A server mounting frame
Patent Information
- Application Number
- HK32026123939
- Authority / Receiving Office
- HK · HK
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2026-05-20
- Filing Date
- 2026-05-26
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2034-05-25
Abstract
Description
Specification 1 A Server Mounting Frame Technical Field This utility model relates to the field of server rack technology, specifically to a server mounting frame. Background Art In data centers and other scenarios, server racks are the core carriers for the centralized installation and management of server equipment. They typically contain multiple stacked server mounting positions to achieve high-density integration and standardized management of server equipment, facilitating subsequent maintenance and operation. Servers generate a large amount of heat during operation. If this heat cannot be dissipated in time, the internal temperature of the server will rise, affecting its operational stability, performance, and even shortening its lifespan. Therefore, heat dissipation design is a key factor in the design of server racks and server mounting positions. In the prior art, to ensure effective heat dissipation, the airflow direction is usually set along the length of the server mounting position. This layout, combined with airflow guidance, allows airflow to flow smoothly through the heat dissipation channels of each server, carrying away the heat generated by the server and thus meeting basic heat dissipation requirements. However, due to limitations in the airflow path along the length, and to avoid adjacent servers blocking each other's airflow channels and affecting heat dissipation efficiency, each server mounting position can only arrange one row of servers along the width. This single-row arrangement results in the inefficient use of the effective load-bearing space of the mounting frame, leading to low overall space utilization of the server rack. The purpose of this utility model is to address the above-mentioned shortcomings in the prior art by providing a server mounting frame. The objective of this utility model is achieved through the following technical solution: a server mounting frame, comprising a frame body; a receiving cavity is provided within the frame body; a partition is provided within the receiving cavity; the partition divides the receiving cavity into a first cavity and a second cavity; a first air inlet and a second air inlet are provided at one end of the frame body along its length; a first air outlet and a second air outlet are provided at the other end of the frame body along its length; the first air inlet and the first air outlet are respectively connected to the first cavity; the second air inlet and the second air outlet are respectively connected to the second cavity; at one end of the frame body along its length, the first cavity houses a first server and the width of the first cavity is greater than the width of the second cavity; at the other end of the frame body along its length, the second cavity houses a second server and the width of the second cavity is greater than the width of the first cavity. This utility model further comprises that the partition includes a first panel, a second panel, and an inclined portion disposed between the first panel and the second panel; the first panel is disposed at one end of the frame body along its length; the second panel is disposed at the other end of the frame body along its length.The present invention is further configured such that: the number of first servers is multiple; multiple first servers are arranged in the first cavity along the width direction; the number of second servers is multiple; multiple second servers are arranged in the second cavity along the width direction. The present invention is further configured such that: a first sealing plate is detachably connected to the top of one end of the frame body along the length direction. The present invention is further configured such that: a first pressure strip is provided at the bottom of the first sealing plate; the first pressure strip includes a first upper pressing part for abutting against the top of the first server and a first side pressing part for abutting against the side wall of the first server. The present invention is further configured such that: a second sealing plate is detachably connected to the top of the other end of the frame body along the length direction; a second pressure strip is provided at the bottom of the second sealing plate; the second pressure strip includes a second upper pressing part for abutting against the top of the second server and a second side pressing part for abutting against the side wall of the second server (33). The present invention is further configured such that: multiple mounting columns are provided at the second air outlet; a mounting groove communicating with the second cavity is formed between the mounting columns; an upper baffle is detachably connected to the top of the mounting groove of the frame body. The present invention is further configured such that a cable management plate is detachably connected to the other end of the frame body along the length direction; the cable management plate has a lower stop strip at the bottom of the mounting groove; the cable management plate has a cable management groove; the upper stop strip and the lower stop strip are both used to abut against the other side wall of the second server. HK 30137246 A Specification 3 The present invention is further configured such that a power distribution unit is detachably connected to the bottom of the frame body; the power distribution unit has a connecting connector. The present invention is further configured such that a telescopic guide rail is provided on the side wall of the frame body along the width direction; the telescopic guide rail extends along the length direction. The present invention is further configured such that the first cavity is provided with a baffle plate at the top of the first server and the second cavity is provided with a baffle plate at one end; the baffle plate is provided with a baffle arm at one end; the baffle arm is used to abut against one side wall of the first server and one side wall of the second server; the other end of the baffle plate is provided with a support arm; the frame body also includes a baffle strip that moves along the height direction within the support arm; the baffle strip includes an upper baffle part and a side baffle part; the upper baffle part is used to abut against the top of the first server and the top of the second server; the side baffle part is used to abut against the other side wall of the first server and the other side wall of the second server. The present invention is further configured such that the support arm is provided with a circular groove and a vertical groove at the top of the circular groove; the circular groove and the vertical groove are connected; the diameter of the circular groove is greater than the width of the vertical groove; the baffle strip is provided with a fixing hole; the radius of the fixing hole is smaller than the radius of the circular groove; an adjusting screw is provided between the support arm and the baffle strip.This utility model is further configured such that the screw includes a head, a shank portion that mates with a fixing hole, and a stepped portion that mates with a circular groove; the stepped portion is located between the head and the shank portion; the radius of the stepped portion is greater than the radius of the shank portion; and the diameter of the shank portion is smaller than the width of the vertical groove. The beneficial effects of this utility model are: This utility model, through a staggered layout of a wide-cavity server mounting and a narrow-cavity airflow, allows the mounting and airflow functions of the first and second cavities to complement each other spatially, effectively utilizing the space of the mounting frame while ensuring that the servers do not obstruct each other during installation, thus guaranteeing the server's heat dissipation effect. The accompanying drawings further illustrate the utility model, but the embodiments in the drawings do not constitute any limitation on this utility model. For those skilled in the art, other drawings can be obtained based on the following drawings without creative effort. HK 30137246 A Specification 4 Figure 1 is a structural schematic diagram of Embodiment 1 of the present utility model; Figure 2 is a structural schematic diagram of Embodiment 1 of the present utility model from another perspective; Figure 3 is a cross-sectional view of Embodiment 1 of the present utility model; Figure 4 is a structural schematic diagram of Embodiment 1 of the present utility model after hiding the first sealing plate and the second sealing plate; Figure 5 is an exploded view of Embodiment 1 of the present utility model; Figure 6 is a structural schematic diagram of Embodiment 2 of the present utility model; Figure 7 is a structural schematic diagram of Embodiment 2 of the present utility model after hiding the first sealing plate and the second sealing plate; Figure 8 is a partial enlarged view of part A in Figure 7; Figure 9 is a cross-sectional view of Embodiment 2 of the present utility model; Figure 10 is a partial enlarged view of part B in Figure 9; Wherein: 1, frame body; 11, accommodating cavity; 12, telescopic guide rail; 2, first cavity; 21, first air inlet; 22, first air outlet; 23, first server; 3, second cavity; 31, second air inlet; 32. Second air outlet; 33. Second server; 4. Partition; 41. First panel; 42. Second panel; 43. Inclined part; 5. First sealing plate; 51. First pressure strip; 52. First upper pressing part; 53. First side pressing part; 6. Second sealing plate; 61. Second pressure strip; 62. Second side pressing part; 63. Second upper pressing part; 7. Mounting column; 71. Mounting groove; 72. Upper baffle; 8. Cable management plate; 81. Cable management groove; 82. Lower baffle; 9. Power distribution unit; 91. Connecting connector; 101. Baffle plate; 1011. Baffle arm; 1012. Support arm; 102. Baffle strip; 1021. Upper baffle; 1022. Side baffle; 1023. Fixing hole; 1031. Circular groove; 1032, vertical groove; 1041, head; 1042, stepped portion; 1043, rod portion. The specific embodiments are further described below.Example 1, as shown in Figures 1 to 5, describes a server mounting frame including a frame body 1; the frame body 1 has a receiving cavity 11; the receiving cavity 11 has a partition 4; the partition 4 divides the receiving cavity 11 into a first cavity 2 and a second cavity 3; one end of the frame body 1 along its length has a first air inlet 21 and a second air inlet 31; the other end of the frame body 1 along its length has a first air outlet 22 and a second air outlet 32; the first air inlet 21 and the first air outlet 22 are respectively connected to the first cavity 2; the second air inlet 31 and the second air outlet 32 are respectively connected to the second cavity 3; at one end of the frame body 1 along its length, the first cavity 2 houses a first server 23, and the width of the first cavity 2 is greater than the width of the second cavity 3; at the other end of the frame body 1 along its length... The second cavity 3 houses the second server 33, and the width of the second cavity 3 is greater than the width of the first cavity 2. Specifically, in this embodiment, the server mounting frame divides the accommodating cavity 11 into two independent cavities, the first cavity 2 and the second cavity 3, by means of a partition 4. A first heat dissipation channel is formed between the first air inlet 21, the first cavity 2, and the first air outlet 22, and a second heat dissipation channel is formed between the second air inlet 31, the second cavity 3, and the second air outlet 32. The first heat dissipation channel and the second heat dissipation channel do not interfere with each other, thereby ensuring that the airflow for both the first server 23 and the second server 33 remains smooth. Furthermore, at one end of the frame body 1 along the length direction, the first server 23 is disposed in the wider first cavity 2, and at the other end of the frame body 1 along the length direction, the second server 33 is disposed in the wider second cavity 3. This arrangement allows the servers to be installed at the wider end of the corresponding cavity, accommodating more servers, while the airflow channel utilizes the narrower end of the corresponding cavity, accelerating airflow. This embodiment, through the staggered layout of wide cavities for server installation and narrow cavities for airflow, allows the installation and airflow functions of the first cavity 2 and the second cavity 3 to complement each other spatially, effectively utilizing the space of the mounting frame while ensuring that the servers do not obstruct each other during installation, thus guaranteeing the server's heat dissipation effect. In this embodiment, the partition 4 of the server mounting frame includes a first panel 41, a second panel 42, and an inclined portion 43 disposed between the first panel 41 and the second panel 42; the first panel 41 is disposed at the other end of the frame body 1 along the length direction; and the second panel 42 is disposed at one end of the frame body 1 along the length direction.Specifically, the above arrangement ensures a more reasonable width misalignment design between the first cavity 2 and the second cavity 3, which not only does not affect the stable installation of the first server 23 and the second server 33, but also guides the heat dissipation airflow smoothly through the first cavity 2 and the second cavity 3, reducing airflow resistance and further improving the heat dissipation effect. In this embodiment, a server mounting frame is provided, wherein there are multiple first servers 23; multiple first servers 23 are arranged along the width direction in the first cavity 2; multiple second servers 33 are arranged along the width direction in the second cavity 3. This embodiment utilizes the width advantage of the first cavity 2 and the second cavity 3 at their corresponding ends to arrange multiple first servers 23 and second servers 33 along the width direction. Relying on independent heat dissipation airflow channels, the heat dissipation channels of the multiple first servers 23 and second servers 33 will not obstruct each other, and airflow of the same temperature can flow evenly through each first server 23 and second server 33. This significantly increases the number of servers that a single mounting frame can support without affecting heat dissipation. In this embodiment of the server mounting frame, a first sealing plate 5 is detachably connected to the top of one end of the frame body 1 along its length direction; the frame body 1 and the first sealing plate 5 can be disassembled and assembled using bolts. This arrangement facilitates the disassembly, assembly, and maintenance of the first servers 23. In this embodiment of the server mounting frame, a first pressure strip 51 is provided on the bottom surface of the first sealing plate 5; the first pressure strip 51 includes a first upper pressing part 52 for abutting against the top of the first server 23 and a first side pressing part 53 for abutting against the side wall of the first server 23. Specifically, after the first sealing plate 5 is installed with the frame body 1, the first upper pressing part 52 can restrict the vertical displacement of the first server 23, and the first side pressing part 53 can restrict the back-and-forth swaying of the first server 23, thereby improving the stability of the first server 23 after installation.This embodiment describes a server mounting frame, wherein a second sealing plate 6 is detachably connected to the top of the other end of the frame body 1 along its length direction; the bottom surface of the second sealing plate 6 is provided with a second pressure strip 61; the second pressure strip 61 includes a second upper pressing part 63 for abutting against the top of the second server 33 and a second side pressing part 62 for abutting against one side wall of the second server 33; wherein the frame body 1 and the second sealing plate 6 can be disassembled and assembled by bolts; the above-mentioned arrangement facilitates the disassembly, assembly and maintenance of the second server 33; after the second sealing plate 6 is installed with the frame body 1, the second side pressing part 62 can restrict the back-and-forth swaying of the second server 33, and the second upper pressing part 63 can restrict the vertical displacement of the second server 33, thereby improving the stability of the second server 33 after installation. In this embodiment, a server mounting frame is provided with multiple mounting posts 7 at the second air outlet 32; mounting grooves 71 communicating with the second cavity 3 are formed between the mounting posts 7; an upper baffle 72 is detachably connected to the top of the mounting groove 71 of the frame body (HK 30137246 A specification 7 1). Specifically, the mounting grooves 71 between the mounting posts 7 are directly connected to the second cavity 3, forming a channel for retrieving and placing the second server 33 at the rear end; when it is necessary to remove or replace the server in the second cavity 3, it is not necessary to remove the second sealing plate 6 at the top, and the second server 33 can be directly pulled out from the rear end through the mounting groove 71. In this embodiment, a server mounting frame is provided with a cable management plate 8 detachably connected to the other end of the frame body 1 along the length direction; the cable management plate 8 is provided with a lower baffle 82 at the bottom of the mounting groove 71; the cable management plate 8 is provided with a cable management groove 81. The lower baffle 82, upper baffle 72, and second side pressing part 62 work together to restrict the back-and-forth swaying of the second server 33. The cable management groove 81 of the cable management plate 8 can classify and organize the connecting cables to avoid tangling. In addition, by setting the lower baffle 82, which works with the upper baffle 72, the second server 33 is confined within the second cavity 3. When it is necessary to remove or replace the server in the second cavity 3, there is no need to remove the top second sealing plate 6. After removing the cable management plate 8 and the upper baffle 72, the second server 33 can be directly pulled out horizontally through the mounting groove 71. In this embodiment, a server mounting frame is provided, and the bottom of the frame body 1 is detachably connected to a power distribution unit 9. The power distribution unit 9 is provided with a connection connector 91.In this embodiment, the power distribution unit 9 is integrated into the bottom of the frame body 1, utilizing the space at the bottom of the frame body 1 without occupying the internal installation space and heat dissipation channel of the frame body 1. The connecting connector 91 provides a centralized power supply interface for multiple first servers 23 and second servers 33, realizing centralized management of power supply lines. In this embodiment, a server mounting frame is provided with a telescopic guide rail 12 on the side wall along the width direction; the telescopic guide rail 12 extends along the length direction. This design allows the frame body 1 to be pulled out of the rack, facilitating the replacement and maintenance of various components. Example 2, as shown in Figures 6 to 10, differs from Example 1 in that it does not require the upper baffle 72, lower baffle 82, first pressure strip 51, and second pressure strip 61. In this example, a server mounting frame is provided with a baffle plate 101 on the top of the first server 23 in the first cavity 2 and on the top of the second server 33 in the second cavity 3. One end of the baffle plate 101 has a baffle arm 1011, which abuts against one side wall of the first server 23 and one side wall of the second server 33. The other end of the baffle plate 101 has a support arm 1012. The frame body 1 also includes a baffle strip 102 that moves along the height direction within the support arm 1012. The baffle strip 102 includes an upper baffle portion 1021 and a side baffle portion 1022. The upper baffle portion 1021 abuts against the top of the first server 23 and the second server 33. The top of the first server 23 abuts against the top of the second server 33; the side blocking part 1022 is used to abut against the other side wall of the first server 23 and the other side wall of the second server 33. Specifically, in the server mounting frame described in this embodiment, when the blocking bar 102 is located at the bottom of the support arm 1012, the upper blocking part 1021 abuts against the top of the first server 23 and the top of the second server 33, thereby restricting the vertical displacement of the first server 23 and the second server 33. The side blocking part 1022 and the blocking arm 1011 abut against the side walls of the first server 23 and the side walls of the second server 33, thereby restricting the front-to-back displacement of the first server 23 and the second server 33. When it is necessary to remove the first server 23 and the second server 33, the blocking bar 102 is moved upward, so that the side blocking part 1022 no longer abuts against the other side wall of the first server 23 and the other side wall of the second server 33. At this time, the first server 23 and the second server 33 can be pulled out horizontally.This embodiment describes a server mounting frame. The support arm 1012 has a through-hole circular groove 1031 and a vertical groove 1032 at the top of the circular groove 1031. The circular groove 1031 and the vertical groove 1032 are connected. The diameter of the circular groove 1031 is greater than the width of the vertical groove 1032. The blocking strip 102 has a fixing hole 1023. The radius of the fixing hole 1023 is smaller than the radius of the circular groove 1031. An adjusting screw is provided between the support arm 1012 and the blocking strip 102. The screw includes a head 1041, a rod portion 1043 that mates with the fixing hole 1023, and a stepped portion 1042 that mates with the circular groove 1031. The stepped portion 1042 is located between the head 1041 and the rod portion 1043. The radius of the stepped portion 1042 is greater than the radius of the rod portion 1043. The diameter of the rod portion 1043 is smaller than the vertical groove 1032. The width of the barrier. Specifically, when the barrier 102 is located at the bottom of the support arm 1012, the upper barrier 1021 abuts against the top of the first server 23 and the top of the second server 33, thereby restricting the vertical displacement of the first server 23 and the second server 33. The side barrier 1022 and the barrier arm 1011 abut against the side walls of the first server 23 and the side walls of the second server 33, thereby restricting the front-to-back displacement of the first server 23 and the second server 33. At this time, the step 1042 passes through the circular groove 1031 and the rod 1043 passes through the fixing hole 1023. Since the width of the vertical groove 1032 is smaller than the diameter of the step 1042, the adjusting screw cannot move upward and the barrier 102 cannot move upward. When it is necessary to remove the first server 23 and the second server 33, the blocking bar 102 needs to be moved upward. At this time, the head 1041 is rotated, and the adjusting screw is moved horizontally, so that the step part 1042 exits from the circular groove 1031, and the rod part 1043 enters the circular groove 1031. The rod part 1043 has sufficient length so that the end of the rod part 1043 remains connected to the fixing hole 1023. Since the diameter of the rod part 1043 is smaller than the width of the vertical groove 1032, the adjusting screw can be moved upward. The adjusting screw drives the blocking bar 102 to move upward, so that the side blocking part 1022 no longer abuts against the other side wall of the first server 23 and the other side wall of the second server 33. At this time, the first server 23 and the second server 33 can be pulled out horizontally.Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit the scope of protection of this utility model. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the essence and scope of the technical solutions of this utility model. HK 30137246 A Claim 1 1. A server mounting frame, characterized in that: it includes a frame body (1); the frame body (1) has a receiving cavity (11); the receiving cavity (11) has a partition (4); the partition (4) divides the receiving cavity (11) into a first cavity (2) and a second cavity (3); one end of the frame body (1) along the length direction has a first air inlet (21) and a second air inlet (31); the other end of the frame body (1) along the length direction has a first air outlet (22) and a second air outlet (32); the first air inlet (21) and the first air outlet (22) are respectively connected to the first cavity (2); the second air inlet (31) and the second air outlet (32) are respectively connected to the second cavity (3); at one end of the frame body (1) along the length direction, the first cavity (2) has a first server (23). Furthermore, the width of the first cavity (2) is greater than the width of the second cavity (3); at the other end of the frame body (1) along the length direction, the second cavity (3) is provided with a second server (33) and the width of the second cavity (3) is greater than the width of the first cavity (2). 2. A server mounting frame according to claim 1, characterized in that: the partition (4) includes a first panel (41), a second panel (42) and an inclined portion (43) disposed between the first panel (41) and the second panel (42); the first panel (41) is disposed at one end of the frame body (1) along the length direction; the second panel (42) is disposed at the other end of the frame body (1) along the length direction. 3. A server mounting frame according to claim 1, characterized in that: the number of the first servers (23) is multiple; multiple first servers (23) are arranged in the first cavity (2) along the width direction; the number of the second servers (33) is multiple; multiple second servers (33) are arranged in the second cavity (3) along the width direction. 4. A server mounting frame according to claim 1, characterized in that: a first sealing plate (5) is detachably connected to the top of one end of the frame body (1) along the length direction; and a second sealing plate (6) is detachably connected to the top of the other end of the frame body (1) along the length direction.5. A server mounting frame according to claim 4, characterized in that: the bottom of the first sealing plate (5) is provided with a first pressure strip (51); the first pressure strip (51) includes a first upper pressing part (52) for abutting against the top of the first server (23) and a first side pressing part (53) for abutting against the side wall of the first server (23). HK 30137246 A Claim 2 6. A server mounting frame according to claim 4, characterized in that: the bottom of the second sealing plate (6) is provided with a second pressure strip (61); the second pressure strip (61) includes a second upper pressing part (63) for abutting against the top of the second server (33) and a second side pressing part (62) for abutting against one side wall of the second server (33); a plurality of mounting posts (7) are provided at the second air outlet (32); a mounting groove (71) communicating with the second cavity (3) is formed between the mounting posts (7); the frame body (1) is detachably connected to an upper baffle (72) at the top of the mounting groove (71); The frame body (1) is detachably connected to a cable management plate (8) at the other end along its length; the cable management plate (8) has a lower stop strip (82) at the bottom of the mounting groove (71); both the upper stop strip (72) and the lower stop strip (82) are used to abut against the other side wall of the second server (33). 7. A server mounting frame according to claim 1, characterized in that: a power distribution unit (9) is detachably connected to the bottom of the frame body (1); the power distribution unit (9) has a connecting connector (91); the frame body (1) has a telescopic guide rail (12) on its side wall along its width; the telescopic guide rail (12) extends along its length. 8. A server mounting frame according to claim 4, characterized in that: the first cavity (2) is provided with a baffle plate (101) on the top of the first server (23) and the second cavity (3) is provided with a baffle plate (101) at one end; the baffle plate (1011) is provided with a baffle arm (1011) for abutting against a side wall of the first server (23) and a side wall of the second server (33); The other end of the baffle plate (101) is provided with a support arm (1012); the frame body (1) also includes a baffle strip (102) that moves along the height direction inside the support arm (1012); the baffle strip (102) includes an upper baffle (1021) and a side baffle (1022); the upper baffle (1021) is used to abut against the top of the first server (23) and the top of the second server (33); the side baffle (1022) is used to abut against the other side wall of the first server (23) and the other side wall of the second server (33).9. A server mounting frame according to claim 8, characterized in that: the support arm (1012) is provided with a circular groove (1031) and a vertical groove (1032) provided at the top of the circular groove (1031); the circular groove (1031) is connected to the vertical groove (1032); the diameter of the circular groove (1031) is greater than the width of the vertical groove (1032); the blocking strip (102) is provided with a fixing hole (1023); the radius of the fixing hole (1023) is smaller than the radius of the circular groove (1031); and an adjusting screw is provided between the support arm (1012) and the blocking strip (102). 10. A server mounting frame according to claim 9, characterized in that: the screw includes a head (1041), a rod portion (1043) that mates with a fixing hole (1023), and a stepped portion (1042) that mates with a circular groove (1031); the stepped portion (1042) is disposed between the head (1041) and the rod portion (1043); the radius of the stepped portion (1042) is greater than the radius of the rod portion (1043); the diameter of the rod portion (1043) is smaller than the width of the vertical groove (1032). HK 30137246 A Instruction Manual Appendix 1 HK 30137246 A Instruction Manual Appendix 2 HK 30137246 A Instruction Manual Appendix 3 HK 30137246 A Instruction Manual Appendix 4 HK 30137246 A Instruction Manual Appendix 4 HK 30137246 A Instruction Manual Appendix 5 HK 30137246 A Instruction Manual Appendix 6 HK 30137246 A Instruction Manual Appendix 6 HK 30137246 A Instruction Manual Appendix 7 HK 30137246 A Instruction Manual Appendix 7 HK 30137246 A Instruction Manual Appendix 8 HK 30137246 A