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STRAIN-INDUCED MARTENSITE IN ADI ALLOYS

机译:在Adi合金中诱导的马氏体

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摘要

The remarkable mechanical properties of austempered ductile irons arise from their microstructure, which is composed of a high-carbon stabilized austenite matrix filled with small isles of ferrite platelets, appropriately called ausferrite. Cold-work imposed on the material yields a partial transformation of retained austenite into martensite, which can strongly influence the mechanical behavior of the alloy. The present study deals with the determination of transformed austenite upon plastic deformation in the range from 0 to 25% thickness reduction of the samples. The analysed material was a Cu-Mo-Ni-alloyed ADI, obtained by austempering at 400°C for 90 minutes after austenization at 900°C for 80 minutes under Ar-protecting atmosphere. The determination of retained austenite and induced martensite made use of the classical X-ray diffraction technique and Rietveld refinement of the intensity data, with all experimental profile modeled by non-linear least-squares fitting, using pseudo-Voigt functions. The overall results showed that the starting contents of retained austenite in three groups of samples, i.e. 43.20, 35.79 and 44.05 vol. %, gradually evolved to 18.23, 13.02 and 18.59% respectively, after 20% cold-work, while formation of martensite increased from nearly zero to 24.95, 24.01 and 25.52% under the same deformation process. These results are further analysed on the basis of some classical transformation theories.
机译:奥氏体脱髓鞘的显着力学性能从其微观结构产生,其由填充有铁氧体血小板的小岛的高碳稳定的奥氏体基质组成,适当地称为ausferrite。对材料施加的冷加工产生保留奥氏体进入马氏体的部分转化,这可以强烈影响合金的机械行为。本研究涉及在塑性变形时测定转化的奥氏体在0至25%的厚度减小的范围内。分析的材料是Cu-Mo-Ni合金化Adi,通过在400℃下在奥氏体化后90分钟在900℃下在Ar保护气氛下在80分钟内获得。确定保留的奥氏体和诱导马氏体的使用利用强度数据的典型X射线衍射技术和RIETVELD改进,具有由非线性最小二乘拟合的所有实验配置文件,使用伪voigt功能。总体结果表明,在三组样品中,保留奥氏体的起始含量,即43.20,35.79和44.05卷。在20%冷加工后,分别逐渐进化至18.23,13.02和18.59%,同时在相同变形过程下形成马氏体从近于零至24.95,24.01和25.52%增加。这些结果是在一些经典转化理论的基础上进行分析。

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