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首页> 外文期刊>Journal of Applied Polymer Science >Dynamic viscoelastic properties and thermal properties of Ni powder-epoxy resin composites
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Dynamic viscoelastic properties and thermal properties of Ni powder-epoxy resin composites

机译:镍粉-环氧树脂复合材料的动态粘弹性和热性能

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摘要

The composite materials containing metal Ni powder of 5-15 mu m in size were prepared by use of the matrix epoxy resin of glycidyl amine crosslinked with bis-4-amino-3-methylcyclohexyl methane and 2,4-diamine 3,5-dimethyltoluene. Dynamic viscoelastic properties of the composites at various volume fraction (Phi(p)) of Ni powder have been measured over the temperature range from 30 to 300 degrees C, The peak temperatures in dynamic loss modulus-temperature diagrams of the composite increased with increasing Phi(p), although the peak position was abruptly shifted to lower temperatures in the range of Phi(p) more than 0.245. At this high concentration of Phi(p), agglomeration of the particles occurring in the composite lead to reduction of the interaction between Ni particle and epoxy resin. Parallel studies on the thermal conductivity (lambda) of the composites materials showed that the value of lambda at Phi(p) = 0.245 increased by approximately 7 times that of the original epoxy resin. The shape of Ni particles also affected the thermal durabilities of the composites; the rough surface of Ni powder yields a higher storage modulus of the composite than that of the materials containing the powder with a smooth surface, which had been brought through a ball-milling process. The finding suggested that the increasing in specific surface area of the powder improved the thermal durability of the composites as well as their mechanical properties. (C) 1998 John Wiley & Sans, Inc. [References: 19]
机译:利用双4-氨基-3-甲基环己基甲烷与2,4-二胺3,5-二甲基甲苯交联的缩水甘油胺基体环氧树脂制备了尺寸为5-15μm的金属Ni粉复合材料。 。在30至300℃的温度范围内,测量了Ni粉在不同体积分数(Phi(p))下的动态粘弹性性能。 (p),尽管峰值位置突然移至Phi(p)范围大于0.245的较低温度。在如此高的Phi(p)浓度下,复合物中发生的颗粒团聚导致Ni颗粒与环氧树脂之间的相互作用降低。对复合材料的热导率(lambda)进行的并行研究表明,在Phi(p)= 0.245时,λ值增加了原始环氧树脂的7倍。 Ni颗粒的形状也影响了复合材料的热耐久性。 Ni粉末的粗糙表面比通过球磨工艺制成的含有光滑表面粉末的材料具有更高的复合材料储能模量。该发现表明,粉末比表面积的增加改善了复合材料的热耐久性及其机械性能。 (C)1998 John Wiley&Sans,Inc. [参考:19]

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