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Improving the fracture toughness of 3D printed thermoplastic polymers by fused deposition modeling

机译:通过熔融沉积建模改善3D印刷热塑性聚合物的断裂韧性

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This work describes a new filament deposition in fused deposition modeling process through criterion based on mechanical stress. This criterion requires that the filaments' directions to follow the principal directions of the stress in the sample. The article also presents several Crack-test specimens that have been printed with and without respect to this criterion. The fracture behavior of these specimens has been investigated. The results show that criterion leads to an improvement of 30% in the fracture toughness. Digital image correlation has been extensively used to study the local strain field in the specimens. The strain cartographies reveal a drastic change in fracture behavior. The modification of filament direction leads to "ductile-like behavior" in crack extension which is characterized by a large deformation zone associated with a slow crack growth rate during the crack propagation.
机译:通过基于机械应力,通过标准描述融合沉积建模过程中的新的灯丝沉积。 该标准要求细丝的方向遵循样品中应力的主要方向。 本文还呈现了几种印刷的裂缝试验标本,而不尊重该标准。 已经研究了这些标本的断裂行为。 结果表明,标准导致断裂韧性的提高30%。 数字图像相关性已经广泛地用于研究样本中的局部应变场。 压力表揭示了骨折行为的激烈变化。 细丝方向的改性导致裂缝延伸中的“延展性行为”,其特征在于,在裂纹繁殖期间与缓慢裂纹生长速率相关的大变形区。

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