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HEAT RADIATING MEMBER, DEVICE USING THE HEAT RADIATING MEMBER, CASING, COMPUTER SUPPORT STAND, AND RADIATING MEMBER MANUFACTURING METHOD
HEAT RADIATING MEMBER, DEVICE USING THE HEAT RADIATING MEMBER, CASING, COMPUTER SUPPORT STAND, AND RADIATING MEMBER MANUFACTURING METHOD
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机译:热辐射构件,使用热辐射构件的设备,机壳,计算机支持台和辐射构件制造方法
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摘要
A heat radiating member (1) shown in Fig. 1, comprising a tourmaline layer formed thereon by coating the surface of a base material formed of a metal with excellent heat conductivity such as copper and aluminum with a coating agent formed by mixing a schorltourmaline powder of generally 3 to 7 μm in grain size with a fluid fixing agent that the schorltourmaline powder can have a density of 0.025 to 0.05 g/cm2 and hardening the coating agent. Thus, the heat radiating member expected to provide more heat radiating effect than that of a heat radiating member formed by applying black painting to a base material, a device using the heat radiating member, or a part itself using the device can be provided.
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机译:图1所示的散热构件(1),其特征在于,在电气石层上形成有电气石层,该电气石层是通过将由电气石粉末混合而成的涂布剂涂布由铜,铝等导热性优异的金属构成的基材表面而形成的。通常使用流体固定剂在粒度为3至7μm的情况下,电气石粉可以具有0.025至0.05g / cm 2的密度并使涂层剂硬化。因此,可以提供期望提供比通过向基材上涂黑涂料而形成的散热构件,使用该散热构件的装置,或使用该装置的部件本身形成的散热效果更大的散热构件的散热构件。
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