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具有超高弹性模量的热致密石英玻璃。

Hot dense silica glass with ultrahigh elastic moduli.

作者信息

Sun Ningyu, Mao Zhu, Zhang Xinyue, Tkachev Sergey N, Lin Jung-Fu

机构信息

Laboratory of Seismology and Physics of Earth's Interior, School of Earth and Space Sciences, University of Science and Technology of China, Hefei, Anhui, 230026, China.

CAS Center for Excellence in Comparative Planetology, University of Science and Technology of China, Hefei, Anhui, 230026, China.

出版信息

Sci Rep. 2022 Aug 17;12(1):13946. doi: 10.1038/s41598-022-18062-6.

Abstract

Silicate and oxide glasses are often chemically doped with a variety of cations to tune for desirable properties in technological applications, but their performances are often limited by relatively lower mechanical and elastic properties. Finding a new route to synthesize silica-based glasses with high elastic and mechanical properties needs to be explored. Here, we report a dense SiO-glass with ultra-high elastic moduli using sound velocity measurements by Brillouin scattering up to 72 GPa at 300 K. High-temperature measurements were performed up to 63 GPa at 750 K and 59 GPa at 1000 K. Compared to compression at 300 K, elevated temperature helps compressed SiO-glass effectively overcome the kinetic barrier to undergo permanent densification with enhanced coordination number and connectivity. This hot compressed SiO-glass exhibits a substantially high bulk modulus of 361-429 GPa which is at least 2-3 times greater than the metallic, oxide, and silicate glasses at ambient conditions. Its Poisson's ratio, an indicator for the packing efficiency, is comparable to the metallic glasses. Even after temperature quench and decompression to ambient conditions, the SiO-glass retains some of its unique properties at compression and possesses a Poisson's ratio of 0.248(11). In addition to chemical alternatives in glass syntheses, coupled compression and heating treatments can be an effective means to enhance mechanical and elastic properties in high-performance glasses.

摘要

硅酸盐玻璃和氧化物玻璃通常会化学掺杂各种阳离子,以在技术应用中调整出所需性能,但其性能往往受到相对较低的机械性能和弹性性能的限制。需要探索一条合成具有高弹性和机械性能的二氧化硅基玻璃的新途径。在此,我们通过布里渊散射测量声速,报道了一种在300 K下弹性模量高达72 GPa的致密SiO玻璃。在750 K下进行了高达63 GPa的高温测量,在1000 K下进行了高达59 GPa的高温测量。与300 K下的压缩相比,升高温度有助于压缩后的SiO玻璃有效克服动力学障碍,通过增加配位数和连接性实现永久致密化。这种热压缩SiO玻璃表现出高达361 - 429 GPa的体积模量,在环境条件下至少比金属玻璃、氧化物玻璃和硅酸盐玻璃大2至3倍。其泊松比(一种表示堆积效率的指标)与金属玻璃相当。即使在温度淬火并减压至环境条件后,SiO玻璃在压缩时仍保留了一些独特性能,泊松比为0.248(11)。除了玻璃合成中的化学替代方法外,耦合压缩和加热处理可以成为提高高性能玻璃机械性能和弹性性能的有效手段。

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