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High Strain Rate Test of a Steel Plate under Blast Loading from High Explosive

机译:高爆炸钢板下钢板的高应变速率试验

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In this study, a high strain rate test method of a steel plate under blast loading from high explosive was designed and was conducted by a combined experimental/numerical approach to facilitate the estimation process for the dynamic stress-strain curve under practical strain rate conditions. The steel plate was subjected to a blast load, which was generated by Composition C4 explosive and the dynamic deformation of the plate was observed with a high-speed video camera. Time-deformation relations were acquired by image analysis. A numerical simulation for the dynamic behaviors of the plate identical to the experimental condition was conducted using a coupling analysis of finite element method (FEM) and discrete particle method (DPM). Explosives were modeled by discrete particles and the steel plate and other materials were modeled by finite element. The blast load on the plate was described fluid-structure interaction (FSI) between DPM and FEM. As inverse analysis scheme to estimate dynamic stress-strain curve, an evaluation using a quasi-static data was conducted. In addition, two types of approximations for stress-strain curve were assumed and optimized by least square method. One is a 2-piece approximation, and was optimized by least squares method using a yield stress and a tangent modulus as parameters. The other is a continuous piecewise linear approximation, in which a stress-strain curve was divided into some segments based on experimental time-deformation relation, and was sequentially optimized using young's modulus or yield stress as parameter. The results showed that the piecewise approximation can gives reasonably agreement with SS curve obtained from the experiment.
机译:在该研究中,设计了高爆炸载荷下钢板的高应变速率试验方法,并通过组合的实验/数值方法进行,以便在实际应变率条件下促进动态应力 - 应变曲线的估计过程。钢板经受鼓胀,由组合物C4爆炸产生,并且用高速摄像机观察板的动态变形。通过图像分析获得了时间变形关系。使用有限元方法(FEM)和离散颗粒法(DPM)的耦合分析进行了与实验条件相同的板的动态行为的数值模拟。炸药由离散颗粒和钢板和其他材料进行建模,由有限元建模。板上的爆破载荷描述了DPM和FEM之间的流体结构相互作用(FSI)。作为逆分析方案来估计动态应力 - 应变曲线,进行使用准静态数据的评估。另外,假设和优化了应力 - 应变曲线的两种类型的近似。一种是2件式近似,并且通过屈服应力和切线模量作为参数来通过最小二乘法进行优化。另一个是连续分段线性近似,其中应力 - 应变曲线基于实验时间变形关系分成一些段,并且使用杨氏模量或屈服应力顺序优化作为参数。结果表明,分段近似可以与从实验中获得的SS曲线合理地达成协议。

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