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Designable core–shell graphite particles for thermally conductive and electrically insulating polymer composites

机译:适用于导热和电绝缘聚合物复合材料的可设计核-壳石墨颗粒

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Electrically insulating graphite particles were prepared by coating graphite with electrically insulating materials via a two-step mechanical mixing process. Graphite particles were treated with a binder in the 1 ~(st) mixing process and coated with an electrically insulating particle in the 2 ~(nd) mixing process under high shear forces within a short processing time (below 1 min). Micron-sized graphite particles were successfully coated with various inorganic particles of appropriate particle diameter. Talc and boron nitride exhibited good affinities with graphite and formed effective coating layers to render reliable electrical insulation. Graphite coated with talc and boron nitride exhibited a high volume resistivity, greater than 10 ~(9) Ω cm. The insulating property was retained even after compounding and moulding the coated graphite particles with a polymer. The two-step coating process under high shear forces is a promising method for production of coated graphite particles.
机译:通过经由两步机械混合工艺用电绝缘材料涂覆石墨来制备电绝缘石墨颗粒。石墨颗粒在第1次混合过程中用粘合剂处理,并在第2次混合过程中在短时间内(不到1分钟)在高剪切力下用电绝缘颗粒涂覆。用合适粒径的各种无机颗粒成功地涂覆了微米级石墨颗粒。滑石粉和氮化硼与石墨表现出良好的亲和力,并形成有效的涂层以提供可靠的电绝缘。涂有滑石粉和氮化硼的石墨表现出较高的体积电阻率,大于10〜(9)Ωcm。甚至在将涂覆的石墨颗粒与聚合物复合并成型之后,仍保持绝缘性能。在高剪切力下的两步涂覆工艺是生产涂覆石墨颗粒的有前途的方法。

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