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Testing of Auxetic Materials Using Hopkinson Bar and Digital Image Correlation

机译:使用Hopkinson Bar和数字图像相关性测试辅助材料

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In this paper, a split Hopkinson pressure bar (SHPB) was used for impact loading of an auxetic lattice (structure with negative Poisson's ratio) at a given strain-rate. High strength aluminum and polymethyl methacrylate bars instrumented with foil strain-gauges were used for compression of an additively manufactured missing-rib auxetic lattice. All experiments were observed using a high-speed camera with frame-rate set to approx. 135.000 fps. High-speed images were synchronized with the strain-gauge records. Dynamic equilibrium in the specimen was analyzed and optimized pulse-shaping was introduced in the selected experiments. Longitudinal and lateral in-plane displacements and strains were evaluated using digital image correlation (DIC) technique. DIC results were compared with results obtained from strain-gauges and were found to be in good agreement. Using DIC, it was possible to analyze in-plane strain distribution in the specimens and to evaluate strain dependent Poisson's ratio of the auxetic structure.
机译:在本文中,在给定的应变速率下使用分裂霍普金森压力棒(SHPB)用于扶手晶格(具有负泊松比率的结构)的冲击载荷。用箔应变仪仪表用高强度铝和聚甲基丙烯酸甲酯棒用于压缩含有含量缺失的肋骨扶手晶格。使用具有帧速率设定为约的高速摄像头观察所有实验。 135.000 fps。高速图像与应变计记录同步。分析样品中的动态平衡,并在所选实验中引入了优化的脉冲成形。使用数字图像相关(DIC)技术评估纵向和横向面部位移和菌株。将DIC结果与从菌株仪表获得的结果进行了比较,并且被发现与良好的一致性。使用DIC,可以分析样品中的面内应变分布,并评估应变依赖性泊松的扶手结构的比例。

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