首页> 外文期刊>Bulletin of the Russian Academy of Sciences. Physics >Self-Blocking of Shear Bands and the Delocalization of Plastic Flows in Amorphous Alloys upon Megaplastic Deformation
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Self-Blocking of Shear Bands and the Delocalization of Plastic Flows in Amorphous Alloys upon Megaplastic Deformation

机译:剪切带的自阻塞和非晶合金塑性变形在塑性变形后的离域

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摘要

Features of the formation of shear bands and nanocrystalline phases upon the megaplastic deformation of amorphous alloys based on iron, nickel, and titanium at room temperature in a Bridgman chamber are analyzed via transmission electron microscopy. It is shown that the transition from strongly localized to quasi-homogeneous plastic deformation occurs at a definite stage of the inhomogeneous plastic flow. Mechanisms based on the self-blocking of propagating shear bands by particles of the nanocrystalline phase that emerge due to a dissipative increase in the temperature along the front of shear bands are proposed for the delocalization of plastic flow.
机译:通过透射电子显微镜分析了在室温下在Bridgman室中基于铁,镍和钛的非晶态合金的巨塑性变形时剪切带和纳米晶相形成的特征。结果表明,从强局部塑性变形到准均匀塑性变形的转变发生在非均匀塑性流动的确定阶段。提出了基于沿着剪切带前部温度的耗散升高而出现的纳米晶相颗粒对传播的剪切带的自阻塞的机制,用于塑性流域的离域化。

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