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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Shear Localization-Martensitic Transformation Interactions in Fe-Cr-Ni Monocrystal
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Shear Localization-Martensitic Transformation Interactions in Fe-Cr-Ni Monocrystal

机译:Fe-Cr-Ni单晶中的剪切局部化-马氏体转变相互作用

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A Fe-15 wt pct Cr-15 wt pct Ni alloy monocrystal was deformed dynamically (strain rate approx 10~4 s~(-1)) by the collapse of an explosively driven thick-walled cylinder under prescribed initial temperature and strain conditions. The experiments were carried out under the following conditions: (a) alloy in austenitic state, temperature above transformation temperature; (b) alloy in transformed state; and (c) alloy at temperature slightly above M_s, propitiating concurrent shear-band propagation and mart-ensitic transformation. The alloy exhibited profuse shear-band formation, which was a sensitive function of the deformation condition. Stress-assisted and strain-induced martensitic transformation competes with shear localization. The alloy deformed at a temperature slightly above M_s shows a significantly reduced number of shear bands. The anisotropy of plastic deformation determines the evolution of strains and distribution of shear bands. The different conditions showed significant differences that are interpreted in terms of the microstructural anisotropy. Calculated shear-band spacings based on the Grady-Kipp (GK) and Wright-Ockendon (WO) theories are compared with the observed values. The micro structure within the shear bands was characterized by transmission electron microscopy. Regions of sub-micron grain sizes exhibiting evidence of recrystallization were observed, as well as amorphous regions possibly resulting from melting and rapid resolidification.
机译:Fe-15 wt pct Cr-15 wt pct Ni合金单晶在规定的初始温度和应变条件下通过爆炸驱动的厚壁圆柱体的塌陷而动态变形(应变速率约为10〜4 s〜(-1))。实验在以下条件下进行:(a)合金处于奥氏体状态,温度高于相变温度; (b)处于转变状态的合金; (c)温度略高于M_s的合金,促进了同时的剪切带传播和集散-热变形。合金表现出大量的剪切带形成,这是变形条件的敏感函数。应力辅助和应变诱导的马氏体转变与剪切局部化竞争。在略高于M_s的温度下变形的合金显示出剪切带的数量明显减少。塑性变形的各向异性决定了应变的演化和剪切带的分布。不同的条件显示出明显的差异,这可以用微观结构各向异性来解释。将基于Grady-Kipp(GK)和Wright-Ockendon(WO)理论计算的剪切带间距与观测值进行比较。剪切带内的微观结构通过透射电子显微镜表征。观察到亚微米晶粒尺寸的区域显示出再结晶的迹象,以及可能由于熔化和快速再凝固而导致的非晶区域。

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