Erchiqui Fouad, Zaafrane Khaled, Baatti Abdessamad, Kaddami Hamid, Imad Abdellatif
École de Génie, Université du Québec en Abitibi-Témiscamingue, 445, boul. de l'Université, Rouyn-Noranda, QC J9X 5E4, Canada.
Faculté des Sciences et Techniques, Université Caddi Ayad, Marrakech 40000, Morocco.
Polymers (Basel). 2020 Nov 21;12(11):2753. doi: 10.3390/polym12112753.
Numerical modeling of the thermoforming process of polymeric sheets requires precise knowledge of the viscoelastic behavior under conjugate effect pressure and temperature. Using two different experiments, bubble inflation and dynamic mechanical testing on a high-density polyethylene (HDPE) nanocomposite reinforced with polymethylsilsesquioxane HDPE (PMSQ-HDPE) nanoparticles, material constants for Christensen's model were determined by the least squares optimization. The viscoelastic identification relative to the inflation test seemed to be the most appropriate for the numerical study of thermoforming of a thin PMSQ-HDPE part. For this purpose, the finite element method was considered.
聚合物片材热成型过程的数值模拟需要精确了解在共轭压力和温度作用下的粘弹性行为。通过两个不同的实验,即对用聚甲基倍半硅氧烷高密度聚乙烯(PMSQ-HDPE)纳米颗粒增强的高密度聚乙烯(HDPE)纳米复合材料进行气泡膨胀实验和动态力学测试,通过最小二乘法优化确定了克里斯滕森模型的材料常数。相对于膨胀试验的粘弹性识别似乎最适合用于薄PMSQ-HDPE部件热成型的数值研究。为此,考虑了有限元方法。