材料科学
超塑性
严重塑性变形
晶界
位错
变形(气象学)
纳米技术
腐蚀
结构材料
降水
变形机理
纳米尺度
冶金
粒度
复合材料
微观结构
物理
气象学
作者
Ruslan Z. Valiev,Boris Straumal,Terence G. Langdon
标识
DOI:10.1146/annurev-matsci-081720-123248
摘要
The past decade was marked by significant advances in the development of severe plastic deformation (SPD) techniques to achieve new and superior properties in various materials. This review examines the achievements in these areas of study and explores promising trends in further research and development. SPD processing provides strong grain refinement at the nanoscale and produces very high dislocation and point defect densities as well as unusual phase transformations associated with particle dissolution, precipitation, or amorphization. Such SPD-induced nanostructural features strongly influence deformation and transport mechanisms and can substantially enhance the performance of advanced materials. Exploiting this knowledge, we discuss the concept of nanostructural design of metals and alloys for multifunctional properties such as high strength and electrical conductivity, superplasticity, increased radiation, and corrosion tolerance. Special emphasis is placed on advanced metallic biomaterials that promote innovative applications in medicine.
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