首页> 外文会议>International Conference on Nanomaterials by Severe Plastic Deformation(NanoSPD3); 20050922-26; Fukuoka(JP) >Differences in structural evolution in single- and dual-phase materials during Severe Plastic Deformation
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Differences in structural evolution in single- and dual-phase materials during Severe Plastic Deformation

机译:严重塑性变形过程中单相和双相材料结构演变的差异

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Severe plastic deformation (SPD) has been applied to two classes of metallic materials, single phase and dual phase materials. The applied shear strain has been varied between 1 and 1000 and the homologous temperature between 0.08 and 0.4. The deformation experiments are performed by high pressure torsion (HPT). The resulting microstructures were investigated by backscattered electron imaging, orientation image microscopy, and in selected cases by transmission electron microscopy.rnIt will be shown that the behavior of single phase material is relatively uniform. With increasing strain, the size of the structural elements decreases and reaches a saturation between a shear strain of 10 to 100. The temperature and the alloying are the main parameters, which controls the saturation size of the structural elements (grains).rnThe behavior in the dual phase materials is more complex, it varies from simple homogenisation, fragmentation of one phase, to desintegration and supersaturation of the phases.
机译:严重塑性变形(SPD)已应用于两类金属材料,单相和双相材料。施加的剪切应变在1至1000之间变化,同源温度在0.08至0.4之间变化。变形实验是通过高压扭转(HPT)进行的。通过反向散射电子成像,取向图像显微镜以及在某些情况下通过透射电子显微镜对所得的微观结构进行了研究。这将表明单相材料的行为相对均匀。随着应变的增加,结构元件的尺寸减小,并在10至100的剪切应变之间达到饱和。温度和合金化是主要参数,它们控制结构元件(晶粒)的饱和尺寸。双相材料更为复杂,从简单的均质化,一相碎裂到两相的崩解和过饱和,一应俱全。

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