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Full Field Strain Measurement of Material Extrusion Additive Manufacturing Parts with Solid and Sparse Infill Geometries

机译:具有固体和稀疏填充几何形状的材料挤出添加剂制造部件的全场应变测量

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摘要

Full field strain during tensile deformation is measured in parts produced by material extrusion additive manufacturing (MEAM) using digital image correlation. Many studies have been conducted to examine stress and strain at the part level; however, local levels of stress and strain within MEAM parts remain largely unexplored. This study documents the effects of tensile loading on acrylonitrile butadiene styrene parts fabricated with MEAM using both solid and sparse infill geometries. The effects of different toolpath orientations on local tensile strain are also studied. A novel build strategy for creating sparse infill geometry to improve part strength is introduced and tested.
机译:在使用数字图像相关性的材料挤出添加剂制造(MEAM)产生的零件期间的全场应变。 已经进行了许多研究以检查部分水平的压力和应变; 然而,局部压力和菌株的局部压力和菌株仍然很大程度上是未探索的。 本研究记录了使用固体和稀疏填充几何形状用樟树制造的丙烯腈丁二烯苯乙烯部件对丙烯腈丁二烯苯乙烯零件的影响。 还研究了不同刀具路径对局部拉伸应变的影响。 引入并测试了一种新颖的构建策略,用于创造稀疏填充几何形状以提高零件强度。

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