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首页> 外文期刊>Theoretical and Applied Fracture Mechanics >Defects as a root cause of fatigue weakening of additively manufactured AlSi10Mg components
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Defects as a root cause of fatigue weakening of additively manufactured AlSi10Mg components

机译:作为肥胖制造的疲劳弱化的根本原因缺陷

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摘要

Additive manufacturing is an emerging technique that is not only subjected to the interest of academic world because of its peculiar characteristics to obtain new material properties and optimized 3D geometries, but it also finds the interest of the industrial sector because of the possibility to build advanced components never realized until now. Among the additive manufacturing processes, Laser Powder Bed Fusion process is perhaps the most used in producing components out of metallic materials. In particular, thanks to its low density and its hypoeutectic favourable composition, AlSi10Mg alloy is particular suitable for the production of lightweight components by additive manufacturing. However, for safety reasons, their mechanical, static and cyclic, characteristics need to be well understood and predicted. Unfortunately, they are dramatically influenced by process parameters that in turn may promote killer defects dangerous for the fatigue strength of load bearing mechanical components. This contribution is aimed at highlighting the influence of defects on the fatigue resistance of AlSi10Mg samples produced by laser powder bed fusion. The combination of process parameters were obtained that maximizes the fatigue strength and reduces the scattering of the results.
机译:添加剂制造是一种新兴技术,由于其特殊的特征,不仅是学术界的兴趣,因为其特殊的特征来获得新的材料特性和优化的3D几何形状,但它也发现了工业部门的兴趣,因为可以构建先进的组件到目前为止从未意识到了。在添加剂制造方法中,激光粉床融合过程可能是生产成分的金属材料中最多。特别地,由于其低密度及其低屈光良好的组合物,Alsi10mg合金特别适用于通过添加剂制造生产轻质组分。然而,出于安全原因,需要很好地理解和预测其机械,静态和循环特性。不幸的是,它们的过程参数显着影响,又可以促进对轴承机械部件的疲劳强度造成危险的杀手缺陷。这种贡献旨在突出缺陷对激光粉床融合产生的Alsi10MG样品疲劳性的影响。获得了工艺参数的组合,从而最大化疲劳强度并降低了结果的散射。

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