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3D打印结构的阿南德材料模型的参数识别

Parameters Identification of the Anand Material Model for 3D Printed Structures.

作者信息

Fusek Martin, Paška Zbyněk, Rojíček Jaroslav, Fojtík František

机构信息

Department of Applied Mechanics, Faculty of Mechanical Engineering, VŠB-Technical University of Ostrava, 708 00 Ostrava, Czech Republic.

出版信息

Materials (Basel). 2021 Jan 27;14(3):587. doi: 10.3390/ma14030587.

Abstract

Currently, there is an increasing use of machine parts manufactured using 3D printing technology. For the numerical prediction of the behavior of such printed parts, it is necessary to choose a suitable material model and the corresponding material parameters. This paper focuses on the determination of material parameters of the Anand material model for acrylonitrile butadiene styrene (ABS-M30) material. Material parameters were determined using the genetic algorithm (GA) method using finite element method (FEM) calculations. The FEM simulations were subsequently adjusted to experimental tests carried out to achieve the possible best agreement. Several experimental tensile and indentation tests were performed. The tests were set up in such a way that the relaxation and creep behaviors were at least partially captured. Experimental tests were performed at temperatures of 23 °C, 44 °C, 60 °C, and 80 °C. The results obtained suggest that the Anand material model can also be used for ABS-M30 plastic material, but only if the goal is not to detect anisotropic behavior. Future work will focus on the search for a suitable material model that would be able to capture the anisotropic behavior of printed plastic materials.

摘要

目前,使用3D打印技术制造的机器零件的使用越来越多。对于此类打印零件行为的数值预测,有必要选择合适的材料模型和相应的材料参数。本文重点研究丙烯腈丁二烯苯乙烯(ABS-M30)材料的阿南德材料模型的材料参数的确定。使用遗传算法(GA)方法并通过有限元法(FEM)计算来确定材料参数。随后,对有限元模拟进行调整,使其与所进行的实验测试尽可能达到最佳吻合。进行了几次拉伸和压痕实验测试。测试的设置方式使得至少部分捕捉到了松弛和蠕变行为。实验测试在23℃、44℃、60℃和80℃的温度下进行。所得结果表明,阿南德材料模型也可用于ABS-M30塑料材料,但前提是目标不是检测各向异性行为。未来的工作将集中于寻找一种能够捕捉打印塑料材料各向异性行为的合适材料模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8150/7865962/ae8f1973da32/materials-14-00587-g001.jpg

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