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首页> 外文期刊>Physical review letters >Impact of Plastic Deformation and Shear Band Formation on the Boson Heat Capacity Peak of a Bulk Metallic Glass
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Impact of Plastic Deformation and Shear Band Formation on the Boson Heat Capacity Peak of a Bulk Metallic Glass

机译:塑性变形和剪切带形成对大块金属玻璃玻色子热容峰的影响

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摘要

The effect of annealing on the low-temperature heat capacity of a bulk Pd_(38.5)Ni_(40)P_(21.5) metallic glass is investigated for as-quenched and deformed (rolled) states. Although the boson heat capacity peak increases with increasing strain, it relaxes faster and to a lower level compared to that of the as-quenched state after annealing treatments both below and above the glass transition temperature T_g. The glass is found to retain a certain "memory" on the room-temperature plastic deformation even after annealing above T_g. Indications for two counteracting processes that might be related to different types of shear bands are observed.
机译:研究了退火对大块Pd_(38.5)Ni_(40)P_(21.5)金属玻璃的低温热容的影响,包括淬火和变形(轧制)状态。尽管玻色子的热容峰随应变的增加而增加,但与在低于和高于玻璃化转变温度T_g的退火处理后的淬火状态相比,它更快地松弛并且降低到较低的水平。发现即使在T_g以上退火后,玻璃仍在室温塑性变形上保留一定的“记忆”。观察到可能与不同类型的剪切带有关的两个抵消过程的指示。

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  • 来源
    《Physical review letters》 |2014年第13期|135901.1-135901.5|共5页
  • 作者单位

    Institute of Materials Physics, University of Muenster, 10 Wilhelm-Klemm Strasse, Muenster 48149, Germany,Department of Solid State Physics, State Technical University, 14 Moscow Avenue, Voronezh 394026, Russia;

    Institute of Materials Physics, University of Muenster, 10 Wilhelm-Klemm Strasse, Muenster 48149, Germany;

    Institute of Materials Physics, University of Muenster, 10 Wilhelm-Klemm Strasse, Muenster 48149, Germany;

    Institute of Materials Physics, University of Muenster, 10 Wilhelm-Klemm Strasse, Muenster 48149, Germany,Institute of Nanochemistry and Nanobiology, School of Environmental and Chemical Engineering, Shanghai University, Shanghai 200444, Peovle 's Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    thermal properties of amorphous solids and glasses: heat;

    机译:非晶态固体和玻璃的热性质:热;

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