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Hybrid spatial uncertainty analysis for the estimation of imprecise failure probabilities in Laser Sintered PA-12 parts

机译:激光烧结PA-12零件估计的混合空间不确定性分析

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This paper presents the application of non-deterministic modelling techniques for the quantification of imprecise failure probabilities in PA-12 parts produced via Laser Sintering (LS). Specifically, a modelling approach consisting of a combination of interval and random fields is applied, and the effect hereof on the resulting polymorphic uncertainty in the mechanical performance of the LS parts is studied. A link with the underlying process physics is given, relating the spatial porosity distributions that are inherently present in LS PA12 parts to a spatial distribution in the apparent Young's modulus. Furthermore, uncertainty on the final dimensions of other parts that are constructed in the same build envelope as the designed part is linked to uncertainty in the cross-sectional area of the designed part.The effect of these sources of uncertainty is studied in three case studies, illustrating the need for a well-thought production process planning given the influence on the resulting mechanical performance of the designed structure. Especially the effect of epistemic uncertainty on the design process is shown to be significant. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文介绍了非确定性建模技术在通过激光烧结(LS)产生的PA-12部件中的不切定失效概率的量化应用。具体地,研究了由间隔和随机场的组合组成的建模方法,研究了在LS部件的机械性能的所得到的多态不确定性上的效果。给出了具有底层过程物理物理物理学的链接,与LS PA12零件中固有的空间孔隙分布相关,以在表观杨氏模量中的空间分布中。此外,在与设计部分相同的构建信封中构造的其他部件的最终尺寸的不确定度与设计部分的横截面积的不确定性相关联。在三个案例研究中研究了这些不确定性源的效果,鉴于对所设计结构的机械性能的影响,需要对良好思维生产过程规划的需求。特别是认知不确定性对设计过程的影响是显着的。 (c)2018年elestvier有限公司保留所有权利。

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