论文标题

具有尺寸依赖机械性能的超级金属玻璃纳米颗粒

Ultrastable Metallic Glass Nanoparticles with Size-Dependent Mechanical Properties

论文作者

Parakh, Abhinav, Kiani, Mehrdad T., Colmenares, Anabelle, Lee, Andrew C., Shen, Guoyin, Chariton, Stella, Prakapenka, Vitali B., Gu, X. Wendy

论文摘要

金属玻璃的原子结构与强度和延展性等特性密切相关。在这里,在准静态高压条件下,具有两种不同尺寸的Ni1-XBX金属玻璃纳米颗粒被压缩,以便理解压力下的结构变化。使用原位高压X射线衍射(XRD)跟踪纳米颗粒的结构变化。 XRD产生的环境压力对分布函数表明,较小的纳米颗粒具有更紧凑的无定形结构,配位数较低。 XRD表明,无定形结构稳定到达到的最大压力。发现较小和较大的纳米颗粒的大量模量分别为208 GPA和178 GPA。这种依赖性的高压行为与纳米颗粒之间的组成差异有关。这些结果表明,NI1-XBX金属玻璃纳米颗粒在压力下高度稳定,这可以使其在金属或陶瓷基质复合材料中用作夹杂物。

The atomistic structure of metallic glasses is closely related to properties such as strength and ductility. Here, Ni1-xBx metallic glass nanoparticles of two different sizes are compressed under quasi-hydrostatic high-pressure conditions in order to understand structural changes under stress. The structural changes in the nanoparticles were tracked using in situ high-pressure X-ray diffraction (XRD). The ambient pressure pair-distribution functions generated from XRD showed that the smaller sized nanoparticles had a more compact amorphous structure with lower coordination number. XRD showed that the amorphous structure was stable up to the maximum pressures achieved. The bulk modulus of the smaller and larger sized nanoparticles was found to be 208 GPa and 178 GPa, respectively. This size-dependent high-pressure behavior was related to compositional differences between the nanoparticles. These results show that Ni1-xBx metallic glass nanoparticles are highly stable under pressure, which could enable their use as inclusions in metal or ceramic matrix composites.

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