Fireproof enclosure device and server
By setting multiple mounting slots and inserting fireproof baffles in the server's fireproof enclosure, the interconnection and transmission equipment of peripheral components is isolated from the clearance holes, thus solving the problem that the interconnection and transmission equipment of peripheral components is easily ignited and improving safety and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- INSPUR SUZHOU INTELLIGENT TECH CO LTD
- Filing Date
- 2023-03-23
- Publication Date
- 2026-07-31
AI Technical Summary
The interconnection and transmission equipment of peripheral components in the server is easily ignited, posing a safety hazard.
A fireproof enclosure device is designed, including a mounting body and fireproof baffles. Multiple mounting slots are provided on the second fixing plate of the mounting body, and the fireproof baffles are inserted into these slots to separate the external component interconnection and transmission equipment from the clearance hole and prevent heat transfer.
This effectively prevents the interconnection and transmission equipment of peripheral components from being ignited, reducing safety hazards, while ensuring stable connection and data transmission of the equipment.
Smart Images

Figure CN116339456B_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of server technology, specifically relating to a fireproof enclosure device and a server. Background Technology
[0002] With the development of technology, servers, as devices with computing, storage, and interactive functions, have been widely used. The diverse hardware designs of servers allow them to accommodate increasingly high-performance central processing units (CPUs), thus allocating more computing resources to peripheral interconnect (PEI) devices to enhance server scalability. PII devices include network interface cards (NICs), graphics cards, and encryption cards. Due to internal space limitations, PII devices are typically not directly mounted to the server motherboard via connectors. Instead, an adapter board is used as a carrier for the PII devices. This connects the PII devices to the adapter board, which in turn connects to the server motherboard. This arrangement makes fuller use of the server's internal space. Furthermore, servers usually have fireproof enclosures. The PII devices are mounted to these enclosures, which have clearance holes. Both the fireproof enclosure and the server chassis have clearance holes, ensuring the PII devices are aligned with these clearance holes. However, in related technologies, the interconnection and transmission equipment of peripheral components is easily ignited, posing a safety hazard. Summary of the Invention
[0003] The purpose of this application is to provide a fireproof enclosure device and server that can solve the problem that peripheral component interconnection and transmission equipment is easily ignited, posing a safety hazard.
[0004] In a first aspect, embodiments of this application provide a fireproof enclosure device for use in a server, the fireproof enclosure device comprising: a mounting body and a fireproof baffle; The mounting body includes a first fixing plate and a second fixing plate, the first fixing plate and the second fixing plate are connected, and there is a first preset angle between the first fixing plate and the second fixing plate; The first fixing plate is provided with a clearance hole, the fireproof baffle is disposed in the clearance hole and the fireproof baffle covers the clearance hole, the second fixing plate is provided with a plurality of mounting slots at intervals along a preset direction, the fireproof baffle is inserted into the target mounting slot, and the mounting slot located on the side of the target mounting slot away from the first fixing plate is used to insert peripheral component interconnection and transmission equipment.
[0005] Optionally, the second fixing plate is provided with a plurality of connecting holes spaced apart along the preset direction. The connecting holes are used to connect to the adapter plate, and the adapter plate is used to connect to the external component interconnection and transmission device. The second fixing plate is provided with a clearance groove, which penetrates the second fixing plate along the thickness direction and extends along the preset direction. In the preset direction, the clearance groove has a first side and a second side, and some of the plurality of connection holes are located on the first side of the clearance groove, while other connection holes are located on the second side of the clearance groove.
[0006] Optionally, the fireproof baffle includes a fireproof plate and a connecting plate; The fireproof plate is connected to the connecting plate, and there is a second preset angle between the fireproof plate and the connecting plate. The connecting plate is detachably connected to the first fixing plate. The fireproof plate covers the clearance hole and is inserted into the target mounting groove.
[0007] Optionally, the fireproof shell device further includes a connector, wherein the first fixing plate is connected to a third fixing plate, the third fixing plate is provided with a first connecting hole, the connecting plate includes a first connecting sub-plate and a second connecting sub-plate, the first connecting sub-plate is connected to the second connecting sub-plate, the first connecting sub-plate and the second connecting sub-plate are misaligned and parallel to each other, the fireproof plate is connected to the second connecting sub-plate, and the fireproof plate and the second connecting sub-plate have a second preset included angle; The first connecting sub-plate is provided with a second connecting hole. The first connecting sub-plate is in contact with the third fixing plate, and the first connecting hole is directly opposite the second connecting hole. The connector passes through the first connecting hole and the second connecting hole to connect the first connecting sub-plate and the third fixing plate.
[0008] Optionally, the second connection sub-board is provided with a third connection hole, which is used to fix the peripheral component interconnection and transmission device.
[0009] Optionally, one end of the fireproof board is connected to a support plate, and the support plate and the fireproof board have a third preset angle. The support plate and the second connecting sub-plate are located on different sides of the fireproof board, and the support plate is used to support the peripheral component interconnection and transmission device.
[0010] Optionally, in a direction perpendicular to the preset direction, limiting bosses are respectively provided on opposite sides of the clearance hole, and the limiting bosses are located on the first fixing plate facing the second fixing surface. The limiting bosses are used to limit the fireproof plate when the fireproof plate blocks the clearance hole.
[0011] Optionally, the fireproof board and the connecting plate are an integral structure.
[0012] Optionally, the fireproof baffle is provided with a plurality of heat dissipation holes, and the diameter of the heat dissipation holes is less than or equal to 5 mm.
[0013] Optionally, the diameter of the heat dissipation hole is less than or equal to 3 mm.
[0014] Optionally, there are multiple clearance slots, and the multiple clearance slots are distributed at intervals along a direction perpendicular to the preset direction. There are multiple clearance holes, and the multiple clearance holes are distributed at intervals on the second fixing plate. The distribution direction of the multiple clearance holes is parallel to the distribution direction of the multiple clearance slots.
[0015] Optionally, in a direction perpendicular to the preset direction, the second fixing plate is provided with multiple rows of mounting slots at intervals, each row of mounting slots including multiple mounting slots, and the multiple mounting slots in each row of mounting slots are distributed at intervals along the preset direction.
[0016] Optionally, the second fixing plate is connected to a positioning rod, and the positioning rod is provided with a positioning post, which is used to position the fireproof shell device when the mounting body is installed in the server.
[0017] In a second aspect, embodiments of this application provide a server, the server including a housing, peripheral component interconnection and transmission equipment, and the fireproof enclosure device described in any one of the first aspects above; The peripheral component interconnection and transmission device and the fireproof housing device are both located in the housing, and the peripheral component interconnection and transmission device is inserted into one of the mounting slots on the second fixing plate.
[0018] In this embodiment, since the first fixing plate and the second fixing plate are connected and there is a first preset angle between them, the first fixing plate and the second fixing plate are not on the same plane, thus forming an installation body. Because the first fixing plate has a clearance hole, a fireproof baffle is disposed in the clearance hole and blocks the clearance hole, and the second fixing plate has multiple mounting slots spaced along a preset direction, the fireproof baffle is inserted into the target mounting slot. The mounting slot located on the side of the target mounting slot opposite to the first fixing plate is used to insert a peripheral component interconnection transmission device. Therefore, after inserting the peripheral component interconnection transmission device into a mounting slot, the peripheral component interconnection transmission device is separated from the clearance hole by the fireproof baffle, thereby preventing heat transfer through the clearance hole to the peripheral component interconnection transmission device and preventing the peripheral component interconnection transmission device from being ignited. That is, in this embodiment of the application, by setting multiple mounting slots on the second fixing plate, inserting fireproof baffles into the target mounting slots, and inserting peripheral component interconnection and transmission devices into the mounting slots on the side of the target mounting slots away from the first fixing plate, the peripheral component interconnection and transmission devices are separated from the clearance holes by the fireproof baffles, thus preventing the heat from the clearance holes from being transferred to the peripheral component interconnection and transmission devices and causing the peripheral component interconnection and transmission devices to be ignited, thereby reducing safety hazards. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of one of the fireproof enclosure devices provided in this application embodiment; Figure 2 This is a second schematic diagram illustrating a fireproof enclosure device provided in an embodiment of this application. Figure 3 This is the third schematic diagram illustrating a fireproof enclosure device provided in an embodiment of this application. Figure 4 This is a schematic diagram illustrating one of the installation bodies provided in an embodiment of this application; Figure 5 This is a second schematic diagram illustrating an installation body provided in an embodiment of this application; Figure 6 This is the third schematic diagram illustrating an installation body provided in an embodiment of this application; Figure 7 This is a fourth schematic diagram illustrating an installation body provided in an embodiment of this application; Figure 8 The fifth schematic diagram illustrates an installation body provided in an embodiment of this application; Figure 9 This is one of the schematic diagrams showing an embodiment of the peripheral component interconnection transmission device provided in this application installed on a fireproof enclosure. Figure 10This is a second schematic diagram showing an embodiment of the present application of a peripheral component interconnection and transmission device installed on a fireproof enclosure.
[0020] Figure label: 10: Mounting body; 11: First fixing plate; 12: Second fixing plate; 13: Third fixing plate; 111: Clearance hole; 112: Limiting boss; 121: Mounting groove; 122: Connecting hole; 123: Clearance groove; 131: First connecting hole; 20: Fireproof baffle; 21: Fireproof board; 22: Connecting plate; 201: Heat dissipation hole; 221: First connecting sub-plate; 222: Second connecting sub-plate; 223: Support plate; 2211: Second connecting hole; 2221: Third connecting hole; 30: Positioning rod; 31: Positioning column; 100: Peripheral component interconnection and transmission equipment. Detailed Implementation
[0021] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0022] It should be understood that the phrase "one embodiment" or "an embodiment" throughout the specification means that a specific feature, structure, or characteristic related to the embodiment is included in at least one embodiment of this application. Therefore, "in one embodiment" or "in an embodiment" appearing throughout the specification does not necessarily refer to the same embodiment. Furthermore, these specific features, structures, or characteristics can be combined in any suitable manner in one or more embodiments. Reference Figure 1 The diagram shows one of the schematic diagrams of a fireproof enclosure device provided in an embodiment of this application; see reference to Figure 2 The diagram below shows a second schematic of a fireproof enclosure device provided in an embodiment of this application; see reference to Figure 3 The diagram below shows a third schematic representation of a fireproof enclosure device according to an embodiment of this application; see reference to... Figure 4 This illustration shows one of the schematic diagrams of an installation body provided in an embodiment of this application; see reference to Figure 5 This shows a second schematic diagram of an installation body provided in an embodiment of this application; see reference to Figure 6 The third schematic diagram of an installation body provided in an embodiment of this application is shown; refer to Figure 7 The fourth schematic diagram of an installation body provided in an embodiment of this application is shown; refer to Figure 8 The fifth illustration shows a schematic diagram of an installation body provided in an embodiment of this application; see reference to Figure 9This illustration shows one of the schematic diagrams of a peripheral component interconnection transmission device installed on a fireproof enclosure according to an embodiment of this application; see reference to Figure 10 This illustration shows a second schematic diagram of a peripheral component interconnection transmission device installed on a fireproof enclosure, according to an embodiment of this application. This fireproof enclosure is used in servers, such as... Figures 1 to 10 As shown, the fireproof enclosure device includes: a mounting body 10 and a fireproof baffle 20.
[0023] The mounting body 10 includes a first fixing plate 11 and a second fixing plate 12. The first fixing plate 11 is connected to the second fixing plate 12, and there is a first preset angle between the first fixing plate 11 and the second fixing plate 12. The first fixing plate 11 is provided with a clearance hole 111, and a fireproof baffle 20 is disposed in the clearance hole 111 and covers the clearance hole 111. The second fixing plate 12 is provided with a plurality of mounting slots 121 at intervals along a preset direction. The fireproof baffle 20 is inserted into the target mounting slot 121. The mounting slot 121 located on the side of the target mounting slot 121 opposite to the first fixing plate 11 is used to insert the peripheral component interconnection and transmission device 100.
[0024] In this embodiment, since the first fixing plate 11 is connected to the second fixing plate 12 and there is a first preset angle between the first fixing plate 11 and the second fixing plate 12, the first fixing plate 11 and the second fixing plate 12 are not on the same plane, so the first fixing plate 11 and the second fixing plate 12 can form the mounting body 10. Since the first fixing plate 11 is provided with a clearance hole 111, the fireproof baffle 20 is provided in the clearance hole 111 and the fireproof baffle 20 blocks the clearance hole 111, and the second fixing plate 12 is provided with a plurality of mounting slots 121 at intervals along a preset direction, the fireproof baffle 20 is inserted into the target mounting slot 121, and the mounting slot 121 located on the side of the target mounting slot 121 away from the first fixing plate 11 is used to insert the peripheral component interconnection transmission device 100. Therefore, after the peripheral component interconnection transmission device 100 is inserted into a mounting slot 121, the peripheral component interconnection transmission device 100 and the clearance hole 111 are separated by the fireproof baffle 20, thereby preventing heat from being transferred to the peripheral component interconnection transmission device 100 through the clearance hole 111 and preventing the peripheral component interconnection transmission device 100 from being ignited. That is, in this embodiment of the application, by setting multiple mounting slots 121 on the second fixing plate 12, inserting fireproof baffles 20 into the target mounting slot 121, and inserting peripheral component interconnection transmission device 100 into the mounting slot 121 on the side of the target mounting slot 121 away from the first fixing plate 11, the peripheral component interconnection transmission device 100 is separated from the avoidance hole 111 by the fireproof baffles 20, so as to avoid the heat from the avoidance hole 111 being transferred to the peripheral component interconnection transmission device 100, which would cause the peripheral component interconnection transmission device 100 to be ignited, thereby reducing the safety hazard.
[0025] It should be noted that, in this embodiment, the target mounting slot 121 can be the mounting slot 121 closest to the first fixing plate 11 among the multiple mounting slots 121. Of course, the target mounting slot 121 can also be any other mounting slot 121 among the multiple mounting slots 121, as long as it is not the mounting slot 121 furthest from the first fixing plate 11.
[0026] Furthermore, in this embodiment, the value of the first preset angle can be set according to actual needs. For example, the first preset angle is 90 degrees, or 89 degrees, or 91 degrees. The specific value of the first preset angle is not limited in this embodiment. The first preset angle can be... Figure 5 α in.
[0027] Furthermore, in this embodiment, the Peripheral Component Interconnect Express (PCIE) device can be a device without input and output interfaces. In this case, when the PCIE transmission device 100 is inserted into the mounting slot 121 of the second mounting plate 12, it is not necessary to introduce a connecting cable through the clearance hole 111 to connect to the input or output interface. For PCIE devices with input and output interfaces, a mounting slot 121 that is farther away from the target mounting slot 121 can be selected to insert the PCIE device, that is, there is a large gap between the PCIE device and the fireproof baffle 20, so that the connecting cable can be inserted into the input or output interface through this gap. Typically, after a PCIe device is plugged into the second mounting plate 12, the side of the PCIe device with input and output interfaces will face the clearance hole 111. For PCIe devices without input and output interfaces, there will be no impact when using the fireproof enclosure device of this application. For PCIe devices with input and output interfaces, when plugging the PCIe device into the second mounting plate 12, the mounting slot 121 that is farther away from the target mounting slot 121 can be selected to plug in the PCIe device.
[0028] Additionally, in some embodiments, such as Figure 4 As shown, the second fixing plate 12 can be provided with a plurality of connecting holes 122 at intervals along a preset direction. The connecting holes 122 are used to connect the adapter plate, and the adapter plate is used to connect with the external component interconnection and transmission device 100. The second fixing plate 12 is provided with a relief groove 123, which penetrates the second fixing plate 12 along the thickness direction of the second fixing plate 12 and extends along a preset direction. In the preset direction, the relief groove 123 has a first side and a second side opposite to each other. Among the plurality of connecting holes 122, some connecting holes 122 are located on the first side of the relief groove 123, and other connecting holes 122 are located on the second side of the relief groove 123.
[0029] Since the second fixing plate 12 has multiple connecting holes 122 spaced apart along a preset direction, the connecting plate 22 can be connected to the second fixing plate 12 through the connecting holes 122. The second fixing plate 12 has a clearance groove 123 that penetrates the second fixing plate 12 along its thickness direction. Therefore, after connecting the adapter plate to the second fixing plate 12 and inserting the peripheral component interconnection transmission device 100 into the mounting slot 121, the peripheral component interconnection transmission device 100 can be partially located in the clearance groove 123, and the adapter plate can be partially located in the clearance groove 123. Thus, the peripheral component interconnection transmission device 100 is connected to the adapter plate in the clearance groove 123, allowing the adapter plate to transmit data from the peripheral component interconnection transmission device 100. Furthermore, since both the adapter plate and the peripheral component interconnection and transmission device 100 have a certain volume, the clearance groove 123 extends along a preset direction. This facilitates the insertion of both the adapter plate and the peripheral component interconnection and transmission device 100 into the clearance groove 123, thereby facilitating the connection between the peripheral component interconnection and transmission device 100 and the adapter plate within the clearance groove 123. Additionally, when connecting the adapter plate, its relatively large volume and the fact that it extends along a preset direction mean that some of the multiple connection holes 122 are located on the first side of the clearance groove 123, while others are located on the second side. This allows for a greater number of connection points on the adapter plate, resulting in a more secure fixation.
[0030] Additionally, in some embodiments, such as Figure 8 As shown, the fireproof baffle 20 may include a fireproof plate 21 and a connecting plate 22. The fireproof plate 21 is connected to the connecting plate 22, and there is a second preset angle between the fireproof plate 21 and the connecting plate 22. The connecting plate 22 is detachably connected to the first fixing plate 11. The fireproof plate 21 blocks the clearance hole 111, and the fireproof plate 21 is inserted into the target mounting groove 121.
[0031] Because the fireproof plate 21 is connected to the connecting plate 22, and there is a second preset angle between the fireproof plate 21 and the connecting plate 22, the fireproof plate 21 and the connecting plate 22 are not on the same plane. This facilitates the placement of the fireproof baffle 20, making it relatively easy to connect the connecting plate 22 to the first fixing plate 11. Furthermore, the fireproof plate 21 blocks the clearance hole 111. Additionally, the connecting plate 22 and the first fixing plate 11 are detachably connected, and the fireproof plate 21 is inserted into the target mounting groove 121, which allows the fireproof baffle 20 to be more securely fixed on the mounting body 10, preventing the fireproof baffle 20 from easily detaching from the mounting body 10. Moreover, the detachable connection between the connecting plate 22 and the first fixing plate 11, and the insertion of the fireproof plate 21 into the target mounting groove 121, also facilitates the replacement of the fireproof baffle 20. That is, when the fireproof baffle 20 malfunctions, it is easy to disassemble the fireproof baffle 20 or adjust its position on the mounting body 10. That is, by including the fireproof plate 21 and the connecting plate 22, the fireproof plate 20 can be easily connected to the installation body 10, and the fireproof plate 20 can be more firmly fixed on the installation body 10.
[0032] It should be noted that, in this embodiment, the value of the second preset angle can be set according to actual needs. For example, the second preset angle is 90 degrees, 89 degrees, or 91 degrees. The specific value of the second preset angle is not limited in this embodiment. The second preset angle can be... Figure 8 β in.
[0033] In addition, in this embodiment, the connecting plate 22 and the first fixing plate 11 can be detachably connected in the following way: the first fixing plate 11 is provided with a boss, the boss has a threaded hole, the connecting plate 22 is provided with a threaded hole, and the connecting plate 22 is connected to the first fixing plate 11 by bolts passing through the threaded hole on the boss and the threaded hole on the first fixing plate 11. Of course, the detachable connection between the connecting plate 22 and the first fixing plate 11 can be in other ways. For example, the connecting plate 22 is provided with a snap-fit platform, the first fixing plate 11 is provided with a snap-fit groove, and the snap-fit platform snaps into the snap-fit groove, so that the connecting plate 22 and the first fixing plate 11 are connected. This embodiment does not limit the detachable connection method between the connecting plate 22 and the first fixing plate 11.
[0034] Additionally, in some embodiments, such as Figure 1 and Figure 8As shown, the fireproof enclosure device may further include a connector. A first fixing plate 11 is connected to a third fixing plate 13. The third fixing plate 13 has a first connecting hole 131. The connecting plate 22 includes a first connecting sub-plate 221 and a second connecting sub-plate 222. The first connecting sub-plate 221 and the second connecting sub-plate 222 are connected, offset from each other, and parallel to each other. The fireproof plate 21 is connected to the second connecting plate 222, and there is a second preset angle between the fireproof plate 21 and the second connecting sub-plate 222. The first connecting sub-plate 221 has a second connecting hole 2211. The first connecting sub-plate 221 contacts the third fixing plate 13, and the first connecting hole 131 is directly opposite the second connecting hole 2211. The connector passes through the first connecting hole 131 and the second connecting hole 2211 to connect the first connecting sub-plate 221 to the third fixing plate 13.
[0035] Because the first connecting sub-plate 221 of the connecting plate 22 is connected to the second connecting sub-plate 222, and the first connecting sub-plate 221 and the second connecting sub-plate 222 are misaligned and parallel, the first connecting sub-plate 221 and the second connecting sub-plate 222 are not on the same plane. Because the fireproof plate 21 is connected to the second connecting sub-plate 222, and the fireproof plate 21 and the second connecting sub-plate 222 are parallel, the fireproof plate 21 and the second connecting sub-plate 222 are not on the same plane. Since the first connecting sub-board 221 is provided with a second connecting hole 2211, the first connecting sub-board 221 contacts the third fixing plate 13, and the first connecting hole 131 is directly opposite the second connecting hole 2211. Therefore, the connector can be inserted through the first connecting hole 131 and the second connecting hole 2211 to connect the first connecting sub-board 221 to the third fixing plate 13. The first connecting sub-board 221 and the second connecting sub-board 222 are misaligned, which can ensure that the second connecting sub-board 222 will not affect the connection between the first connecting sub-board 221 and the third fixing plate 13, and facilitates the subsequent connection of the second connecting sub-board 222 with the peripheral component interconnection and transmission device 100.
[0036] It should be noted that, in this embodiment, the number of first connecting holes 131 can be set according to actual needs. For example, the number of first connecting holes 131 is 4, or for another example, the number of first connecting holes 131 is 6. The specific number of first connecting holes 131 is not limited in this embodiment. Additionally, in some embodiments, such as Figure 1 As shown, a third connection hole 2221 may be provided on the second connection sub-board 222. The third connection hole 2221 is used to fix the peripheral component interconnection and transmission device 100.
[0037] Because the second connecting sub-plate 222 has a third connecting hole 2221, when fixing the peripheral component interconnection transmission device 100, the fixing member can pass through the third connecting hole 2221, thereby connecting the fixing member to the peripheral component interconnection transmission device 100. This makes the peripheral component interconnection transmission device 100 more securely connected to the fireproof baffle 20, preventing the peripheral component interconnection transmission device 100 from easily falling off. In other words, by providing the third connecting hole 2221 on the second connecting sub-plate 222, the peripheral component interconnection transmission device 100 can be securely connected to the fireproof baffle 20, preventing the peripheral component interconnection transmission device 100 from easily falling off.
[0038] It should be noted that the number of third connecting holes 2221 can be set according to actual needs. For example, the number of third connecting holes 2221 may be 2, or the number of third connecting holes 2221 may be 1. The specific number of third connecting holes 2221 is not limited in this embodiment.
[0039] Additionally, in some embodiments, such as Figure 7 As shown, one end of the fireproof board 21 is connected to a support plate 223, and there is a third preset angle between the support plate 223 and the fireproof board 21. The support plate 223 and the second connecting sub-plate 222 are located on different sides of the fireproof board 21. The support plate 223 is used to support the peripheral component interconnection and transmission device 100.
[0040] When a support plate 223 is connected to one end of the fireproof plate 21, and the support plate 223 and the fireproof plate 21 have a third preset angle, and the support plate 223 and the second connecting sub-plate 222 are located on different sides of the fireproof plate 21, the support plate 223 and the fireproof plate 21 are not on the same plane. Therefore, when the peripheral component transmission device is installed on the fireproof housing device, that is, after the peripheral component transmission device is inserted into a mounting slot 121 and connected to the third connecting hole 2221 on the second connecting sub-plate 222, the peripheral component transmission device can face the fireproof plate 21, and the support plate 223 supports the peripheral component interconnection transmission device 100, so that the peripheral component interconnection transmission device 100 can be supported, thereby making the peripheral component interconnection transmission device 100 more stable on the fireproof housing device. That is, by setting the support plate 223, the support plate 223 can support the peripheral component interconnection and transmission device 100, so that the peripheral component interconnection and transmission device 100 can be more stable on the fireproof housing device, which is conducive to fixing the peripheral component interconnection and transmission device 100 on the fireproof housing device.
[0041] It should be noted that, in this embodiment, the value of the third preset angle can be set according to actual needs. For example, the third preset angle is 90 degrees, 89 degrees, or 91 degrees. The specific value of the third preset angle is not limited in this embodiment. The third preset angle can be... Figure 8 γ in.
[0042] Additionally, in some embodiments, such as Figure 6 As shown, in a direction perpendicular to the preset direction, limiting bosses 112 can be provided on opposite sides of the clearance hole 111, and the limiting bosses 112 are located on the surface of the first fixing plate 11 facing the second fixing plate. The limiting bosses 112 are used to limit the fireproof plate 21 when the fireproof plate 21 blocks the clearance hole 111.
[0043] Since limiting bosses 112 are respectively provided on both sides of the clearance hole 111 in a direction perpendicular to the preset direction, and the limiting bosses 112 are located on the first fixing plate 11 facing the second fixing surface, when the fireproof plate 21 is inserted into the target mounting groove 121 so that the fireproof plate 21 blocks the clearance hole 111, the fireproof plate 21 can be positioned between the limiting bosses 112 on both sides of the clearance hole 111. Thus, the limiting bosses 112 act as guides for the insertion position of the fireproof plate 21. Furthermore, after the fireproof plate 21 is inserted into the target mounting groove 121, the limiting bosses 112 on both sides of the clearance hole 111 can also limit the fireproof plate 21, preventing the fireproof plate 21 from shaking. That is, by providing limiting bosses 112 on both sides of the clearance hole 111, the limiting bosses 112 can limit the fireproof plate 21, preventing the fireproof plate 21 from shaking.
[0044] In some embodiments, the fireproof plate 21 and the connecting plate 22 can be an integral structure.
[0045] When the fireproof board 21 and the connecting plate 22 are integrated, the fireproof baffle 20 has higher strength. That is, by setting the fireproof board 21 and the connecting plate 22 as an integrated structure, the strength of the fireproof baffle 20 can be improved.
[0046] It should be noted that the fireproof baffle 20 can be directly die-cast using a die-casting process. Alternatively, the fireproof baffle 20 can be directly printed using a 3D printing process. The specific process for forming the fireproof baffle 20 is not limited in this embodiment of the application.
[0047] Of course, in this embodiment, the fireproof plate 21 and the connecting plate 22 can also be welded together by welding process, so that the fireproof plate 21 and the connecting plate 22 are connected.
[0048] Additionally, in some embodiments, such as Figure 7 As shown, the fireproof baffle 20 can be provided with multiple heat dissipation holes 201, and the diameter of the heat dissipation holes 201 is less than or equal to 5 mm.
[0049] When the fireproof baffle 20 is provided with multiple heat dissipation holes 201, after the peripheral component interconnection and transmission device 100 is installed on the fireproof housing, the heat generated by the peripheral component interconnection device can be transferred to the clearance hole 111 through the heat dissipation holes 201, and then transferred outward from the clearance hole 111. Furthermore, the diameter of the heat dissipation holes 201 is less than or equal to 5 mm, ensuring that the fireproof baffle 20 has a fireproof function and minimally affecting its strength. In other words, by providing multiple heat dissipation holes 201 on the fireproof baffle 20, and ensuring that the strength of the fireproof baffle 20 is minimally reduced without affecting its fireproof function, and also allowing the heat generated by the peripheral component interconnection and transmission device 100 to be transferred from the heat dissipation holes 201 to the clearance hole 111, which is beneficial for the heat dissipation of the peripheral component transmission device.
[0050] It should be noted that when the fireproof baffle 20 includes a fireproof plate 21 and a connecting plate 22, the heat dissipation hole 201 is located on the fireproof plate 21, that is, the fireproof plate 21 is provided with multiple heat dissipation holes 201.
[0051] In addition, in some embodiments, the diameter of the heat dissipation hole 201 is less than or equal to 3 mm.
[0052] When the diameter of the heat dissipation hole 201 is less than or equal to 3 mm, the impact of opening the heat dissipation hole 201 on the strength of the fireproof baffle 20 can be further reduced, so that the strength of the fireproof baffle 20 is reduced less.
[0053] It should be noted that the diameter of the heat dissipation hole 201 can be any value less than or equal to 3 mm. For example, the diameter of the heat dissipation hole 201 is 3 mm, 2.5 mm, 2 mm, or 1 mm. The specific value of the diameter of the heat dissipation hole 201 is not limited in this embodiment.
[0054] In addition, in this embodiment of the application, the heat dissipation hole 201 penetrates the fireproof baffle 20 along the direction from the fireproof baffle 20 to the first fixing plate 11. When the heat dissipation hole 201 is located on the fireproof plate 21, the heat dissipation hole 201 penetrates the fireproof plate 21.
[0055] In addition, in this embodiment, the multiple heat dissipation holes 201 can be arranged in an array on the fireproof plate 21. Of course, the multiple heat dissipation holes 201 can also be arranged randomly on the fireproof plate 21. This embodiment does not limit the arrangement of these holes.
[0056] In addition, in some embodiments, there may be multiple clearance grooves 123, and the multiple clearance grooves 123 are distributed at intervals along a direction perpendicular to a preset direction. There may also be multiple clearance holes 111, which are distributed at intervals on the second fixing plate 12, and the distribution direction of the multiple clearance holes 111 is parallel to the distribution direction of the multiple clearance grooves 123.
[0057] Since there are multiple clearance slots 123, and these slots are spaced apart along a direction perpendicular to a preset direction, and there are multiple clearance holes 111, which are spaced apart on the second fixing plate 12, multiple peripheral component interconnection transmission devices 100 can be connected to the fireproof enclosure device in actual application. Each peripheral component interconnection transmission device 100 corresponds to one clearance slot 123 and one clearance hole 111. That is, after installing the peripheral component interconnection transmission device 100, the adapter plate can connect to multiple peripheral component interconnection transmission devices 100. In other words, by setting multiple clearance slots 123 and multiple clearance holes 111, the connection between the multiple peripheral component interconnection transmission devices 100 and the adapter plate will not be affected after connecting multiple peripheral component interconnection transmission devices 100 to the fireproof enclosure device.
[0058] In addition, in some embodiments, multiple rows of mounting slots 121 may be provided on the second fixing plate 12 at intervals along a direction perpendicular to the preset direction. Each row of mounting slots 121 includes multiple mounting slots 121, and the multiple mounting slots 121 in each row of mounting slots 121 are distributed at intervals along the preset direction.
[0059] Since multiple rows of mounting slots 121 are spaced apart on the second fixing plate 12 along a direction perpendicular to the preset direction, when connecting multiple peripheral component interconnection and transmission devices 100 to the fireproof housing device, the multiple peripheral component interconnection and transmission devices 100 can be directly inserted into the mounting slots 121 in different rows. That is, by providing multiple rows of mounting slots 121 spaced apart on the second fixing plate 12 along a direction perpendicular to the preset direction, it is convenient to connect multiple peripheral component interconnection and transmission devices 100.
[0060] In addition, in this embodiment of the application, when a peripheral component interconnection transmission device 100 is connected in each row of mounting slots 121 on the fireproof housing device, a target mounting slot 121 can be determined in each row of mounting slots 121, and a fireproof baffle 20 can be inserted into the target mounting slot 121 so that each peripheral component interconnection transmission device 100 can be protected.
[0061] In some embodiments, the second fixing plate 12 may be connected to a positioning rod 30, and the positioning rod 30 is provided with a positioning post 31. The positioning post 31 is used to position the fireproof shell device when the mounting body 10 is installed in the server.
[0062] Since the second fixing plate 12 is connected to the positioning rod 30, and the positioning rod 30 is equipped with a positioning post 31, when installing the fireproof enclosure device in the server, the positioning post 31 can be inserted into the bottom of the server first, so that the positioning post 31 can position the fireproof enclosure device, making it easier to fix the fireproof enclosure device in the server later. In other words, by setting the positioning post 31, it is easy to fix the fireproof enclosure device in the server.
[0063] In this embodiment, since the first fixing plate 11 is connected to the second fixing plate 12 and there is a first preset angle between the first fixing plate 11 and the second fixing plate 12, the first fixing plate 11 and the second fixing plate 12 are not on the same plane, so the first fixing plate 11 and the second fixing plate 12 can form the mounting body 10. Since the first fixing plate 11 is provided with a clearance hole 111, the fireproof baffle 20 is provided in the clearance hole 111 and the fireproof baffle 20 blocks the clearance hole 111, and the second fixing plate 12 is provided with a plurality of mounting slots 121 at intervals along a preset direction, the fireproof baffle 20 is inserted into the target mounting slot 121, and the mounting slot 121 located on the side of the target mounting slot 121 away from the first fixing plate 11 is used to insert the peripheral component interconnection transmission device 100. Therefore, after the peripheral component interconnection transmission device 100 is inserted into a mounting slot 121, the peripheral component interconnection transmission device 100 and the clearance hole 111 are separated by the fireproof baffle 20, thereby preventing heat from being transferred to the peripheral component interconnection transmission device 100 through the clearance hole 111 and preventing the peripheral component interconnection transmission device 100 from being ignited. That is, in this embodiment of the application, by setting multiple mounting slots 121 on the second fixing plate 12, inserting fireproof baffles 20 into the target mounting slot 121, and inserting peripheral component interconnection transmission device 100 into the mounting slot 121 on the side of the target mounting slot 121 away from the first fixing plate 11, the peripheral component interconnection transmission device 100 is separated from the avoidance hole 111 by the fireproof baffles 20, so as to avoid the heat from the avoidance hole 111 being transferred to the peripheral component interconnection transmission device 100, which would cause the peripheral component interconnection transmission device 100 to be ignited, thereby reducing the safety hazard.
[0064] This application provides a server, which includes a housing, a peripheral component interconnection transmission device 100, and a fireproof enclosure device as described in any of the above embodiments. Both the peripheral component interconnection transmission device 100 and the fireproof enclosure device are located within the housing, and the peripheral component interconnection transmission device 100 is inserted into a mounting slot 121 on a second fixing plate 12.
[0065] In this embodiment, since the first fixing plate 11 is connected to the second fixing plate 12 and there is a first preset angle between the first fixing plate 11 and the second fixing plate 12, the first fixing plate 11 and the second fixing plate 12 are not on the same plane, so the first fixing plate 11 and the second fixing plate 12 can form the mounting body 10. Since the first fixing plate 11 is provided with a clearance hole 111, the fireproof baffle 20 is provided in the clearance hole 111 and the fireproof baffle 20 blocks the clearance hole 111, and the second fixing plate 12 is provided with a plurality of mounting slots 121 at intervals along a preset direction, the fireproof baffle 20 is inserted into the target mounting slot 121, and the mounting slot 121 located on the side of the target mounting slot 121 away from the first fixing plate 11 is used to insert the peripheral component interconnection transmission device 100. Therefore, after the peripheral component interconnection transmission device 100 is inserted into a mounting slot 121, the peripheral component interconnection transmission device 100 and the clearance hole 111 are separated by the fireproof baffle 20, thereby preventing heat from being transferred to the peripheral component interconnection transmission device 100 through the clearance hole 111 and preventing the peripheral component interconnection transmission device 100 from being ignited. That is, in this embodiment of the application, by setting multiple mounting slots 121 on the second fixing plate 12, inserting fireproof baffles 20 into the target mounting slot 121, and inserting peripheral component interconnection transmission device 100 into the mounting slot 121 on the side of the target mounting slot 121 away from the first fixing plate 11, the peripheral component interconnection transmission device 100 is separated from the avoidance hole 111 by the fireproof baffles 20, so as to avoid the heat from the avoidance hole 111 being transferred to the peripheral component interconnection transmission device 100, which would cause the peripheral component interconnection transmission device 100 to be ignited, thereby reducing the safety hazard.
[0066] It should be noted that when the second fixing plate 12 of the fireproof housing device is connected to the positioning rod 30 and the positioning rod 30 is connected to the positioning post 31, when installing the fireproof housing device in the housing, the positioning post 31 can be inserted into the positioning hole at the bottom of the housing first to determine the position of the fireproof housing device, and then the fireproof housing device can be fixed.
[0067] It should be noted that the various embodiments in this specification are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. The same or similar parts between the various embodiments can be referred to each other.
[0068] Although optional embodiments of the present application have been described, those skilled in the art, upon learning the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the optional embodiments as well as all changes and modifications falling within the scope of the embodiments of the present application.
[0069] Finally, it should be noted that in this document, relational terms such as "first" and "second" are used merely to distinguish one entity from another, and do not necessarily require or imply any such actual relationship or order between these entities. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that an article or terminal device that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such an article or terminal device. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the article or terminal device that includes that element.
[0070] The technical solutions provided in this application have been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of this application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the principles and implementation methods of this application. Therefore, the content of this specification should not be construed as a limitation of this application.
Claims
1. A fireproof outer casing device, characterized in that, When used in servers, the fireproof enclosure device includes: a mounting body and a fireproof baffle; The mounting body includes a first fixing plate and a second fixing plate, the first fixing plate and the second fixing plate are connected, and there is a first preset angle between the first fixing plate and the second fixing plate; the first preset angle is an approximately vertical bending structure; The first fixing plate is provided with a clearance hole, the fireproof baffle is disposed in the clearance hole and the fireproof baffle covers the clearance hole, the second fixing plate is provided with a plurality of mounting slots at intervals along a preset direction, the fireproof baffle is inserted into the target mounting slot, and the mounting slot located on the side of the target mounting slot away from the first fixing plate is used to insert peripheral component interconnection and transmission equipment. The fireproof baffle includes a fireproof plate and a connecting plate; The fireproof board is connected to the connecting plate, and there is a second preset angle between the fireproof board and the connecting plate. The connecting plate is detachably connected to the first fixing plate. The fireproof board covers the clearance hole and is inserted into the target mounting groove. The fireproof outer shell device further includes a connector. The first fixing plate is connected to a third fixing plate. The third fixing plate is provided with a first connecting hole. The connecting plate includes a first connecting sub-plate and a second connecting sub-plate. The first connecting sub-plate is connected to the second connecting sub-plate. The first connecting sub-plate and the second connecting sub-plate are misaligned and parallel to each other. The fireproof plate is connected to the second connecting sub-plate, and there is a second preset angle between the fireproof plate and the second connecting sub-plate. The first connecting sub-plate is provided with a second connecting hole. The first connecting sub-plate is in contact with the third fixing plate, and the first connecting hole is directly opposite the second connecting hole. The connector passes through the first connecting hole and the second connecting hole to connect the first connecting sub-plate and the third fixing plate. The second connecting sub-board is provided with a third connecting hole, which is used to fix the peripheral component interconnection and transmission device.
2. The fireproof outer casing device according to claim 1, characterized in that, The second fixing plate is provided with a plurality of connecting holes spaced apart along the preset direction. The connecting holes are used to connect to the adapter plate. The adapter plate is used to connect to the external component interconnection and transmission device. The second fixing plate is provided with a clearance groove that penetrates the second fixing plate along the thickness direction and extends along the preset direction. In the preset direction, the clearance groove has a first side and a second side, and some of the plurality of connection holes are located on the first side of the clearance groove, while other connection holes are located on the second side of the clearance groove.
3. The fireproof outer casing device according to claim 1, characterized in that, One end of the fireproof board is connected to a support plate, and there is a third preset angle between the support plate and the fireproof board. The support plate and the second connecting sub-plate are located on different sides of the fireproof board. The support plate is used to support the peripheral component interconnection and transmission device.
4. The fireproof outer casing device according to claim 1, characterized in that, In a direction perpendicular to the preset direction, limiting bosses are respectively provided on the opposite sides of the clearance hole, and the limiting bosses are located on the surface of the first fixing plate facing the second fixing plate. The limiting bosses are used to limit the fireproof plate when the fireproof plate blocks the clearance hole.
5. The fireproof outer casing device according to claim 1, characterized in that, The fireproof board and the connecting plate are an integral structure.
6. The fireproof outer casing device according to claim 1, characterized in that, The fireproof baffle is provided with multiple heat dissipation holes, and the diameter of the heat dissipation holes is less than or equal to 5 mm.
7. The fireproof outer casing device according to claim 6, characterized in that, The diameter of the heat dissipation hole is less than or equal to 3 mm.
8. The fireproof outer casing device according to claim 1, characterized in that, There are multiple clearance slots, and the multiple clearance slots are distributed at intervals along a direction perpendicular to the preset direction. There are multiple clearance holes, and the multiple clearance holes are distributed at intervals on the second fixing plate. The distribution direction of the multiple clearance holes is parallel to the distribution direction of the multiple clearance slots.
9. The fireproof outer casing device according to claim 8, characterized in that, Along a direction perpendicular to the preset direction, the second fixing plate is provided with multiple rows of mounting slots at intervals, each row of mounting slots includes multiple mounting slots, and the multiple mounting slots in each row are distributed at intervals along the preset direction.
10. The fireproof outer casing device according to claim 1, characterized in that, The second fixing plate is connected to a positioning rod, and the positioning rod is provided with a positioning post. The positioning post is used to position the fireproof outer shell device when the mounting body is installed in the server.
11. A server, characterized in that, The server includes a housing, peripheral component interconnection and transmission equipment, and a fireproof enclosure device as described in any one of claims 1-10; The peripheral component interconnection and transmission device and the fireproof housing device are both located in the housing, and the peripheral component interconnection and transmission device is inserted into one of the mounting slots on the second fixing plate.