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Study of the influence of volume fraction of ceramic inclusions in NiCr-TiC composite with columnar structure on its mechanical behavior

机译:柱状结构对柱状结构陶瓷夹杂物体积分数对其机械性能的影响研究

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摘要

Metal-ceramic materials are characterized by high mechanical and tribological properties. The surface treatment of the composite by an electron beam in inert gas plasma leads to a qualitative and quantitative change in its microstructure as well as to a change in mechanical properties of the components: a columnar structure forms in the modified layer. Different treatment regimes result in different concentrations of inclusions in the surface layer. In this paper, the effect of the volume concentration of inclusions on the integral mechanical properties of a dispersion-strengthened NiCr-TiC composite is studied on the basis of 3D numerical simulation. The results of computer simulation show that the change in concentration significantly affects the integral mechanical characteristics of the composite material as well as the nature of the nucleation and development of damages in it.
机译:金属陶瓷材料的特征在于高机械和摩擦学特性。通过电子束在惰性气体等离子体中对复合材料的表面处理导致其微观结构的定性和定量变化以及组分的机械性能的变化:在改性层中形成柱状结构。不同的处理制度导致表面层中的不同浓度夹杂物。本文在三维数值模拟的基础上,研究了夹杂物对分散强化NiCr-TiC复合材料的整体力学性能的影响。计算机仿真结果表明,浓度的变化显着影响复合材料的整体机械特性以及其中核肉成核的性质。

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