Reinforced server with left and right forced cooling

By designing a reinforced server with forced cooling on the left and right, and using integrated protective heat dissipation components and aluminum alloy enclosures, the problem of poor stability in existing servers in harsh environments is solved, and better protection and heat dissipation effects are achieved.

CN222965623UActive Publication Date: 2025-06-10ZHONG KE XING GUANG XIN XI JI SHU YOU XIAN GONG SI
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Patent Information

Application Number
CN202421820096.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-06-10
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

The existing commercial server has poor structural stability and cannot meet the needs of use in harsh environments such as humidity and heat, high dust and other conditions.

Method used

A reinforced server with forced cooling on the left and right is designed. The server hardware group is wrapped in all directions through the integrated protective cooling components on the outside, and components such as aluminum alloy enclosures and cooling fans are used to enhance the protection and cooling capabilities of the server.

Benefits of technology

It effectively improves the protection and heat dissipation capabilities of the server, avoids hardware damage caused by external factors, and meets the needs of use in harsh environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of servers, and particularly discloses a reinforced server with a left-right forced cooling function, which comprises a server hardware group, an integrated protective heat dissipation component arranged on the outer side of the server hardware group, an aluminum alloy top coaming and an aluminum alloy bottom coaming which are buckled up and down, a gap is formed between the aluminum alloy top coaming and the aluminum alloy bottom coaming, the aluminum alloy top coaming and the aluminum alloy bottom coaming are both rectangular, and the aluminum alloy front coaming, the aluminum alloy back coaming, the aluminum alloy left coaming and the aluminum alloy right coaming are located between the aluminum alloy top coaming and the aluminum alloy bottom coaming. The two ends of the aluminum alloy front coaming and the two ends of the aluminum alloy back coaming are connected with the aluminum alloy left coaming and the aluminum alloy right coaming in a clamped mode respectively, and the aluminum alloy front coaming, the aluminum alloy back coaming, the aluminum alloy left coaming and the aluminum alloy right coaming are matched with one another to define a rectangular space to wrap the server hardware set inside. Therefore, all-directional protection is achieved, and internal circuit components are prevented from being damaged.
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Description

Technical Field

[0001] The utility model relates to the technical field of servers, and specifically relates to a ruggedized server with left and right forced cooling. Background Art

[0002] Due to the demand of instant communication, servers are widely used in various fields, such as transportation, fire protection and rescue. They play an important role in data communication in each field. In some special working environments, servers are required to have powerful processing capabilities, good anti-vibration, anti-shock and strong heat dissipation capabilities, and at the same time, they also need to adapt to environments such as humidity and high dust. However, the commercially available servers currently popular on the market have poor structural stability and cannot meet the use in the above harsh environments. Content of the Utility Model

[0003] The purpose of the utility model is to provide a ruggedized server with left and right forced cooling to solve the above problems.

[0004] To achieve the above purpose, the utility model provides the following technical solution: A ruggedized server with left and right forced cooling, including;

[0005] A server hardware group, the outside of the server hardware group adopts an integrated protection and heat dissipation component. The integrated protection and heat dissipation component includes an aluminum alloy top enclosure, an aluminum alloy bottom enclosure, an aluminum alloy front enclosure, an aluminum alloy rear enclosure, an aluminum alloy left enclosure and an aluminum alloy right enclosure;

[0006] The aluminum alloy top enclosure and the aluminum alloy bottom enclosure are buckled up and down. There is a spacing between the aluminum alloy top enclosure and the aluminum alloy bottom enclosure. Both the aluminum alloy top enclosure and the aluminum alloy bottom enclosure are rectangular. The aluminum alloy front enclosure, the aluminum alloy rear enclosure, the aluminum alloy left enclosure and the aluminum alloy right enclosure are located between the aluminum alloy top enclosure and the aluminum alloy bottom enclosure. The two ends of the aluminum alloy front enclosure and the aluminum alloy rear enclosure are respectively clamped with the aluminum alloy left enclosure and the aluminum alloy right enclosure. The aluminum alloy front enclosure, the aluminum alloy rear enclosure, the aluminum alloy left enclosure and the aluminum alloy right enclosure cooperate with each other to enclose a rectangular space to wrap the server hardware group inside;

[0007] Screws are embedded at both ends of the aluminum alloy front enclosure and the aluminum alloy rear enclosure. The screws pass through the aluminum alloy front enclosure and the aluminum alloy rear enclosure and are respectively embedded into the aluminum alloy left enclosure and the aluminum alloy right enclosure for installation and fixation. And screws are embedded on both the aluminum alloy top enclosure and the aluminum alloy bottom enclosure. The screws on the aluminum alloy top enclosure and the aluminum alloy bottom enclosure pass through the aluminum alloy top enclosure and the aluminum alloy bottom enclosure and are respectively embedded into the aluminum alloy front enclosure, the aluminum alloy rear enclosure, the aluminum alloy left enclosure and the aluminum alloy right enclosure;

[0008] Both the left aluminum alloy side panel and the right aluminum alloy side panel are provided with heat dissipation holes, and a dust-proof net is embedded in each heat dissipation hole.

[0009] Preferably, there are multiple integrally fixed ribs on the outer sides of the top aluminum alloy panel and the bottom aluminum alloy panel, and there is a gap between every two ribs.

[0010] Preferably, a data interface is provided on the front aluminum alloy panel, and a door cover covers the outside of the data interface. Hinges are symmetrically arranged on one side of the door cover. The door cover is rotatably connected to the front aluminum alloy panel through the hinges, and on the outer sides near both ends of the front aluminum alloy panel are welded and fixed with [unclear content in original], and a non-slip sleeve is sleeved on the outside of [unclear content in original].

[0011] Preferably, feet are symmetrically arranged on the outer sides of both ends of the rear aluminum alloy panel, and multiple screws are provided on the feet. The screws are installed and fixed by passing through the feet and embedding into the rear aluminum alloy panel.

[0012] Preferably, heat dissipation fans are provided on the inner sides of both the left aluminum alloy side panel and the right aluminum alloy side panel. Multiple heat dissipation fans are respectively attached to the inner sides of the left aluminum alloy side panel and the right aluminum alloy side panel, and multiple heat dissipation fans are installed and fixed to the left aluminum alloy side panel and the right aluminum alloy side panel through screws.

[0013] Preferably, the server hardware group includes a main board, a shock-absorbing plate, an information conversion board, a filter, a power module, an array card, and a hard disk module;

[0014] The main board is located at the center position on the top of the bottom aluminum alloy panel. The number of shock-absorbing plates is two. Both ends of the main board are respectively installed on the two shock-absorbing plates through screws, and multiple shock-absorbing springs are installed on the shock-absorbing plates. The information conversion board is installed on the bottom aluminum alloy panel through screws on one side of the main board;

[0015] The array card is installed at one end of the main board on the top of the bottom aluminum alloy panel, the power module is installed on the top of the bottom aluminum alloy panel on one side of the array card, and the hard disk module is installed on the top of the bottom aluminum alloy panel at one end of the power module.

[0016] Compared with the prior art, the beneficial effects of the present utility model are:

[0017] The present utility model comprehensively wraps the server hardware group through the integrated protection and heat dissipation component on the outside, making its protection better, avoiding hardware damage caused by external factors, and meeting the use in harsh environments. Description of the Drawings

[0018] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;

[0019] Figure 2This is the front three-dimensional schematic diagram of the partial structure of the present utility model;

[0020] Figure 3 This is the back three-dimensional schematic diagram of the partial structure of the present utility model.

[0021] In the figure: 100, aluminum alloy top enclosure; 200, aluminum alloy bottom enclosure; 300, aluminum alloy front enclosure; 301, door cover; 302, hinge; 303, handle; 400, aluminum alloy back enclosure; 401, foot pad; 500, aluminum alloy left enclosure; 600, aluminum alloy right enclosure; 700, main board; 701, shock-absorbing board; 702, shock-absorbing spring; 703, information conversion board; 704, cooling fan; 800, filter; 801, power module; 802, array card; 803, hard disk module. Specific embodiments

[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0023] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "vertical", "upper", "lower", "horizontal", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present utility model.

[0024] In the description of the present utility model, it should also be noted that unless otherwise clearly specified and limited, the terms "set", "installed", "connected", and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication of two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0025] Please refer to Figures 1-3 , the present utility model provides a technical solution: a rugged server with left and right forced cooling, including;

[0026] Server hardware group, an integrated protection and heat dissipation component is adopted on the outer side of the server hardware group. The integrated protection and heat dissipation component includes an aluminum alloy top enclosure 100, an aluminum alloy bottom enclosure 200, an aluminum alloy front enclosure 300, an aluminum alloy rear enclosure 400, an aluminum alloy left enclosure 500, and an aluminum alloy right enclosure 600;

[0027] The aluminum alloy top enclosure 100 and the aluminum alloy bottom enclosure 200 are buckled up and down. There is a spacing between the aluminum alloy top enclosure 100 and the aluminum alloy bottom enclosure 200. Both the aluminum alloy top enclosure 100 and the aluminum alloy bottom enclosure 200 are rectangular. The aluminum alloy front enclosure 300, the aluminum alloy rear enclosure 400, the aluminum alloy left enclosure 500, and the aluminum alloy right enclosure 600 are located between the aluminum alloy top enclosure 100 and the aluminum alloy bottom enclosure 200. The two ends of the aluminum alloy front enclosure 300 and the aluminum alloy rear enclosure 400 are respectively clamped with the aluminum alloy left enclosure 500 and the aluminum alloy right enclosure 600. The aluminum alloy front enclosure 300, the aluminum alloy rear enclosure 400, the aluminum alloy left enclosure 500, and the aluminum alloy right enclosure 600 cooperate with each other to enclose a rectangular space to wrap the server hardware group inside;

[0028] Screws are embedded at both ends of the aluminum alloy front enclosure 300 and the aluminum alloy rear enclosure 400. The screws pass through the aluminum alloy front enclosure 300 and the aluminum alloy rear enclosure 400 and are respectively embedded into the interiors of the aluminum alloy left enclosure 500 and the aluminum alloy right enclosure 600 for installation and fixation. Moreover, screws are embedded on both the aluminum alloy top enclosure 100 and the aluminum alloy bottom enclosure 200. The screws on the aluminum alloy top enclosure 100 and the aluminum alloy bottom enclosure 200 pass through the aluminum alloy top enclosure 100 and the aluminum alloy bottom enclosure 200 and are respectively embedded into the interiors of the aluminum alloy front enclosure 300, the aluminum alloy rear enclosure 400, the aluminum alloy left enclosure 500, and the aluminum alloy right enclosure 600;

[0029] Heat dissipation holes are provided on both the aluminum alloy left enclosure 500 and the aluminum alloy right enclosure 600, and a dust-proof net is embedded in each heat dissipation hole.

[0030] Furthermore, there are multiple integrally fixed convex strips on the outer sides of both the aluminum alloy top enclosure 100 and the aluminum alloy bottom enclosure 200, and there is a spacing between every two convex strips.

[0031] Furthermore, a data interface is provided on the aluminum alloy front enclosure 300, and a door cover 301 is covered on the outer side of the data interface. Hinges 302 are symmetrically arranged on one side of the door cover 301. The door cover 301 is rotatably connected to the aluminum alloy front enclosure 300 through the hinges 302. Moreover, 303 is welded and fixed on the outer side of the aluminum alloy front enclosure 300 near both ends, and an anti-slip sleeve is sleeved on the outer side of 303.

[0032] Further, foot pads 401 are symmetrically arranged on the outer sides of both ends of the aluminum alloy back panel 400, and a plurality of screws are provided on the foot pads 401. The screws pass through the foot pads 401 and are embedded in the aluminum alloy back panel 400 for installation and fixation.

[0033] Further, heat dissipation fans 704 are provided on the inner sides of the aluminum alloy left side panel 500 and the aluminum alloy right side panel 600. A plurality of heat dissipation fans 704 are respectively attached to the inner sides of the aluminum alloy left side panel 500 and the aluminum alloy right side panel 600, and the plurality of heat dissipation fans 704 are installed and fixed to the aluminum alloy left side panel 500 and the aluminum alloy right side panel 600 through screws.

[0034] Further, the server hardware group includes a main board 700, a shock-absorbing plate 701, an information conversion board 703, a filter 800, a power module 801, an array card 802, and a hard disk module 803;

[0035] The main board 700 is located at the center position on the top of the aluminum alloy bottom panel 200. The number of shock-absorbing plates 701 is two. Both ends of the main board 700 are respectively installed on the two shock-absorbing plates 701 through screws. A plurality of shock-absorbing springs 702 are installed on the shock-absorbing plates 701. The information conversion board 703 is installed on the aluminum alloy bottom panel 200 on one side of the main board 700 through screws;

[0036] The array card 802 is installed at one end of the main board 700 on the top of the aluminum alloy bottom panel 200. The power module 801 is installed on the top of the aluminum alloy bottom panel 200 on one side of the array card 802. The hard disk module 803 is installed on the top of the aluminum alloy bottom panel 200 at one end of the power module 801.

[0037] Working principle: When in use, the two ends of the aluminum alloy front enclosure 300 and the aluminum alloy rear enclosure 400 are respectively attached and clamped to the aluminum alloy left enclosure 500 and the aluminum alloy right enclosure 600, so that the aluminum alloy front enclosure 300, the aluminum alloy rear enclosure 400, the aluminum alloy left enclosure 500 and the aluminum alloy right enclosure 600 enclose to form a rectangular shape. The aluminum alloy front enclosure 300, the aluminum alloy rear enclosure 400, the aluminum alloy left enclosure 500 and the aluminum alloy right enclosure 600 are assembled into an integral structure by screws. At this time, the aluminum alloy bottom enclosure 200 is buckled on the bottom of the rectangular shape formed by the aluminum alloy front enclosure 300, the aluminum alloy rear enclosure 400, the aluminum alloy left enclosure 500 and the aluminum alloy right enclosure 600 and installed by screws. Then, the server hardware group is installed on the top of the aluminum alloy bottom enclosure 200. After the installation is completed, the aluminum alloy top enclosure 100 is buckled on the top of the rectangular shape formed by the aluminum alloy bottom enclosure 200 buckled on the aluminum alloy front enclosure 300, the aluminum alloy rear enclosure 400, the aluminum alloy left enclosure 500 and the aluminum alloy right enclosure 600 and fixed by screws. Then the equipment installation is completed. The server hardware group is fully wrapped by the integrated protection and heat dissipation component on the outside, making its protection better and avoiding hardware damage caused by external factors, meeting the use in harsh environments.

[0038] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A reinforced server with left and right forced cooling, characterized in that: include; A server hardware group, wherein the outer side of the server hardware group adopts an integrated protective heat dissipation component, and the integrated protective heat dissipation component comprises an aluminum alloy top enclosure (100), an aluminum alloy bottom enclosure (200), an aluminum alloy front enclosure (300), an aluminum alloy back enclosure (400), an aluminum alloy left enclosure (500), and an aluminum alloy right enclosure (600); The aluminum alloy top panel (100) and the aluminum alloy bottom panel (200) are buckled up and down, and a spacing is provided between the aluminum alloy top panel (100) and the aluminum alloy bottom panel (200). The aluminum alloy top panel (100) and the aluminum alloy bottom panel (200) are both rectangular in shape. The aluminum alloy front panel (300), the aluminum alloy back panel (400), the aluminum alloy left panel (500) and the aluminum alloy right panel (600) are located between the aluminum alloy top panel (100) and the aluminum alloy bottom panel (200). The two ends of the aluminum alloy front panel (300) and the aluminum alloy back panel (400) are respectively connected to the aluminum alloy left panel (500) and the aluminum alloy right panel (600). The aluminum alloy front panel (300), the aluminum alloy back panel (400), the aluminum alloy left panel (500) and the aluminum alloy right panel (600) cooperate with each other to form a rectangular space to wrap the server hardware group inside. Both ends of the aluminum alloy front panel (300) and the aluminum alloy back panel (400) are embedded with screws, which pass through the aluminum alloy front panel (300) and the aluminum alloy back panel (400) and are respectively embedded in the interior of the aluminum alloy left panel (500) and the aluminum alloy right panel (600) for installation and fixation, and the aluminum alloy top panel (100) and the aluminum alloy bottom panel (200) are both embedded with screws, and the screws on the aluminum alloy top panel (100) and the aluminum alloy bottom panel (200) pass through the aluminum alloy top panel (100) and the aluminum alloy bottom panel (200) and are respectively embedded in the interior of the aluminum alloy front panel (300), the aluminum alloy back panel (400), the aluminum alloy left panel (500) and the aluminum alloy right panel (600); The aluminum alloy left side enclosure (500) and the aluminum alloy right side enclosure (600) are both provided with heat dissipation holes, and each heat dissipation hole is embedded with a dustproof net.

2. A reinforced server with left and right forced cooling according to claim 1, characterized in that: The outer sides of the aluminum alloy top enclosure (100) and the aluminum alloy bottom enclosure (200) are each provided with a plurality of integrally fixed convex strips, and a spacing is provided between every two convex strips.

3. A reinforced server with left and right forced cooling according to claim 1, characterized in that: The aluminum alloy front panel (300) is provided with a data interface, and the outer side of the data interface is covered with a door cover (301), one side of the door cover (301) is symmetrically provided with a hinge (302), the door cover (301) is rotatably connected to the aluminum alloy front panel (300) through the hinge (302), and 303 is welded and fixed to the outer side of the aluminum alloy front panel (300) near both ends, and the outer side of 303 is covered with an anti-slip cover.

4. The reinforced server with left and right forced cooling according to claim 1, characterized in that: Foot pads (401) are symmetrically arranged on the outer sides of both ends of the aluminum alloy back panel (400), and a plurality of screws are arranged on the foot pads (401). The screws pass through the foot pads (401) and are embedded in the aluminum alloy back panel (400) for installation and fixation.

5. The reinforced server with left and right forced cooling according to claim 1, characterized in that: The inner sides of the aluminum alloy left side panel (500) and the aluminum alloy right side panel (600) are both provided with cooling fans (704), and the plurality of cooling fans (704) are respectively attached to the inner sides of the aluminum alloy left side panel (500) and the aluminum alloy right side panel (600), and the plurality of cooling fans (704) are installed and fixed to the aluminum alloy left side panel (500) and the aluminum alloy right side panel (600) by screws.

6. The reinforced server with left and right forced cooling according to claim 1, characterized in that: The server hardware group includes a mainboard (700), a shock absorbing board (701), an information conversion board (703), a filter (800), a power module (801), an array card (802), and a hard disk module (803); The main board (700) is located at the center of the top of the aluminum alloy bottom enclosure (200), the number of the shock absorbing plates (701) is two, the two ends of the main board (700) are respectively mounted on the two shock absorbing plates (701) by screws, a plurality of shock absorbing springs (702) are mounted on the shock absorbing plates (701), and the information conversion board (703) is mounted on the aluminum alloy bottom enclosure (200) by screws and is located on one side of the main board (700); The array card (802) is mounted on the top of the aluminum alloy bottom enclosure (200) and is located at one end of the mainboard (700); the power module (801) is mounted on the top of the aluminum alloy bottom enclosure (200) and is located at one side of the array card (802); and the hard disk module (803) is mounted on the top of the aluminum alloy bottom enclosure (200) and is located at one end of the power module (801).