Liquid separation type water cooling case easy to disassemble and assemble
By decomposing the chassis into a detachable structure and adopting a two-point lock hidden installation, the problem of the liquid-discharged water-cooled chassis that needs to be scrapped when the water distributor is changed is solved, and the cost of parts replacement and maintenance is reduced.
Patent Information
- Application Number
- CN202421993656.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-16
AI Technical Summary
The existing liquid-cooled water-cooled chassis must be scrapped when the water distributor is changed or adjusted. The liquid-cooled connector is not easy to be equipped with a water distributor and must be equipped with a specific adapter.
The chassis is broken down into independent left side plate, top plate, right side plate and bottom plate, and adopts a removable structure connected by screws. The water distributor is fixed by connecting arms and side plates, adopts a two-point locking structure, and a notch and bump are set on the right side plate to achieve hidden installation.
It realizes the convenience of individual replacement and maintenance of chassis parts, reduces maintenance costs, and avoids interference in the overall shape of the chassis through hidden installation.
Smart Images

Figure CN223092368U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of chassis, and particularly relates to a detachable liquid separation type water-cooled chassis. Background Art
[0002] In common liquid separation type water-cooled chassis, the liquid separation device is as shown in Figure 6 The liquid separation device adopts an integral design with the front support plate of the back panel, and is used for installing and supporting the back panel. It is welded to the chassis frame by vacuum electron beam welding, as shown in Figure 7 When the water divider is changed or adjusted, the whole chassis frame needs to be scrapped. It is not easy to assemble the liquid cooling connector on the water divider, and a specific adapter needs to be equipped. Content of the Utility Model
[0003] Aiming at the problems that when the water divider in the prior art is changed or adjusted, the whole chassis frame needs to be scrapped, it is not easy to assemble the liquid cooling connector on the water divider, and a specific adapter needs to be equipped, the utility model provides a detachable liquid separation type water-cooled chassis, and the specific technical solutions are as follows:
[0004] The detachable liquid separation type water-cooled chassis includes a chassis and a water divider installed on the chassis. The chassis includes a left side plate and a right side plate which are oppositely arranged, as well as a top plate and a bottom plate. The left side plate, the top plate, the right side plate and the bottom plate are connected end to end in clockwise order to form a closed structure. A notch corresponding to the water divider is opened on the right side plate. In the installation state, the water divider is snapped into the notch.
[0005] As a further technical solution of the utility model, both sides of the top plate and the bottom plate facing each other have equally spaced convex strips, and adjacent two convex strips form a slideway for inserting modules.
[0006] As a further technical solution of the utility model, there are two groups of water dividers, which are distributed on the upper and lower sides of the chassis.
[0007] As a further technical solution of the utility model, the water divider has an "L" - shaped structure, including a connecting arm one and a connecting arm two which are vertically connected. A first screw hole is opened at the free end of the connecting arm one, and a first positioning hole is opened in the left side plate along the thickness direction. In the installation state, the first positioning hole is aligned with the first screw hole.
[0008] As a further technical solution of the utility model, the connecting arm two is close to the outer side wall of the right side plate. A second screw hole is opened on the end face of the connecting arm two facing the right side plate, and a second positioning hole is opened in the right side plate along the thickness direction. In the installation state, the second positioning hole is aligned with the second screw hole.
[0009] As a further technical solution of the present utility model, a channel corresponding to its trajectory is provided inside the water separator. One end of the channel extends and penetrates through the connecting arm two to form an interface. A plurality of water distribution ports are equidistantly arranged along the inner side of the connecting arm one along its trajectory, and each water distribution port communicates with the channel.
[0010] As a further technical solution of the present utility model, a convex block is provided at the notch of the right side plate, and a concave notch corresponding to the convex block is provided on the water separator. In the installed state, the convex block is snapped into the concave notch.
[0011] The beneficial effects of the present utility model are as follows:
[0012] (1) In this application, the integrated chassis structure is decomposed into independent left side plate, top plate, right side plate, and bottom plate. The overall chassis is a detachable structure locked by screws. When a certain independent part is damaged, the damaged part can be replaced separately to reduce costs.
[0013] (2) In this application, through the fixation of the connecting arm two and the right side plate, and the cooperation with the fixation of the connecting arm one and the left side plate, a two-point locking structure is adopted. Moreover, the water separator is received between the left side plate and the right side plate to reinforce the overall chassis, and the water separator is hidden in the notch after installation to avoid interfering with the overall shape of the chassis. Description of the Drawings
[0014] 100, chassis; 110, left side plate; 111, positioning hole one; 120, top plate; 130, right side plate; 131, positioning hole two; 132, notch; 133, convex block; 140, bottom plate; 150, rib; 200, water separator; 210, connecting arm one; 211, screw hole one; 212, water distribution port; 220, connecting arm two; 221, screw hole two; 230, interface; 240, concave notch.
[0015] Legend Explanation:
[0016] Figure 1 Shows the overall structural schematic diagram of the easily disassembled and assembled liquid separation type water-cooled chassis;
[0017] Figure 2 Shows the exploded structural schematic diagram of the easily disassembled and assembled liquid separation type water-cooled chassis;
[0018] Figure 3 Shows the structural schematic diagram of the left side plate;
[0019] Figure 4 Shows the structural schematic diagram of the right side plate;
[0020] Figure 5 Shows the structural schematic diagram of the water separator;
[0021] Figure 6Shows a schematic structural diagram of a chassis in the prior art;
[0022] Figure 7 Shows a schematic structural diagram of a water distributor in the prior art. Detailed implementation manners
[0023] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions of the present utility model will be clearly and completely described below in conjunction with the embodiments.
[0024] Aiming at the technical problems in the prior art that when the water distributor is changed or adjusted, the entire chassis frame needs to be scrapped, the liquid cooling connector is not easy to be assembled on the water distributor, and a specific adapter needs to be equipped; this application changes the traditional integrated design, changes 100 to an assembled structure, and each part is connected by screws, and a certain part can be replaced separately, which is beneficial to the convenience during disassembly and the reduction of maintenance costs, and extends the input end of the inner channel of the water distributor to the outside of 100, which is beneficial to the insertion of the input end.
[0025] Figure 1 Shows a schematic overall structure diagram of an easily disassembled and assembled liquid-separating water-cooled chassis; Figure 2 Shows an exploded structure diagram of an easily disassembled and assembled liquid-separating water-cooled chassis; Figure 1 And Figure 2 In [reference numeral not provided], the easily disassembled and assembled liquid-separating water-cooled chassis includes a chassis 100 and a water distributor 200 installed on the chassis 100. The chassis 100 includes a left side plate 110 and a right side plate 130 arranged oppositely, as well as a top plate 120 and a bottom plate 140. The left side plate 110, the top plate 120, the right side plate 130, and the bottom plate 140 are connected end to end in a clockwise direction to form a closed structure; the integrated chassis 100 is decomposed into independent left side plate 110, top plate 120, right side plate 130, and bottom plate 140, and the left side plate 110, top plate 120, right side plate 130, and bottom plate 140 are connected end to end by screws to form a new chassis 100. That is to say, the whole chassis 100 is a detachable structure locked by screws. When a certain independent part is damaged, the damaged part can be replaced separately to reduce costs; both sides of the top plate 120 and the bottom plate 140 facing each other have equally spaced convex strips 150, and adjacent two convex strips 150 form a slideway for inserting modules; in actual use, the chassis 100 is a box for storing modules, and the slideway formed by the convex strips 150 can guide the modules and limit the modules that slide in to ensure the stability of the modules themselves; there are two groups of water distributors 200, which are distributed on the upper and lower sides of the chassis 100; one of the two water distributors 200 is used as the input end, and the other is used as the output end. Water flows in from the input end, flows through the modules in the chassis 100 and absorbs heat, and then flows out from the output end to achieve heat absorption.
[0026] Figure 3The structural schematic diagram of the left side plate 110 is shown; Figure 4 The structural schematic diagram of the right side plate 130 is shown; Figure 5 The structural schematic diagram of the water distributor 200 is shown; Figures 3 - 5 In this case, the water distributor 200 has an "L" - shaped structure, including a connecting arm one 210 and a connecting arm two 220 which are vertically connected. A first screw hole 211 is opened at the free end of the connecting arm one 210, and a first positioning hole 111 is opened in the left side plate 110 along the thickness direction. In the installation state, the first positioning hole 111 is aligned with the first screw hole 211. During installation, the water distributor 200 is moved so that the first screw hole 211 is aligned with the first positioning hole 111, and then a screw is passed through the first positioning hole 111 and screwed into the first screw hole 211 to complete the locking of the position of the water distributor 200. The connecting arm two 220 is closely attached to the outer side wall of the right side plate 130. A second screw hole 221 is opened on the end surface of the connecting arm two 220 facing the right side plate 130, and a second positioning hole 131 is opened in the right side plate 130 along the thickness direction. In the installation state, the second positioning hole 131 is aligned with the second screw hole 221. During installation, it is penetrated from the inside to the outside through the second positioning hole 131 and screwed into the connecting arm two 220. Through the fixation of the connecting arm two 220 and the right side plate 130, combined with the fixation of the connecting arm one 210 and the left side plate 110, a two - point locking structure is adopted, and the water distributor 200 is received between the left side plate 110 and the right side plate 130 to reinforce the whole chassis 100. There is a channel corresponding to its trajectory inside the water distributor 200. One end of the channel extends and penetrates through the connecting arm two 220 to form an interface 230. A plurality of groups of water distribution ports 212 are equidistantly opened along the trajectory on the inner side of the connecting arm one 210, and each water distribution port 212 communicates with the channel. The interface 230 can be used as either an input port or an output port, generally connected to an external pipeline, and the multiple groups of water distribution ports 212 can cooperate with the cooling pipelines laid around the module to achieve unidirectional flow and change the serpentine flow mode. A notch 132 corresponding to the water distributor 200 is opened on the right side plate 130. In the installation state, the water distributor 200 is snapped into the notch 132. The structure of the water distributor 200 is hidden by the setting of the notch 132 to avoid the overall protrusion of the water distributor 200. There is a convex block 133 at the notch 132 of the right side plate 130, and there is a concave notch 240 corresponding to the convex block 133 on the water distributor 200. In the installation state, the convex block 133 is snapped into the concave notch 240. The cooperation between the concave notch 240 and the convex block 133 can realize the positioning of the water distributor 200 during installation.
[0027] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it.
Claims
1. An easily disassembled and separated liquid-cooled computer case, characterized in that, It includes a chassis (100) and a water distributor (200) installed on the chassis (100). The chassis (100) includes a left side plate (110) and a right side plate (130) which are oppositely arranged, as well as a top plate (120) and a bottom plate (140). The left side plate (110), the top plate (120), the right side plate (130) and the bottom plate (140) are connected end to end in a clockwise direction to form a closed structure. A notch (132) corresponding to the water distributor (200) is formed on the right side plate (130). In the installation state, the water distributor (200) is snapped into the notch (132).
2. The detachable liquid separation type water-cooled computer case according to claim 1, wherein: On the sides of the top plate (120) and the bottom plate (140) facing each other, there are equally spaced ribs (150). Two adjacent ribs (150) form a slideway for the module to be inserted.
3. The detachable liquid-separating water-cooled computer case according to claim 2, wherein There are two sets of the water distributors (200), which are distributed on the upper and lower sides of the chassis (100).
4. The detachable liquid separation type water-cooled computer case according to claim 3, wherein: The water distributor (200) is in an "L" - shaped structure, including a connecting arm one (210) and a connecting arm two (220) which are vertically connected. A first screw hole (211) is formed at the free end of the connecting arm one (210). A first positioning hole (111) is formed on the left side plate (110) along the thickness direction. In the installation state, the first positioning hole (111) is aligned with the first screw hole (211).
5. The detachable liquid-separating water-cooled computer case according to claim 4, wherein: The connecting arm two (220) is closely attached to the outer wall of the right side plate (130). A second screw hole (221) is formed on the end face of the connecting arm two (220) facing the right side plate (130). A second positioning hole (131) is formed on the right side plate (130) along the thickness direction. In the installation state, the second positioning hole (131) is aligned with the second screw hole (221).
6. The detachable liquid-separating water-cooled computer case according to claim 5, wherein: There is a channel corresponding to its trajectory inside the water distributor (200). One end of the channel extends and penetrates through the connecting arm two (220) to form an interface (230). A number of sets of water outlets (212) are equally spaced along the trajectory on the inner side of the connecting arm one (210). Each water outlet (212) is communicated with the channel.
7. The detachable liquid-separating water-cooled computer case according to claim 6, wherein: There is a convex block (133) at the notch (132) of the right side plate (130). There is a notch (240) corresponding to the convex block (133) on the water distributor (200). In the installation state, the convex block (133) is snapped into the notch (240).