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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Isothermal internal friction behaviour of a Zr based bulk metallic glass with large supercooled liquid region
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Isothermal internal friction behaviour of a Zr based bulk metallic glass with large supercooled liquid region

机译:具有大的过冷液体区的Zr基块状金属玻璃的等温内摩擦行为

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In this paper, the internal friction behaviour of Zr-Ti-Cu-Ni-Be bulk metallic glass (BMG) containing 2 at% Fe at elevated temperatures has been studied in isothermal dynamic mechanical analysis experiments. The experiments lead to the determination of metastable equilibrium internal friction Q(e)(-1), as a function of temperature, which can be well described by the Maxwell model with viscosity eta(T), following a Vogel-Fulcher-Tammann (VFT) relation or Arrehnius law. Comparison with the Zr-Ti-Cu-Ni-Be glass-forming liquid shows that a small addition of Fe results in a stronger liquid behaviour of the alloy, exhibiting a higher strength parameter as well as lower VFT temperature and therefore correlates better glass forming ability and thermal stability. From the isothermal internal friction data, the activation energies for viscous flow and primary crystallization of the Zr based supercooled metallic liquid are also derived. It is found that the former is comparable to the activation energy controlling the diffusion process of atoms, e. g. the Ni element of medium size and higher mobility among the components of this alloy, while the latter to that of atoms, e. g. the Ti element of larger size and lower mobility. Thus, it is proposed that both isothermal viscous flow and primary crystallization of the alloy in the supercooleld liquid region are atom diffusion-controlled processes. However, the dominating atomic species are different from each other in the multicomponent Zr based BMG.
机译:本文通过等温动态力学分析实验研究了含2at%Fe的Zr-Ti-Cu-Ni-Be大块金属玻璃(BMG)在高温下的内摩擦行为。实验导致确定了亚稳态平衡内摩擦Q(e)(-1)作为温度的函数,可以通过遵循Vogel-Fulcher-Tammann( VFT)关系或Arrehnius定律。与Zr-Ti-Cu-Ni-Be玻璃形成液的比较表明,少量添加Fe会导致合金具有更强的液体行为,表现出更高的强度参数以及更低的VFT温度,因此与更好的玻璃形成相关能力和热稳定性。从等温内摩擦数据中,还可以得出基于Zr的过冷金属液体的粘性流动和一次结晶的活化能。发现前者与控制原子扩散过程的活化能相当,例如。 G。该合金成分中具有中等尺寸和较高迁移率的Ni元素,而后者为原子的e元素。 G。较大尺寸和较低迁移率的钛元素。因此,提出过冷液相区域中合金的等温粘性流动和初生结晶都是原子扩散控制的过程。但是,在基于多组分Zr的BMG中,主要的原子种类彼此不同。

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