The greater the temperature difference, the faster the heat flows to the colder area. Using this process, heat energy is passed through a solid, liquid or gas from molecule to molecule in a material. In order for the heat to be conducted, there should be physical contact between particles and some temperature difference. Thus, Thermal conductive sealant helps in measuring the speed of heat flow passed from particle to particle. The rate of heat flow through a specific material will be influenced by the difference of temperature and by its thermal conductivity. For thermal conductive sealant or adhesives, we ensure that thermal resistance is determined keeping in mind the effectiveness of an adhesive to draw heat away from sensitive components, not thermal conductivity. As substrate sizes shrink and operating environments become more rugged, integrated product design must overcome the challenge of dissipating heat while maintaining shock resistance
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Thermal Conductive Sealant