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Polymer impregnation and pyrolysis process development for improving thermal conductivity of SiCp/SiC-PIP matrix fabrication

机译:聚合物浸渍和热解工艺开发,以提高SiCp / SiC-PIP基体制造的导热性

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The polymer impregnation and pyrolysis (PIP) method is optimized to consolidate particulates, and to produce a continuous SiC network to yield high thermal conductivity monoliths from particulates. The process as presently employed, consists of impregnating a polymeric precursor into a cast sample or a pressed pellet, pyrolyzing, and crystallizing at high temperature to a final form. The use of gas pressure in the polymer impregnation step was found essential to improve the density of the matrix, provided that the nature of the gas and the pressure applied were optimized. Thermal conductivity of this matrix indicated that higher crystallization temperatures improve the conductivity by removing impurities and increasing crystallite size. The impregnation process also permits bonding of solids to produce complex engineering shapes if high temperature crystallization is possible.
机译:对聚合物浸渍和热解(PIP)方法进行了优化,以固结颗粒,并产生连续的SiC网络,从而从颗粒中获得高导热率的整料。目前采用的方法包括将聚合物前体浸渍到铸塑样品或压制的小球中,热解,并在高温下结晶成最终形式。发现在聚合物浸渍步骤中使用气压对于提高基质的密度至关重要,条件是要优化气体的性质和施加的压力。该基质的热导率表明较高的结晶温度通过去除杂质和增加微晶尺寸来改善电导率。如果可能发生高温结晶,则浸渍过程还可以使固体粘结以产生复杂的工程形状。

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