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High temperature deformation and fracture behaviour of 316L stainless steel under high strain rate loading

机译:高应变速率载荷下316L不锈钢的高温变形和断裂行为

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The high temperature deformation and fracture behaviour of 316L stainless steel under high strain rate loading conditions are investigated by means of a split Hopkinson pressure bar. Impact tests are performed at strain rates ranging from 1 × 10 ~3 s ~(-1) to 5 × 10 ~3 s ~(-1) and temperatures between 25 °C and 800 °C. The experimental results indicate that the flow response and fracture characteristics of 316L stainless steel are significantly dependent on the strain rate and temperature. The fracture analysis results indicate that the 316L specimens fail predominantly as the result of intensive localised shearing. Furthermore, it is shown that the flow localisation effect leads to the formation of adiabatic shear bands. The fracture surfaces of the deformed 316L specimens are characterised by a dimple-like structure with knobby features. The knobby features are thought to be the result of a rise in the local temperature to a value greater than the melting point.
机译:利用分体式霍普金森压力棒研究了316L不锈钢在高应变率载荷条件下的高温变形和断裂行为。冲击测试的应变速率为1×10〜3 s〜(-1)至5×10〜3 s〜(-1),温度范围为25°C至800°C。实验结果表明,316L不锈钢的流动响应和断裂特性与应变率和温度密切相关。断裂分析结果表明,316L试样主要是由于集中局部剪切而失效。此外,显示出流动局部化作用导致绝热剪切带的形成。变形的316L试样的断裂表面的特征是具有旋钮状特征的酒窝状结构。人们认为,多结形特征是局部温度升高到大于熔点的值的结果。

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