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The mechanical and adhesive properties of electrically and thermally conductive polymeric composites based on high density polyethylene filled with nickel powder

机译:基于填充镍粉的高密度聚乙烯的导电和导热聚合物复合材料的机械和粘合性能

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Electrically and thermally conductive composites made using high density polyethylene (HDPE) matrix blended with a special grade of branch-structured nickel particles were studied. Composites with high filler content were highly electrically and thermally conductive. The electrical conductivity of composites reached a value of 8.3 x 10~3 S m~(-1) when filled with 30 vol.% of the filler, and the thermal conductivity obtained using this filler content was found to be 1.99 Wm~(-1) K~(-1) The percolation concentration of the filler within the HDPE matrix, which was determined from electrical conductivity measurements, was determined to be 8 vol.%. Young's modulus of composites significantly increased from 606 MPa to 1057 MPa when composites were filled with 20 vol.% of the filler. Further increasing the filler content caused no further increase in Young's modulus, probably due to high aggregation of the filler. The stress at break of the composites behaved nonlinearly; the low filler content suppressed necking, resulting in a decrease in stress at break, whereas higher filler content (higher than 10 vol.%) led to reinforcement of the composites and therefore increased the stress at break. The presence of nickel particles throughout the HDPE matrix increased the hydrophilicity of the composites. The contact angle of water on the neat HDPE decreased from 93° to 80° as the nickel content of the matrix was increased to 13 vol.% of nickel. Further increases in the filler content did not alter the contact angle. Similarly, the strength of the adhesive joint formed by the composite and aluminum foil increased from a value of 16 N m~(-1) for the neat HDPE to 27 N m~(-1) when the HDPE matrix was filled with 13 vol.% of the filler.
机译:研究了使用高密度聚乙烯(HDPE)基体与特殊等级的分支结构镍粒子混合制成的导电和导热复合材料。具有高填料含量的复合材料具有很高的导电性和导热性。当填充30%(体积)的填料时,复合材料的电导率达到8.3 x 10〜3 S m〜(-1),使用该填料含量获得的热导率为1.99 Wm〜(- 1)K〜(-1)由电导率测量确定的HDPE基质内的填料的渗透浓度被确定为8体积%。当复合材料填充有20%(体积)的填料时,复合材料的杨氏模量从606 MPa显着增加到1057 MPa。填料含量的进一步增加可能不会导致杨氏模量的进一步增加,这可能是由于填料的高聚集性所致。复合材料的断裂应力表现为非线性。低的填料含量抑制了颈缩,导致断裂应力降低,而较高的填料含量(高于10 vol。%)导致复合材料增强,因此增加了断裂应力。整个HDPE基体中镍颗粒的存在增加了复合材料的亲水性。当基质中的镍含量增加到镍的13 vol。%时,纯HDPE上水的接触角从93°减小到80°。填料含量的进一步增加不会改变接触角。类似地,由复合材料和铝箔形成的粘合接头的强度从纯HDPE的16 N m〜(-1)值增加到当HDPE基质填充13体积时的27 N m〜(-1)。 。%的填料。

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