首页> 外国专利> LIQUID CRYSTAL COMPOSITION WITH ANISOTROPIC THERMAL AND ELECTRICAL CONDUCTION PROPERTIES, AND MANUFACTURING METHOD OF HEAT RELEASE AND ELECTROMAGNETIC WAVE SHIELDING MATRIX USING SAME

LIQUID CRYSTAL COMPOSITION WITH ANISOTROPIC THERMAL AND ELECTRICAL CONDUCTION PROPERTIES, AND MANUFACTURING METHOD OF HEAT RELEASE AND ELECTROMAGNETIC WAVE SHIELDING MATRIX USING SAME

机译:具有各向异性的热和电传导特性的液晶组成,以及使用该结构的散热和电磁波屏蔽矩阵的制造方法

摘要

The present invention relates to a liquid crystal composition with anisotropic thermal and electrical conduction properties, capable of controlling the heat release and the electron transfer by aligning and curing liquid crystals in a specific direction and to a manufacturing method of a heat release and electromagnetic wave shielding matrix using the same. The anisotropic heat release and electromagnetic wave shielding matrix of the present invention has liquid crystal molecules aligned in a specific direction, and forming a π-π stacking structure with adjacent liquid crystal molecules, thereby exhibiting thermal and electrical conduction properties in a specific direction. The heat release and electromagnetic wave shielding matrix of the present invention uses an organic composite, which allows various geometric molding according to the shape of a device, and can solve the mass problem, the heterogeneity, and disconnection through metal particles, which are the problems when using inorganic materials. Furthermore, the heat release and electromagnetic wave shielding matrix performs the functions of conventional heat release films and electromagnetic wave shielding films at the same time, thereby merging two processes into one process, and having the effects of simplifying processes and reducing the manufacturing costs.;COPYRIGHT KIPO 2015
机译:本发明涉及具有各向异性的导热和导电特性的液晶组合物,其能够通过沿特定方向排列和固化液晶来控制放热和电子传递,并且涉及一种放热和电磁波屏蔽的制造方法。矩阵使用相同。本发明的各向异性散热和电磁波屏蔽基质具有在特定方向上排列并形成π-π的液晶分子。具有相邻液晶分子的叠层结构,从而在特定方向上表现出导热和导电特性。本发明的散热和电磁波屏蔽基质使用有机复合材料,该有机复合材料可以根据装置的形状进行各种几何造型,并且可以解决质量问题,异质性以及通过金属颗粒的分离问题使用无机材料时。此外,散热和电磁波屏蔽矩阵同时执行传统的散热膜和电磁波屏蔽膜的功能,从而将两个过程合并为一个过程,具有简化过程和降低制造成本的效果。版权KIPO 2015

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