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Application of Thermal Conductive Materials in Artificial Intelligence
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Application of Thermal Conductive Materials in Artificial Intelligence

When people watch science fiction movies, they are often attracted by the future scenes they present. When it comes to the future, artificial intelligence is an element that cannot be escaped. Artificial intelligence allows people to put down their mobile phones and enjoy life.


Artificial intelligence in reality is not that scary. The application of many social technologies depends on the development of artificial intelligence, such as unmanned driving, warehouse robots, medical robots, industrial assembly line robots, etc. Even the mobile phones and computers that people usually use have related applications, so the development of artificial intelligence has promoted the development of society.


12导热胶


Artificial intelligence is a discipline, and robots, unmanned driving, central data processing systems, etc. are all related applications. Simply speaking, warehouse robots, in the past, warehouse management was mainly manpower-based, and large and small machines and equipment and personnel were operating in warehouses. In addition to manpower efficiency, there are safety hazards. Warehouse robots can operate under the command of the system, which can not only improve work efficiency, but also avoid accidents caused by collisions between machines and equipment. Therefore, warehouse robots will be the focus of the development of the logistics and warehousing industry in the future.


A robot is composed of many components, which have clear division of labor, so that the robot can maintain efficient operation. However, if a component has a problem, it will affect other components, causing the robot to be unable to operate. Heat dissipation is one of the main factors affecting machinery and equipment. It is inevitable that machinery and equipment will generate heat when running, because current will generate heat when passing through resistance, so the key is how to effectively dissipate heat.


There is a gap between the heat source and the radiator. If they are in direct contact, the heat dissipation effect will be reduced. Even if two planes look smooth and flat, there are some pits. Air is a poor conductor of heat, so the heat transfer efficiency will be reduced. At this time, it is necessary to fill the gap between the two with thermal conductive materials to cover the pits between the gaps, exclude the interface air, reduce the contact thermal resistance, and improve the heat transfer efficiency, thereby improving the heat dissipation effect, so that the machinery and equipment can operate stably and reliably for a long time.


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