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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Characterization of Mechanical Behavior of Metallic and Non-metallic Particulate Filled Epoxy Matrix Composites
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Characterization of Mechanical Behavior of Metallic and Non-metallic Particulate Filled Epoxy Matrix Composites

机译:金属和非金属颗粒填充环氧树脂基复合材料力学行为的表征

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Studies were carried out on RT cure epoxy (LY556 + HY951) composite system comprised of metallic and non-metallic fillers. The results of the studies carried out on composites with three distinctly different particulate fillers, representing ductile (Cu and Al), brittle (SiC), and soft (Gr) type of materials regarding the mechanical properties, showed that the tensile and flexural strength of the particulate composites degraded with filler loading, whereas the modulus (both tensile and flexural) of the composites increased with the filler loading for the range of filler contents considered (10-40 wt%). The compression strength of all the composites increased to a maximum up to a filler loading of 30% and then decreased beyond this value, with the SiC-Ep composites exhibiting the highest improvement in the compression strength.
机译:对由金属和非金属填料组成的RT固化环氧树脂(LY556 + HY951)复合体系进行了研究。在具有三种截然不同的颗粒填料的复合材料上进行的研究结果,分别代表了韧性(Cu和Al),脆性(SiC)和软性(Gr)类型的材料的机械性能,结果表明,其拉伸强度和弯曲强度在所考虑的填料含量范围内(10-40 wt%),颗粒状复合材料随填料量的增加而降解,而复合材料的模量(拉伸和挠曲)随填料量的增加而增加。所有复合材料的抗压强度最大提高到最高填充填料量的30%,然后降低到该值以下,而SiC-Ep复合材料的抗压强度提高最大。

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