown in the figure). The accommodating spaces may be arranged along the longitudinal direction of the cabinet 10 (e.g. Figure 1 The arrangement is in the direction shown by the z-axis.

[0126] In some examples, each accommodation space can accommodate one server 20 .

[0127] In some examples, each accommodation space can accommodate multiple servers 20. The sizes of the multiple servers 20 can be the same or different.

[0128] In some examples, at the server 20 along Figure 1 When the size in the direction indicated by the x-axis is smaller than the size of the accommodation space, there will be some idle space in the accommodation space.

[0129] In some examples, in order to meet the heat dissipation and backflow prevention requirements of the server 20, refer to Figure 1 As shown, the server 20 cabinet may include a blocking assembly 30. The blocking assembly 30 may be provided in the accommodation space.

[0130] In some examples, the blocking component 30 can be inserted into the accommodation space and block the opening of the accommodation space.

[0131] Figure 2 This is a structural diagram of a blocking component in a server cabinet provided in an embodiment of the present application.

[0132] For some examples, refer to Figure 2 As shown, the blocking assembly 30 may include two first baffles 310. The first baffles 310 may be inserted into the accommodation space.

[0133] In some examples, the first baffle 310 may extend along the depth direction of the accommodation space (eg Figure 1 or Figure 2 The direction shown by the y-axis is inserted into the accommodating space.

[0134] In some examples, the first baffle 310 can be equal to the depth of the storage space along the depth direction of the storage space. In this way, after the first baffle 310 is inserted into the storage space along the depth direction of the storage space, the length of the first baffle 310 can just cover the entire depth direction of the storage space, which can quickly block the idle space.

[0135] In some examples, the depth of the accommodation space may be an integer multiple of the length of the first baffle 310. In this way, an integer number of blocking assemblies 30 may be inserted along the depth of the accommodation space to block the idle space, thereby enabling the idle space to be quickly blocked.

[0136] For some examples, refer to Figure 2 As shown, the blocking assembly 30 may include two second baffles 320 . The second baffle 320 may be connected between the two first baffles 310 .

[0137] In some examples, one of the second baffles 320 can be connected to one end of the two first baffles 310, and the other second baffle 320 can be connected to the other end of the two first baffles 310. In other words, after the two second baffles 320 and the two first baffles 310 are connected, a sealing assembly 30 with a quadrilateral or quadrilateral structure can be constructed.

[0138] For some examples, refer to Figure 1 As shown, the second baffle 320 can be sealed at the opening of the accommodation space. In this way, the idle space of the accommodation space can be completely sealed and separated from the space where the server 20 is placed, which can meet the requirements of heat dissipation and backflow prevention.

[0139] Figure 3 This is a structural schematic diagram of a second baffle in a server cabinet provided in an embodiment of the present application.

[0140] In some examples, the types and sizes of the servers 20 are different. That is, the servers 20 occupy different amounts of space, resulting in different sizes of idle spaces. To accommodate the blocking of idle spaces of different sizes, refer to Figure 3 As shown, the second baffle 320 may include a plurality of main body portions 321 .

[0141] In some examples, multiple main bodies 321 may be connected in sequence.

[0142] In some examples, the lengths of the main bodies 321 may be the same along the length direction of the second baffle 320. In this way, multiple main bodies 321 can be combined to accommodate idle spaces of different sizes, making it easier to block idle spaces of different sizes.

[0143] In some examples, the lengths of the plurality of main bodies 321 may be different, so that the main bodies 321 of different lengths or a combination of the main bodies 321 may be used to block idle spaces of different specifications.

[0144] Figure 4 This is a top view of the second baffle in the server cabinet provided in an embodiment of the present application.

[0145] For some examples, refer to Figure 4 As shown, a plurality of main bodies 321 may be arranged at intervals. Adjacent main bodies 321 may be connected by bending portions 322 .

[0146] In some examples, two adjacent main body portions 321 may be bent relative to each other at the bending portion 322 .

[0147] Figure 5 This is another structural schematic diagram of the second baffle in the server cabinet provided in an embodiment of the present application.

[0148] For some examples, refer to Figure 5 As shown, at the bending portion 322, two adjacent main bodies 321 can be bent around the first bending rotation axis i1, so that one of the main bodies 321 at the end of the second baffle 320 can be moved from the first direction (eg Figure 5 direction shown by the x-axis) to a second direction (eg Figure 5 direction shown by the y-axis).

[0149] For some examples, refer to Figure 2 As shown, the extending directions of the first baffle 310 and the second baffle 320 may be different.

[0150] In some examples, the first baffle 310 may be arranged along Figure 2 The second baffle 320 extends in the direction indicated by the y-axis. Figure 2 The x-axis extends in the direction shown.

[0151] In some examples, after the second baffle 320 partially bends the main body 321, the main body 321 bent in the second direction may extend in the same direction as the first baffle 310. The main body 321 bent in the same direction as the first baffle 310 may be connected to the first baffle 310.

[0152] In some examples, the main body 321 that bends in the same direction as the first baffle 310 can be connected to the inner side of the first baffle 310 (for example, the opposite side of the two first baffles 310). In this way, the length of the second baffle 320 connected between the two first baffles 310 can be adjusted to accommodate idle spaces of different sizes.

[0153] For some examples, refer to Figure 5 As shown, it can be along Figure 5 The main body portion 321 extending in the middle x-axis direction is connected between the two first baffles 310 , so that the second baffle 320 between the two first baffles 310 can have a first length.

[0154] For some examples, refer to Figure 5 As shown, it can be along Figure 5 The main body 321 extending in the middle y-axis direction is connected between the two first baffles 310, so that the second baffle 320 between the two first baffles 310 can have a second length. It is understood that the first length can be greater than the second length.

[0155] In an embodiment of the present application, a blocking component 30 is provided in the accommodation space, and the blocking component 30 blocks the accommodation space. In this way, the idle position of the accommodation space of the cabinet 10 can be blocked, and the needs of heat dissipation and backflow prevention for the server 20 can be met when part of the accommodation space in the cabinet 10 of the server 20 cabinet is idle. By connecting the two second baffles 320 between the two first baffles 310, it is convenient to assemble the blocking assembly 30; along the length direction of the second baffle 320, the second baffle 320 is configured to include a plurality of spaced main body portions 321 and bending portions 322 connected between adjacent main body portions 321; in this way, the two adjacent main body portions 321 can be bent relative to each other at the bending portions 322, so that the length of the second baffle 320 can be adjusted by bending the two adjacent main body portions 321 at the bending portions 322, that is, the length of the second baffle 320 connected between the two first baffles 310 can be adjusted; a plurality of different sizes of lengths of the bending portion of a second baffle 320 of a uniform specification can be connected between the two first baffles 310, thereby constructing blocking assemblies 30 of various sizes and specifications, which is convenient for blocking idle spaces of various specifications. In this way, only one specification of second baffle 320 is required to block a plurality of different idle spaces, which facilitates the management of the blocking assembly 30.

[0156] In some examples, adjacent main body portions 321 may be connected by hinges, hinges, or rotating shafts. In other words, the bending portion 322 connected between adjacent main body portions 321 may include any one of hinges, hinges, or rotating shafts.

[0157] In some examples, the bending portion 322 between adjacent main body portions 321 may include a rubber skin or a flexible plastic sheet. The two ends of the rubber skin or flexible plastic sheet are respectively fixedly connected to the adjacent main body portions 321. Thus, the adjacent main body portions 321 can be connected by the flexible bending of the rubber skin or flexible plastic sheet.

[0158] Figure 6 yes Figure 4A magnified partial view of point A in the middle.

[0159] In some examples, along the thickness direction of the second baffle 320 , the thickness of the bent portion 322 is smaller than the thickness of the main body 321 , so that adjacent main bodies 321 are flexibly connected at the bent portion 322 .

[0160] In some examples, the second baffle 320 can be a one-piece piece formed by integral injection molding. When integrally molding the second baffle 320, the thickness of the bent portion 322 can be set to be smaller than the thickness of the main portion 321. This provides flexibility to the bent portion 322 as an injection molded part. To adjust the length of the second baffle 320, the bent portion 322 can be bent, thereby bending the adjacent main portion 321.

[0161] In some examples, the second baffle 320 can be a one-piece, integrally injection-molded component. After the second baffle 320 is injection-molded, the second baffle 320 can be thinned at the bend 322, thereby reducing the thickness of the bend 322 relative to the main body 321. This integration of the bend 322 and the main body 321 simplifies the manufacturing process for the second baffle 320 and improves its production efficiency.

[0162] In the embodiment of the present application, by setting the thickness of the bending portion 322 to be smaller than the thickness of the main body 321, the bending portion 322 is formed by thinning the thickness of the second baffle 320, and the flexibility of the second baffle 320 as an injection molded part is utilized; in this way, the bending between adjacent main bodies 321 can be achieved by utilizing the flexibility of the injection molded part itself without introducing other components, thereby simplifying the structure of the second baffle 320 and facilitating the processing and production of the second baffle 320.

[0163] For some examples, refer to Figure 6 As shown, along the thickness direction of the second baffle 320 (eg Figure 6 The bending portion 322 may be provided with a first recessed groove 3221. The first recessed groove 3221 may be recessed in one of the surfaces of the second baffle 320 along the thickness direction.

[0164] In some examples, the first recessed groove 3221 may be a lightening groove or a weight-reducing groove of the second baffle 320 .

[0165] In some examples, the first recessed groove 3221 may be formed on the surface of the second baffle plate 320 at one time when the second baffle plate 320 is injection molded.

[0166] In some examples, the first recessed groove 3221 may be formed by performing secondary processing on the surface of the second baffle 320 after the second baffle 320 is formed.

[0167] In some examples, along the width direction of the second baffle 320 (for example, Figure 5 or Figure 3 The first recessed groove 3221 can penetrate both surfaces of the second baffle 320 in the width direction (in the direction indicated by the z-axis). Thus, the second recessed groove 3223 can form a notch on the second baffle 320, facilitating bending of two adjacent main bodies 321 of the second baffle 320 at the notch, thereby facilitating adjustment of the length of the second baffle 320 between the two first baffles 310.

[0168] In the embodiment of the present application, a first recessed groove 3221 is provided in the bending portion 322, and the first recessed groove 3221 is recessed in one of the surfaces of the second baffle 320 along the thickness direction. In this way, the second baffle 320 can be thinned along the thickness direction by the first recessed groove 3221, thereby forming the bending portion 322, which facilitates the processing and forming of the bending portion 322 on the first baffle 310; along the width direction of the second baffle 320, the first recessed groove 3221 passes through the two surfaces of the first baffle 310 in the width direction. In this way, the entire width direction of the second baffle 320 can be thinned by the first recessed groove 3221, which facilitates the bending of the two adjacent main bodies 321 at the bending portion 322, and facilitates the adjustment of the length of the second baffle 320 between the two first baffles 310.

[0169] For some examples, refer to Figure 6 As shown, the first recessed groove 3221 is recessed in the surface of the second baffle 320 facing the inner side of the cabinet 10 , and an avoidance notch 3222 is provided along the groove edge of the first recessed groove 3221 .

[0170] In some examples, the avoidance gap 3222 is injection molded at the same time as the second baffle 320 is injection molded.

[0171] In some examples, the avoidance gap 3222 can be formed by performing secondary processing on the groove edge of the first recessed groove 3221 .

[0172] For some examples, refer to Figure 6 The avoidance gap 3222 may be provided with two, along the width direction of the first recessed groove 3221 (for example, Figure 6 An avoidance notch 3222 is respectively provided on the groove edge on both sides of the first concave groove 3221 (in the direction shown by the x-axis).

[0173] In the embodiment of the present application, the first recessed groove 3221 is recessed in the surface of the second baffle 320 facing the inner side of the cabinet 10, so that when the two adjacent main bodies 321 are bent at the bending portion 322, the bending portion 322 is located on the inner side of the second baffle 320, which can ensure the integrity of the exterior of the second baffle 320 and the integrity of the blocking assembly 30; in addition, an avoidance notch 3222 is provided at the groove edge of the first recessed groove 3221, so that when the bending portion 322 is bent, the two groove edges opposite to the bending portion 322 can avoid each other through the avoidance notch 3222, which can ensure the bending angle of the two adjacent main bodies 321, and facilitate the adjustment of the length of the second baffle 320, thereby assembling blocking assemblies 30 of different specifications.

[0174] In some examples, the avoidance gap 3222 can be a rounded gap.

[0175] For some examples, refer to Figure 6 As shown, the avoidance notch 3222 includes a chamfered notch. In this way, the avoidance notch 3222 is easy to be processed and formed.

[0176] In some examples, the avoidance gap 3222 can be formed by cutting or grinding the groove edge of the first recessed groove 3221 .

[0177] In some examples, the avoidance notch 3222 may be a 45° chamfered notch.

[0178] For some examples, refer to Figure 6 As shown, along the thickness direction of the second baffle 320 , the bent portion 322 is provided with a second recessed groove 3223 . Along the thickness direction of the second baffle 320 , the second recessed groove 3223 and the first recessed groove 3221 are recessed in the other surface of the second baffle 320 relative to each other.

[0179] In some examples, the first recessed groove 3221 may be recessed in the inner surface of the second baffle 320 (ie, the surface of the second baffle 320 facing the accommodating space).

[0180] In some examples, the second recessed groove 3223 may be recessed in the outer surface of the second baffle 320 (ie, the surface of the second baffle 320 facing away from the accommodating space).

[0181] For some examples, refer to Figure 5 As shown, along the width direction of the second baffle 320 , the second recessed groove 3223 penetrates two surfaces of the second baffle 320 in the width direction.

[0182] For some examples, refer to Figure 5 As shown, around Figure 5When the first bending rotation axis i1 bends the adjacent main body parts 321, the second recessed groove 3223 located on the outer surface of the second baffle 320 can serve as a crack, which can reduce the pulling force between the two adjacent main body parts 321 on the outer surface of the second baffle 320, making it easier to bend the two adjacent main body parts 321 into the required angle.

[0183] In the embodiment of the present application, a second recessed groove 3223 is formed by recessing another surface of the second baffle 320 opposite to the first recessed groove 3221. In this way, the pulling of the outer side of the bending portion 322 on the two adjacent main body portions 321 can be reduced, making it easier to bend the two adjacent main body portions 321 at the bending portion 322.

[0184] For some examples, refer to Figure 6 As shown, the width of the second concave groove 3223 is smaller than the width of the first concave groove 3221 .

[0185] In some examples, the first recessed groove 3221 may be a lightening groove or a weight-reducing groove integrally formed when the second baffle 320 is injection-molded.

[0186] In some examples, the second recessed groove 3223 may be formed by performing secondary processing on the surface of the second baffle 320 after the second baffle 320 is injection molded.

[0187] In the embodiment of the present application, the width of the second recessed groove 3223 is set to be smaller than the width of the first recessed groove 3221. In this way, when the length directions of the two adjacent main bodies 321 are in the same direction, the two adjacent main bodies 321 can be prevented from bending toward the other side, thereby improving the strength of the two adjacent main bodies 321 on the other side.

[0188] Figure 7 This is another structural schematic diagram of the second baffle in the server cabinet provided in an embodiment of the present application.

[0189] In some examples, the main body 321 may include a first main body 321a and a second main body 321b. The first main body 321a and the second main body 321b may be adjacent to each other. The bent portion 322 may be connected between the first main body 321a and the second main body 321b. In other words, one of the two adjacent main bodies 321 may be the first main body 321a, and the other may be the second main body 321b.

[0190] For some examples, refer to Figure 6 and Figure 7As shown, the first main body portion 321a can be provided with a first snap portion 3211. The first snap portion 3211 can be bent relative to the first main body portion 321a. It is understood that the first snap portion 3211 can be provided on either the first main body portion 321a or the second main body portion 321b. In the embodiment of the present application, the snap portion is provided on the first main body portion 321a as an example for description.

[0191] In some examples, the bending manner of the first snap portion 3211 relative to the first main body portion 321a can be the same, close or similar to the bending manner between two adjacent main body portions 321. For details, please refer to the detailed description of the bending manner between two adjacent main body portions 321 in the aforementioned embodiments of the present application, and the embodiments of the present application will not repeat them.

[0192] Figure 8 yes Figure 7 A magnified partial view of point B in the middle.

[0193] For some examples, refer to Figure 8 As shown, the second main body portion 321b may be provided with a first locking hole 3212 .

[0194] For some examples, refer to Figure 6 and Figure 8 As shown, when the length directions of the first main body portion 321a and the second main body portion 321b are consistent, that is, when the first main body portion 321a and the second main body portion 321b are not bent, the first buckle portion 3211 can be bent relative to the first main body portion 321a and snapped into the first buckle hole 3212.

[0195] For some examples, refer to Figure 8 As shown, when the length directions of the first main body portion 321a and the second main body portion 321b are consistent, Figure 8 The second bending rotation axis i2 bends the first buckle portion 3211 in the direction indicated by the arrow b, thereby bending the first buckle portion 3211 from a direction perpendicular to the first main body portion 321a (ie Figure 8 The direction shown by the negative direction of the y-axis) is bent to a direction parallel to the first main body portion 321a (ie Figure 8 The first latch portion 3211 is positioned in the negative x-axis direction, thereby engaging with the first latch hole 3212 on the second main body portion 321b. In this manner, the first latch portion 3211 serves as a rigid connection between the first and second main bodies 321a, 321b. Because the first latch portion 3211 is parallel to both the first and second main bodies 321a, 321b, the first and second main bodies 321a, 321b are aligned in length. If a longer second baffle 320 is required, the length of the second baffle 320 can be increased between the two first baffles 310.

[0196] For some examples, refer to Figure 8 As shown, the second main body portion 321 b may be provided with a second latch hole 3213 . The second latch hole 3213 may be arranged side by side with the first latch hole 3212 along the length direction of the second baffle 320 .

[0197] For some examples, refer to Figure 8 As shown, the second latch hole 3213 may be located on a side of the first latch hole 3212 away from the first main body portion 321 a .

[0198] Figure 9 yes Figure 7 A magnified partial view of point C in the middle.

[0199] For some examples, refer to Figure 9 As shown, when the first main body portion 321a is bent relative to the second main body portion 321b, for example, the first main body portion 321a can be bent along Figure 9 The second main body portion 321b extends in the positive direction of the middle x-axis, and can be bent relative to the first main body portion 321a to a direction along the Figure 9 Extending in the negative direction of the middle y-axis, the first locking portion 3211 can be locked in the second locking hole 3213 .

[0200] Understandable, refer to Figure 8 As shown, when the length directions of the first main body portion 321a and the second main body portion 321b are consistent, that is, when the first main body portion 321a and the second main body portion 321b are not bent, there is a bending portion 322 connecting the first main body portion 321a and the second main body portion 321b, and the bending portion 322 occupies a certain distance between the first main body portion 321a and the second main body portion 321b; in addition, the first buckle portion 3211 needs to be bent to align with the first main body portion 321a and the second main body portion 321b The direction parallel to the arrangement direction is engaged with the first card hole 3212. Therefore, the bending portion 322 between the first card hole 3211 and the first main body portion 321a is occupied by the bending state. The distance that the first card hole 3211 extends from the first main body portion 321a to the second main body portion 321b needs to pass through the bending portion 322. The distance that the first card hole 3211 can extend to the second main body portion 321b is shorter. Therefore, the first card hole 3212 can be set on the side of the second card hole 3213 facing the first main body portion 321a.

[0201] In addition, refer to Figure 9As shown, when the first main body portion 321a and the second main body portion 321b are bent, the bending portion 322 between the first main body portion 321a and the second main body portion 321b is occupied by the bent state, and the first buckle portion 3211 is restored to a state perpendicular to the first main body portion 321a. There is a bending portion 322 between the first buckle portion 3211 and the first main body portion 321a. The distance that the first buckle portion 3211 extends from the first main body portion 321a to the second main body portion 321b can include the first buckle portion 3211. The length of the first main body portion 321a and the length of the bending portion 322 are equal, and the length will not be occupied by the bending portion 322 between the first main body portion 321a and the second main body portion 321b. Therefore, the distance that the first snap portion 3211 extends to the second main body portion 321b is longer, and the second snap hole 3213 is set on the side of the first snap hole 3212 away from the first main body portion 321a, which can ensure that the first snap portion 3211 can be snapped with the second main body portion 321b when the first main body portion 321a and the second main body portion 321b are bent.

[0202] For some examples, refer to Figure 9 As shown, after the first snap portion 3211 is snapped into engagement with the second snap hole 3213, since the length of the first snap portion 3211 remains unchanged, and when the length directions of the first main body portion 321a and the second main body portion 321b are consistent, the length of the first snap portion 3211 cannot reach the second snap hole 3213. Therefore, the first snap portion 3211 can pull the second main body portion 321b through the second snap hole 3213, thereby keeping the second main body portion 321b in a state of being bent relative to the first main body portion 321a.

[0203] In the embodiment of the present application, a first latch portion 3211 is provided on the first main body portion 321a, and the first latch portion 3211 can be bent relative to the first main body portion 321a; and a first latch hole 3212 and a second latch hole 3213 are provided on the second main body portion 321b, the first latch hole 3212 and the second latch hole 3213 are arranged side by side along the length direction of the second baffle 320, and the second latch hole 3213 is located on the side of the first latch hole 3212 away from the first main body portion 321a; in this way, when the length directions of the first main body portion 321a and the second main body portion 321b are consistent, the first latch portion 3211 can be bent relative to the first main body portion 321a and be snapped into the first latch hole 3212; in this way, the first latch portion 3211 can support and strengthen the bent portion 322, thereby making the first main body portion 321a The first and second main body parts 321b are kept in the same direction, which is convenient for extending the length of the second baffle 320; when the length directions of the first main body part 321a and the second main body part 321b are inconsistent, that is, when the first main body part 321a and the second main body part 321b are bent to each other, since the bending part 322 between the first main body part 321a and the second main body part 321b is folded, the extension length of the first snap portion 3211 toward the second main body part 321b does not need to pass through the bending part 322, and the first snap portion 3211 can be snapped into the second snap hole 3213, thereby keeping the first main body part 321a and the second main body part 321b in a state of being bent to each other, which can ensure the effectiveness of the bending of the first main body part 321a and the second main body part 321b, and facilitate shortening the length of the second baffle 320.

[0204] For some examples, refer to Figure 8 and Figure 9 As shown, the first main body portion 321a may be provided with a first lightening groove 3214. The first lightening groove 3214 may be formed integrally with the first baffle 310 during injection molding of the second baffle 320.

[0205] In some examples, the first lightening groove 3214 may be obtained by secondary processing of the first main body portion 321 a .

[0206] In some examples, when the first lightening groove 3214 is provided in the first main body portion 321a, a first reinforcing rib 3215 may be formed on a side of the first main body portion 321a facing the second main body portion 321b. The first reinforcing rib 3215 may be formed simultaneously with the first lightening groove 3214.

[0207] In some examples, after the second baffle 320 is formed, the first reinforcing ribs 3215 may be formed on the surface of the first baffle 310 by secondary injection molding, and the first lightening grooves 3214 may be formed between the first reinforcing ribs 3215 .

[0208] In some examples, the first locking portion 3211 can be provided on the first reinforcing rib 3215 .

[0209] For some examples, refer to Figure 8 and Figure 9 As shown, the second main body portion 321 b defines a second relief groove 3216 , and the first latching hole 3212 is defined on the groove wall of the second relief groove 3216 .

[0210] For some examples, refer to Figure 9 As shown, the second locking hole 3213 can be provided along the width direction of the second baffle 320 (eg Figure 9 The direction shown by the z-axis is located on one of the groove walls of the second lightening groove 3216.

[0211] For some examples, refer to Figure 9 As shown, the second locking hole 3213 can be provided on two opposite groove walls of the second lightening groove 3216 along the width direction of the second baffle 320 .

[0212] For some examples, refer to Figure 8 As shown, the second locking hole 3213 can be along the length direction of the second baffle 320 (for example Figure 8 The direction indicated by the x-axis is located on one of the groove walls of the second lightening groove 3216.

[0213] In some examples, the second locking hole 3213 can be provided on two opposite groove walls of the second lightening groove 3216 along the length direction of the second baffle 320 .

[0214] In some examples of the embodiments of the present application, a first lightening groove 3214 is provided on the first main body portion 321a, thereby forming a first reinforcing rib 3215 at one end of the first main body portion 321a toward the second main body portion 321b, and the first snap portion 3211 is provided on the first reinforcing rib 3215; in this way, the first snap portion 3211 is facilitated to be provided on the first main body portion 321a, and the first snap portion 3211 is facilitated to be rotated relative to the first main body portion 321a to be consistent with the length direction of the second baffle 320, thereby keeping the first main body portion 321a and the second main body portion 321b in a state of consistent extension direction.

[0215] In addition, a second lightening groove 3216 is provided in the second main body 321 b , and the first latch hole 3212 is provided on the groove wall of the second lightening groove 3216 , which facilitates the arrangement of the first latch hole 3212 and reduces the difficulty of processing and producing the second baffle 320 .

[0216] For some examples, refer to Figure 9 As shown, the second locking hole 3213 can be spaced apart from the first locking hole 3212 and arranged on the groove wall of the second relief groove 3216.

[0217] For some examples, refer to Figure 8 As shown, the second main body portion 321b may be provided with a third lightening groove 3217. A first reinforcing rib 3215 is provided between the third lightening groove 3217 and the second lightening groove 3216. In other words, the third lightening groove 3217 and the second lightening groove 3216 may be separated by the first reinforcing rib 3215, and the first reinforcing rib 3215 may serve as a groove wall between the second lightening groove 3216 and the third lightening groove 3217.

[0218] In some examples, the second engaging hole 3213 can be provided in the groove wall of the third lightening groove 3217. It is understood that the arrangement of the second engaging hole 3213 in the groove wall of the third lightening groove 3217 can be the same, similar, or similar to the arrangement of the second lightening groove 3216. For details, please refer to the detailed description of the previous embodiment of the present application, and this embodiment of the present application will not be repeated.

[0219] For some examples, refer to Figure 9 As shown, an elastic arm 3211 a is provided at one end of the first locking portion 3211 away from the first reinforcing rib 3215 , and the elastic arm 3211 a is located on a side of the first locking portion 3211 facing the second relief groove 3216 .

[0220] In some examples, the elastic arm 3211 a and the first locking portion 3211 may be an integral piece.

[0221] In some examples, the end of the first locking portion 3211 away from the first reinforcing rib 3215 can be cut to form an elastic locking arm 3211a.

[0222] In some examples, the elastic arm 3211a can have a certain amount of deformation. When the first latch portion 3211 is engaged with the first latch hole 3212 or the second latch hole 3213, the elastic arm 3211a can smoothly enter the first latch hole 3212 or the second latch hole 3213 by deformation. When the first latch portion 3211 needs to be disassembled, the elastic arm 3211a can withdraw from the first latch hole 3212 or the second latch hole 3213 by deformation.

[0223] In the embodiment of the present application, an elastic clamping arm 3211a is provided at one end of the first clamping portion 3211 away from the first reinforcing rib 3215. In this way, when the first clamping portion 3211 is clamped to the first clamping hole 3212 or the second clamping hole 3213, the elastic clamping arm 3211a can be deformed and clamped to the first clamping hole 3212 or the second clamping hole 3213, thereby facilitating the clamping of the first clamping portion 3211 with the first clamping hole 3212 or the second clamping hole 3213.

[0224] In addition, when the first latch part 3211 is removed from the first latch hole 3212 or the second latch hole 3213, the elastic latch arm 3211a can withdraw from the first latch hole 3212 or the second latch hole 3213 through deformation, which facilitates the disassembly of the first latch part 3211 and the adjustment of the length of the second baffle 320.

[0225] For some examples, refer to Figure 9 As shown, two elastic clamping arms 3211 a may be provided. Along the width direction of the second baffle 320 , the two elastic clamping arms 3211 a may be located on both sides of the first locking portion 3211 .

[0226] In some examples, the middle portion of one end of the first locking portion 3211 away from the first reinforcing rib 3215 may be cut, thereby forming elastic locking arms 3211 a on both sides of the first locking portion 3211 .

[0227] In the embodiment of the present application, an elastic latch arm 3211a is provided on both sides of the first latch portion 3211 along the width direction of the second baffle 320. Thus, when the first latch portion 3211 is engaged with the first latch hole 3212 or the second latch hole 3213, both sides of the first latch portion 3211 along the width direction are subjected to a latching force, thereby improving the stability of the first latch portion 3211 connecting the first main body portion 321a and the second main body portion 321b, ensuring the stability of the second baffle 320 after the length is adjusted, and facilitating the sealing of the idle space of the cabinet 10.

[0228] Figure 10 This is a front view of the first baffle in the server cabinet provided in an embodiment of the present application.

[0229] For some examples, refer to Figure 10 As shown, a first limiting structure 311 may be provided on a side of the first baffle 310 facing the second baffle 320 .

[0230] In some examples, the side of the first baffle 310 facing the second baffle 320 may be the inner side of the first baffle 310 .

[0231] In some examples, the first limiting structure 311 may include a groove.

[0232] In some examples, the first limiting structure 311 may include a bump.

[0233] For some examples, refer to Figure 3 and Figure 5 As shown, the second baffle 320 is provided with a second limiting structure 323 .

[0234] In some examples, the second limiting structure 323 may be disposed on a side of the second baffle 320 facing the first baffle 310 .

[0235] In some examples, the second limiting structure 323 can cooperate with the first limiting structure 311. When the first limiting structure 311 is a groove, the second limiting structure 323 can be a bump. When the first limiting structure 311 is a bump, the second limiting structure 323 can be a groove.

[0236] In some examples, when connecting the first baffle 310 and the second baffle 320, the first limiting structure 311 can cooperate with the second limiting structure 323 to connect the first baffle 310 and the second baffle 320. For example, a protrusion can be inserted into a groove to connect the first baffle 310 and the second baffle 320.

[0237] In the embodiment of the present application, a first limiting structure 311 is set on the side of the first baffle 310 facing the second baffle 320, and a second limiting structure 323 is set on the second baffle 320. In this way, when connecting the first baffle 310 and the second baffle 320, the first limiting structure 311 and the second limiting structure 323 can be used to cooperate with each other, so that the first baffle 310 and the second baffle 320 can be assembled together, which facilitates the assembly of the sealing assembly 30.

[0238] In some examples, the first limiting structure 311 may include one of a limiting hole 3111 and a limiting column 3231 .

[0239] For some examples, refer to Figure 10 As shown, the first limiting structure 311 may include a limiting hole 3111. The limiting hole 3111 may be recessed in the inner surface of the first baffle 310.

[0240] In some examples, the first limiting structure 311 may include a limiting column 3231 .

[0241] In some examples, the second limiting structure 323 may include the other of the limiting hole 3111 and the limiting column 3231 .

[0242] For some examples, refer to Figure 3 and Figure 5 As shown, the second limiting structure 323 may include a limiting post 3231. The limiting post 3231 may protrude from the surface of the second baffle 320.

[0243] In some examples, the limiting post 3231 may be inserted into the limiting hole 3111 to connect the first baffle 310 and the second baffle 320 .

[0244] In the embodiment of the present application, when assembling the blocking assembly 30, the limiting column 3231 can be inserted into the limiting hole 3111 to facilitate the connection of the first baffle 310 and the second baffle 320 to form the blocking assembly 30, thereby improving the assembly efficiency of the blocking assembly 30.

[0245] For some examples, refer to Figure 10 As shown, a plurality of first limiting structures 311 are provided along the length direction of the first baffle 310 , and the plurality of first limiting structures 311 are arranged at intervals.

[0246] In some examples, all of the plurality of first limiting structures 311 may be limiting holes 3111 .

[0247] In some examples, all of the plurality of first limiting structures 311 may be limiting posts 3231 .

[0248] In some examples, a portion of the plurality of first limiting structures 311 may be limiting holes 3111 , and another portion of the plurality of first limiting structures 311 may be limiting posts 3231 .

[0249] For some examples, refer to Figure 3 and Figure 5 As shown, the second limiting structures 323 are provided on each of the plurality of main bodies 321. Each main body 321 may be provided with at least one second limiting structure 323.

[0250] In some examples, when any one of the plurality of main bodies 321 is bent to be consistent with the length direction of the first baffle 310 , the second limiting structure 323 provided on the main body 321 cooperates with the first limiting structure 311 .

[0251] That is, after the adjacent main body parts 321 are bent, the second limiting structure 323 on the main body part 321 extending in the same direction as the length of the first baffle 310 can cooperate with the first limiting structure 311 to connect the first baffle 310 and the second baffle 320 .

[0252] In an embodiment of the present application, a plurality of first limiting structures 311 are arranged at intervals along the length direction of the first baffle 310, and a second limiting structure 323 is provided on each of the plurality of main bodies 321. In this way, when any one of the plurality of main bodies 321 is bent to be consistent with the length direction of the first baffle 310, the second limiting structure 323 on the main body 321 can cooperate with the first limiting structure 311. For example, the limiting column 3231 can be passed through the limiting hole 3111 to facilitate fixing the bent main body 321, thereby improving the stability of the sealing component 30 after assembly.

[0253] Figure 11 yes Figure 4A magnified partial view of point B in the middle.

[0254] For some examples, refer to Figure 11 As shown, along the length direction of the second baffle 320, the ends of the two main body parts 321 at both ends are along the thickness direction of the second baffle 320 (for example Figure 11 An extension portion 324 is provided (in the direction shown by the y-axis).

[0255] In some examples, the extension portion 324 may be located inside the second baffle 320 . In other words, the extension portion 324 may extend toward the inside of the second baffle 320 .

[0256] In some examples, the extension portion 324 and the main body portion 321 at both ends of the second baffle 320 can be an integral piece. The extension portion 324 can be integrally formed when the second baffle 320 is injection molded.

[0257] For some examples, refer to Figure 11 As shown, the second limiting structure 323 can be provided on the extension portion 324 .

[0258] In some examples, the second limiting structure 323 can be arranged along the length direction of the second baffle 320 (eg Figure 11 The second limiting structure 323 may extend toward the first baffle 310.

[0259] In some examples, when the second baffle 320 is in a fully expanded state, that is, when the second baffle 320 is at its maximum length, the second limiting structure 323 provided on the extension portion 324 may cooperate with the first limiting structure 311 on the first baffle 310 to connect the first baffle 310 and the second baffle 320.

[0260] For some examples, refer to Figure 4 As shown, two extension portions 324 may be provided, and one extension portion 324 may be provided on each side along the length direction of the second baffle 320 .

[0261] In the embodiment of the present application, an extension portion 324 extending in the thickness direction is provided at the end portions of the two main bodies 321 located at both ends of the length direction of the second baffle 320, and a second limiting structure 323 is provided on the extension portion 324; in this way, the second limiting structure 323 at both ends of the length direction of the second baffle 320 is conveniently provided. In addition, the contact area between the two ends of the length direction of the second baffle 320 and the first baffle 310 can be increased by providing the extension portion 324, so as to facilitate the connection and assembly of the second baffle 320 and the first baffle 310 when the second baffle 320 is unfolded to the longest state, so as to facilitate the adaptation of the blocking component 30 to idle spaces of different sizes.

[0262] For some examples, refer to Figure 11 As shown, the second baffle 320 may be provided with a second reinforcing rib 3241. The second reinforcing rib 3241 may be connected to the inner side of the extension portion 324 and the inner side of the main body portion 321.

[0263] In some examples, the second reinforcing rib 3241 may be integrally formed when the second baffle 320 is formed.

[0264] In some examples, the second reinforcing rib 3241 may be formed by secondary injection molding after the second baffle 320 is formed and supported on the inner side of the extension portion 324 and the main body portion 321 .

[0265] In the embodiment of the present application, a second reinforcing rib 3241 is provided on the second baffle 320, and the second reinforcing rib 3241 is connected between the inner side of the extension portion 324 and the inner side of the main body portion 321. In this way, the strength of the extension portion 324 can be improved, thereby improving the stability of the connection between the second limiting structure 323 provided on the extension portion 324 and the first baffle 310, that is, improving the stability of the sealing assembly 30 after assembly.

[0266] Figure 12 This is a schematic diagram of an exploded structure of a blocking component in a server cabinet provided in an embodiment of the present application.

[0267] For some examples, refer to Figure 12 As shown, the first limiting structure 311 may include a second locking portion 3112. The second locking portion 3112 may be provided at an end portion of the first baffle 310.

[0268] In some examples, the second locking portion 3112 may extend toward the inner side of the first baffle 310 . In other words, the second locking portion 3112 may extend toward the second baffle 320 .

[0269] For some examples, refer to Figure 12 As shown, the second limiting structure 323 may include a third locking hole 3232. The third locking hole 3232 may be provided on the outer surface of the second baffle 320.

[0270] In some examples, when the first baffle 310 is connected to the second baffle 320, the second latch portion 3112 can be locked in the third latch hole 3232. In this way, the engagement between the second latch portion 3112 and the third latch hole 3232 can strengthen and stabilize the connection between the first baffle 310 and the second baffle 320, thereby improving the stability of the connection between the first baffle 310 and the second baffle 320.

[0271] In some examples, each main body portion 321 may be provided with a third locking hole 3232 , so that after adjacent main bodies 321 are bent, the second locking portions 3112 may be engaged with the third locking holes 3232 on other main bodies 321 .

[0272] In some examples, the second locking portions 3112 may be provided at both ends of the first baffle 310 along the length direction.

[0273] In the embodiment of the present application, a third latching hole 3232 is provided on the outer surface of the second baffle plate 320, and a second latching portion 3112 is provided at the end of the first baffle plate 310, and the second latching portion 3112 extends toward the inner side of the first baffle plate 310; in this way, when the first baffle plate 310 is connected to the second baffle plate 320, the second latching portion 3112 can be engaged with the third latching hole 3232, and the limiting column 3231 can be passed through the limiting hole 3111, so that through the cooperation between the limiting column 3231 and the limiting hole 3111 and the cooperation between the second latching portion 3112 and the third latching hole 3232, a double limitation of the first baffle plate 310 and the second baffle plate 320 is formed, which can improve the stability of the assembly and cooperation of the first baffle plate 310 and the second baffle plate 320, that is, improve the stability of the sealing component 30 after assembly.

[0274] Figure 13 This is a schematic diagram of the overall structure of the first baffle in the server cabinet provided in an embodiment of the present application.

[0275] For some examples, refer to Figure 13 As shown, the first baffle 310 may include a first sub-baffle 312 and a second sub-baffle 313 .

[0276] In some examples, the first sub-baffle 312 and the second sub-baffle 313 may be arranged along the thickness direction of the first baffle 310 (eg, along the Figure 13 The direction shown on the x-axis) overlaps the setting.

[0277] In some examples, along the width direction of the first baffle 310 (eg Figure 13 The first sub-baffle 312 and the second sub-baffle 313 may be slidably connected.

[0278] In some examples, the first sub-baffle 312 and the second sub-baffle 313 can be slidably connected along the width of the first baffle 310. In this way, the width of the first baffle 310 can be adjusted by sliding the first sub-baffle 312 and the second sub-baffle 313, thereby accommodating the idle space left by servers 20 of different widths (or heights in some examples) occupying the storage space and facilitating the sealing of the idle space.

[0279] Figure 14 This is a schematic diagram of an exploded structure of a second baffle in a server cabinet provided in an embodiment of the present application.

[0280] For some examples, refer to Figure 14As shown, the second baffle 320 may include a third sub-baffle 325 and a fourth sub-baffle 326 .

[0281] In some examples, along the thickness direction of the second baffle 320 (eg Figure 14 The third sub-baffle 325 and the fourth sub-baffle 326 may be overlapped.

[0282] In some examples, along the width direction of the second baffle 320 (eg Figure 14 The third sub-baffle 325 and the fourth sub-baffle 326 are slidably connected. Thus, the width of the second baffle 320 can be adjusted by the relative sliding of the third sub-baffle 325 and the fourth sub-baffle 326, thereby accommodating the idle space left by servers 20 of different widths (or heights in some examples) occupying the accommodation space, thereby facilitating the sealing of the idle space.

[0283] In some examples, when the first baffle 310 and the second baffle 320 are connected to form the blocking assembly 30, refer to Figure 2 As shown, the third sub-baffle 325 may be connected to the first sub-baffle 312 , and the fourth sub-baffle 326 may be connected to the second sub-baffle 313 .

[0284] In some examples, the connection method between the first baffle 310 and the second baffle 320 can refer to the detailed description of the previous embodiments of the present application, and will not be repeated in the embodiments of the present application.

[0285] In the embodiment of the present application, the first sub-baffle 312 and the second sub-baffle 313 are arranged to overlap along the thickness direction of the first baffle 310 and are slidably connected to each other along the width direction of the first baffle 310. In this way, the overall width of the first baffle 310 can be adjusted by sliding the first sub-baffle 312 and the second sub-baffle 313 along the width direction of the first baffle 310. In addition, the third sub-baffle 325 and the fourth sub-baffle 326 are arranged to overlap along the thickness direction of the second baffle 320 and are slidably connected to the third sub-baffle 325 along the width direction of the second baffle 320. In this way, the overall width of the second baffle 320 can be adjusted by sliding the third sub-baffle 325 and the fourth sub-baffle 326 along the width direction of the second baffle 320. The third sub-baffle 325 is connected to the first sub-baffle 312, and the fourth sub-baffle 326 is connected to the second sub-baffle 313. Thus, after the first baffle 310 and the second baffle 320 are assembled to form the blocking assembly 30, the width of the blocking assembly 30 can be adjusted, making it easier for the blocking assembly 30 to adapt to and block confined spaces of varying widths. This reduces the number of components of the first baffle 310 and the second baffle 320, making management of the blocking assembly 30 easier.

[0286] Figure 15 It is along Figure 10 Sectional view along line AA.

[0287] For some examples, refer to Figure 15 As shown, the first sub-baffle 312 may be provided with a first guide structure 3121 .

[0288] In some examples, the first guide structure 3121 may include a slide rail. The first guide structure 3121 may be extended along the width direction of the first sub-baffle 312 .

[0289] For some examples, refer to Figure 15 As shown, the second sub-baffle 313 may be provided with a second guide structure 3131 .

[0290] In some examples, the second guide structure 3131 may include a sliding groove. The second guide structure 3131 may extend along the width direction of the second sub-baffle 313 .

[0291] That is, in some examples, the first guide structure 3121 and the second guide structure 3131 may extend along the width direction of the first baffle 310 .

[0292] In some examples, the first guide structure 3121 and the second guide structure 3131 may be slidably engaged with each other, thereby guiding the sliding of the first sub-baffle 312 and the second sub-baffle 313 along the width direction of the first baffle 310 .

[0293] For some examples, refer to Figure 15 As shown, multiple first guide structures 3121 may be provided along the length of the first baffle 310. These multiple first guide structures 3121 may be spaced apart on the side of the first sub-baffle 312 facing the second sub-baffle 313. Multiple second guide structures 3131 may be provided. These multiple second guide structures 3131 may be spaced apart on the side of the second sub-baffle 313 facing the first sub-baffle 312. One second guide structure 3131 slidably engages with one first guide structure 3121.

[0294] Figure 16 This is a cross-sectional view of the second baffle in the server cabinet provided in an embodiment of the present application.

[0295] For some examples, refer to Figure 16 As shown, the third sub-baffle 325 may be provided with a third guide structure 3251 .

[0296] In some examples, the third guide structure 3251 may include a slide rail. The third guide structure 3251 may extend along the width direction of the third sub-baffle 325 .

[0297] For some examples, refer to Figure 16 As shown, the fourth sub-baffle 326 may be provided with a fourth guide structure 3261 .

[0298] In some examples, the fourth guide structure 3261 may include a sliding groove. The fourth guide structure 3261 may extend along the width direction of the fourth sub-baffle 326 .

[0299] That is, in some examples, the third guide structure 3251 and the fourth guide structure 3261 may extend along the width direction of the second baffle 320 .

[0300] In some examples, the third guide structure 3251 and the fourth guide structure 3261 may be slidably engaged with each other to guide the third sub-baffle 325 and the fourth sub-baffle 326 along the width direction of the second baffle 320 .

[0301] In the embodiment of the present application, a first guide structure 3121 is provided on the first sub-baffle 312, and a second guide structure 3131 is provided on the second sub-baffle 313, and the first guide structure 3121 and the second guide structure 3131 extend along the width direction of the first baffle 310; in this way, after the first sub-baffle 312 and the second sub-baffle 313 are assembled to form the first baffle 310, the first guide structure 3121 and the second guide structure 3131 can slide and cooperate with each other, and when the first sub-baffle 312 and the second sub-baffle 313 slide, the sliding direction of the first sub-baffle 312 and the second sub-baffle 313 is guided, so as to facilitate smooth adjustment of the width of the first baffle 310.

[0302] Similarly, a third guide structure 3251 is provided on the third sub-baffle 325, and a fourth guide structure 3261 is provided on the fourth sub-baffle 326, and the third guide structure 3251 and the fourth guide structure 3261 extend along the width direction of the second baffle 320; in this way, after the third sub-baffle 325 and the fourth sub-baffle 326 are assembled to form the second baffle 320, the third guide structure 3251 and the fourth guide structure 3261 can slide and cooperate with each other, and when the third sub-baffle 325 and the fourth sub-baffle 326 slide, the movement direction of the third sub-baffle 325 and the fourth sub-baffle 326 are guided, so as to facilitate smooth adjustment of the width of the second baffle 320.

[0303] Figure 17 yes Figure 15 A partial enlarged view of point F in the middle.

[0304] For some examples, refer to Figure 17 As shown, one of the first guide structure 3121 and the second guide structure 3131 may include a first guide groove 3132 .

[0305] For some examples, refer to Figure 17As shown, the other of the first guide structure 3121 and the second guide structure 3131 may include a first guide rail 3122 .

[0306] In some examples, the first guide structure 3121 may include a first guide rail 3122. The second guide structure 3131 may include a first guide slot 3132. The first guide rail 3122 may be inserted into the first guide slot 3132.

[0307] Figure 18 yes Figure 16 A magnified view of the part at G in the middle.

[0308] For some examples, refer to Figure 18 As shown, one of the third guide structure 3251 and the fourth guide structure 3261 may include a second guide groove 3262 .

[0309] For some examples, refer to Figure 18 As shown, the other of the third guide structure 3251 and the fourth guide structure 3261 may include a second guide rail 3252 .

[0310] In some examples, the third guide structure 3251 may include a second guide rail 3252. The fourth guide structure may include a second guide slot 3262. The second guide rail 3252 may be inserted into the second guide slot 3262.

[0311] In some examples, the structure of the second guide groove 3262 can be the same as, close to, or similar to the structure of the first guide groove 3132 .

[0312] In some examples, the structure of the second guide rail 3252 can be the same, similar, or similar to that of the first guide rail 3122. In this way, mold opening costs can be saved and the production and processing costs of the first baffle 310 and the second baffle 320 can be reduced.

[0313] In the embodiment of the present application, by setting one of the first guide structure 3121 and the second guide structure 3131 as the first guide groove 3132, and setting the other of the first guide structure 3121 and the second guide structure 3131 as the first guide rail 3122, the first guide rail 3122 is inserted into the first guide groove 3132, so that the first guide structure 3121 and the second guide structure 3131 can cooperate with each other, thereby improving the assembly efficiency of the first sub-baffle 312 and the second sub-baffle 313; by setting one of the third guide structure 3251 and the fourth guide structure 3261 as the second guide groove 3262, and setting the other of the third guide structure 3251 and the fourth guide structure 3261 as the second guide rail 3252, the second guide rail 3252 is inserted into the second guide groove 3262, so that the third guide structure 3251 and the fourth guide structure 3261 can cooperate with each other, thereby improving the assembly efficiency of the third sub-baffle 325 and the fourth sub-baffle 326.

[0314] For some examples, refer to Figure 17 As shown, the first guide groove 3132 may include a first groove portion 3132 a. The first groove portion 3132 a may extend along the thickness direction of the first baffle 310.

[0315] For some examples, refer to Figure 17 As shown, the first guide groove 3132 may include a second groove portion 3132 b . The second groove portion 3132 b may be connected to the first groove portion 3132 a . The second groove portion 3132 b may extend along the length direction of the first baffle 310 .

[0316] That is, the extension direction of the second groove portion 3132b may intersect with the extension direction of the first groove portion 3132a.

[0317] In some examples, a second groove 3132b can be formed along the width of one of the surfaces of the first sub-baffle 312. Then, a first groove 3132a can be formed along the thickness of the first sub-baffle 312, extending from the first sub-baffle 312 toward the second sub-baffle 313, until the first groove 3132a and the second groove 3132b are connected. Along the length of the first sub-baffle 312, the width of the second groove 3132b can be greater than the width of the first groove 3132a. This creates a blocking step in the second groove 3132b. When the first guide rail 3122 is inserted into the second groove 3132b, the blocking step blocks the first guide rail 3122 along the thickness of the first baffle 310, facilitating overlapping of the first and second sub-baffles 312, 313, along the thickness of the first baffle 310.

[0318] For some examples, refer to Figure 17As shown, the first guide rail 3122 may include a first guide portion 3122 a. The first guide portion 3122 a may protrude from the second sub-baffle 313 along the thickness direction of the first baffle 310.

[0319] In some examples, the first guide rail 3122 may include a second guide portion 3122 b connected to an end of the first guide portion 3122 a facing away from the second sub-baffle 313 .

[0320] In some examples, the first guide portion 3122a can be inserted into the first groove portion 3132a, and the second guide portion 3122b can be inserted into the second groove portion 3132b.

[0321] In some examples, the cross-section of the first guide groove 3132 can be T-shaped.

[0322] In some examples, the cross-section of the first guide rail 3122 can be T-shaped.

[0323] In some examples, the cross section of the first guide groove 3132 may be L-shaped. The cross section of the first guide rail 3122 may be L-shaped.

[0324] In some examples, the second guide groove 3262 can have the same, similar, or similar structure as the first guide groove 3132. The difference is that the first groove portion 3132a of the second guide groove 3262 can extend along the thickness direction of the second baffle 320, and the second groove portion 3132b of the second guide groove 3262 can extend along the length direction of the second baffle 320.

[0325] It is understood that the structure of the second guide rail 3252 can be the same, close or similar to that of the first guide rail 3122. For details, please refer to the detailed description of the first guide rail 3122 in the above embodiment of the present application, which will not be repeated in this embodiment.

[0326] In the embodiment of the present application, by setting any one of the first guide groove 3132 and the second guide groove 3262 to include a first groove portion 3132a and a second groove portion 3132b that are connected to each other, the extension directions of the first groove portion 3132a and the second groove portion 3132b intersect; and setting any one of the first guide rail 3122 and the second guide rail 3252 to include a first guide portion 3122a and a second guide portion 3122b that intersect, the first guide portion 3122a is inserted into the first groove portion 3132a, and the second guide portion 3122b is inserted into the first groove portion 3132a. The guide portion 3122b is inserted into the second groove portion 3132b. In this way, the first guide portion 3122a and the second guide portion 3122b can be limited by the first groove portion 3132a and the second groove portion 3132b having different extension directions, so that in the thickness direction of the first baffle 310, the first sub-baffle 312 and the second sub-baffle 313 are stably overlapped, and in the thickness direction of the second baffle 320, the third sub-baffle 325 and the fourth sub-baffle 326 are stably overlapped, which is convenient for adjusting the width of the sealing assembly 30.

[0327] For some examples, refer to Figure 16 and Figure 18 As shown, the main body 321 of the third sub-baffle 325 is provided with at least one third guide structure 3251 , and the main body 321 of the fourth sub-baffle 326 is provided with at least one fourth guide structure 3261 .

[0328] In some examples, each main body portion 321 of the third sub-baffle 325 may be provided with a third guide structure 3251 , and each main body portion 321 of the fourth sub-baffle 326 may be provided with a fourth guide structure 3261 .

[0329] In an embodiment of the present application, at least one third guide structure 3251 is provided on the main body 321 of the third sub-baffle 325, and at least one fourth guide structure 3261 is provided on the main body 321 of the fourth sub-baffle 326. In this way, each main body 321 along the length direction of the second baffle 320 can be guided by the cooperation of its own third guide structure 3251 and fourth guide structure 3261, thereby improving the stability of the connection between the third sub-baffle 325 and the fourth sub-baffle 326.

[0330] Figure 19 This is an exploded structural view of the first baffle in the server cabinet provided in an embodiment of the present application.

[0331] For some examples, refer to Figure 19 As shown, along the width direction of the first baffle 310 (eg Figure 19 A positioning structure 314 may be provided on the first baffle 310 .

[0332] In some examples, when the first sub-baffle 312 and the second sub-baffle 313 slide along the width direction to adjust the width of the first baffle 310 , the first positioning structure 314 can limit the width of the first baffle 310 .

[0333] In some examples, the positioning structure 314 may be a magnetic element. For example, multiple magnetic elements may be provided along the width of the first sub-baffle 312, and one magnetic element may be provided on the second sub-baffle 313. When the second sub-baffle 313 slides relative to the first sub-baffle 312, the attraction between the magnetic elements can define the position of the first sub-baffle 312 and the second sub-baffle 313, thereby defining the width of the first baffle 310.

[0334] It can be understood that after the width of the first baffle 310 is determined as a structural limitation, the first sub-baffle 312 is connected to the third sub-baffle 325, and the second sub-baffle 313 is connected to the fourth sub-baffle 326. In this way, the width of the second baffle 320 can be limited, thereby adapting to the blocking of idle spaces of different widths.

[0335] For some examples, refer to Figure 14 As shown, a positioning structure 314 may be provided on the second baffle 320 along the width direction of the second baffle 320. The positioning structure 314 may position the third sub-baffle 325 and the fourth sub-baffle 326 along the width direction, thereby defining the width of the second baffle 320.

[0336] It can be understood that the positioning structure 314 on the second baffle 320 can be the same as, close to or similar to the positioning structure 314 on the first baffle 310. For details, please refer to the detailed description of the positioning structure 314 on the first baffle 310 in the aforementioned embodiment of the present application, and the embodiments of the present application will not repeat them.

[0337] In the embodiment of the present application, a positioning structure 314 is provided on any one of the first baffle 310 and the second baffle 320. Thus, after adjusting the widths of the first baffle 310 and the second baffle 320, the width of at least one of the first baffle 310 and the second baffle 320 can be positioned by the positioning structure 314. Since the first baffle 310 and the second baffle 320 are connected to each other, the width of the other of the first baffle 310 and the second baffle 320 can be positioned at the same time, so as to facilitate maintaining the width of the blocking assembly 30 and facilitate the blocking assembly 30 to adapt to idle spaces of different sizes.

[0338] Figure 20 This is another front view of the first baffle in the server cabinet provided in an embodiment of the present application. Figure 21 It is along Figure 20 Cross-sectional view along the HH line.

[0339] In some examples, the positioning structure 314 can be provided on at least one of the first baffle 310 and the second baffle 320. That is, the positioning structure 314 can be provided on the first baffle 310. The positioning structure 314 can also be provided on the second baffle 320. Alternatively, the positioning structure 314 can be provided on both the first baffle 310 and the second baffle 320. For ease of explanation, in some examples of the embodiments of the present application, the positioning structure 314 is provided on the first baffle 310 as an example for detailed description.

[0340] For some examples, refer to Figure 21 As shown, the positioning structure 314 may include a positioning protrusion 3141. The positioning protrusion 3141 may be provided on the first sub-baffle 312.

[0341] In some examples, the positioning protrusion 3141 may be disposed on a side of the first sub-baffle 312 facing the second sub-baffle 313 .

[0342] For some examples, refer to Figure 21 As shown, the positioning structure 314 may include a positioning groove 3142. The positioning groove 3142 may be provided on the second sub-baffle 313.

[0343] In some examples, the positioning groove 3142 may be provided on a side of the second sub-baffle 313 facing the first sub-baffle 312 .

[0344] In some examples, a plurality of positioning grooves 3142 may be provided at intervals along the width direction of the second sub-baffle 313 , and the positioning protrusion 3141 may be embedded in any one of the plurality of positioning grooves 3142 .

[0345] In the embodiment of the present application, a positioning protrusion 3141 is provided on the first sub-baffle 312 or the third sub-baffle 325, and a plurality of positioning grooves 3142 are provided along the width direction on the second sub-baffle 313 or the fourth sub-baffle 326. In this way, after the width of the blocking component 30 is adjusted, the width of the blocking component 30 can be positioned by positioning the positioning protrusion 3141 in the positioning groove 3142, thereby simplifying the positioning method of the width of the blocking component 30. In addition, the processing and production procedures of the first baffle 310 and the second baffle 320 are simplified, thereby facilitating the processing, production and assembly adjustment of the blocking component 30.

[0346] For some examples, refer to Figure 20 As shown, a plurality of positioning structures 314 may be provided along the length direction of the first baffle 310 , and the plurality of positioning structures 314 may be spaced apart along the length direction of the first baffle 310 .

[0347] Figure 22 yes Figure 19 A partial enlarged view of point I in the middle.

[0348] For some examples, refer to Figure 21 As shown, the positioning protrusion 3141 can be provided on the edge of the first sub-baffle 312 facing the second sub-baffle 313 .

[0349] For some examples, refer to Figure 22 As shown, along the length direction of the first sub-baffle 312 , notches 3143 may be provided on both sides of the positioning protrusion 3141 . Along the width direction of the first sub-baffle 312 , the size of the notches 3143 may be larger than the size of the positioning protrusion 3141 .

[0350] In some examples, the notch 3143 may be formed by cutting the edge of the first sub-baffle 312 .

[0351] In the embodiment of the present application, the positioning protrusion 3141 is arranged on the edges in the width direction of the first sub-baffle 312 and the third sub-baffle 325, and notches 3143 are provided on both sides of the positioning protrusion 3141. In this way, when the width of the blocking component 30 is adjusted, the positioning protrusion 3141 can be snapped into the positioning groove 3142 by deformation of the connection part with the positioning protrusion 3141, or the positioning protrusion 3141 can be withdrawn from the positioning groove 3142, thereby facilitating the adjustment of the width of the blocking component 30.

[0352] The implementation methods described above are only specific implementation methods of the present application and are not intended to limit the scope of protection of the present application. Any modifications, equivalent replacements, improvements, etc. made on the basis of the technical solution of the present application should be included in the scope of protection of the present application.

Claims

1. A server cabinet, characterized in that: include: A cabinet (10), wherein the cabinet (10) has a plurality of accommodating spaces, wherein the accommodating spaces are used to place servers; A blocking component (30) is provided in the accommodation space, and the blocking component (30) is used to block the accommodation space; The blocking component (30) comprises: Two first baffles (310) are inserted into the accommodation space along the depth direction of the accommodation space; Two second baffles (320) are connected between the two first baffles (310), and the second baffles (320) block the opening of the accommodation space; Along the length direction of the second baffle (320), the second baffle (320) includes a plurality of main bodies (321) arranged at intervals and bending parts (322) connected between adjacent main bodies (321), and two adjacent main bodies (321) can be bent relative to each other at the bending parts (322) to adjust the length of the second baffle (320) between the two first baffles (310).

2. The server cabinet according to claim 1, wherein: Along the thickness direction of the second baffle (320), the thickness of the bent portion (322) is smaller than the thickness of the main body (321), so that adjacent main bodies (321) are flexibly connected at the bent portion (322).

3. The server cabinet according to claim 2, wherein: Along the thickness direction of the second baffle (320), the bent portion (322) is provided with a first recessed groove (3221), and the first recessed groove (3221) is recessed in one of the surfaces of the second baffle (320) along the thickness direction; Along the width direction of the second baffle (320), the first recessed groove (3221) runs through two surfaces of the second baffle (320) in the width direction.

4. The server cabinet according to claim 3, wherein: The first recessed groove (3221) is recessed in the surface of the second baffle (320) facing the inner side of the cabinet (10), and an avoidance notch (3222) is provided on the groove edge of the first recessed groove (3221).

5. The server cabinet according to claim 4, wherein: Along the thickness direction of the second baffle (320), the bent portion (322) is provided with a second recessed groove (3223); along the thickness direction of the second baffle (320), the second recessed groove (3223) and the first recessed groove (3221) are recessed in the other surface of the second baffle (320) relative to each other; Along the width direction of the second baffle (320), the second recessed groove (3223) runs through two surfaces of the second baffle (320) in the width direction.

6. The server cabinet according to any one of claims 1 to 5, characterized in that: The main body (321) includes a first main body (321a) and a second main body (321b), the first main body (321a) and the second main body (321b) are adjacent to each other, and the bending portion (322) is connected between the first main body (321a) and the second main body (321b); The first main body portion (321a) is provided with a first buckle portion (3211), and the first buckle portion (3211) can be bent relative to the first main body portion (321a); The second main body (321b) is provided with a first latch hole (3212) and a second latch hole (3213), the first latch hole (3212) and the second latch hole (3213) being arranged side by side along the length direction of the second baffle (320), and the second latch hole (3213) being located on a side of the first latch hole (3212) away from the first main body (321a); When the length directions of the first main body portion (321a) and the second main body portion (321b) are consistent, the first buckle portion (3211) is bent relative to the first main body portion (321a) and is engaged with the first buckle hole (3212); When the first main body portion (321a) is bent relative to the second main body portion (321b), the first buckle portion (3211) is engaged with the second buckle hole (3213).

7. The server cabinet according to any one of claims 1 to 6, characterized in that: A first limiting structure (311) is provided on a side of the first baffle (310) facing the second baffle (320); the second baffle (320) is provided with a second limiting structure (323), and the second limiting structure (323) cooperates with the first limiting structure (311) to connect the first baffle (310) and the second baffle (320).

8. The server cabinet according to any one of claims 1 to 7, characterized in that: The first baffle (310) comprises a first sub-baffle (312) and a second sub-baffle (313), wherein the first sub-baffle (312) and the second sub-baffle (313) are overlapped along the thickness direction of the first baffle (310), and along the width direction of the first baffle (310), the first sub-baffle (312) and the second sub-baffle (313) are slidably connected; The second baffle (320) comprises a third sub-baffle (325) and a fourth sub-baffle (326), wherein the third sub-baffle (325) and the fourth sub-baffle (326) are overlapped along the thickness direction of the second baffle (320), and along the width direction of the second baffle (320), the fourth sub-baffle (326) and the third sub-baffle (325) are slidably connected; The third sub-baffle (325) is connected to the first sub-baffle (312), and the fourth sub-baffle (326) is connected to the second sub-baffle (313).

9. The server cabinet according to claim 8, wherein: Along the width direction of any one of the first baffle (310) and the second baffle (320), any one of the first baffle (310) and the second baffle (320) is provided with a positioning structure (314), and the positioning structure (314) is used to limit the width of the first baffle (310) and the second baffle (320).

10. The server cabinet according to claim 9, wherein: The positioning structure (314) comprises a positioning protrusion (3141) and a plurality of positioning grooves (3142); the positioning protrusion (3141) is provided on the first sub-baffle (312); the plurality of positioning grooves (3142) are provided on the second sub-baffle (313) at intervals along the width direction of the second sub-baffle (313); the positioning protrusion (3141) is embedded in the positioning grooves (3142); and / or, The positioning protrusion (3141) is provided on the third sub-baffle (325), a plurality of positioning grooves (3142) are provided on the fourth sub-baffle (326) at intervals along the width direction of the fourth sub-baffle (326), and the positioning protrusion (3141) is embedded in the positioning grooves (3142).