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Effect of the build orientation on the mechanical properties and fracture modes of SLM Ti–6Al–4V

机译:构造方向对SLM Ti-6Al-4V力学性能和断裂模式的影响

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摘要

Recent research on the additive manufacturing (AM) of Ti alloys has shown that the mechanical properties of the parts are affected by the characteristic microstructure that originates from the AM process. To understand the effect of the microstructure on the tensile properties, selective laser melted (SLM) Ti–6Al–4V samples built in three different orientations were tensile tested. The investigated samples were near fully dense, in two distinct conditions, as-built and stress relieved. It was found that the build orientation affects the tensile properties, and in particular the ductility of the samples. The mechanical anisotropy of the parts was discussed in relation to the crystallographic texture, phase composition and the predominant fracture mechanisms. Fractography and electron backscatter diffraction (EBSD) results indicate that the predominant fracture mechanism is intergranular fracture present along the grain boundaries and thus provide and explain the typical fracture surface features observed in fracture AM Ti–6Al–4V.
机译:Ti合金的增材制造(AM)的最新研究表明,零件的机械性能受AM工艺产生的特征微观结构的影响。为了了解微观结构对拉伸性能的影响,对以三种不同方向构建的选择性激光熔融(SLM)Ti-6Al-4V样品进行了拉伸测试。所研究的样品在建造和应力释放两个不同的条件下接近完全致密。发现构建取向影响拉伸性能,特别是样品的延展性。讨论了零件的机械各向异性,涉及晶体学纹理,相组成和主要的断裂机理。分形和电子背散射衍射(EBSD)结果表明,主要的断裂机制是沿晶界存在的晶间断裂,因此提供并解释了在AM Ti-6Al-4V断裂中观察到的典型断裂表面特征。

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