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首页> 外文期刊>Materialwissenschaft und Werkstofftechnik >Tensile strength performance with determination of the Poisson's ratio of additively manufactured AISi10Mg samples
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Tensile strength performance with determination of the Poisson's ratio of additively manufactured AISi10Mg samples

机译:通过确定增材制造的AISi10Mg样品的泊松比来确定拉伸强度性能

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摘要

Additive manufacturing of metals is a key technology and an emerging industrial sector enabling the manufacture of highly specialized and advanced components. It's outstanding advantages are the geometric flexibility and the elimination of tools compared to conventional manufacturing techniques. However, multiple directional dependencies lead to an anisotropic material behaviour, rendering the material description more complicated. Samples used for this study were fabricated from the age-hardenable alloy AlSi10Mg, focusing on fluctuating material properties in relation to differing built orientations. In addition, the effect of thermal post treatment was considered. Comprehensive tensile tests employing a lateral strain sensor were performed, in order to determine the transverse contraction during loading and to quantify directional dependencies. The Young's modulus varied between 66GPa and 68GPa, however the Poisson's ratio ranged between 0.31 and 0.39. Investigations on the fractured faces by means of scanning electron microscopy investigations were also part of this study.
机译:金属的增材制造是一项关键技术,也是一个新兴的工业领域,能够制造高度专业化和先进的零件。与传统制造技术相比,它的突出优点是几何灵活性和无需工具。但是,多个方向相关性导致各向异性的材料行为,从而使材料描述更加复杂。本研究使用的样品是由可时效硬化的AlSi10Mg合金制成的,重点在于与不同构造方向有关的材料性能波动。另外,考虑了热后处理的效果。为了确定加载期间的横向收缩并量化方向依赖性,进行了使用横向应变传感器的综合拉伸测试。杨氏模量在66GPa和68GPa之间变化,但是泊松比在0.31至0.39之间。通过扫描电子显微镜检查对骨折面进行检查也是本研究的一部分。

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