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Effect of SiC Defects on Performance of Particle Reinforced Aluminum Matrix Composites

机译:SiC缺陷对粒子增强铝基复合材料性能的影响

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The effect of segregation defect of SiC particles on the properties of materials was studied. 15% SiCp/2009Al composites were prepared by powder metallurgy (PM). Special SiC/Al samples were added to 15% SiCp/2009Al composites. These SiC/Al samples with different sizes and volume fractions were 25%, 35%, 45% and 60%, respectively, which resulted in SiC particulates segregation defect. The 15% SiCp/2009Al composites with defects were tested by ultrasonic testing. Tensile samples were obtained at the locations, where defects might be detected and the mechanical properties were tested. The results showed that all defective samples were cracked at the defective location. The difference in tensile strength between the samples of defect and the samples without defect was large. The toughness of the sample containing the defect reduced and the brittleness increased. The dimples on the matrix indicate that ductile fracture occurred during the fracture process. The cleavage fracture or cracking of the SiC particulates indicated that the stress can be effectively transferred from the matrix to the particles, and the particulates strengthen the matrix well. However, the sample with defect led to brittle fracture in the defect, and a crack source produced at the interface, resulting in a significant decrease in the mechanical properties of the material. If the inhomogeneous distribution of particulate containing a large area was found in the ultrasonic testing of the aluminum matrix composites, the tensile properties of the products generally cannot meet the requirement for application.
机译:研究了SiC颗粒对材料性质的偏析缺陷的影响。通过粉末冶金(PM)制备15%SICP / 2009A1复合材料。将特殊的SiC / Al样品加入15%SICP / 2009A1复合材料中。这些具有不同尺寸和体积分数的SiC / Al样品分别为25%,35%,45%和60%,导致SiC微粒偏析缺陷。通过超声波测试测试具有缺陷的15%SICP / 2009AL复合材料。在位置处获得拉伸样品,其中可能检测到缺陷并测试机械性能。结果表明,所有有缺陷的样品都在缺陷位置破裂。缺陷样品与没有缺陷的样品之间的拉伸强度的差异很大。含有缺陷的样品的韧性降低,脆性增加。基质上的凹坑表明在断裂过程中发生延性骨折。 SiC颗粒的裂解骨折或裂缝表明,可以有效地从基质转移到颗粒上的应力,并且颗粒孔强化基质。然而,具有缺陷的样品导致缺陷中的脆性断裂,并且在界面处产生的裂纹源,导致材料的机械性能显着降低。如果在铝基质复合材料的超声波测试中发现含有大面积的颗粒的不均匀分布,则产品的拉伸性能通常不能满足应用的要求。

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