Six heat source face high power closed cycle wind, liquid cooling heat dissipation combined system
Technical Field
The utility model relates to the technical field of circulated air and liquid cooling combined heat dissipation, in particular to a six-heat-source-surface high-power closed-circuit circulated air and liquid cooling heat dissipation combined system.
Background
In the fields of laser projection, servers, computers, mobile communication, medical systems, power electronics and the like, high requirements on thermal performance, space integration and a closed-loop circulation heat dissipation mode are generally required, so that the device or equipment can normally and stably operate in actual use. Conventionally, air-cooled heat sinks, which generally use fans and fins to dissipate heat, or liquid-cooled heat sinks, which use water or other liquids to transfer heat and dissipate heat through the heat sink, are used. Air-cooled heat sinks are generally easier to install and maintain, but liquid-cooled heat sinks are generally more excellent in heat dissipation efficiency and mute performance.
In the existing six-heat-source-surface high-power heat dissipation system, the power is lower, the number of heat sources is less, the system volume is larger, the closed cycle of multiple heat sources is difficult, the cost is high, the effects of water drainage and water cooling radiators are poor, and the use requirements of high-power closed cycle heat dissipation of multiple heat sources of customers cannot be met, so that the design of a six-heat-source-surface high-power closed cycle air and liquid cooling heat dissipation combined system is needed to solve the problems.
Disclosure of utility model
In order to solve the technical problems, the technical scheme provides a six-heat-source-surface high-power closed-circuit circulating air and liquid cooling heat dissipation combined system, which solves the problems that the power is relatively low, the number of heat sources is small, the system volume is large, the closed-circuit circulation of multiple heat source surfaces is difficult, the cost is high, the effects of water drainage and water cooling radiators are poor, the use requirement of the client multi-heat-source-surface high-power closed-circuit circulation heat dissipation cannot be met, and the like.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a six-heat-source-surface high-power closed-circuit circulating air and liquid cooling heat dissipation combination system comprises:
The left end of the high-performance stable water pump is electrically connected with a water pump power supply, and the bottom of the high-performance stable water pump is provided with a water pump shock pad;
The number of the dripless quick-plugging connectors is two, the rear end of the dripless quick-plugging connector at the lower part is communicated with the right end of the high-performance stable water pump, and the front end of the dripless quick-plugging connector at the lower part is communicated with one end of the three-way water separator;
The high-power water-cooling radiators are divided into an upper group and a lower group which are symmetrically arranged;
The three-way water separators are two in number, and one ends of the two three-way water separators are respectively communicated with the front ends of the two drip-free quick-plugging connectors through flexible corrugated pipes;
The cooling water drain is provided with a water drain fixing frame outside, the front end of the water drain fixing frame is fixedly connected with the rear end of the fan fixing frame, two groups of universal quick-twisting water connectors are symmetrically arranged at the front end of the cooling water drain, and the front end of the universal quick-twisting water connector at the left side is communicated with the input end of the drip-free quick-inserting water connector above;
The left end downside of the transparent cooling liquid water tank is communicated with the input end of the high-performance stable water pump through a flexible corrugated pipe, and the right end upside of the transparent cooling liquid water tank is connected with the right universal quick-screwing joint through the flexible corrugated pipe.
Furthermore, the two groups of high-power water-cooling radiators are respectively communicated in series through flexible corrugated pipes.
Further, six ultra-silent fans are arranged in the fan fixing frame, and the six ultra-silent fans are uniformly arranged in two rows at equal intervals.
Further, the other ends of the two tee joint water splitters are respectively communicated with the front end and the rear end of the two groups of high-power water-cooling radiators through two flexible corrugated pipes.
Further, an exhaust hole is formed in the top of the cooling liquid transparent water tank.
As the preferable technical scheme of the utility model, compared with the prior art, the utility model provides a six-heat-source-surface high-power closed-cycle air and liquid cooling heat dissipation combined system, which has the following beneficial effects:
1. the flexible corrugated pipe, the drip-free quick water-inserting joint and the universal quick water-twisting joint are used for connecting all components, so that the space is integrated, the mounting and dismounting efficiency is improved, the cost is reduced, and the technical problem of related requirements is solved;
2. the components such as the high-performance stable water pump, the three-way water separator, the cooling liquid transparent water tank, the radiating water row, the high-power water-cooling radiator and the like are connected in series through the flexible corrugated pipe, so that an efficient closed-loop circulation radiating system combining air cooling and water cooling is formed;
3. The system is simple, convenient to operate, time-saving and labor-saving, stable in performance, capable of improving the superior performance of products, and suitable for wide popularization.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic diagram of a water-cooled circulating heat dissipating assembly according to the present utility model;
FIG. 3 is a schematic view of the structure of the air cooling module according to the present utility model.
The reference numerals in the figures are:
1. A water pump power supply; 2, a high-performance stable water pump; 3, a water pump shock pad; the device comprises a water pipe, a.
Detailed Description
The following description is presented to enable one of ordinary skill in the art to make and use the utility model. The preferred embodiments in the following description are by way of example only and other obvious variations will occur to those skilled in the art.
Referring to fig. 1-3, the six-heat-source-surface high-power closed cycle wind and liquid cooling heat dissipation combined system comprises a high-performance stable water pump 2, wherein the left end of the high-performance stable water pump 2 is electrically connected with a water pump power supply 1, the bottom of the high-performance stable water pump 2 is provided with a water pump vibration-proof pad 3, the high-performance stable water pump 2 is a high-lift direct-current brushless pump stable water pump which is used for providing high-efficiency and stable transmission, the water pump vibration-proof pad 3 is an ultra-soft silica gel vibration-proof pad, the vibration of the water pump is doubly reduced, the high-performance stable water pump 2 is more stable in transmission, the number of the drip-free quick-plug connectors 4 is two, the drip-free water is conveniently and quickly plugged, the assembly and disassembly flexibility is greatly improved, the use space is shortened, the maintenance convenience is improved, the assembly and the disassembly efficiency is improved, the rear end of the lower drip-free quick-plug connector 4 is communicated with the right end of the high-performance stable water pump 2, and the front end of the lower drip-free quick-plug connector 4 is communicated with one end of a three-way water distributor 5.
In another embodiment provided by the utility model, as shown in fig. 1, the number of the high-power water-cooling radiators 7 is six, the six high-power water-cooling radiators 7 are all high-heat-flux-density water-cooling radiators, so that the heat of a high-power heat source can be solved, the performance is excellent, the quality is reliable, the six high-power water-cooling radiators 7 are divided into an upper group and a lower group which are symmetrically arranged, the two groups of high-power water-cooling radiators 7 are respectively communicated in series through flexible corrugated pipes 6, the number of the three-way water-splitting devices 5 is two, one ends of the two three-way water-splitting devices 5 are respectively communicated with the front ends of the two dripless quick-plugging water connectors 4 through the flexible corrugated pipes 6, the other ends of the two three-way water-splitting devices 5 are respectively communicated with the front ends and the rear ends of the two groups of the two high-power water-cooling radiators 7, the design specification of the heat-dissipating water-splitting device 9 is 360 x 240 mm, and the special high-power water-splitting device 9 is high in heat dissipation performance, and uniform in temperature dissipation.
In another embodiment provided by the utility model, as shown in fig. 1, a water drain fixing frame 14 is arranged outside a heat dissipating water drain 9, the front end of the water drain fixing frame 14 is fixedly connected with the rear end of a fan fixing frame 12, six ultra-silent fans 13 are arranged inside the fan fixing frame 12, the six ultra-silent fans 13 are uniformly and equidistantly arranged in two rows, the design specification of the ultra-silent fans 13 is 120 x 25mm, the ultra-silent type water heater is characterized in that the ultra-silent type water heater is ultra-silent, stable and efficient, the temperature is uniform and uniform, the stability is good, the noise reduction effect is obvious, two groups of universal quick water twisting joints 8 are symmetrically arranged at the front end of the heat dissipating water drain 9, the front end of the left universal quick water twisting joint 8 is communicated with the input end of the upper dripless quick water inserting joint 4, the components are connected through the universal quick water twisting joints 8, the connection of all directions and the size specifications can be met, and the installation time, space and convenience are greatly shortened.
In another embodiment provided by the utility model, as shown in fig. 1, the lower side of the left end of a cooling liquid transparent water tank 10 is communicated with the input end of a high-performance stable water pump 2 through a flexible corrugated pipe 6, the upper side of the right end of the cooling liquid transparent water tank 10 is connected with a right universal quick-screwing water joint 8 through the flexible corrugated pipe 6, the top of the cooling liquid transparent water tank 10 is provided with an exhaust hole 11, the cooling liquid transparent water tank 10 is arranged in a transparent manner, the flow and the liquid level condition of the internal liquid can be effectively observed, and the top of the cooling liquid transparent water tank 10 is provided with the exhaust hole 11.
In another embodiment provided by the utility model, as shown in fig. 1, six high-power water-cooling radiators 7, a high-performance stable water pump 2, a cooling liquid transparent water tank 10, a flexible corrugated pipe 6 and a radiating water row 9 are effectively connected in series through two tee joint water splitters 5.
In another embodiment provided by the utility model, as shown in fig. 1, the flexible corrugated pipe 6 is made of a high-softness and high-pressure-resistance material, has high flexibility, is flexible and convenient to assemble or disassemble, has higher applicability, can be bent and rolled for use, and is beneficial to reducing space occupation.
In the utility model, six high-power water-cooling radiators 7 are abutted against a high-power heat source, a high-performance stable water pump 2 is started through a water pump power supply 1, then the cooling liquid in a cooling liquid transparent water tank 10 is pumped out, the cooling liquid is conveyed to a three-way water separator 5 through a drip-free quick water plug connector 4 at the lower part, then the cooling liquid is conveyed into the six high-power water-cooling radiators 7, then the six faces of the high-power heat source are cooled, the cooling liquid flows through the six high-power water-cooling radiators 7 and then enters another three-way water separator 5, then the cooling liquid is conveyed to a drip-free quick water plug connector 4 at the upper part, then enters a cooling water drain 9 through a universal quick water plug connector 8, then the cooling liquid is cooled by matching with an ultra-silent fan 13, the ultra-silent fan 13 can cool the whole working environment, then the cooling liquid is cooled down through the flexible corrugated pipe 6, and the cooling liquid is conveyed into the cooling liquid transparent water tank 10 from the universal quick water plug 8 which is fixedly communicated with the other end of the cooling water drain 9, and a high-power cooling and liquid cooling combined circulation system is realized.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made therein without departing from the spirit and scope of the utility model, which is defined by the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.