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Effects of microstructure on the dynamic strain aging of ferriticpearlitic steels at high strain rates

机译:微观结构对高应变率的铁素胶质钢动态应变老化的影响

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This paper presents an experimental study of the effects of dynamic strain aging on the mechanical behavior of selected high carbon and chromium-manganese steels in dynamic loading condition. In ferritic-pearlitic steels, the dynamic strain aging is typically caused by carbon, nitrogen, and possibly some other small solute atoms. Therefore, the thermomechanical treatments affect strongly how strong the dynamic strain aging effect is and at what temperature and strain rate regions the maximum effect is observed. In this work, we present results of the high temperature dynamic compression tests carried out for two different ferritic-pearlitic steels, 16MnCr5 and C60, that were heat treated to produce different microstructure variants of these standard alloys. The microstructures were analyzed using electron microscopy, and the materials were tested with the Split Hopkinson Pressure Bar device at three different strain rates at temperatures ranging from room temperature up to 680°C to study the effect of the heat treatments and the resulting microstructures on the dynamic behavior of the steels and the dynamic strain aging effect. The results indicate that for both steels, a coarse grain structure has the strongest dynamic strain aging sensitivity at small plastic strains. However, at higher strains, all microstructures show similar strain aging sensitivities.
机译:本文介绍了动态应变老化对动态负载条件下选择高碳和铬锰钢的力学行为的实验研究。在铁素体 - 珠光体钢中,动态应变衰老通常由碳,氮气和可能一些其他小溶质原子引起。因此,热机械处理强烈影响动态应变老化效果的强度,并且在什么温度和应变速率区域观察到最大效果。在这项工作中,我们呈现了对两种不同的铁素体 - 珠光体钢,16mncr5和C60进行的高温动态压缩试验的结果,其热处理以产生这些标准合金的不同微观结构变体。使用电子显微镜分析微结构,并在高达680℃的温度范围的温度下以三种不同的应变速率测试材料,以研究热处理和所得微观结构的影响钢的动态行为及动态应变老化效应。结果表明,对于两个钢,粗糙的晶粒结构具有在小塑料菌株中具有最强的动态应变老化敏感性。然而,在更高的菌株处,所有微观结构都显示出类似的菌株老化敏感性。

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