首页> 外文期刊>Journal of Applied Polymer Science >Stochastic simulation of top load test on poly(ethylene terephthalate) bottles: An experimental study on dispersion of elastic properties
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Stochastic simulation of top load test on poly(ethylene terephthalate) bottles: An experimental study on dispersion of elastic properties

机译:聚(乙烯苯二甲酸乙二醇酯)瓶盖顶部载荷试验的随机仿真:弹性性能分散的实验研究

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摘要

During the stretch blowing molding process, the elongation of macromolecular chains modifies the final mechanical properties of poly(ethylene terephthalate) (PET) bottle. Especially Young's modulus can be multiplied by two or more in the longitudinal direction and more than three times in the circumferential direction in the cylindrical region of the blown bottle and leads to orthotropic elastic properties. Using digital image correlation, we performed an identification process using two global tests. First, the virtual field method on a specific plane specimen with a hole, allows the identification of the Poisson's ratio. Second, the modulus is measured using a 3D digital image correlation from bottles under internal pressure. The shear modulus is then identified from the heterogeneous tension tests in the first step. Since all the induced mechanical properties exhibit dispersions, a probabilistic description of the orthotropic behavior law is managed and a stochastic simulation of the top load test is performed in order to define a confidence region for the bottle performance. The results of the simulation are validated by experimental measurements of top load tests performed on PET bottles.
机译:在拉伸吹塑过程中,高分子链的伸长会改变聚对苯二甲酸乙二醇酯(PET)瓶的最终机械性能。尤其是在吹制瓶的圆柱形区域,杨氏模量可以在纵向上乘以两倍或更多,在圆周方向上乘以三倍以上,从而产生正交各向异性弹性特性。使用数字图像相关,我们使用两个全局测试执行识别过程。首先,在带有孔的特定平面试样上使用虚拟场法,可以识别泊松比。第二,利用内部压力下瓶子的3D数字图像相关性测量模量。然后,通过第一步的非均匀拉伸试验确定剪切模量。由于所有诱导的机械性能表现出分散性,因此管理正交各向异性行为规律的概率描述,并对顶荷载试验进行随机模拟,以定义瓶子性能的置信区间。通过对PET瓶进行顶负荷试验的实验测量,验证了模拟结果。

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