Selection of Build Orientation in FDM with Allowed Maximum Tensile Strain

Yizhong Wang, Yonghua Chen
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Abstract

FDM is one of popular rapid prototyping methods. Build orientation of an object using FDM is usually determined by the object’s structure after considering build feasibility, build efficiency, and build accuracy. In this paper, a novel object build orientation selection method in FDM is proposed based on the tensile strain of an object to be built. Test specimens with different build orientations are built with FDM to investigate the relationship between build orientation and allowed maximum tensile strain through tensile test experiments. Based on the relationship, golden section search is employed to determine the build orientation of an object consisting of multi-parts in order to get allowed maximum tensile strain. The build orientation of a truss is determined with the proposed method to verify its feasibility and reliability with satisfied results.
允许最大拉伸应变的FDM构建方向选择
FDM是一种流行的快速成型方法。在考虑构建可行性、构建效率和构建精度后,FDM对象的构建方向通常由对象的结构决定。本文提出了一种基于待建对象拉伸应变的FDM对象构建方向选择方法。利用FDM构建不同构建方向的试件,通过拉伸试验研究构建方向与允许最大拉伸应变之间的关系。基于这种关系,利用黄金分割搜索来确定由多个部件组成的物体的构建方向,以获得允许的最大拉伸应变。用该方法确定了桁架的构建方向,验证了该方法的可行性和可靠性,取得了满意的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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