Numerical simulation of dynamic shear tests for high-strength steels specimens

Ievhen Kondriakov, V. Kharchenko
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Abstract

A series of numerical calculations using the finite element method was carried out to develop a dynamic shear testing method for high-strength steels specimens. The shape of the specimens with two shear zones was chosen for investigations. Obtained results made it possible to choose the optimal specimen size and loading scheme for realizing pure shear conditions. Using the Johnson-Cook model, taking into account the effect of the strain rate, the fracture of the specimens of armored steel Armox 500T was simulated using the appropriate fracture criterion. Obtained results showed that such a specimen design and loading scheme should ensure the implementation of pure shear conditions.
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高强钢试件动剪试验的数值模拟
采用有限元法进行了一系列数值计算,建立了高强钢试件的动剪试验方法。选取具有两个剪切带的试件形状进行研究。所得结果为选择最佳试样尺寸和加载方案以实现纯剪切条件提供了可能。采用Johnson-Cook模型,考虑应变速率的影响,采用合适的断裂准则对装甲钢Armox 500T试样的断裂进行了模拟。结果表明,这种试件设计和加载方案应保证纯剪切条件的实施。
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