Computer water-cooling heat abstractor
Technical Field
The invention relates to the field of computers, in particular to a water-cooling heat dissipation device for a computer.
Background
Computer radiator: the device or the instrument can timely transfer heat generated by machinery or other appliances during working so as to avoid influencing the normal work of the machinery or other appliances. Common radiators can be divided into various types such as air cooling, heat pipe radiators, liquid cooling, semiconductor refrigeration, compressor refrigeration and the like according to the heat dissipation mode. Integrated circuits are heavily used in computer components. It is well known that high temperatures are a rival of integrated circuits. The high temperature can not only cause the unstable operation of the system and shorten the service life, but also possibly burn some parts. The heat that causes the high temperature does not come from outside the computer, but inside the computer, or inside the integrated circuit. The radiator is used for absorbing the heat and then radiating the heat into the case or out of the case, so that the temperature of the computer components is ensured to be normal. Most heat sinks absorb heat by contacting the surfaces of heat-generating components, and then transfer the heat to a remote location by various methods, such as air in a chassis, and then the chassis transfers the hot air to the outside of the chassis, thereby dissipating heat from the computer. The types of radiators are very many, and CPUs, display cards, mainboard chip sets, hard disks, cases, power supplies and even optical drives and memories all need radiators, and the different radiators cannot be used in a mixed manner, wherein the radiator of the CPU is the most frequently contacted. According to the way of taking away heat from the heat sink, the heat sink of the computer can be divided into active heat dissipation and passive heat dissipation. The former is commonly an air-cooled heat sink, while the latter is commonly a heat sink. The further subdivision heat dissipation mode can be divided into air cooling, heat pipes, liquid cooling, semiconductor refrigeration, compressor refrigeration and the like. These radiators are all the radiators of computers, the life is more and more convenient at present, people use notebook computers more and more generally, and it is unlikely that large-scale cooling systems are installed on the notebook computers, so that the heat dissipation of the notebook computers is grippy to people, most of the radiating holes are arranged at the bottom and the side edges of the computers, but the radiating holes at the side edges are slow and poor in effect, most of the radiating holes at the bottom are blocked by the desktop and cannot dissipate heat, and many people use fans to dissipate heat of the computers at present and blow away hot air, but the effect of the method is not obvious, the temperature of the computers is reduced slowly, and therefore the water-cooling heat dissipation device for the computers is provided.
Disclosure of Invention
The present invention is directed to a computer water-cooling heat dissipation device, which solves the problems of the prior art.
In order to achieve the purpose, the invention provides the following technical scheme: a computer water-cooling heat dissipation device comprises a computer heat dissipation plate, a heat absorption pipe, a power switch, a power plug, a refrigeration water tank, a centrifugal pump controller, a computer anti-skid baffle, a heat absorption port, a water inlet pipe, a water return pipe, a condenser and a fan, wherein the computer anti-skid baffle is arranged on one side of the computer heat dissipation plate, the condenser is arranged on the other side of the computer heat dissipation plate, the heat absorption pipe is arranged in the middle of the computer heat dissipation plate, a plurality of heat absorption ports are arranged at the bottom end of the heat absorption pipe, the centrifugal pump controller is arranged at the bottom end of the computer heat dissipation plate, the refrigeration water tank is arranged on one side of the centrifugal pump controller, the water inlet pipe and the water return pipe are arranged at the top end of the refrigeration water tank, the centrifugal pump is connected to one side of the refrigeration water tank, the power, the bottom of the heat absorption pipe is provided with a plurality of fans.
As a preferred technical solution of the present invention, the power plug is electrically connected to the power switch, the power switch is electrically connected to the condenser, the blower and the centrifugal pump controller, and the centrifugal pump controller is electrically connected to the centrifugal pump.
As a preferred technical scheme of the invention, the condenser is fixed on one side of the base through screws, and the refrigeration water tank and the centrifugal pump are both fixed on the top of the base through screws.
As a preferred technical scheme of the present invention, the computer heat dissipation plate is a hollow box, the heat absorption tube is formed by welding a plurality of U-shaped copper tubes, and is installed inside the computer heat dissipation plate, one end of the heat absorption tube is connected to the refrigeration water tank through the water inlet tube, and the other end of the heat absorption tube is connected to the refrigeration water tank through the water return tube.
As a preferred technical scheme of the invention, the fan is fixed at the bottom of the computer cooling plate through a bolt, the centrifugal pump is connected with the water inlet pipe, and the computer cooling plate is made of stainless steel materials.
The invention has the beneficial effects that: the device has the advantages that secondary heat dissipation can be performed on the computer, the service life of the computer is prolonged, the computer can be used more smoothly, hot air dissipated from the computer is absorbed through cold water heat absorption and then dissipated, and the heat dissipation effect is improved.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a partial schematic view of the present invention;
in the figure: 1. a computer heat sink; 2. a heat absorbing tube; 3. a power switch; 4. a power plug; 5. a refrigeration water tank; 6. a centrifugal pump; 7. a centrifugal pump controller; 8. a computer antiskid baffle; 9. a heat absorption port; 10. a water inlet pipe; 11. a water return pipe; 12. a condenser; 13. a fan.
Detailed Description
The following detailed description of the preferred embodiments of the present invention, taken in conjunction with the accompanying drawings, will make the advantages and features of the invention more readily understood by those skilled in the art, and thus will more clearly and distinctly define the scope of the invention.
Example (b): referring to fig. 1-2, the present invention provides a technical solution: a computer water-cooling heat dissipation device comprises a computer heat dissipation plate 1, a heat absorption pipe 2, a power switch 3, a power plug 4, a refrigeration water tank 5, a centrifugal pump 6, a centrifugal pump controller 7, a computer anti-skid baffle 8, a heat absorption port 9, a water inlet pipe 10, a water return pipe 11, a condenser 12 and a fan 13, wherein one side of the computer heat dissipation plate 1 is provided with the computer anti-skid baffle 8, the other side of the computer heat dissipation plate 1 is provided with the condenser 12, the middle part of the computer heat dissipation plate 1 is provided with the heat absorption pipe 2, the bottom end of the heat absorption pipe 2 is provided with a plurality of heat absorption ports 9, the bottom end of the computer heat dissipation plate 1 is provided with the centrifugal pump controller 7, one side of the centrifugal pump controller 7 is provided with the refrigeration water tank 5, the top end of the refrigeration water tank 5 is provided with the water inlet pipe 10 and the water return pipe 11, one, the bottom end of the heat absorption pipe 2 is provided with a plurality of fans 13.
The power plug 4 is electrically connected with the power switch 3, the power switch 3 is electrically connected with the condenser 12, the fan 13 and the centrifugal pump controller 7, and the centrifugal pump controller 7 is electrically connected with the centrifugal pump 6.
The condenser 12 is fixed on one side of the base through screws, and the refrigeration water tank 5 and the centrifugal pump 6 are both fixed on the top of the base through screws.
Computer heating panel 1 is the box body of fretwork, and heat-absorbing pipe 2 adopts a plurality of U type copper pipe to weld each other and makes to install in computer heating panel 1's inside, the one end of heat-absorbing pipe 2 is passed through inlet tube 10 and is linked to each other with refrigeration water tank 5, and the other end passes through wet return 11 and links to each other with refrigeration water tank 5.
The fan 13 is fixed at the bottom of the computer cooling plate 1 through bolts, the centrifugal pump 6 is connected with the water inlet pipe 10, and the computer cooling plate 1 is made of stainless steel materials.
The working principle is as follows: a computer water-cooling heat dissipating double-fuselage, including computer heating panel 1, heat-absorbing pipe 2, mains switch 3, power plug 4, refrigeration water tank 5, centrifugal pump 6, centrifugal pump controller 7, computer antiskid baffle 8, heat-absorbing port 9, intake pipe 10, return water pipe 11, condenser 12 and blower 13, when using the apparatus, put the computer on the computer heating panel 1 first, utilize the computer antiskid baffle 8 to let the computer not slide down, then insert the power plug 4 and let the centrifugal pump controller 7 energize, control the centrifugal pump 6 to suck the water in the refrigeration water tank 5, let the hydroenergy on the refrigeration water tank 5 flow to the heat-absorbing pipe 2 on the computer heating panel 1 through the intake pipe 10 and return to the refrigeration water tank 5 through the return water pipe 11, and there are ammonium nitrate in the refrigeration water tank 5, when the water in the heat-absorbing pipe 2 absorbs the heat that the computer sends out, it can be cooled fast to meet ammonium nitrate to return to the refrigeration water tank 5 to pressurize by the centrifugal pump 6, then the heat is impacted into the water inlet pipe 10 by pressurization, so that the heat emitted by the computer is absorbed back and forth, meanwhile, the heat absorption port 9 and the fan 13 can absorb the heat of the computer into the radiator, gas or vapor can be converted into liquid through the condenser 12, the heat emitted by the computer is quickly transferred into air near the radiator, and then the heat is radiated for the computer again.
The above-mentioned embodiments only express several embodiments of the present invention, and the description thereof is more specific and detailed, but not construed as limiting the scope of the invention. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the inventive concept, which falls within the scope of the present invention.