WO2020244542A1 - 机箱冷却装置、机箱及桌子 - Google Patents

机箱冷却装置、机箱及桌子 Download PDF

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Publication number
WO2020244542A1
WO2020244542A1 PCT/CN2020/094151 CN2020094151W WO2020244542A1 WO 2020244542 A1 WO2020244542 A1 WO 2020244542A1 CN 2020094151 W CN2020094151 W CN 2020094151W WO 2020244542 A1 WO2020244542 A1 WO 2020244542A1
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Prior art keywords
chamber
cooling
partition
refrigeration
oil
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PCT/CN2020/094151
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English (en)
French (fr)
Inventor
姜海波
姜影
Original Assignee
姜海波
姜影
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Publication date
Application filed by 姜海波, 姜影 filed Critical 姜海波
Publication of WO2020244542A1 publication Critical patent/WO2020244542A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/181Enclosures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/20Cooling means

Definitions

  • the invention relates to the technical field of computer cases, in particular to a case cooling device, a case and a table.
  • the present invention aims to provide a cabinet cooling device that can at least solve some of the above technical problems.
  • the invention also provides a case using the improved case cooling device.
  • the invention also provides a table using the above-mentioned cabinet.
  • a case cooling device for a case body comprising: at least one partition plate fixed inside the case body and dividing the inside of the case body into at least a first cavity
  • One or more cooling pipes which are installed in the first chamber and have a first partition second chamber oil inlet and a first partition second chamber oil outlet; more
  • a refrigeration block which is fixed in the second chamber and respectively has a refrigeration pipe and is coated with a waterproof layer on the outer surface, and each of the refrigeration pipes has a first communication pipe passing through the partition to communicate with the The refrigeration oil inlet of the oil outlet of the second chamber of the first partition plate and the refrigeration oil outlet of the oil inlet of the second chamber of the first partition plate through a second communication pipe passing through the partition plate, each The refrigeration pipe is connected to the cooling pipe to form each cooling circuit.
  • the multiple refrigeration pipes of the cabinet cooling device in this embodiment are connected with the cooling pipes to form multiple cooling circuits, which improves the overall heat dissipation efficiency of the cabinet body.
  • the outer surface of the refrigeration part is coated with a waterproof layer to isolate the refrigeration part from the air, thereby avoiding condensation problems when the refrigeration part is cooled to cool the warming cooling oil, and further improving the cooling effect.
  • the first cavity is filled with cooling oil and fixed with exposed components, and is provided with multiple channels of the cooling pipes, and the multiple channels of the cooling pipes include: side plate cooling pipes, which are fixed in the first cavity
  • the side plate of the chamber has a side plate oil outlet and a side plate oil inlet communicating with the first chamber; a first partition cooling pipe, which is fixed on the partition and close to the first chamber
  • One side of the chamber has a first partition first chamber oil inlet communicating with the side plate oil outlet through a third communication pipe, and a first partition first chamber communicating with the first chamber An oil outlet, and an oil outlet of the first partition second chamber and an oil inlet of the first partition second chamber on a side close to the second chamber.
  • the exposed components in the first cavity are cooled.
  • a packaged component is fixed in the first cavity
  • the cooling pipe includes or further includes: a first cavity cooling pipe, which is located in the first cavity and passes through the packaged component and has a A chamber oil inlet and a first chamber oil outlet; a second partition cooling pipe, which is fixed on the partition, and has a second partition communicating with the first chamber oil inlet The oil outlet of a chamber and the first chamber oil inlet of the second partition communicating with the oil outlet of the first chamber, and the first partition on the side close to the second chamber The oil inlet of the second chamber and the oil outlet of the second chamber of the first partition.
  • the side of the second partition cooling pipe close to the second chamber further has an oil inlet of the second partition of the second chamber and an oil outlet of the second chamber of the second partition;
  • the chassis The cooling device further includes: a water-cooled row, which is fixed in the second chamber; a second-chamber cooling pipe, which is located in the second chamber and passes through the water-cooled row, and is connected to the second partition
  • the second chamber oil outlet communicated with the second chamber oil inlet and the second chamber oil inlet communicated with the second chamber oil outlet of the second partition.
  • the cabinet cooling device further includes a refrigerating block heat dissipation part located in the second chamber and attached to the outer side of the outermost refrigerating block. In this way, heat dissipation to the refrigeration block is realized.
  • the heat dissipation portion of the refrigeration block includes: a cold conducting plate attached to the outer side of the outermost refrigeration block; an electronic refrigeration fin having opposite cooling surfaces and heating surfaces, and the cooling surface is attached The outer side of the cold conducting plate; the heat conducting plate, which is attached to the heating surface.
  • the cabinet cooling device further includes: a pressure pump assembly located in the first chamber and fixed on the partition plate, the pressure pump assembly communicating with the first partition plate cooling pipe. This provides pressure for the cooling circuit.
  • the cabinet cooling device further includes a sealing ring, which is fixed in the first chamber and wraps the side plate cooling duct. This improves the sealing performance of the side plate cooling duct.
  • Figure 1 is a schematic cross-sectional view of a cabinet cooling device according to an embodiment of the present invention
  • Figure 2 is a top view of the partition of the cabinet cooling device in Figure 1;
  • Figure 3 is a top view of a first refrigeration block of the cabinet cooling device in Figure 1;
  • FIG. 4 is a top view of a second refrigeration block of the cabinet cooling device in FIG. 1;
  • Fig. 5 is a schematic diagram of a cooling pipe of the first chamber of the cabinet cooling device in Fig. 1;
  • Fig. 6 is a schematic diagram of a second chamber cooling pipe of the cabinet cooling device in Fig. 1;
  • Fig. 7 is a bottom view of the cabinet cooling device in Fig. 1.
  • the case cooling device for the case body includes: at least one partition 1 which is fixed inside the case body 2 and divides the inside of the case body 2 into at least a first chamber and a second chamber
  • One or more cooling pipes which are installed in the first chamber and have a first partition second chamber oil inlet 31 and a first partition second chamber oil outlet 32; multiple refrigeration blocks 4, which It is fixed in the second chamber and has refrigeration pipes respectively and is coated with a waterproof layer (not shown) on the outer surface.
  • Each refrigeration pipe has a first communication pipe (not shown) that passes through the partition board 1 to communicate with the first The refrigeration oil inlet of the oil outlet 32 of the second chamber of the partition and the refrigeration oil outlet of the oil inlet 31 of the second chamber of the first partition through a second connecting pipe (not shown) passing through the partition 1 ,
  • Each refrigeration pipe is connected to the cooling pipe to form each cooling circuit.
  • the case body 2 may be an oil-cooled case, and cooling oil is filled in and flows in each cooling circuit to cool the case body 2.
  • the heat generated in the first chamber is taken away by the cooling oil flowing in the cooling pipe, and enters the refrigeration pipe through the first connecting pipe to exchange cold and heat with the refrigerating block 4 to cool the cooling oil and pass through the second connecting pipe Return to the cooling pipe to form a cooling circuit.
  • the cooling circuit is enclosed in the first chamber to prevent dust from entering the chassis body 2 while ensuring the cooling effect.
  • the refrigeration block 4 is a metal block with good thermal conductivity.
  • the outer surface of the refrigerating block 4 is coated with a waterproof layer to isolate the refrigerating block 4 from the outside air, and to avoid condensation and frost on the outer surface of the refrigerating block 4, which improves the refrigeration effect of cooling the cooling oil.
  • the material used for the waterproof layer is a waterproof isolation material, preferably silica gel.
  • a plurality of partitions 1 may be used to divide the inside of the chassis body 2 into a plurality of chambers, and chambers other than the first chamber and the second chamber can be used according to actual needs.
  • the number of partitions 1 is one for illustration, and the inside of the chassis body 2 is divided into an upper chamber and a lower chamber.
  • the cooling pipes are connected to the refrigeration pipes.
  • each cooling pipe can be respectively connected to one refrigeration pipe, or can be connected to multiple refrigeration pipes at the same time.
  • the refrigeration pipe can be a pipe bent into a "several" shape.
  • the side panels of the chassis body 2 can be made of transparent materials to provide viewing and observability.
  • the number of refrigeration blocks 4 is illustrated by taking two as an example, which are represented as the first refrigeration block 41 and the second refrigeration block 42 respectively.
  • the first refrigeration block 41 has a first refrigeration pipe 411
  • the second refrigeration block 42 has a second refrigeration pipe 421.
  • the first refrigeration pipe 411 has a first refrigeration oil inlet 412 and a first refrigeration oil outlet 413.
  • the second refrigeration pipe 421 has a second refrigeration oil inlet 422 and a second refrigeration oil outlet 423.
  • none of the communication pipes in this embodiment is shown in the drawings.
  • the first cavity is filled with cooling oil and fixed with exposed components, and is provided with multiple cooling pipes.
  • the multiple cooling pipes include: side plate cooling pipes 33, which are fixed on The side plate 21 of the first chamber has a side plate oil outlet 332 and a side plate oil inlet 331 communicating with the first chamber; the first partition cooling pipe is fixed on the partition 1 and is close to the first chamber.
  • One side of a chamber has a first partition first chamber oil inlet 341 connected to the side plate oil outlet 332 through a third connecting pipe, and a first partition first chamber outlet 341 communicating with the first chamber.
  • the oil port 342 and the oil outlet 32 of the first partition second chamber and the oil inlet 31 of the first partition second chamber on the side close to the second chamber.
  • the exposed components in the first chamber such as power supplies, motherboards, graphics cards, memory, solid state drives, etc.
  • the exposed components in the first chamber are immersed in the cooling oil, and the heat generated is taken away by the cooling oil.
  • One side of the side plate cooling duct 33 can be attached to the side plate of the first chamber, and the opposite side can have a side plate oil outlet 332 and multiple side plate oil inlets 331, or the side plate of the chassis body 2 It is formed by splicing two plates with grooves formed on each plate.
  • the grooves of the two plates that are spliced together constitute the side plate cooling pipe 33, and the side plate cooling pipe 33 is close to the side of the first chamber It has a side plate oil outlet 332 and a plurality of side plate oil inlets 331, and the side plate area located between the side plate cooling duct 33 and the first chamber has a side plate oil outlet 332 and a side plate oil inlet corresponding to The opening of 331 is such that the side plate oil inlet 331 is connected to the first chamber, and the side plate oil outlet 332 is connected to the first partition cooling pipe.
  • the side plate oil inlet 331 is an oil-permeable area, and a diversion liquid or oil diversion liquid can be arranged in this area to facilitate the penetration of cooling oil from the first chamber into the side plate cooling pipe 33.
  • the side plate cooling pipe 33 can be bent into a "several" shaped pipe.
  • the first partition cooling pipe may include: a first sub-cooling pipe 343.
  • a side close to the first chamber has a first sub-oil outlet 3431 and a first partition first chamber oil inlet 341 communicating with the side plate oil outlet 332 through a third communicating pipe.
  • the second sub cooling pipe 344 has a second sub oil inlet 3441 connected to the first sub oil outlet 3431 through a second sub connecting pipe on the side close to the first chamber, and on the side close to the second chamber There is an oil outlet 32 of the first partition and the second chamber communicating with the first refrigeration oil inlet 412 and/or the second refrigeration oil inlet 422 through a first communication pipe.
  • the third sub-cooling pipe 345 has a first partition and a second chamber communicating with the first refrigeration oil outlet 413 and/or the second refrigeration oil outlet 423 through a second communication pipe on the side close to the second chamber
  • the oil inlet 31 has an oil outlet 342 of the first partition and the first chamber communicating with the first chamber on the side close to the first chamber.
  • the oil outlet 342 of the first chamber of the first partition may be an oil-permeable area, and the number may be multiple.
  • the exposed components in the first chamber radiate heat and transfer it to the cooling oil.
  • the cooling circuit of the cooling oil is: the cooling oil enters the side plate cooling pipe 33 from the first chamber, and passes through the first chamber.
  • the three communicating pipes enter the first sub-cooling pipe 343, then enter the second sub-cooling pipe 344 through the second sub-communication pipe, and enter the first refrigeration pipe 411 and/or the second refrigeration pipe 421 through the first communication pipe. After being cooled by the first refrigeration block 41 and/or the second refrigeration block 42, it enters the third sub-cooling pipe 345 through the second communication pipe, and returns to the first chamber to continue to absorb the exposed components in the first chamber. Heat to achieve cooling of exposed components.
  • the packaged components are fixed in the first cavity
  • the cooling pipe includes or further includes: a first cavity cooling pipe 35, which is located in the first cavity and passes through the packaged components It also has a first chamber oil inlet 351 and a first chamber oil outlet 352; a second partition cooling pipe, which is fixed on the partition 1, and has a second chamber that communicates with the first chamber oil inlet 351
  • the oil outlet 361 of the first chamber of the partition, the oil inlet 362 of the first chamber of the second partition communicating with the oil outlet 352 of the first chamber, and the first partition on the side close to the second chamber
  • the oil inlet 31 of the second chamber and the oil outlet 32 of the second chamber of the first partition are fixed in the first cavity
  • the cooling pipe includes or further includes: a first cavity cooling pipe 35, which is located in the first cavity and passes through the packaged components It also has a first chamber oil inlet 351 and a first chamber oil outlet 352; a second partition cooling pipe, which is fixed on the partition 1, and has a second chamber that communicates with
  • the side of the second partition cooling pipe close to the second chamber also has a second partition second chamber oil inlet 363 and a second partition second chamber oil outlet.
  • the chassis cooling device further includes: a water cooling row 5, which is fixed in the second chamber; a second chamber cooling pipe 6, which is located in the second chamber and passes through the water cooling row 5, and has a second partition
  • the second chamber oil outlet 61 communicated with the two-chamber oil inlet 363 and the second chamber oil inlet 62 communicated with the second chamber oil outlet 364 of the second partition.
  • the second partition cooling pipe includes: a fourth sub-cooling pipe 365, which has a fourth sub-oil outlet 3651 on the side close to the first chamber.
  • One side of the second chamber has a second partition second chamber oil inlet 363 communicating with the second chamber oil outlet 61.
  • the fifth sub cooling pipe 366 has a fifth sub oil inlet 3661 connected to the fourth sub oil outlet 3651 through a fifth sub connecting pipe on the side close to the first chamber.
  • One side has an oil outlet 32 of the first partition and the second chamber communicating with the first refrigeration oil inlet 412 and/or the second refrigeration oil inlet 422 through a first communication pipe passing through the partition 1.
  • the sixth sub cooling pipe 367 has a first partition and a second chamber communicating with the first refrigeration oil outlet 413 and/or the second refrigeration oil outlet 423 through a second communication pipe on the side close to the second chamber
  • the oil inlet 31 has an oil outlet 361 of the first chamber of the second partition connected with the oil inlet 351 of the first chamber on the side close to the first chamber.
  • the seventh sub-cooling pipe 368 has the first chamber oil inlet 362 of the second partition connected to the oil outlet 352 of the first chamber on the side close to the first chamber, and on the side close to the second chamber There is a second partition second chamber oil outlet 364 communicating with the second chamber oil inlet 62.
  • the heat dissipated by the components packaged in the first chamber is less efficiently transferred to the cooling oil, so the first chamber cooling pipe 35, the second partition cooling pipe and the second chamber cooling
  • the pipe 6 is filled with cooling oil, and a cooling circuit is formed: the cooling oil enters the fifth sub-cooling pipe 366 from the fourth sub-cooling pipe 365 through the fifth sub-communication pipe, and then enters the first refrigeration pipe through the sixth sub-communication pipe 411 and/or the second refrigeration pipe 421, after being refrigerated by the first refrigeration block 41 and/or the second refrigeration block 42, enters the sixth sub-cooling pipe 367 through the seventh sub-communication pipe, and then enters through the packaged components
  • the cooling pipe 35 of the first chamber of the water-cooled plate takes away the heat generated by the packaged components and enters the seventh sub-cooling pipe 368, and then enters the cooling pipe 6 of the second chamber passing through the water-cooled row 5, which affects the cooling oil Cool down and return to the fourth sub-cooling pipe 365 to cool the packaged components.
  • cooling circuits for cooling bare components formed by the side plate cooling pipe 3, the first partition cooling pipe and the first refrigeration pipe 411 in the chassis body 2 at the same time and the first The cooling circuit formed by the chamber cooling duct 35, the second chamber cooling duct 6, the second partition cooling duct, and the second refrigeration duct 421 is used to cool the packaged components to improve the overall cooling effect of the chassis body 2. Overall cooling efficiency.
  • the case cooling device further includes a refrigeration block heat dissipation portion 7, which is located in the second chamber and attached to the outer side of the outermost refrigeration block 4 .
  • the sizes of the multiple refrigeration blocks 4 can be different, and the refrigeration blocks 4 are attached in order of size from largest to smallest.
  • the largest refrigeration block 4 is located on the outermost side, and each refrigeration block 4 can be exposed.
  • the refrigeration oil inlet and the refrigeration oil outlet of the refrigeration pipeline are connected with the cooling pipeline.
  • the cooling block heat sink 7 includes: a cold conducting plate 71 attached to the outer side of the outermost cooling block 4; electronic cooling fins 72 having opposite cooling and heating surfaces, and a cooling surface The outer side of the cold conducting plate 71 is attached; the heat conducting plate 73 is attached to the heating surface.
  • FIG. 1 shows a cross-sectional view of the heat dissipation portion 7 of the refrigeration block, that is, a cross-sectional view of the cold conducting plate 71, the electronic cooling plate and the heat conducting plate 73.
  • the electronic cooling fin 72 can be connected to a 12V power supply, and the cooling surface is attached to the outside of the outermost cooling block, and the heating surface is attached to the fan group 74, and the heat obtained from the cooling oil in the cooling pipe is transferred to the water cooling row 5 , To realize the heat dissipation of each refrigeration block 4.
  • the cabinet cooling device further includes: a pressure pump assembly 8 located in the first chamber and fixed on the partition 1, and the pressure pump assembly 8 communicates with the first partition cooling pipe.
  • the pressure pump assembly 8 can be used as a second sub-communication pipe to connect the first sub-oil outlet 3431 and the second sub-oil inlet 3441 to increase the pressure of the cooling circuit for cooling the exposed components.
  • the fifth sub-communication pipe can also be a pressure pump assembly 8 fixed on the partition 1 to increase the pressure of the cooling circuit for cooling the packaged components.
  • the pressure pump assembly 8 may include a water tank and a pressure pump.
  • the water tank is in communication with the first diaphragm cooling pipe, and the pressure pump is installed on the upper side of the water tank.
  • the cabinet cooling device further includes: a sealing ring 9 fixed in the first chamber and wrapping the side plate cooling duct 33 to improve the tightness of the side plate cooling duct 33.
  • a double-layer sealing ring 9 can be wrapped around the side plate cooling duct 33.
  • a sealing ring 9 may also be wrapped around the first partition cooling duct and the second partition cooling duct.
  • the chassis cooling device further includes: a first oil outlet 3442 opened on a side of the second cooling sub-pipe 344 close to the second chamber and provided with a valve.
  • the cooling pipe 366 is close to the side of the second chamber and has a valved second oil discharge port 3662, on the side close to the second chamber has a valved third oil discharge port 101 and close to the first chamber
  • the chassis body 2 is opposite to the partition 1 and is close to the plate of the second chamber.
  • the chassis body 2 is also provided with heat dissipation holes 11 on the base to improve the The heat dissipation effect of each refrigeration block.
  • a base pulley 12 is installed on the base of the chassis body 2 to improve the convenience of moving the chassis body 2.
  • the base pulley 12 may be a universal wheel.
  • a cooling block fan group 13 is installed outside the side plate 21 on which the side plate cooling duct 33 is installed, so as to further improve the heat dissipation effect of the side plate cooling duct 33 and the cooling block heat sink 7.
  • the side plate cooling pipe 33 further has a side plate temperature sensor 333
  • the first cooling block 41 also has a first cooling temperature sensor 414
  • the second cooling block 42 also has a second cooling temperature sensor 424.
  • the side plate temperature sensing probe 333, the first cooling temperature sensing probe 414, and the second cooling temperature sensing probe 424 are used to detect the temperature of the side plate cooling pipe 33, the first refrigeration block 41 and the second refrigeration block 42, and are connected to the external control mechanism. Perform control and monitoring.
  • the present invention also provides a chassis including the aforementioned chassis cooling device.
  • the chassis can be a modular chassis to improve the convenience of use.
  • the present invention also provides a table with a cabinet for accommodating the aforementioned cabinet, wherein the cabinet can be made of transparent materials.

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  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Hardware Design (AREA)
  • Power Engineering (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)

Abstract

一种用于机箱本体(2)的机箱冷却装置,包括:至少一个隔板(1),其固定在该机箱本体(2)的内部并将该机箱本体(2)的内部至少分隔为第一腔室和第二腔室;一路或多路冷却管道,其安装在该第一腔室内并具有第一隔板第二腔室进油口(31)和第一隔板第二腔室出油口(32);多个制冷块(4),其固定在该第二腔室内且分别具有制冷管道并且在外表面上涂覆有防水层,各该制冷管道均具有通过穿过该隔板(1)的第一连通管连通该第一隔板第二腔室出油口(32)的制冷进油口和通过穿过该隔板(1)的第二连通管连通该第一隔板第二腔室进油口(31)的制冷出油口,各该制冷管道连通至该冷却管道而形成各冷却回路。进一步,还提供一种机箱和桌子。

Description

机箱冷却装置、机箱及桌子 技术领域
本发明涉及电脑机箱技术领域,尤其涉及机箱冷却装置、机箱及桌子。
背景技术
随着电脑功能的日益强大,电脑机箱的散热问题日趋突出。人们研究了多种手段以帮助电脑机箱散热,例如风冷、水冷、油冷以及它们的组合。这其中油冷机箱因更为优良的散热效果和更少的弊端而被广为使用。现有的油冷机箱通常借助冷却油将元器件散发的热量带走,冷却油随后由于吸收热量而升温,现有技术一般采用风冷或散热排使升温的冷却油降温,散热效果不佳。
因此,本领域对一种散热性能好的机箱冷却装置存在需求。
发明内容
本发明旨在提供一种至少能解决上述部分技术问题的机箱冷却装置。
本发明还提供了一种应用上述改进的机箱冷却装置的机箱。
本发明还提供了一种应用上述机箱的桌子。
根据本发明的一个方面,提供了一种用于机箱本体的机箱冷却装置,包括:至少一个隔板,其固定在所述机箱本体的内部并将所述机箱本体的内部至少分隔为第一腔室和第二腔室;一路或多路冷却管道,其安装在所述第一腔室内并具有第一隔板第二腔室进油口和第一隔板第二腔室出油口;多个制冷块,其固定在所述第二腔室内且分别具有制冷管道并且在外表面上涂覆有防水层,各所述制冷管道均具有通过穿过所述隔板的第一连通管连通所述第一隔板第二腔室出油口的制冷进油口和通过穿过所述隔板的第二连通管连通所述第一隔板第二腔室进油口的制冷出油口,各所述制冷管道连通至所述冷却管道而形成各冷却回路。
与现有技术相比,本实施例中机箱冷却装置多个制冷管道与冷却管道连通,以形成多个冷却回路,提高了机箱本体的整体散热效率。另外,在制冷部的外表面涂覆防水层,使制冷部与空气隔离,进而在制冷部制冷以冷却升温的冷却油时,避免出现冷凝问题,进一步提高了制冷效果。
优选地,第一腔室内填充有冷却油并固定有裸露的元器件,并且设有多路所述冷却管道,多路所述冷却管道包括:侧板冷却管道,其固定在所述第一腔室的侧板上并具有侧板出油口和与所述第一腔室连通的侧板进油口;第一隔板冷却管道,其固定在所述隔板上并在靠近所述第一腔室的一侧具有与所述侧板出油口通过第三连通管连通的第一隔板第一腔室进油口、与所述第一腔室连通的第一隔板第一腔室出油口,以及在靠近所述第二腔室的一侧具有所述第一隔板第二腔室出油口和所述第一隔板第二腔室进油口。由此,对第一腔室内裸露的元器件进行冷却。
优选地,第一腔室内固定有封装的元器件,所述冷却管道包括或还包括:第一腔室冷却管道,其位于所述第一腔室内且穿过所述封装的元器件并且具有第一腔室进油口和第一腔室出油口;第二隔板冷却管道,其固定在所述隔板上,并具有与所述第一腔室进油口连通的第二隔板第一腔室出油口和与所述第一腔室出油口连通的第二隔板第一腔室进油口,以及在靠近所述第二腔室的一侧具有所述第一隔板第二腔室进油口和所述第一隔板第二腔室出油口。
优选地,所述第二隔板冷却管道靠近所述第二腔室的一侧还具有第二隔板第二腔室进油口和第二隔板第二腔室出油口;所述机箱冷却装置还包括:水冷排,其固定在所述第二腔室内;第二腔室冷却管道,其位于所述第二腔室且穿过所述水冷排,并具有与所述第二隔板第二腔室进油口连通的第二腔室出油口和与所述第二隔板第二腔室出油口连通的第二腔室进油口。由此,对第一腔室封装的元器件进行冷却。
优选地,多个所述制冷块依次贴合在一起;所述机箱冷却装置还包括制冷块散热部,其位于所述第二腔室内并贴合在位于最外侧的制冷块的外侧。由此,实现对制冷块的散热。
优选地,所述制冷块散热部包括:导冷板,其贴合在所述最外侧的制冷块的外侧;电子制冷片,其具有相对的制冷面和制热面,所述制冷面贴合所述导冷板的外侧;导热板,其贴合所述制热面。
优选地,所述机箱冷却装置还包括:压力泵总成,其位于所述第一腔室并固定在所述隔板上,所述压力泵总成与所述第一隔板冷却管道连通。由此,为冷却回路提供压力。
优选地,所述机箱冷却装置还包括:密封圈,其固定在所述第一腔室内,并包裹所述侧板冷却管道。由此,提高侧板冷却管道的密封性。
本发明的其它特征和优点的一部分将会是本领域技术人员在阅读本申请后显见的,另一部分将在下文的具体实施方式中结合附图描述。
附图说明
以下,结合附图来详细说明本发明的实施例,其中:
图1是根据本发明的实施例的机箱冷却装置截面示意图;
图2是图1中机箱冷却装置的隔板的俯视图;
图3是图1中机箱冷却装置的第一制冷块的俯视图;
图4是图1中机箱冷却装置的第二制冷块的俯视图;
图5是图1中机箱冷却装置的第一腔室冷却管道的示意图;
图6是图1中机箱冷却装置的第二腔室冷却管道的示意图;
图7是图1中机箱冷却装置的仰视图。
附图标记:
1.隔板
2.机箱本体
31.第一隔板第二腔室进油口
32.第一隔板第二腔室出油口
4.制冷块
41.第一制冷块
411.第一制冷管道
412.第一制冷进油口
413.第一制冷出油口
414.第一制冷温感探头
42.第二制冷块
421.第二制冷管道
422.第二制冷进油口
423.第二制冷出油口
424.第二制冷温感探头
33.侧板冷却管道
21.固定有侧板冷却管道的侧板
331.侧板进油口
332.侧板出油口
333.侧板温感探头
341.第一隔板第一腔室进油口
342.第一隔板第一腔室出油口
343.第一子冷却管道
3431.第一子出油口
344.第二子冷却管道
3441.第二子进油口
345.第三子冷却管道
35.第一腔室冷却管道
351.第一腔室进油口
352.第一腔室出油口
361.第二隔板第一腔室出油口
362.第二隔板第一腔室进油口
363.第二隔板第二腔室进油口
364.第二隔板第二腔室出油口
5.水冷排
6.第二腔室冷却管道
61.第二腔室出油口
62.第二腔室进油口
365.第四子冷却管道
3651.第四子出油口
366.第五子冷却管道
3661.第五子进油口
367.第六子冷却管道
368.第七子冷却管道
7.制冷块散热部
71.导冷板
72.电子制冷片
73.导热板
8.压力泵总成
9.密封圈
3442.第一排油口
3662.第二排油口
10.辅助排油管道
101.第三排油口
102.漏油口
11.散热孔
12.底座滑轮
13.制冷块风扇组
具体实施方式
现参考附图,详细说明本发明所公开的装置的示意性方案。尽管提供附图是为了呈现本发明的一些实施方式,但附图不必按具体实施方案的尺寸绘制,并且某些特征可被放大、移除或局剖以更好地示出和解释本发明的公开内容。附图中的部分构件可在不影响技术效果的前提下根据实际需求进行位置调整。在说明书中出现的短语“在附图中”或类似用语不必参考所有附图或示例。
在下文中被用于描述附图的某些方向性术语,例如“内”、“外”、“上方”、“下方”和其它方向性术语,将被理解为具有其正常含义并且指正常看附图时所涉及的那些方向。除另有指明,本说明书所述方向性术语基本按照本领域技术人员所理解的常规方向。
本发明所使用的术语“第一”、“第一个”、“第二”、“第二个”及其类似术语,在本发明中并不表示任何顺序、数量或重要性,而是用于将一个部件与其它部件进行区分。
参照图1和图2,用于机箱本体的机箱冷却装置包括:至少一个隔板1,其固定在机箱本体2的内部并将机箱本体2的内部至少分隔为第一腔室和第二腔室;一路或多路冷却管道,其安装在第一腔室内并具有第一隔板第二腔室进油口31和第一隔板第二腔室出油口32;多个制冷块4,其固定在第二腔室内且分别具有制冷管道并且在外表面上涂覆有防水层(未示出),各制冷管道均具有通过穿过隔板1的第一连通管(未示出)连通第一隔板第二腔室出油口32的制冷进油口和通过穿过隔板1的第二连通管(未示出)连通第一隔板第二腔室进油口31的制冷出油口,各制冷管道连通至冷却管道而形成各冷却回路。
具体说,机箱本体2可为油冷机箱,冷却油填充在各冷却回路中且在各冷却回路中流动,以对机箱本体2进行冷却。通过流动在冷却管道中的冷却油将第一腔室内产生的热量带走,并通过第一连通管进入制冷管道与制冷块4进行冷热交换,将冷却油进行降温,并通过第二连通管回到冷却管道,以此形成冷却回路。并且冷却回路封闭在第一腔室内,在保证冷却效果的用时避免灰尘进入机箱本体2。
可选地,制冷块4为导热性能良好的金属块。制冷块4的外表面上涂覆有防水层,以使制冷块4与外界空气隔离,并避免制冷块4外表面形成冷凝出霜现象,提高了对冷却油进行制冷的制冷效果。在实际应用过程中,防水层采用的材料为防水隔离材料,优选为硅胶。
优选可采用多个隔板1以将机箱本体2内部分隔为多个腔室,除第一腔室和第二腔室外的其他腔室可根据实际需要进行使用。在本实施例中,隔板1的数量采取一个进行说明,并将机箱本体2的内部分隔为上腔室和下腔室。
另外,冷却管道与各制冷管道的连通方式具有多种。当冷却管道的数量为一路时,冷却管道连通各制冷管道。当冷却管道的数量为多路时,各冷却管道可分别对应连通一个制冷管道,也可同时连通多个制冷管道。在本实施例中,通过设置多个制冷管道,可提高对于位于所述制冷管道内部的冷却油的制冷效率。在实际应用过程中,制冷管道可为弯折为“几”字型的管道。
在实际应用过程中,机箱本体2的侧板可采用透明材料,以提供观赏性和可观测性。
在本实施例中,如图3和图4所示,制冷块4的数量以2个为例来说明,其被分别表示为第一制冷块41和第二制冷块42。第一制冷块41上具有第一制冷管道411,第二制冷块42上具有第二制冷管道421,其中第一制冷管道411具有第一制冷进油口412和第一制冷出油口413,第二制冷管道421具有第二制冷进油口422和第二制冷出油口423。在此,本实施例中的连通管均未在附图中示出。
进一步,如图1和图2所示,第一腔室内填充有冷却油并固定有裸露的元器件,并且设有多路冷却管道,多路冷却管道包括:侧板冷却管道33,其固定在第一腔室的侧板21上并具有侧板出油口332和与第一腔室连通的侧板进油口331;第一隔板冷却管道,其固定在隔板1上并在靠近第一 腔室的一侧具有与侧板出油口332通过第三连通管连通的第一隔板第一腔室进油口341、与第一腔室连通的第一隔板第一腔室出油口342,以及在靠近第二腔室的一侧具有第一隔板第二腔室出油口32和第一隔板第二腔室进油口31。
具体说,第一腔室内裸露的元器件,如电源、主板、显卡、内存、固态硬盘等,浸没在冷却油中,产生的热量由冷却油带走。侧板冷却管道33的一侧可贴合在第一腔室的侧板上,相对的一侧可具有侧板出油口332和多个侧板进油口331,或者机箱本体2的侧板由两个板件拼接而成,各板件上形成有凹槽,拼接在一起的两个板件的凹槽构成侧板冷却管道33,则侧板冷却管道33靠近第一腔室的一侧具有侧板出油口332和多个侧板进油口331,并且位于侧板冷却管道33和第一腔室之间的侧板区域具有对应于侧板出油口332和侧板进油口331的开口,以使侧板进油口331连通第一腔室,侧板出油口332连接第一隔板冷却管道。可选地,侧板进油口331为油可渗透区域,在该区域可布置导流液或导油液以便于冷却油从第一腔室透过进入侧板冷却管道33。在实际应用过程中,侧板冷却管道33可弯折为“几”字型的管道。
在实际应用过程中,由于隔板1的尺寸限制,如图2所示,位于隔板1下侧的结构以虚线示出,第一隔板冷却管道可包括:第一子冷却管道343,在靠近第一腔室的一侧具有第一子出油口3431和与侧板出油口332通过第三连通管连通的第一隔板第一腔室进油口341。第二子冷却管道344,在靠近第一腔室的一侧具有与第一子出油口3431通过第二子连通管连通的第二子进油口3441,在靠近第二腔室的一侧具有与第一制冷进油口412和/或第二制冷进油口422通过第一连通管连通的第一隔板第二腔室出油口32。第三子冷却管道345,在靠近第二腔室的一侧具有与第一制冷出油口413和/或第二制冷出油口423通过第二连通管连通的第一隔板第二腔室进油口31,在靠近第一腔室的一侧具有与第一腔室连通的第一隔板第一腔室出油口342。
第一隔板第一腔室出油口342可为油渗透区域,数量可为多个。另外,第一腔室内裸露的元器件散发热量并传递给冷却油,如图1至图4所示,冷却油的冷却回路为:冷却油从第一腔室进入侧板冷却管道33,通过第三连通管进入第一子冷却管道343,接着通过第二子连通管进入第二子冷却管道344,并通过第一连通管进入第一制冷管道411和/或第二制冷管道421。 经过第一制冷块41和/或第二制冷块42的制冷后,通过第二连通管进入第三子冷却管道345,并回到第一腔室继续吸收第一腔室内裸露的元器件散发的热量,以实现对裸露的元器件的冷却。
进一步,如图2和图5所示,第一腔室内固定有封装的元器件,冷却管道包括或还包括:第一腔室冷却管道35,其位于第一腔室内且穿过封装的元器件并且具有第一腔室进油口351和第一腔室出油口352;第二隔板冷却管道,其固定在隔板1上,并具有与第一腔室进油口351连通的第二隔板第一腔室出油口361和与第一腔室出油口352连通的第二隔板第一腔室进油口362,以及在靠近第二腔室的一侧具有第一隔板第二腔室进油口31和第一隔板第二腔室出油口32。
进一步,如图2和图6所示,第二隔板冷却管道靠近第二腔室的一侧还具有第二隔板第二腔室进油口363和第二隔板第二腔室出油口364,机箱冷却装置还包括:水冷排5,其固定在第二腔室内;第二腔室冷却管道6,其位于第二腔室且穿过水冷排5,并具有与第二隔板第二腔室进油口363连通的第二腔室出油口61和与第二隔板第二腔室出油口364连通的第二腔室进油口62。
具体说,由于隔板1的尺寸限制,如图2所示,第二隔板冷却管道包括:第四子冷却管道365,靠近第一腔室的一侧具有第四子出油口3651,靠近第二腔室的一侧具有与第二腔室出油口61连通的第二隔板第二腔室进油口363。第五子冷却管道366,在靠近第一腔室的一侧具有与第四子出油口3651通过第五子连通管连通的第五子进油口3661,在靠近所述第二腔室的一侧具有与第一制冷进油口412和/或第二制冷进油口422通过穿过隔板1的第一连通管连通的第一隔板第二腔室出油口32。第六子冷却管道367,在靠近第二腔室的一侧具有与第一制冷出油口413和/或第二制冷出油口423通过第二连通管连通的第一隔板第二腔室进油口31,在靠近第一腔室的一侧具有与第一腔室进油口351连通的第二隔板第一腔室出油口361。第七子冷却管道368,在靠近第一腔室的一侧具有与第一腔室出油口352连通的第二隔板第一腔室进油口362,在靠近第二腔室的一侧具有与第二腔室进油口62连通的第二隔板第二腔室出油口364。
如图2至图6所示,第一腔室内封装的元器件散发的热量传递给冷却油的效率较低,则第一腔室冷却管道35、第二隔板冷却管道和第二腔室冷却管道6内填充有冷却油,并形成有冷却回路为:冷却油从第四子冷却管 道365通过第五子连通管进入第五子冷却管道366,接着经过第六子连通管进入第一制冷管道411和/或第二制冷管道421,经过第一制冷块41和/或第二制冷块42的制冷后,通过第七子连通管进入第六子冷却管道367,然后进入穿过封装的元器件的水冷板的第一腔室冷却管道35,带走封装的元器件产生的热量,并进入第七子冷却管道368,接着进入穿过水冷排5的第二腔室冷却管道6,对冷却油进行降温,并回到第四子冷却管道365,实现对封装的元器件的冷却。
优选地,机箱本体2内同时存在相互独立且隔离的由侧板冷却管道3和第一隔板冷却管道和第一制冷管道411形成的用于冷却裸露的元器件的冷却回路,以及由第一腔室冷却管道35、第二腔室冷却管道6、第二隔板冷却管道和第二制冷管道421形成的用于冷却封装的元器件的冷却回路,以提高对于机箱本体2的整体冷却效果和整体冷却效率。
进一步地,如图1所示,多个制冷块4依次贴合在一起;机箱冷却装置还包括制冷块散热部7,其位于第二腔室内并贴合在位于最外侧的制冷块4的外侧。
具体说,多个制冷块4的尺寸可各不相同,则各制冷块4按照尺寸由大至小的顺序依次贴合,尺寸最大的制冷块4位于最外侧,则可露出各制冷块4上的制冷管道的制冷进油口和制冷出油口,以与冷却管道连通。
进一步如图1所示,制冷块散热部7包括:导冷板71,其贴合在最外侧的制冷块4的外侧;电子制冷片72,其具有相对的制冷面和制热面,制冷面贴合导冷板71的外侧;导热板73,其贴合制热面。
具体说,图1所示为制冷块散热部7的横截面图,即导冷板71、电子制冷片和导热板73的横截面图。电子制冷片72可外接12V电源,将制冷面贴合到位于最外侧的制冷块的外侧,制热面贴合到风扇组74,将从制冷管道中的冷却油获取的热量传递到水冷排5,实现对各制冷块4的散热。
进一步如图1所示,机箱冷却装置还包括:压力泵总成8,其位于第一腔室并固定在隔板1上,压力泵总成8与第一隔板冷却管道连通。
具体说,压力泵总成8可作为第二子连通管连通第一子出油口3431和第二子进油口3441,以为冷却裸露的元器件的冷却回路增加压力。同样,第五子连通管也可为固定在隔板1上的压力泵总成8,以为冷却封装的元器件的冷却回路增加压力。
在实际应用过程中,压力泵总成8可包括水箱和压力泵,水箱与第一横隔板冷却管道连通,压力泵安装在水箱上侧。
进一步,如图1所示,机箱冷却装置还包括:密封圈9,其固定在第一腔室内,并包裹侧板冷却管道33,以提高侧板冷却管道33的密封性。为进一步地提高侧板冷却管道33的密封性,可在侧板冷却管道33的周围包裹双层的密封圈9。
另外,第一隔板冷却管道和第二隔板冷却管道的周围也可包裹有密封圈9。
可选地,如图2所示,机箱冷却装置还包括:具有开设在第二冷却子管道344靠近第二腔室的一侧且带有阀门的第一排油口3442、开设在第五子冷却管道366靠近第二腔室的一侧且带有阀门的第二排油口3662,在靠近第二腔室的一侧具有带有阀门的第三排油口101和在靠近第一腔室的一侧具有漏油口102的辅助排油管道10。当需要更换各冷却回路内填充的冷却油时,将第一排油口3442、第二排油口3662和第三排油口101的阀门打开,以进行更换。
可选地,如图7所示,机箱本体2与隔板1相对且靠近第二腔室的板件,在本实施例中为机箱本体2的底座上还设有散热孔11,以提高对于各制冷块的散热效果。
可选地,如图7所示,机箱本体2的底座上安装有底座滑轮12,以提高移动机箱本体2的便利性。在实际应用过程中,底座滑轮12可为万向轮。
可选地,如图7所示,安装有侧板冷却管道33的侧板21的外侧安装有制冷块风扇组13,以进一步提高侧板冷却管道33和制冷块散热部7的散热效果。
可选地,侧板冷却管道33还具有侧板温感探头333,第一制冷块41上还具有第一制冷温感探头414,第二制冷块42上还具有第二制冷温感探头424,侧板温感探头333、第一制冷温感探头414和第二制冷温感探头424分别用于检测侧板冷却管道33、第一制冷块41和第二制冷块42的温度,并外接控制机构进行控制和监测。
本发明还提供一种机箱,包括前述的机箱冷却装置。在实际应用过程中,该机箱可为模块化机箱,以提高使用便利性。本发明还提供一种桌子,其具有用于容纳前述机箱的柜体,其中该柜体可采用透明材料。
应当理解,虽然本说明书是按照各实施例来描述的,但并非每个实施例仅包含一个独立的技术方案,说明书的这种叙述方式仅仅是为清楚起见,本领域技术人员应当将说明书作为一个整体,各实施例中的技术方案也可以适当组合,形成本领域技术人员可以理解的其它实施方式。
以上所述仅为本发明示意性的具体实施方式,并非想要限定本发明的范围。任何本领域的技术人员在不脱离本发明的构思和原则的前提下所作的等同变化、修改与结合均应属于本发明保护的范围。

Claims (10)

  1. 一种用于机箱本体的机箱冷却装置,其特征在于,包括:
    至少一个隔板,其固定在所述机箱本体的内部并将所述机箱本体的内部至少分隔为第一腔室和第二腔室;
    一路或多路冷却管道,其安装在所述第一腔室内并具有第一隔板第二腔室进油口和第一隔板第二腔室出油口;
    多个制冷块,其固定在所述第二腔室内且分别具有制冷管道并且在外表面上涂覆有防水层,所述制冷管道均具有通过穿过所述隔板的第一连通管连通所述第一隔板第二腔室出油口的制冷进油口和通过穿过所述隔板的第二连通管连通所述第一隔板第二腔室进油口的制冷出油口,各所述制冷管道连通至所述冷却管道而形成各冷却回路。
  2. 根据权利要求1所述的机箱冷却装置,其特征在于,第一腔室内填充有冷却油并固定有裸露的元器件,并且设有多路所述冷却管道,多路所述冷却管道包括:
    侧板冷却管道,其固定在所述第一腔室的侧板上并具有侧板出油口和与所述第一腔室连通的侧板进油口;
    第一隔板冷却管道,其固定在所述隔板上并在靠近所述第一腔室的一侧具有与所述侧板出油口通过第三连通管连通的第一隔板第一腔室进油口、与所述第一腔室连通的第一隔板第一腔室出油口,以及在靠近所述第二腔室的一侧具有所述第一隔板第二腔室出油口和所述第一隔板第二腔室进油口。
  3. 根据权利要求1或2所述的机箱冷却装置,其特征在于,第一腔室内固定有封装的元器件,所述冷却管道包括或还包括:
    第一腔室冷却管道,其位于所述第一腔室内且穿过所述封装的元器件并且具有第一腔室进油口和第一腔室出油口;
    第二隔板冷却管道,其固定在所述隔板上,并具有与所述第一腔室进油口连通的第二隔板第一腔室出油口和与所述第一腔室出油口连通的第二隔板第一腔室进油口,以及在靠近所述第二腔室的一侧具有所述第一隔板第二腔室进油口和所述第一隔板第二腔室出油口。
  4. 根据权利要求3所述的机箱冷却装置,其特征在于,
    所述第二隔板冷却管道靠近所述第二腔室的一侧还具有第二隔板第二腔室进油口和第二隔板第二腔室出油口;
    所述机箱冷却装置还包括:
    水冷排,其固定在所述第二腔室内;
    第二腔室冷却管道,其位于所述第二腔室且穿过所述水冷排,并具有与所述第二隔板第二腔室进油口连通的第二腔室出油口和与所述第二隔板第二腔室出油口连通的第二腔室进油口。
  5. 根据权利要求1所述的机箱冷却装置,其特征在于,
    多个所述制冷块依次贴合在一起;
    所述机箱冷却装置还包括制冷块散热部,其位于所述第二腔室内并贴合在位于最外侧的制冷块的外侧。
  6. 根据权利要求5所述的机箱冷却装置,其特征在于,所述制冷块散热部包括:
    导冷板,其贴合在所述最外侧的制冷块的外侧;
    电子制冷片,其具有相对的制冷面和制热面,所述制冷面贴合所述导冷板的外侧;
    导热板,其贴合所述制热面。
  7. 根据权利要求2所述的机箱冷却装置,其特征在于,所述机箱冷却装置还包括:
    压力泵总成,其位于所述第一腔室并固定在所述隔板上,所述压力泵总成与所述第一隔板冷却管道连通。
  8. 根据权利要求2所述的机箱冷却装置,其特征在于,所述机箱冷却装置还包括:
    密封圈,其固定在所述第一腔室内,并包裹所述侧板冷却管道。
  9. 一种机箱,其特征在于,包括如权利要求1至8任一项所述的机箱冷却装置。
  10. 一种桌子,其特征在于,具有用于容纳如权利要求9所述的机箱的柜体。
PCT/CN2020/094151 2019-06-04 2020-06-03 机箱冷却装置、机箱及桌子 WO2020244542A1 (zh)

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2681215Y (zh) * 2003-09-27 2005-02-23 非学文 一种电脑散热装置
CN101122811A (zh) * 2007-07-31 2008-02-13 朱勇 油冷观赏式计算机主机箱
CN206312061U (zh) * 2016-11-29 2017-07-07 广东合一新材料研究院有限公司 一种部分浸没式液冷服务器冷却系统
CN107479677A (zh) * 2017-10-17 2017-12-15 北京高峰达国际知识产权代理有限公司 一种智能温控电脑机箱
EP3422835A1 (fr) * 2017-06-30 2019-01-02 Commissariat à l'Energie Atomique et aux Energies Alternatives Systeme de refroidissement d'un ou plusieurs serveurs informatiques par caloducs et de production de chaleur a partir de celle recuperee du (des) serveur(s)
CN110174933A (zh) * 2019-06-04 2019-08-27 姜海波 机箱冷却装置、机箱及桌子
CN210348382U (zh) * 2019-06-04 2020-04-17 姜海波 机箱冷却装置、机箱及桌子

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103533813B (zh) * 2013-10-28 2016-06-29 福建润达动力机械有限公司 一种高散热发电机组箱体
TWI634304B (zh) * 2016-03-01 2018-09-01 雙鴻科技股份有限公司 水冷散熱裝置
CN107979962B (zh) * 2018-01-09 2024-02-20 无锡巨日电子科技有限公司 水冷式线路板散热装置
CN207960762U (zh) * 2018-02-13 2018-10-12 无锡凯美锡科技有限公司 油冷式机箱
CN207911224U (zh) * 2018-02-13 2018-09-25 无锡凯美锡科技有限公司 新型油冷式机箱
CN208367593U (zh) * 2018-05-18 2019-01-11 邹万芳 一种新型计算机用散热机箱
CN108459685A (zh) * 2018-05-29 2018-08-28 滁州职业技术学院 一种高效散热的计算机机箱

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2681215Y (zh) * 2003-09-27 2005-02-23 非学文 一种电脑散热装置
CN101122811A (zh) * 2007-07-31 2008-02-13 朱勇 油冷观赏式计算机主机箱
CN206312061U (zh) * 2016-11-29 2017-07-07 广东合一新材料研究院有限公司 一种部分浸没式液冷服务器冷却系统
EP3422835A1 (fr) * 2017-06-30 2019-01-02 Commissariat à l'Energie Atomique et aux Energies Alternatives Systeme de refroidissement d'un ou plusieurs serveurs informatiques par caloducs et de production de chaleur a partir de celle recuperee du (des) serveur(s)
CN107479677A (zh) * 2017-10-17 2017-12-15 北京高峰达国际知识产权代理有限公司 一种智能温控电脑机箱
CN110174933A (zh) * 2019-06-04 2019-08-27 姜海波 机箱冷却装置、机箱及桌子
CN210348382U (zh) * 2019-06-04 2020-04-17 姜海波 机箱冷却装置、机箱及桌子

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