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INTERNAL FRICTION OF 51CrV4 SHAFT INFLUENCED BY THERMO-MECHANICAL COUPLING
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作者 J.Gken M.Maikranz-Valentin +3 位作者 K.Steinhoff T.S.Pavlova T.V.Ivleva i.s.golovin 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2008年第2期79-84,共6页
The simultaneous influence of thermal and mechanical treatment was applied to produce a geometrically complex shaft from 51CrV4 steel leading to the formation of mierostruetures which were significantly different from... The simultaneous influence of thermal and mechanical treatment was applied to produce a geometrically complex shaft from 51CrV4 steel leading to the formation of mierostruetures which were significantly different from each other. These mierostrue- rural differences were accompanied by a local change of mechanical properties in terms of hardness, electrical resistivity and especially internal friction. The Snoek-KSster peak was recognized and analyzed in the structure of this steel. 展开更多
关键词 51CRV4 steel Functionally graded material (FGM) Internalfriction Snoek- KSster peak
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Thermo-Mechanical Influence on the Internal Friction of a 51CrV4 Shaft
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作者 J.Göken i.s.golovin +2 位作者 T.S.Andrianova K.Steinhoff H.Brink 《Chinese Physics Letters》 SCIE CAS CSCD 2012年第11期131-135,共5页
The influence of simultaneously applied mechanical and thermal treatment is used for producing a geometrically complex shaft from 51CrV4 steel resulting in widely differing formations of microstructures.Materials'... The influence of simultaneously applied mechanical and thermal treatment is used for producing a geometrically complex shaft from 51CrV4 steel resulting in widely differing formations of microstructures.Materials'properties such as internal friction(IF),hardness and electrical resistivity are affected by this change of microstructure formations.The Snoek–Koster peak is identified and analyzed in the actual steel structure. 展开更多
关键词 51CrV4 STRUCTURE STEEL
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