An immersed liquid-cooled server hoisting structure
By designing an immersion liquid-cooled server hoisting structure and using fixing plates and bolt connections, the problem of needing to modify the server structure in existing technologies was solved, and a stable and reliable hoisting process was achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG YUNCHUANG ZHIDA TECHNOLOGY CO LTD
- Filing Date
- 2025-07-30
- Publication Date
- 2026-06-02
AI Technical Summary
In existing technologies, immersion liquid-cooled servers require structural modifications during installation, which affects the original design.
Design an immersion liquid-cooled server hoisting structure, including a front fixing plate, a rear fixing plate, a left fixing plate, a right fixing plate, and a hoisting plate, which are connected by fixing bolts to form a hoisting structure that does not require modification of the server structure.
It enables hoisting without modifying the server structure, and the hoisting process is stable and reliable with high structural reliability.
Smart Images

Figure CN224313099U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of server lifting equipment technology, and in particular to an immersion liquid-cooled server lifting structure. Background Technology
[0002] Due to the cooling requirements of data centers, immersion liquid cooling, with its highly efficient heat dissipation performance, is gradually replacing traditional air cooling. Current immersion liquid cooling technology involves installing servers in immersion liquid-cooled racks, requiring tools to hoist the servers during installation. Because existing servers are designed for air cooling and lack hoisting structures, applying immersion liquid cooling to these servers necessitates modifications to the original server structure, significantly impacting its structural integrity. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide an immersion liquid-cooled server hoisting structure, which aims to solve the technical problem in the prior art that the original structure of the server needs to be modified before hoisting.
[0004] The technical solution of this utility model is: an immersion liquid-cooled server hoisting structure, including a front fixing plate, a rear fixing plate, a left fixing plate, a right fixing plate, and a hoisting plate. The front fixing plate and the rear fixing plate are respectively overlapped and installed below the front and rear mounting ears on the front and rear sides of the server. The left fixing plate and the right fixing plate are respectively connected between the front fixing plate and the rear fixing plate by fixing bolts. The front fixing plate, the rear fixing plate, the left fixing plate, and the right fixing plate surround and fix the server. The hoisting plate is detachably connected between the front fixing plate and the rear fixing plate. The hoisting plate has a hoisting hole in the middle.
[0005] Furthermore, in this utility model, the front fixing plate and the rear fixing plate have the same structure and are symmetrically distributed front and back. Both the front fixing plate and the rear fixing plate include a vertical plate, side plates on the left and right sides of the vertical plate, and a bottom plate at the bottom of the vertical plate and connected to the side plates on both sides. The vertical plate, the side plates on both sides and the bottom plate surround to form a placement space for placing the hanging ear. The bottom plate is placed against the bottom of the hanging ear.
[0006] Furthermore, in this utility model, the middle part of the vertical plate has an upwardly convex arched structure, and the arched structure is provided with a connecting hole, which is located above the hanging ear.
[0007] Furthermore, in this utility model, each of the side plates has at least one bolt connection hole A, and the bolt connection holes A on the two side plates are respectively located on the left and right sides of the hanging lug.
[0008] Furthermore, the left fixing plate and the right fixing plate in this utility model have the same structure and are symmetrically distributed from left to right. Both the left fixing plate and the right fixing plate include a horizontal plate. The front and rear ends of the horizontal plate are respectively provided with positioning recesses. The positioning recesses at both ends are used to cooperate in positioning and installing the side plate of the front fixing plate and the side plate of the rear fixing plate. The top of the front and rear ends of the horizontal plate are also respectively provided with positioning connecting plates. The positioning connecting plates at both ends correspond one-to-one with the side plate of the front fixing plate and the side plate of the rear fixing plate.
[0009] Furthermore, in this utility model, each of the side plates has two bolt connection holes A distributed vertically, and the front and rear ends of the horizontal plate and each of the positioning connection plates are provided with bolt connection holes B. The two bolt connection holes B at the same end of the horizontal plate correspond one-to-one with the two bolt connection holes A on the corresponding side plate and are fixedly connected by the fixing bolts.
[0010] Furthermore, the hoisting plate of this utility model has an upwardly convex arched structure in the middle, and the hoisting hole is located in the middle of the arched structure. The front and rear ends of the hoisting plate are respectively provided with downwardly recessed positioning grooves. The positioning grooves at both ends correspond one-to-one with the connection holes of the front fixed plate and the rear fixed plate. The front and rear ends of the hoisting plate can be inserted into the connection holes of the front fixed plate and the rear fixed plate respectively, and are engaged with the front fixed plate and the rear fixed plate through the positioning grooves at both ends of the hoisting plate.
[0011] Compared with the prior art, this utility model has the following advantages: This utility model provides an immersion liquid-cooled server hoisting structure, which does not require modification of the original server structure. Only the addition of mounting plates is needed to hoist the server, which has little impact on the server structure. The hoisting structure is mainly composed of a hoisting plate, front and rear mounting plates, left and right mounting plates, and fixing bolts. The overall structure is connected by fixing bolts and can be installed on the server without damage. The weight of the server is applied to the front and rear mounting plates through the hanging ears. The structure is reliable and the hoisting process is stable. Attached Figure Description
[0012] Figure 1 This is a perspective view of the present utility model;
[0013] Figure 2 This is the right view of the present invention;
[0014] Figure 3 This is an exploded view of the present invention;
[0015] Figure 4 for Figure 3 A magnified view of part C in the middle.
[0016] The components are: 1. Front fixing plate; 2. Rear fixing plate; 3. Left fixing plate; 4. Right fixing plate; 5. Lifting plate; 5a. Lifting hole; 5b. Positioning groove; 6. Fixing bolt; 7. Vertical plate; 7a. Connecting hole; 8. Side plate; 8a. Bolt connection hole A; 9. Base plate; 10. Horizontal plate; 11. Positioning recess; 12. Positioning connecting plate; 13. Bolt connection hole B; A. Server; B. Hanging lug. Detailed Implementation
[0017] The specific embodiments of this utility model are described in detail below with reference to the accompanying drawings.
[0018] Example:
[0019] The accompanying drawings illustrate a specific embodiment of the immersion liquid-cooled server hoisting structure of this utility model. Figure 1 , Figure 2 It mainly includes a front fixing plate 1, a rear fixing plate 2, a left fixing plate 3, a right fixing plate 4, and a lifting plate 5. The front fixing plate 1, the rear fixing plate 2, the left fixing plate 3, and the right fixing plate 4 are used to surround and fix the top of the server A. The lifting plate 5 is used to cooperate with the four fixing plates to lift the server A.
[0020] Combination Figure 3 , Figure 4 The front fixing plate 1 and the rear fixing plate 2 are respectively overlapped and installed below the front and rear mounting ears B on the front and rear sides of server A. The front fixing plate 1 and the rear fixing plate 2 have the same structure and are symmetrically distributed front and back.
[0021] Both the front fixing plate 1 and the rear fixing plate 2 include a vertically arranged vertical plate 7. The middle of the vertical plate 7 has an upwardly convex arched structure, and a connecting hole 7a is provided in the middle of the arched structure. The connecting hole 7a is located above the hanging ear B. A side plate 8 is provided on the left and right sides of the vertical plate 7. The side plates 8 are perpendicular to the vertical plate 7. Two bolt connecting holes A 8a are provided on each side plate 8, which are distributed vertically. The bolt connecting holes A 8a on the two side plates 8 are located on the left and right sides of the hanging ear B, respectively. A base plate 9 is provided at the bottom of the vertical plate 7. The base plate 9 is connected to the vertical plate 7 and the two side plates 8. The vertical plate 7, the two side plates 8, and the base plate 9 surround and form a placement space for placing the hanging ear B. The hanging ear B is placed in this placement space, and the bottom of the hanging ear B is placed against the base plate 9.
[0022] The left fixing plate 3 and the right fixing plate 4 have the same structure and are symmetrically distributed. The left fixing plate 3 and the right fixing plate 4 are connected between the front fixing plate 1 and the rear fixing plate 2 by fixing bolts 6 respectively. The front fixing plate 1, the rear fixing plate 2, the left fixing plate 3, and the right fixing plate 4 surround and fix the server A.
[0023] Both the left fixing plate 3 and the right fixing plate 4 include a horizontal plate 10. Positioning recesses 11 are provided at both the front and rear ends of the horizontal plate 10. These positioning recesses 11 are used to position and install the side plate 8 of the front fixing plate 1 and the side plate 8 of the rear fixing plate 2, respectively. Positioning connecting plates 12 are also provided at the top of both the front and rear ends of the horizontal plate 10, corresponding one-to-one with the side plate 8 of the front fixing plate 1 and the side plate 8 of the rear fixing plate 2.
[0024] Bolt connection holes B13 are provided on the front and rear ends of the horizontal plate 10 and on the positioning connection plates 12 at both ends of the horizontal plate 10. The two bolt connection holes B13 at the same end of the horizontal plate 10 correspond one-to-one with the two bolt connection holes A 8a on the corresponding side plate 8 and are fixedly connected by fixing bolts 6.
[0025] The lifting plate 5 is detachably connected between the front fixed plate 1 and the rear fixed plate 2. The middle part of the lifting plate 5 has an upwardly convex arched structure, and a lifting hole 5a is provided in the middle of the arched structure. The front and rear ends of the lifting plate 5 are respectively provided with downwardly recessed positioning grooves 5b. The positioning grooves 5b at both ends correspond one-to-one with the connection holes 7a of the front fixed plate 1 and the rear fixed plate 2. The front and rear ends of the lifting plate 5 can be inserted into the connection holes 7a of the front fixed plate 1 and the rear fixed plate 2 respectively, and are engaged with the front fixed plate 1 and the rear fixed plate 2 through the corresponding positioning grooves 5b at both ends of the lifting plate 5.
[0026] This utility model's immersion liquid-cooled server hoisting structure requires no modification to the original server structure; simply adding mounting plates is sufficient for server hoisting, minimizing impact on the server's structure. The hoisting structure mainly consists of a hoisting plate 5, a front mounting plate 1, a rear mounting plate 2, a left mounting plate 3, a right mounting plate 4, and fixing bolts 6. During installation, the front and rear mounting lugs B of server A are installed on the front mounting plate 1 and the rear mounting plate 2. The left and right mounting plates 3 and 4 clamp the front and rear mounting plates 1 and 2 together using the tightening force of the fixing bolts 6, thus ensuring a secure installation of the entire hoisting structure. Finally, the hoisting plate 5 is engaged between the front and rear mounting plates 1 and 2 via the positioning groove 5b. Using a crane hook inserted into the hoisting hole 5a of the hoisting plate 5, server A can be lifted. The weight of server A is distributed to the front and rear mounting plates 1 and 2 through the mounting lugs B. The structure is reliable, and the hoisting process is stable.
[0027] Of course, the above embodiments are only for illustrating the technical concept and features of this utility model, and their purpose is to enable those skilled in the art to understand the content of this utility model and implement it accordingly. They should not be used to limit the protection scope of this utility model. All modifications made in accordance with the spirit and essence of the main technical solution of this utility model should be covered within the protection scope of this utility model.
Claims
1. A immersion liquid-cooled server mounting structure, characterized in that: The system includes a front fixing plate (1), a rear fixing plate (2), a left fixing plate (3), a right fixing plate (4), and a lifting plate (5). The front fixing plate (1) and the rear fixing plate (2) are respectively installed under the front and rear mounting ears (B) of the server (A). The left fixing plate (3) and the right fixing plate (4) are respectively connected between the front fixing plate (1) and the rear fixing plate (2) by fixing bolts (6). The front fixing plate (1), the rear fixing plate (2), the left fixing plate (3), and the right fixing plate (4) surround and fix the server (A). The lifting plate (5) is detachably connected between the front fixing plate (1) and the rear fixing plate (2). The lifting plate (5) has a lifting hole (5a) in the middle.
2. The immersion liquid-cooled server hoisting structure according to claim 1, characterized in that: The front fixing plate (1) and the rear fixing plate (2) have the same structure and are symmetrically distributed front and back. Both the front fixing plate (1) and the rear fixing plate (2) include a vertical plate (7), side plates (8) on the left and right sides of the vertical plate (7), and a bottom plate (9) at the bottom of the vertical plate (7) and connected to the side plates (8) on both sides. The vertical plate (7), the side plates (8) on both sides and the bottom plate (9) surround and form a placement space for placing the hanging ear (B). The bottom plate (9) is placed against the bottom of the hanging ear (B).
3. The immersion liquid-cooled server hoisting structure according to claim 2, characterized in that: The middle part of the vertical plate (7) has an upward-convex arched structure, and the arched structure is provided with a connecting hole (7a), which is located above the hanging ear (B).
4. The immersion liquid-cooled server hoisting structure according to claim 2, characterized in that: Each of the side plates (8) has at least one bolt connection hole A (8a), and the bolt connection holes A (8a) on the two side plates (8) are located on the left and right sides of the lug (B) respectively.
5. The immersion liquid-cooled server hoisting structure according to claim 4, characterized in that: The left fixing plate (3) and the right fixing plate (4) have the same structure and are symmetrically distributed. Both the left fixing plate (3) and the right fixing plate (4) include a horizontal plate (10). The front and rear ends of the horizontal plate (10) are respectively provided with positioning recesses (11). The positioning recesses (11) at both ends are respectively used to cooperate in positioning and installing the side plate (8) of the front fixing plate (1) and the side plate (8) of the rear fixing plate (2). The top of the front and rear ends of the horizontal plate (10) is also provided with positioning connecting plates (12). The positioning connecting plates (12) at both ends correspond one-to-one with the side plate (8) of the front fixing plate (1) and the side plate (8) of the rear fixing plate (2).
6. The immersion liquid-cooled server hoisting structure according to claim 5, characterized in that: Each side plate (8) has two bolt connection holes A (8a) distributed vertically. The front and rear ends of the horizontal plate (10) and each positioning connection plate (12) are provided with bolt connection holes B (13). The two bolt connection holes B (13) at the same end of the horizontal plate (10) correspond one-to-one with the two bolt connection holes A (8a) on the corresponding side plate (8) and are fixedly connected by the fixing bolts (6).
7. The immersion liquid-cooled server hoisting structure according to claim 3, characterized in that: The middle part of the lifting plate (5) is an upwardly convex arch structure. The lifting hole (5a) is located in the middle of the arch structure. The front and rear ends of the lifting plate (5) are respectively provided with downwardly recessed positioning grooves (5b). The positioning grooves (5b) at both ends correspond one-to-one with the connection holes (7a) of the front fixing plate (1) and the connection holes (7a) of the rear fixing plate (2). The front and rear ends of the lifting plate (5) can be inserted into the connection holes (7a) of the front fixing plate (1) and the rear fixing plate (2) respectively, and are engaged with the front fixing plate (1) and the rear fixing plate (2) through the positioning grooves (5b) at both ends of the lifting plate (5).