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Characterization of Polymeric Foams under Multi-Axial Static and Dynamic Loading

机译:多轴静态载荷下聚合物泡沫的表征

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An orthotropic polymeric foam with transverse isotropy (Divinycell H250) used in composite sandwich structures was characterized under multi-axial quasi-static and dynamic loading. Quasi-static tests were conducted along principal material axes as well as along off-axis directions under tension, compression, and shear. An optimum specimen aspect ratio of 10 was selected based on finite element analysis. Stress-controlled and strain-controlled experiments were conducted. The former yielded engineering material constants such as Young's and shear moduli and Poisson's ratios; the latter yielded mathematical stiffness constants, i. e., C_(ij). Intermediate strain rate tests were conducted in a servo-hydraulic machine. High strain rate tests were conducted using a split Hopkinson Pressure Bar system built for the purpose. This SHPB system was made of polymeric (polycarbonate) bars. The polycarbonate material has an impedance that is closer to that of foam than metals. The system was analyzed and calibrated to account for the viscoelastic response of its bars. Material properties of the foam were obtained at three strain rates, quasi-static (10~(-4) s~(-1)), intermediate (1 s~(-1)), and high (10~3 S~(-1)) strain rates.
机译:在复合夹层结构用来与横向各向同性(的Divinycell H250)正交各向异性的聚合物泡沫的特征下的多轴向准静态和动态加载。准静态测试沿主材料的轴,以及沿着下拉伸,压缩和剪切离轴方向进行。基于有限元分析中选择的10最佳试样的纵横比。应力控制和应变控制实验。前者产生工程材料常数如杨氏和剪切模量和泊松比;后者产生了数学刚度常量,我。即,C_(IJ)。中间应变速率试验是在一个伺服液压机中进行。高应变率测试使用为目的建立了一个霍普金森压杆系统进行。此SHPB系统由聚合物(聚碳酸酯)条。该聚碳酸酯材料具有阻抗更靠近该泡沫比金属。该系统进行了分析和校准以考虑的其条的粘弹性响应。在三个应变率得到的泡沫的材料特性,准静态(10〜(-4)S〜(-1)),中间体(1秒〜(-1))和高(10〜3 S〜( -1))应变率。

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