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Representation of Graded Materials and Structures to Support Tolerance Specification for Additive Manufacturing Application

机译:渐变材料和结构的表示形式,以支持增材制造应用的公差规范

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Additive manufacturing (AM) has enabled control over heterogeneous materials and structures in ways that were not previously possible, including functionally graded materials and structures. This paper presents a novel method for representing and communicating heterogeneous materials and structures that include tolerancing of geometry and material together. The aim of this paper is to propose a means to specify nominal materials, nominal structures and allowable material variations in parts, including (a) explicit material and structural transitions (implying abrupt changes) and (b) functional transitions to support single and multiple material and structural behaviors (implying designed function-based gradients). The transition region combines bounded regions (volumes and surfaces) and material distribution and structural variation equations. Tolerancing is defined at two levels, that of the geometry including bounded regions and that of the materials. Material tolerances are defined as allowable material variations from nominal material fractions within a unit volume at a given location computed using material distribution equations. The method is described thorough several case studies of abrupt transitions, lattice-based transitions, and multimaterial and structural transitions.
机译:增材制造(AM)能够以以前不可能的方式控制异类材料和结构,包括功能渐变材料和结构。本文提出了一种用于表示和传达异质材料和结构的新颖方法,包括将几何形状和材料的公差一起考虑在内。本文的目的是提出一种方法来指定零件的标称材料,标称结构和允许的材料变化,包括(a)明确的材料和结构过渡(暗示突变),以及(b)功能过渡以支持单一和多种材料和结构行为(隐含设计的基于函数的渐变)。过渡区域结合了边界区域(体积和表面)以及材料分布和结构变化方程。公差在两个级别上定义,包括边界区域的几何形状和材料的公差。材料公差定义为在给定位置使用材料分布方程计算的单位体积内标称材料分数所允许的材料变化。通过对突变,基于晶格的过渡以及多材料和结构的过渡的几个案例研究来描述该方法。

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