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TWINNING BEHAVIOR OF AM30 MG ALLOY DURING UNIAXIAL TENSION AND COMPRESSION

机译:单轴拉伸和压缩过程中AM30 mg合金的孪生行为

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The evolution of twinning in an AM30 Mg alloy was examined by uniaxial tension and compression testing at temperatures from ambient to 250 deg C and a strain rate of 0.1/s. The samples were cut along the extrusion direction from extruded AM30 Mg alloy tubes. Specimens deformed to various strain levels were examined by optical microscopy and electron backscattered diffraction (EBSD) techniques. The results indicate that the initial extrusion texture plays an important role in the formation of different types of twins and that the twinning behavior also depends on the strain path. Contraction and double twinning are the dominant twinning mechanisms in uniaxial tension, while extension twinning prevails in uniaxial compression. The different twinning behaviors are shown to be responsible for the sharply contrasting strain hardening characteristics of the experimental flow curves.
机译:通过单轴的张力和压缩测试在环境温度至250℃和0.1 / s的应变率的温度下检查孪晶合金中的孪生和压缩测试。将样品从挤出的AM30mg合金管中沿挤出方向切割。通过光学显微镜和电子背散射衍射(EBSD)技术检查变形对各种应变水平的试样。结果表明,初始挤出质地在不同类型的双胞胎的形成中起重要作用,并且孪生行为也取决于应变路径。收缩和双重孪晶是单轴张力中的孪生孪晶机制,而在单轴压缩中延伸孪晶。显示不同的孪晶行为对于实验流程曲线的急剧对比应变硬化特性负责。

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