微电子用导热复合材料界面现象的一些特征

H. S. Aliyev
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引用次数: 0

摘要

无机颗粒对聚合物的分散伴随着在颗粒表面影响下形成超分子结构(SMS)新元素,无机相的体积含量越大,分散剂影响下形成的聚合物体积部分越多。随着分散剂体积含量的增加,聚合物相完全过渡到近面层,聚合物在颗粒表面的影响下形成了整个体积的结构。因此,根据分散剂颗粒的活性或表面状态,聚合物相的物理和化学结构的非均质性会有所不同,我们认为,这将决定复合聚合物-氮化物,碳化物-金属的热物理性质[1]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Some Features of Interphase Phenomena in Heat-Conducting Composite Materials Used in Microelectronics
The dispersion of the polymer by an inorganic particle is accompanied by the formation of new elements of the supermolecular structure (SMS) under the influence of the particle surface, and the larger the volumetric content of the inorganic phase, the more part of the polymer volume is formed under the influence of the dispersant. With the complete transition of the polymer phase to the nearsurface layer with an increase in the volume content of the dispersant, the structure of the polymer throughout the volume is formed under the influence of the particle surface. Therefore, depending on the activity or surface state of the dispersant particles, the heterogeneity of the physical and chemical structures of the polymer phase will differ, and this, in our opinion, will determine the thermophysical properties of the composite polymer-nitrides, carbides-metals [1].
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