Superior optical transparency of nano-grain magnesium aluminate spinel at high shock pressure

Author:

Cao Xiuxia1ORCID,Wu Qiang1,Sokol Maxim2ORCID,Qi Jianqi3ORCID,Yu Yin1ORCID,Meng Chuanmin1,He Hongliang1,Zhang Chongyu1ORCID,Hu Jianbo1ORCID

Affiliation:

1. National Key Laboratory for Shock Wave and Detonation Physics, Institute of Fluid Physics, China Academy of Engineering Physics 1 , Mianyang 621900, China

2. Department of Materials Science and Engineering, Advanced Ceramic Laboratory, Tel Aviv University 2 , Jaffa, Israel

3. School of Physics, Sichuan University 3 , Chengdu 610065, China

Abstract

Optical transparency is of paramount importance for visual armor and certain optical devices when subjected to severe impact conditions. Shock wave loading not only generates high pressure during hypervelocity impacts but also diminishes optical transmittance. To investigate optical transparency of transparent polycrystalline ceramic under harsh shock wave compression, this study performed experimental measurements considering the grain size effect. The findings, which pertain to polycrystalline magnesium aluminate spinel (PMAS), indicate that PMAS with nano-sized grains within the 900–1500 nm wavelength range demonstrates superior optical transparency compared to conventional PMAS with micrometer-sized grains. This result highlights the excellent optical properties of nano-grain transparent ceramics and raises hopes for their widespread application at high shock pressures.

Funder

National Natural Science Foundation of China

Innovatory development foundation of China academy of Engieering physics

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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