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Effects of Microstructure on the Strain Rate Sensitivity of Advanced Steels

机译:显微组织对高级钢应变率敏感性的影响

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The dependence of the strain rate sensitivity of advanced ~1 GPa tensile strength steels on the phases present in their microstructures was studied by testing different steels at 0.005 and 500 s~(-1). The high strain rate tests were performed using a Kolsky bar setup, while the quasi-static tests were performed using a universal testing machine. The two main steels of interest were the Ferrite-Martensite DP980 and the Ferrite-Martensite-Austenite QP980; the latter being a transformation induced plasticity (TRIP) assisted steel. For comparison, ferritic CR5 mild steel and austenitic stainless steel 201 were also tested under the same conditions. Though the differences in the steel chemistries were not taken into account, the results obtained here suggest a strong relationship between the phase-content of the steel and its response to the changes in the loading rate. The relationships between the observed mechanical behavior and the phases present in the microstructure are discussed.
机译:通过在0.005和500 s〜(-1)下测试不同的钢,研究了先进的〜1 GPa抗拉强度钢的应变速率敏感性对它们相中存在相的依赖性。高应变率测试使用Kolsky钢筋装置进行,而准静态测试则使用通用测试机进行。感兴趣的两种主要钢是铁素体-马氏体-奥氏体QP980和铁素体-马氏体-奥氏体QP980。后者是相变诱导塑性(TRIP)辅助钢。为了进行比较,还在相同条件下测试了铁素体CR5低碳钢和奥氏体不锈钢201。尽管未考虑钢化学性质的差异,但此处获得的结果表明,钢的相含量与其对负载率变化的响应之间存在很强的关系。讨论了观察到的机械行为与微观结构中存在的相之间的关系。

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