Universal liquid cooling module disassembling and assembling tool
By designing a universal liquid cooling module assembly and disassembly fixture with movable brackets and fasteners, the problem of multiple fixture types in servers with different configurations was solved, thereby improving the assembly and disassembly efficiency and reducing costs for multiple configurations.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-03-31
AI Technical Summary
In the existing technology, different liquid cooling module disassembly and assembly fixtures need to be designed for servers with different configurations, resulting in a large variety and quantity of fixtures, high design costs, and inconvenience in management.
A universal liquid cooling module disassembly and assembly fixture is provided, including a movable bracket and fasteners. The position of the bracket and fasteners can be adjusted to accommodate the mounting holes of different liquid cooling modules. Combined with an adjustable handle, it can accommodate the arrangement spacing of different CPU cold plates, enabling disassembly and assembly of various configurations.
It reduces the types and quantity of tooling, lowers design costs, improves disassembly and assembly efficiency, and facilitates use and management by production line personnel.
Smart Images

Figure CN224059752U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of liquid cooling module disassembly and assembly technology, and in particular to a general-purpose liquid cooling module disassembly and assembly tooling. Background Technology
[0002] With the continuous growth of data and the increasing complexity of computing tasks, the requirements for server products in terms of computing processing and storage are getting higher and higher. However, this also leads to a sharp increase in the power consumption of various components in the server. Traditional air cooling is difficult to meet the heat dissipation requirements, and more and more server products are adopting liquid cooling.
[0003] Depending on the server configuration requirements, liquid cooling modules currently come in various forms, including CPU (Central Processing Unit) cold plates, CPU+DIMM (Dual Inline Memory Module) cold plates, and CPU+DIMM+Hard drive cold plates. During the production and assembly process, mounting holes are pre-drilled on the CPU cold plates for the installation of liquid cooling module mounting and disassembly fixtures. The fixtures are usually installed on two adjacent CPU cold plates to place the liquid cooling module in place at once, avoiding damage to the thermal grease on the bottom or sides of the cold plate, which would affect the contact between the cold plate and the CPU, DIMM, and hard drive, thus not affecting heat dissipation and making it easy to remove the liquid cooling module.
[0004] However, for servers with different configurations, the CPU position varies, which leads to differences in the position of the CPU cold plate and its mounting holes in the liquid cooling module. Therefore, different liquid cooling module disassembly and assembly fixtures need to be designed for different liquid cooling modules in servers with different configurations, resulting in a large variety and quantity of fixtures, high design costs, and the need to select the appropriate fixtures when using them on the production line, which is inconvenient for production line personnel to use and manage.
[0005] Therefore, how to provide a universal liquid cooling module disassembly and assembly fixture that can realize the disassembly and assembly of different liquid cooling modules is a problem that needs to be solved by those skilled in the art. Utility Model Content
[0006] The purpose of this utility model embodiment is to provide a universal liquid cooling module disassembly and assembly fixture, which can solve the problem of needing to design different disassembly and assembly fixtures for different liquid cooling modules.
[0007] To solve the above-mentioned technical problems, this utility model provides a universal liquid cooling module disassembly and assembly fixture, including a handle, mounting frames on both sides of the handle along its length, and open ends at both ends of the mounting frames along their height. Several brackets are detachably provided inside the mounting frames, the brackets are movable along the length of the handle, and several fasteners are detachably inserted into the brackets. The fasteners are movable along the length of the handle and along the height of the mounting frames.
[0008] On the other hand, the mounting frame is provided with a plurality of slide rails extending along the length of the handle, and the plurality of slide rails are respectively located on opposite sides of the mounting frame. The plurality of slide rails on the same side are spaced apart along the height direction of the mounting frame, and the plurality of slide rails on different sides are symmetrically arranged in pairs. The bracket is detachably connected between the two symmetrical slide rails, and the bracket slides in cooperation with the slide rail.
[0009] On the other hand, several slide rails on the same side are evenly spaced along the height direction of the mounting frame on the bottom side of the mounting frame.
[0010] On the other hand, the side of the mounting frame facing away from the handle is an open side, and the end of the slide rail adjacent to the open side is a flared open end, and a plug can be detachably installed between the open ends of the two symmetrical slide rails.
[0011] On the other hand, the bracket is provided with an elongated hole extending along the length direction perpendicular to the handle, the head size of the fastener is larger than the width of the elongated hole, the fastening part size of the fastener is smaller than the width of the elongated hole, and the fastening part is inserted into the elongated hole.
[0012] On the other hand, the handle includes an outer body and an inner body. The outer body has a telescopic cavity inside, and the inner body is embedded in the telescopic cavity and slides in cooperation with the telescopic cavity. The inner body and the outer body are detachably connected by a connector.
[0013] On the other hand, the side wall of the outer body is provided with a plurality of slots that are all connected to the telescopic cavity along its length direction, and the side wall of the inner body at one end opposite to the outer body is provided with a groove.
[0014] The connector includes a button bracket, a spring, and a locking block. The button bracket is embedded in the groove, and one end of the button bracket is connected to the bottom of the groove through the spring. The other end of the button bracket is provided with a locking block that is adapted to engage with any of the locking holes.
[0015] On the other hand, the outer body includes a main board with a U-shaped cross-section and two flat plates, which are symmetrically arranged on the two inner sides of the opening end of the main board to form the telescopic cavity.
[0016] On the other hand, both the outer body and the inner body have a fixing plate integrally provided at opposite ends, and the fixing plate is detachably connected to one side of the mounting frame.
[0017] On the other hand, both the outer body and the inner body are provided with through holes at positions adjacent to their respective corresponding fixing plates.
[0018] As can be seen from the above technical solution, when installing the liquid cooling module, the operator can hold the handle and first place the fixture on the liquid cooling module, aligning the handle with a row of CPU cold plates. This allows the two mounting frames to be arranged along the arrangement direction of the row of CPU cold plates. The brackets within each mounting frame are moved along the length of the handle to align with a row of mounting holes on a CPU cold plate. Then, the fasteners on the brackets are moved one by one along the length perpendicular to the handle to align with the respective mounting holes in the row of mounting holes, thus installing the fixture on the liquid cooling module. The operator then uses the handle to push the liquid cooling module into the chassis. After the liquid cooling module is in place, the fasteners are loosened to remove the fixture. Similarly, when disassembling the liquid cooling module, the fixture must be installed on the liquid cooling module. After the liquid cooling module is removed from the chassis, the fasteners are loosened to remove the fixture. It should be noted that during the disassembly and assembly of liquid cooling modules, the tooling can be adjusted by moving the brackets and fasteners to align and lock them onto the mounting holes of the CPU cold plates, taking into account the differences in the number, spacing, and position of a group of CPU cold plates in different liquid cooling modules.
[0019] Therefore, the beneficial effect of this utility model is that the tooling fixing position can be adjusted to realize the assembly and disassembly of different liquid cooling modules, thereby reducing the types and quantities of tooling, reducing design costs, and facilitating use and management by production line personnel. Attached Figure Description
[0020] To more clearly illustrate the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0021] Figure 1 A schematic diagram of the structure of a general-purpose liquid cooling module disassembly and assembly fixture provided in this embodiment of the utility model;
[0022] Figure 2 for Figure 1 A magnified view of a section at point A in the middle;
[0023] Figure 3 for Figure 1 Exploded view of the general-purpose liquid cooling module assembly / disassembly fixture shown;
[0024] Figure 4 for Figure 1 The diagram shows the general-purpose liquid cooling module assembly and disassembly tooling, as well as the assembly diagram of the liquid cooling module.
[0025] Figure label:
[0026] 1-Handle; 1-1-Outer body; 1-2-Inner body; 2-Mounting frame; 3-Bracket; 4-Fastener; 5-Slide rail; 6-End plug; 7-Elongated hole; 8-Snap-hole; 9-Groove; 10-Button bracket; 11-Spring; 12-Snap-block; 13-Fixing plate; 14-Through hole; 15-Screw assembly; 16-Guide post; 17-Liquid cooling module; 18-CPU cold plate; 19-Spring screw. Detailed Implementation
[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0028] The terms "comprising" and "having," and any variations thereof, in the specification and accompanying drawings of this utility model are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or apparatus that includes a series of steps or units is not limited to the steps or units listed, but may include steps or units not listed.
[0029] To enable those skilled in the art to better understand the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0030] Next, we will describe in detail a general-purpose liquid cooling module disassembly and assembly tooling provided in the embodiments of this utility model. Figure 1 This is a schematic diagram of the structure of a general-purpose liquid cooling module disassembly and assembly tool provided in an embodiment of the present utility model. The general-purpose liquid cooling module disassembly and assembly tool includes a handle 1. There are mounting frames 2 on both sides of the handle 1 along its length direction. Both ends of the mounting frames 2 in the height direction are open ends. Several brackets 3 are detachably provided inside the mounting frames 2. The brackets 3 are movable along the length direction of the handle 1. Several fasteners 4 are detachably inserted into the brackets 3. The fasteners 4 are movable along the length direction perpendicular to the handle 1 and along the height direction of the mounting frames 2.
[0031] It should be noted that servers generate a lot of heat when processing and storing data, especially the CPU processor. Therefore, the liquid cooling module 17 in current liquid-cooled servers all have a CPU cold plate 18. The fixture is installed on the CPU cold plate 18, which can be used to install and remove different liquid cooling modules 17. Moreover, high-performance servers usually have two or more CPU processors, and the corresponding liquid cooling module 17 usually has two or more CPU cold plates 18, and each CPU cold plate 18 is pre-drilled with mounting holes during production.
[0032] Handle 1 can be made of aluminum alloy, which has high structural strength. Even if handle 1 is short, it can still stably support the mounting frames 2 on both sides. Of course, handle 1 can also be made of other high-strength materials, and the type is not limited. It should be noted that the length of handle 1 does not exceed the minimum arrangement spacing of a group of CPU cold plates 18 (this spacing can be set according to the current liquid-cooled server production specifications).
[0033] Both the top and bottom of the mounting frame 2 are open. The top opening allows the tool or operator's hand to pass through and reach into the mounting frame 2, while the bottom opening allows the fastener 4 to pass through and be locked into the mounting hole on the CPU cold plate 18.
[0034] Understandably, the number and location of mounting holes on the CPU cold plate 18 will vary depending on the different liquid cooling modules 17. For example, if only one mounting hole is reserved on the CPU cold plate 18, only one bracket 3 and fastener 4 need to be set in the mounting frame 2; if two mounting holes are reserved in a row on the CPU cold plate 18, two brackets 3 and one fastener 4 need to be set in the mounting frame 2; if two mounting holes are reserved in a row on the CPU cold plate 18, one bracket 3 and two fasteners 4 need to be set in the mounting frame 2. Therefore, several brackets 3 can be detachably installed in the mounting frame 2, and several fasteners 4 can be detachably inserted into the brackets 3, so that the fixture can be locked onto CPU cold plates 18 of different specifications.
[0035] The bracket 3 is movable along the length of the handle 1, and the fasteners 4 are movable on the bracket 3 along the length perpendicular to the handle 1. Thus, after aligning the handle 1 with a row of CPU cold plates 18 and arranging the two mounting frames 2 along the arrangement direction of the row of CPU cold plates 18 (at least two CPU cold plates 18), the bracket 3 can be moved to align with a row of mounting holes on one of the CPU cold plates 18. Then, each fastener 4 on the bracket 3 is moved one by one to align with each mounting hole in that row, achieving a corresponding fixed connection between the two mounting frames 2 and the two CPU cold plates 18. In other words, the fixture is installed on the liquid cooling module 17. Figure 4As shown. It should be noted that the standard for aligning handle 1 with a row of CPU cold plates 18 is to align handle 1 with a row of mounting holes on the CPU cold plate 18, even if the length direction of handle 1 is the same as the arrangement direction of the row of mounting holes.
[0036] In addition, the fastener 4 can also be moved along the height direction of the mounting frame 2 and mounted on the bracket 3. In this way, the liquid cooling module 17 can be installed by moving the fastener 4 down into the mounting hole, and the liquid cooling module 17 can be removed by moving the fastener 4 up out of the mounting hole.
[0037] The mounting frame 2 can adopt a long frame structure. On the one hand, the frame structure has strong load-bearing capacity and is lightweight, which is conducive to improving the overall load-bearing capacity of the tooling, thereby improving the safety and reliability of the tooling for disassembling and assembling the liquid cooling module 17. On the other hand, it increases the travel of the bracket 3 inside the mounting frame 2, so that the tooling can be better locked on the liquid cooling module 17 with different CPU cold plate 18 arrangement spacing (i.e. different mounting hole spacing).
[0038] As described in the above embodiments, during the disassembly and assembly of the liquid cooling module 17, the tooling can be aligned and locked onto the mounting holes of the CPU cold plates 18 by moving and adjusting the positions of the bracket 3 and the fastener 4 to achieve the disassembly and assembly of different liquid cooling modules 17, thereby reducing the types and quantities of tooling, lowering design costs, and facilitating use and management by production line personnel.
[0039] Considering the specific arrangement of bracket 3 within mounting frame 2, please refer to the following based on the above embodiment: Figure 1 and Figure 3 The mounting frame 2 is provided with several slide rails 5 extending along the length of the handle 1, and the slide rails 5 are located on opposite sides of the mounting frame 2. The slide rails 5 on the same side are spaced apart along the height of the mounting frame 2, and the slide rails 5 on different sides are symmetrically arranged in pairs. Several brackets 3 are detachably and slidably connected between the two symmetrical slide rails 5.
[0040] It should be noted that the left and right directions described below refer to the length direction of handle 1, and the front and back directions refer to the length direction perpendicular to handle 1.
[0041] Specifically, the front and rear inner walls of the mounting frame 2 are each provided with several slide rails 5 extending in the left-right direction. The slide rails 5 on the same side are spaced apart along the height direction of the mounting frame 2, while the slide rails 5 on different sides are symmetrically arranged in pairs. In other words, the mounting frame 2 has several sets of slide rails 5 along its height direction, with each set having two slide rails of the same height. This allows the bracket 3 to slide on any set of slide rails 5, and the bracket 3 can be adjusted to a suitable height, enabling the fasteners 4 to better secure the CPU cold plates 18 at different heights, thereby improving the applicability of the tooling.
[0042] Furthermore, several slide rails 5 on the same side are evenly arranged along the height direction of the mounting frame 2 on the bottom side of the mounting frame 2 to avoid the fasteners 4 on the bracket 3 being too far from the mounting holes on the CPU cold plate 18, thus affecting the stable connection between the two.
[0043] To facilitate the assembly and disassembly of bracket 3, please refer to the following based on the above embodiment: Figure 1 and Figure 2 The side of the mounting frame 2 facing away from the handle 1 is an open side, allowing the bracket 3 to enter the mounting frame 2 through the open side. The end of the slide rail 5 adjacent to the open side is a flared end, meaning the opening of the slide rail 5 gradually widens, guiding the bracket 3 to slide easily and smoothly into and out of the slide rail 5, reducing the precision requirements for assembly and disassembly, and facilitating the assembly and disassembly of the bracket 3. Furthermore, a plug 6 is provided between the open ends of the two symmetrical slide rails 5. The plug 6 is used to seal the bracket 3 to prevent it from slipping. The two ends of the plug 6 in the front-to-back direction engage with the open ends of the two symmetrical slide rails 5, allowing the plug 6 to be detachably installed and preventing it from obstructing the assembly and disassembly of the bracket 3.
[0044] Considering the specific arrangement of fastener 4 on bracket 3, please refer to the above embodiment for further details. Figure 3 The bracket 3 is provided with an elongated hole 7 extending along the length of the vertical handle 1. In this way, after the bracket 3 is moved to align with a row of mounting holes, the position of the fastener 4 in the elongated hole 7 can be adjusted to ensure that the fastener 4 is aligned with the mounting hole.
[0045] Furthermore, the head of the fastener 4 is larger than the width of the elongated hole 7, while the fastening part of the fastener 4 is smaller than the width of the elongated hole 7, and the fastening part is inserted into the elongated hole 7 to connect to the mounting hole. This ensures that the fastener 4 does not fall off the bracket 3, and when installing the liquid cooling module 17, there is no need to assemble the fastener 4 again, thus improving the installation efficiency of the liquid cooling module 17.
[0046] In one specific embodiment, the fastener 4 may be a non-loosening screw that is not easy to loosen, has high strength and is corrosion resistant. Of course, the fastener 4 may be other types of fasteners 4, and the type is not unique.
[0047] Based on any of the above embodiments, please refer to Figure 3 The handle 1 includes an outer body 1-1 and an inner body 1-2. The outer body 1-1 has a telescopic cavity inside, and the inner body 1-2 is embedded in the telescopic cavity and slides in cooperation with the telescopic cavity. The inner body 1-2 and the outer body 1-1 are detachably connected by a connector.
[0048] As can be seen from the above structure, by removing the connector, the inner body 1-2 can be pulled to a certain position. Then, by installing the connector, the inner body 1-2 can be fixedly connected to the outer body 1-1, and the length of the handle 1 can be adjusted. It should be noted that the adjustable telescopic handle 1 has the following advantages: On the one hand, it can further adjust the fixed position of the tooling, so that the tooling has a wider adjustment stroke to suit the installation of larger mounting hole spacing (i.e., the CPU cold plate 18 spacing). That is to say, if adjusting only the bracket 3 cannot align with the mounting hole on the cold plate, the length of the handle 1 can be adjusted to match and align the fastener 4 on the bracket 3 with the mounting hole on the cold plate for locking. On the other hand, it can reduce the length of the mounting frame 2. Although the travel of the bracket 3 will be reduced, the travel of the bracket 3 can be compensated by adjusting the length of the handle 1, so that the tooling can be reduced to a smaller volume when stored, avoiding space waste.
[0049] Considering the specific configuration of the connectors, please refer to the following based on the above embodiments: Figure 3 The outer body 1-1 has a plurality of locking holes 8 at intervals along its length direction, each communicating with the telescopic cavity. The inner body 1-2, facing the outer body 1-1, has a groove 9 on its side wall. The connecting component includes a button bracket 10, a spring 11, and a locking block 12. The button bracket 10 is embedded in the groove 9, and one end of the button bracket 10 is connected to the bottom of the groove 9 through the spring 11. The other end of the button bracket 10 is provided with a locking block 12 that is adapted to engage with any of the locking holes 8.
[0050] As can be seen from the above structure, the inner body 1-2 and the outer body 1-1 are connected as one unit through the engaging locking block 12 and locking hole 8. When it is necessary to adjust the length of the handle 1, the locking block 12 is pressed towards the inside of the outer body 1-1, and the locking block 12 disengages from the locking hole 8, allowing the inner body 1-2 to slide within the outer body 1-1. After the inner body 1-2 is pulled to the appropriate position, the locking block 12 automatically springs back and locks into the locking hole 8, connecting the inner body 1-2 and the outer body 1-1 as one unit, thus completing the adjustment of the handle 1 length. Therefore, compared with conventional bolts, the connecting parts with the above structure are more convenient for adjusting the handle 1 length, saving time and effort.
[0051] In one specific embodiment, a row of locking holes 8 is symmetrically arranged on the two opposite side walls of the outer body 1-1 along its length direction. Correspondingly, connectors are symmetrically arranged on the two opposite side walls of the inner body 1-2 along its length direction. In this way, when it is necessary to adjust the length of the handle 1, the inner body 1-2 and the outer body 1-1 can be easily separated by pinching the locking holes 8 on the two side walls of the outer body 1-1 and pressing them towards the middle, making it easier to adjust the length of the handle 1. Moreover, the use of two symmetrical connectors makes the connection between the inner body 1-2 and the outer body 1-1 more stable, thereby improving the structural stability of the handle 1.
[0052] Considering the specific structure of the outer body 1-1, please refer to the above embodiment for further details. Figure 3 The outer body 1-1 includes a main board with a U-shaped cross-section and two flat plates, which are symmetrically arranged on the two inner sides of the opening end of the main board to form a telescopic cavity.
[0053] Understandably, a U-shaped main board has excellent load-bearing and deformation resistance, which can improve the load-bearing and deformation resistance of handle 1, ensuring the structural safety and stability of handle 1. Furthermore, the U-shaped main board is not only lightweight, but also allows for the embedding of an inner main board within the U-shaped internal space. Further, to prevent the inner main board from detaching from the open end of the main board, symmetrical flat plates are provided on the two inner sides of the open end of the main board. These plates support and guide the sliding of the inner main board, ensuring the safe and stable sliding of the inner body 1-2 within the outer body 1-1. It should be noted that the locking holes 8 of the outer body 1-1, which adopts the above structure, are located on the side wall of the main board.
[0054] Considering the specific arrangement between handle 1 and mounting frame 2, please refer to the above embodiment for further details. Figure 3 The outer body 1-1 and the inner body 1-2 are both integrally provided with a fixing plate 13 at opposite ends. The fixing plate 13 is detachably connected to one side of the mounting frame 2.
[0055] Specifically, one end of the outer body 1-1, opposite to the inner body 1-2, is integrally connected to the first fixing plate 13. The first fixing plate 13 can be connected to one side of the first mounting frame 2 via screw assembly 15. The other side of the first mounting frame 2 is provided as an opening for the bracket 3 to be disassembled and assembled. One end of the inner body 1-2, opposite to the outer body 1-1, is integrally connected to the second fixing plate 13. The second fixing plate 13 can also be connected to one side of the second mounting frame 2 via screw assembly 15. The other side of the second mounting frame 2 is also provided as an opening for the bracket 3 to be disassembled and assembled. Thus, both ends of the handle 1 can be detachably connected to the mounting frame 2. The movement stroke of the bracket 3 can be adjusted by replacing the mounting frame 2 to better adapt to different liquid cooling module 17 disassembly and assembly conditions.
[0056] In one specific embodiment, the fixing plate 13 is provided with a triangularly arranged guide post 16 on the side facing the mounting frame 2. Correspondingly, the mounting frame 2 is provided with a triangularly arranged guide hole on the side facing the fixing plate 13. When assembling the mounting frame 2, the guide post 16 is inserted into the guide hole to accurately position and align the mounting frame 2 and the fixing plate 13, thereby ensuring that the mounting frame 2 and the handle 1 are connected in place.
[0057] In one specific embodiment, the axis of the outer body 1-1, the axis of the inner body 1-2, and the center of the mounting frame 2 are located on the same horizontal line. That is to say, the axis of the handle 1 and the center of the mounting frames 2 on both sides are located on the same horizontal line, which can eliminate eccentric bending moment, make the load evenly distributed, avoid eccentric deformation of the handle 1, and help improve the structural stability of the handle 1.
[0058] To avoid interference from handle 1 during the disassembly and assembly of the CPU cold plate 18, please refer to the following based on the above embodiment: Figure 1 and Figure 3 Both the outer body 1-1 and the inner body 1-2 have through holes 14 near their respective fixing plates 13. In other words, the handle 1 has through holes 14 near the two mounting frames 2.
[0059] It should be noted that when installing the liquid cooling module 17, after the fixture is installed on the liquid cooling module 17, the spring screws 19 on the CPU cold plate 18 in the liquid cooling module 17 also need to be tightened onto the CPU processor. Since the two mounting frames 2 cover the CPU cold plate 18, the handle 1 spans between the two CPU cold plates 18, and there may be spring screws 19 under the handle 1. Figure 4 As shown. With the through hole 14 configured as described above, the operator can install the spring screw 19 located below the handle 1 through the through hole 14. Similarly, when disassembling the liquid cooling module 17, the operator can loosen the spring screw 19 located below the handle 1 through the through hole 14, so that the CPU cold plate 18 in the liquid cooling module 17 is detached from the CPU processor, and then the liquid cooling module 17 can be removed from the chassis using a tool.
[0060] In summary, the universal liquid cooling module assembly / disassembly fixture provided by this utility model has the following advantages:
[0061] First, the tooling can be aligned and locked onto the mounting holes of the CPU cold plate 18 by moving and adjusting the position of the bracket 3 and its fasteners 4, so as to achieve precise disassembly and assembly of different liquid cooling modules 17.
[0062] Secondly, the tooling can be further adjusted by adjusting the length of the handle 1 to fix the tooling position, which can make up for the limited travel of the bracket 3, so as to be suitable for the installation of a larger CPU cold plate 18, thereby better realizing the precise installation and removal of different liquid cooling modules 17.
[0063] Third, the tooling structure has high stability, is easy to operate and adjust, and is easy to store and organize.
[0064] Fourth, it can effectively reduce the types and quantities of tooling, save design costs, and facilitate the use and management of production line personnel.
[0065] The foregoing has provided a detailed description of a universal liquid-cooled module assembly / disassembly fixture provided by this utility model. Specific examples have been used to illustrate the principles and implementation methods of this utility model. The descriptions of the embodiments above are merely for the purpose of helping to understand the method and core ideas of this utility model. It should be noted that those skilled in the art can make various improvements and modifications to this utility model without departing from its principles, and these improvements and modifications also fall within the protection scope of the claims of this utility model.
Claims
1. A general-purpose liquid cooling module dismounting tool, characterized by comprising: The handle (1) is provided with mounting frames (2) on both sides in the length direction, both ends of the mounting frames (2) in the height direction are open ends, a plurality of supports (3) are detachably arranged in the mounting frames (2), the supports (3) are movably arranged along the length direction of the handle (1), and the supports (3) are detachably inserted with a plurality of fasteners (4), the fasteners (4) are movably arranged along the length direction perpendicular to the handle (1) and along the height direction of the mounting frames (2).
2. The general-purpose liquid cooling module dismounting tool according to claim 1, wherein The mounting frames (2) are provided with a plurality of slide rails (5) extending along the length direction of the handle (1), and the plurality of slide rails (5) are arranged on opposite sides of the mounting frames (2), the plurality of slide rails (5) on the same side are arranged at intervals along the height direction of the mounting frames (2), the plurality of slide rails (5) on different sides are arranged symmetrically, the supports (3) are detachably connected between the two symmetric slide rails (5), and the supports (3) are in sliding fit with the slide rails (5).
3. The general-purpose liquid cooling module dismounting tool according to claim 2, characterized in that, The plurality of slide rails (5) on the same side are uniformly and interval arranged on the bottom side of the mounting frames (2) along the height direction of the mounting frames (2).
4. The general-purpose liquid cooling module dismounting tool according to claim 2, wherein The side of the mounting frames (2) away from the handle (1) is an open side, one end of the slide rail (5) adjacent to the open side is a trumpet-shaped open end, and the open ends of the two symmetric slide rails (5) are detachably provided with plugs (6).
5. The general-purpose liquid cooling module dismounting tool according to claim 1, wherein The support (3) is provided with a long hole (7) extending along the length direction perpendicular to the handle (1), the head of the fastener (4) is larger than the width of the long hole (7), the fastening part of the fastener (4) is smaller than the width of the long hole (7), and the fastening part is inserted into the long hole (7).
6. The general-purpose liquid cooling module dismounting tool according to any one of claims 1 to 5, characterized in that, The handle (1) comprises an outer body (1-1) and an inner body (1-2), the inner part of the outer body (1-1) is provided with an expansion cavity, the inner body (1-2) is embedded in the expansion cavity and in sliding fit with the expansion cavity, and the inner body (1-2) and the outer body (1-1) are detachably connected through a connecting piece.
7. The general-purpose liquid cooling module dismounting tool according to claim 6, characterized in that, A plurality of clamping holes (8) in communication with the expansion cavity are arranged at intervals on the side wall of the outer body (1-1) along the length direction thereof, and a recess (9) is arranged on the side wall of one end of the inner body (1-2) opposite to the outer body (1-1). The connecting piece comprises a button support (10), a spring (11) and a clamping block (12), the button support (10) is embedded in the recess (9), one end of the button support (10) is connected to the bottom of the recess (9) through the spring (11), and the other end of the button support (10) is provided with the clamping block (12) adapted to clamp any clamping hole (8).
8. The general-purpose liquid cooling module dismounting tool according to claim 6, characterized in that, The outer body (1-1) comprises a main plate with a U-shaped cross section and two flat plates, and the two flat plates are symmetrically arranged on the inner sides of the open ends of the main plate to form the expansion cavity.
9. The general-purpose liquid cooling module dismounting tool according to claim 6, wherein The outer main body (1-1) and the inner main body (1-2) are integrally provided with a fixing plate (13) at one end opposite to each other, and the fixing plate (13) is detachably connected to one side of the mounting frame (2).
10. The general-purpose liquid cooling module dismounting tool according to claim 9, characterized in that, The outer main body (1-1) and the inner main body (1-2) are provided with a through hole (14) at positions adjacent to the respective corresponding fixing plate (13).