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Thermal Conductivity of Boron Nitride-Filled Thermoplastics:Effect of Filler Characteristics and Composite Processing Conditions

机译:氮化硼填充热塑性塑料的导热系数:填料特性和复合加工条件的影响

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摘要

The thermal conductivity of boron nitride(BN)-filled po-ly(butylene terephthalate)(PBT)was investigated as a function of particle size,aspect ratio,surface area,surface chemistry,and concentration of BN as well as composite processing methods and conditions.In the low filler concentration region,a larger BN surface area resulted in lower thermal conductivity of the composites as a result of phonon scattering at interfaces.In the high filler concentration region the ease in forming filler networks,as reflected by the aspect ratio of BN,played a more dominant role.A percolation-like behavior was observed when BN networks were formed while the thermal conductivity at close vicinity of the percolation threshold was not completely governed by the scaling law of classic percolation theory.High shear force employed in extrusion was effective in dispersing BN agglomerates into fine platelets while also inducing PBT degradation.When a low screw speed was used in extrusion followed by injection molding,the samples exhibited significantly lower thermal conductivity,which may be attributed to flow-induced orientation of BN platelets in the direction perpendicular to the heat flow,relatively low concentration of filler at sample surfaces(skin-core effect),and agglomeration of the BN platelets.
机译:研究了填充氮化硼(BN)的聚对苯二甲酸丁二醇酯(PBT)的热导率随粒径,长宽比,表面积,表面化学性质和BN浓度以及复合加工方法和在低填料浓度区域,由于界面处的声子散射,较大的BN表面积导致复合材料的热导率降低。在高填料浓度区域,易于形成填料网络,这由长径比反映出来BN网络起着更主要的作用。当形成BN网络时,观察到类似渗流的行为,而渗流阈值附近的热导率并不完全受经典渗流理论的比例定律控制。挤出可有效地将BN团聚体分散成细小的血小板,同时还引起PBT降解。在成型过程中,样品表现出明显较低的热导率,这可能归因于BN血小板在垂直于热流方向的流动诱导取向,样品表面填料相对较低的浓度(皮芯效应)以及BN血小板。

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