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Experimental analyses of the poly(vinyl chloride) foams' mechanical anisotropic behavior

机译:聚氯乙烯泡沫塑料机械各向异性行为的实验分析

摘要

Assessing a full set of mechanical properties is a rather complicate task in the case of foams, especially if material models must be calibrated with these results. Many issues, for example anisotropy and heterogeneity, influence the mechanical behavior. This article shows through experimental analyses how the microstructure affects different experimental setups and it also quantifies the degree of anisotropy of a poly(vinyl chloride) foam. Monotonic and cyclic experimental tests were carried out using standard compression specimens and non-standard tensile specimens. Results are complemented and compared with the aid of a digital image correlation technique and scanning electron microscopy analyses. Mechanical properties (e.g., elastic and plastic Poisson's ratios) are evaluated for compression and tensile tests, for two different material directions (normal and in-plane). The material is found to be transversely isotropic. Differences in the results of the mechanical properties can be as high as 100%, or even more depending on the technique used and the loading direction. Also, the experimental analyses show how the material's microstructure behavior, like the evolution of the herein identified yield fronts and a spring back phenomenon, can influence the phenomenological response and the failure mechanisms as well as the hardening curves. POLYM. ENG. SCI., 52:2654-2663, 2012. (C) 2012 Society of Plastics Engineers
机译:在泡沫的情况下,评估全套机械性能是一项相当复杂的任务,尤其是如果必须根据这些结果对材料模型进行校准时。许多问题(例如各向异性和异质性)都会影响机械性能。本文通过实验分析显示了微观结构如何影响不同的实验设置,并且还量化了聚氯乙烯泡沫的各向异性程度。使用标准压缩样本和非标准拉伸样本进行单调和循环实验测试。通过数字图像相关技术和扫描电子显微镜分析对结果进行补充和比较。针对两个不同的材料方向(法向和平面内),对压缩和拉伸测试评估了机械性能(例如弹性泊松比和塑性泊松比)。发现该材料是横向各向同性的。机械性能结果的差异可能高达100%,甚至更高,具体取决于所使用的技术和加载方向。而且,实验分析表明,材料的微观结构行为(如本文确定的屈服前沿和回弹现象的演变)如何影响现象学响应和破坏机理以及硬化曲线。 POLYM。 ENG。 SCI。,52:2654-2663,2012.(C)2012塑料工程师学会

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