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首页> 外文期刊>Journal of Materials Science >MICROSTRUCTURE, TENSILE PROPERTIES AND FRACTURE BEHAVIOUR OF AL2O4 PARTICULATE-REINFORCED ALUMINIUM ALLOY METAL MATRIX COMPOSITES
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MICROSTRUCTURE, TENSILE PROPERTIES AND FRACTURE BEHAVIOUR OF AL2O4 PARTICULATE-REINFORCED ALUMINIUM ALLOY METAL MATRIX COMPOSITES

机译:Al2O4颗粒增强铝合金基金属复合材料的组织,拉伸性能和断裂行为

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The tensile deformation and fracture behaviour of aluminium alloy 2014 discontinuously-reinforced with particulates of Al2O3 was studied with the primary objective of understanding the influence of reinforcement content on composite microstructure, tensile properties and quasi-static fracture behaviour. Results reveal that elastic modulus and strength of the metal-matrix composite increased with reinforcement content in the metal matrix. With increase in test temperature the elastic modulus showed a marginal decrease while the ductility exhibited significant improvement. The improved strength of the Al-Al2O3 composite is ascribed to the concurrent and mutually interactive influences of residual stresses generated due to intrinsic differences in thermal expansion coefficients between constituents of the composite, constrained plastic flow and triaxiality in the soft and ductile aluminium alloy matrix due to the presence of hard and brittle particulate reinforcements. Fracture on a microscopic scale initiated by cracking of the individual or agglomerates of Al2O3 particulates in the metal matrix and decohesion at the matrix-particle interfaces. Failure through cracking and decohesion at the interfaces increased with reinforcement content in the matrix. The kinetics of the fracture process is discussed in terms of applied far-field stress and intrinsic composite microstructural effects. [References: 56]
机译:研究Al2O3颗粒不连续增强铝合金2014的拉伸变形和断裂行为,其主要目的是了解增强剂含量对复合组织,拉伸性能和准静态断裂行为的影响。结果表明,金属基复合材料的弹性模量和强度随金属基体中钢筋含量的增加而增加。随着测试温度的升高,弹性模量略有下降,而延展性则显着提高。 Al-Al2O3复合材料强度的提高归因于残余应力的同时相互作用和相互影响,这些残余应力是由于复合材料成分之间的热膨胀系数的内在差异,受约束的塑性流动和柔软且易延展的铝合金基体中的三轴性而产生的。硬而脆的颗粒增强剂的存在。微观尺度上的断裂是由金属基质中的Al2O3颗粒的单个或团聚体破裂以及基质-颗粒界面处的脱粘引起的。随着基体中钢筋含量的增加,界面处的开裂和脱粘导致的破坏增加。根据施加的远场应力和固有的复合微观结构效应,讨论了断裂过程的动力学。 [参考:56]

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