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Characteristic free volume change of bulk metallic glasses

机译:大块金属玻璃的特征自由体积变化

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The free volume change △V_f(T) of bulk metallic glasses (BMGs) relative to a hypothesized amorphous reference state was measured using the thermal dilatation method. The characteristic free volume change, i.e., the free volume released in structural relaxation △V_(f-sr) was identified quantitatively from the △V_f(T) curve. For a Fe-based BMG, it was found that △V_(f-sr) increases with decreases in the sample diameter and heating rate. △V_(f-sr) measured under the same sample diameter and heating rate conditions allowed the convenient comparison of different BMGs. The comparison revealed that the glass-forming ability (GFA) enhancement of each of two Pd-, Mg-, Cu-, Zr-, Ti-, and Fe-based BMGs can be sensitively reflected in the decrease in △V_(f-sr) and the narrowing of the difference between the peak temperature of the thermal expansion coefficient and the end temperature of the glass transition process. In addition, for these twelve typical BMGs, there is a good linear relationship between △V_(f-sr) and LogD_c~2 or LogD_c, where D_c is the critical diameter. △V_(f-sr) is thus sensitive to and has a close correlation with GFA. Furthermore, the △V_(f-sr) measurement results are in good agreement with the free volume change measured with the specific heat capacity, room temperature density, and positron annihilation lifetime methods. In the study of the relationship between the structure and properties of BMGs, △V_(f-sr) thus plays an important role given its comparability and convenience.
机译:使用热膨胀法测量了大块金属玻璃(BMGs)相对于假设的非晶态参考状态的自由体积变化△V_f(T)。从△V_f(T)曲线定量地确定特征自由体积变化,即在结构弛豫△V_(f-sr)中释放的自由体积。对于Fe基BMG,发现△V_(f-sr)随着样品直径和加热速率的减小而增加。在相同的样品直径和加热速率条件下测得的△V_(f-sr)可以方便地比较不同的BMG。比较结果表明,两种基于Pd,Mg,Cu,Zr,Ti和Fe的BMG的玻璃形成能力(GFA)增强都可以通过△V_(f- sr)和热膨胀系数的峰值温度与玻璃化转变过程的最终温度之间的差异变窄。另外,对于这十二种典型的BMG,△V_(f-sr)与LogD_c〜2或LogD_c之间具有良好的线性关系,其中D_c是临界直径。因此,△V_(f-sr)对GFA敏感并与之密切相关。此外,△V_(f-sr)测量结果与通过比热容,室温密度和正电子灭寿命方法测得的自由体积变化非常吻合。在研究BMG的结构与性质之间的关系时,△V_(f-sr)具有可比性和便利性,因此起着重要的作用。

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  • 来源
    《Journal of Applied Physics 》 |2012年第8期| p.083523.1-083523.9| 共9页
  • 作者单位

    School of Materials Science and Engineering, Northwestern Polytechnical University, Xi'an, Shaanxi 710072,People's Republic of China;

    College of Materials Science and Engineering, Shenzhen University, Shenzhen 518060, People's Republic of China,Shenzhen Key Laboratory of Special Functional Materials, Shenzhen 518060, People's Republic of China;

    Department of Mechanical Engineering, The Hong Kong Polytechnic University, Hong Kong, People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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