Benzine Omar, Pan Zhiwen, Calahoo Courtney, Bockowski Michal, Smedskjaer Morten M, Schirmacher Walter, Wondraczek Lothar
Otto Schott Institute of Materials Research, University of Jena, 07743, Jena, Germany.
Institute of High-Pressure Physics, Polish Academy of Sciences, 01-142, Warsaw, Poland.
Sci Rep. 2021 Dec 27;11(1):24454. doi: 10.1038/s41598-021-04045-6.
We report the effect of structural compaction on the statistics of elastic disorder in a silicate glass, using heterogeneous elasticity theory with the coherent potential approximation (HET-CPA) and a log-normal distribution of the spatial fluctuations of the shear modulus. The object of our study, a soda lime magnesia silicate glass, is compacted by hot-compression up to 2 GPa (corresponding to a permanent densification of ~ 5%). Using THz vibrational spectroscopic data and bulk mechanical properties as inputs, HET-CPA evaluates the degree of disorder in terms of the length-scale of elastic fluctuations and the non-affine part of the shear modulus. Permanent densification decreases the extent of non-affine elasticity, resulting in a more homogeneous distribution of strain energy, while also decreasing the correlation length of elastic heterogeneity. Complementary Si magic angle spinning NMR spectroscopic data provide a short-range rationale for the effect of compression on glass structure in terms of a narrowing of the Si-O-Si bond-angle and the Si-Si distance.
我们利用具有相干势近似的非均匀弹性理论(HET-CPA)以及剪切模量空间涨落的对数正态分布,报告了结构压实对硅酸盐玻璃中弹性无序统计的影响。我们研究的对象是一种钠钙镁硅酸盐玻璃,通过热压至2吉帕(对应约5%的永久致密化)进行压实。以太赫兹振动光谱数据和体力学性能作为输入,HET-CPA根据弹性涨落的长度尺度和剪切模量的非仿射部分来评估无序程度。永久致密化降低了非仿射弹性的程度,导致应变能分布更均匀,同时也减小了弹性不均匀性的相关长度。互补的硅魔角旋转核磁共振光谱数据从硅氧硅键角变窄和硅硅距离变窄的角度,为压缩对玻璃结构的影响提供了一个短程原理。