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Effect of spatial distribution of TiC_p on tensile properties of sintered Ti/TiC_p composites

机译:TIC_P空间分布对烧结TI / TIC_P复合材料拉伸性能的影响

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摘要

The composites of the different dispersion state were prepared from the titanium powder and the TiC with the different particle sizes. The effect of the difference of spatial distribution of the TiC particles on the tensile properties and the behavior of TiC particles' breaking in the tensile deformation process have been quantitatively investigated. In tensile deformation, TiC particles begin to break just after the yielding of the material. Finally the connection of cumulated cracks of particles brings the propagation of a main crack and fracture of the composite material. The material of which the spatial distribution of the second phase particles is close to random distribution has larger tensile strength and tensile ductility than the material of stronger clustering tendency. The reason for this is that the destruction of TiC particles in the materials of stronger clustering tendency is more frequent from the initial stage of the deformation, because they have more regions of larger local volume fraction and larger local particle density. The tendency, showing that the particles in the clustered regions are easy to be broken, was explained from the result of the elastic-plastic analysis by finite element method.
机译:用不同的颗粒尺寸从钛粉末和TIC制备不同分散状态的复合材料。已经定量研究了TIC颗粒对拉伸变形过程中的抗拉性颗粒断裂的拉伸性能的影响和TIC颗粒的行为的影响。在拉伸变形中,在屈服后,TiC颗粒开始破裂。最后,粒子的累积裂缝的连接带来了复合材料的主要裂缝和断裂的繁殖。第二相颗粒的空间分布接近随机分布的材料具有较大的拉伸强度和抗拉延展性,而不是较强的聚类趋势的材料。其原因是,从变形的初始阶段,较强的聚类趋势的材料中的TIC颗粒的破坏更频繁,因为它们具有更多局部体积分数和较大的局部颗粒密度区域。从有限元方法的弹性分析的结果解释了群体区域中的颗粒中的粒子易于破裂。

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