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Determination of crash-relevant material properties for high-strength steels and constitutive equations

机译:用于高强度钢的崩溃相关材料特性和本构方程

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This work reports on the results of tensile testing of Dual-Phase steels at different strain rates in the range 0.0001/s-1000/s. This type of steel is a strong candidate for use in crash-absorbing automotive components. An understanding of material behavior at relevant strain rates is needed as well as constitutive equations suitable for use in analytic and numerical calculations. Mechanical properties are determined from tensile tests using flat sheet specimens. Quasi-static and high strain rate tests were performed on servo-hydraulic machines and a Hopkinson bar. The test results were used to compare and validate constitutive equations intended to provide a mathematical description of strain rate dependence. Cowper-Symonds, Johnson-Cook and Modified Johnson-Cook constitutive equations were examined.
机译:该工作报告了不同应变率的双相钢的拉伸试验结果,其范围为0.0001 / s-1000 / s。这种类型的钢是用于碰撞吸收的汽车组件的强烈候选者。需要在相关应变率下的材料行为以及适用于分析和数值计算的本质方程。使用平板样品从拉伸试验确定机械性能。对伺服液压机和霍普金森棒进行准静态和高应变速率测试。测试结果用于比较和验证旨在提供应变率依赖性的数学描述的组成方程。研究了Cowper-Symonds,Johnson-Cook和改进的Johnson-Cook组成方程式方程。

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