首页> 外文期刊>Russian physics journal >MICROSTRUCTURE AND MECHANICAL PROPERTIES OF NANOSTRUCTURED AND ULTRAFINE-GRAINED TITANIUM AND THE ZIRCONIUM FORMED BY THE METHOD OF SEVERE PLASTIC DEFORMATION
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MICROSTRUCTURE AND MECHANICAL PROPERTIES OF NANOSTRUCTURED AND ULTRAFINE-GRAINED TITANIUM AND THE ZIRCONIUM FORMED BY THE METHOD OF SEVERE PLASTIC DEFORMATION

机译:纳米和超细晶粒钛与重塑性变形法制备的锆的显微组织和力学性能

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摘要

Results of investigation of the microstructure, mechanical properties, and thermostability of bioinert titanium VT1-0 and zirconium E110 in nanostructured and ultrafine-grained states formed by combined methods of severe plastic deformation, including abc pressing in a press-mould or without it and multipass rolling in grooved or smooth rolls, are presented. It is demonstrated that the combined severe plastic deformation method allows titanium and zirconium billets in nanostructured and ultrafine-grained states to be obtained that provides substantial improvement of the mechanical properties comparable to the properties of titanium alloys, for example, VT6 and VT16 ones. The yield strength and the microhardness of titanium and zirconium obey the Hall–Petch relationship.
机译:通过严重塑性变形(包括压模或不压模中的abc压制和多次通过)的组合方法形成的纳米结构态和超细晶态的生物惰性钛VT1-0和锆E110的微观结构,机械性能和热稳定性的研究结果介绍了在带凹槽的或光滑的辊中进行轧制的方法。证明了组合的严重塑性变形方法允许获得纳米结构态和超细晶态的钛和锆坯料,与钛合金例如VT6和VT16的性能相比,其机械性能得到了实质性的改善。钛和锆的屈服强度和显微硬度符合Hall-Petch关系。

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