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Mechanical Characterization of the Plastic Material GF-PA6 Manufactured Using FDM Technology for a Compression Uniaxial Stress Field via an Experimental and Numerical Analysis

机译:通过实验和数值分析使用FDM技术使用FDM技术制造的塑料材料GF-PA6的力学表征

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This manuscript presents an experimental and numerical analysis of the mechanical structural behavior of Nylstrong GF-PA6, a plastic material manufactured using FDM (fused deposition modeling) technology for a compression uniaxial stress field. Firstly, an experimental test using several test specimens fabricated in the Z and X-axis allows characterizing the elastic behavior of the reinforced GF-PA6 according to the ISO 604 standard for uniaxial compression stress environments in both Z and X manufacturing orientations. In a second stage, an experimental test analyzes the structural behavior of an industrial part manufactured under the same conditions as the test specimens. The experimental results for the test specimens manufactured in the Z and X-axis present differences in the stress-strain curve. Z-axis printed elements present a purely linear elastic behavior and lower structural integrity, while X-axis printed elements present a nonlinear elastic behavior typical of plastic and foam materials. In order to validate the experimental results, numerical analysis for an industrial part is carried out, defining the material GF-PA6 as elastic and isotropic with constant Young’s compression modulus according to ISO standard 604. Simulations and experimental tests show good accuracy, obtaining errors of 0.91% on the Z axis and 0.56% on the X-axis between virtual and physical models.
机译:该原稿提出了尼龙GF-PA6的机械结构行为的实验性和数值分析,使用FDM(熔融沉积建模)技术制造的塑料材料进行压缩单轴应力场。首先,使用在Z和X轴上制造的多个测试样品的实验测试允许表征增强GF-PA6的弹性行为根据Z和X制造方向的单轴压缩环境的ISO 604标准。在第二阶段,实验测试分析了在与试样相同条件下制造的工业部件的结构行为。在Z和X轴上制造的试样的实验结果存在应力 - 应变曲线的差异。 Z轴印刷元件呈现纯线性弹性行为和较低的结构完整性,而X轴印刷元件呈现典型的塑料和泡沫材料的非线性弹性行为。为了验证实验结果,进行工业部件的数值分析,根据ISO标准604,将材料GF-PA6定义为弹性和各向同性,具有恒定的杨氏压缩模量。模拟和实验测试显示出良好的准确性,获得误差在Z轴上0.91%,虚拟和物理模型之间的X轴上0.56%。

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