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Effect of temperature and high strain rates on deformation induced phase transformation of Fe-Mn-Si-Al alloys

机译:温度和高应变率对Fe-Mn-Si-Al合金变形诱导相变的影响

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The material behavior of Fe-Mn alloys with additions of Al and Si were investigated under tensile and compressive loading in a wide range of strain rate and temperature. The plastic flow behavior is shown to be strongly influenced by the characteristics of the strain-induced micro structural changes during deformation. During deformation, the investigated Fe-Mn-Si-Al-alloys exhibit the formation of mechanical twins, strain-induced ε (hcp)-, and α' (bcc)-martensite in the γ (fcc) matrix. A continuous formation of high amounts of mechanical twins and deformation induced martensitic phase transformation are responsible to attain very high elongation and high stresses up to highest strain rates.
机译:在宽范围的应变速率和温度下,在拉伸和压缩负载下研究了Fe-Mn合金在添加Al和Si的材料行为。显示塑料流动行为被变形过程中应变诱导的微结构变化的特性强烈影响。在变形期间,研究的Fe-Mn-Si-al-alloys在γ(FCC)基质中表现出机械双胞胎,菌株诱导的ε-,和α'(BCC) - 半浆块的形成。连续形成大量的机械双胞胎和变形诱导的马氏体相转变是负责达到非常高的伸长率和高应力,高达最高的应变率。

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