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重新审视泊松比与氧化物玻璃中液体脆性和原子堆积密度的关系

Revisiting the Dependence of Poisson's Ratio on Liquid Fragility and Atomic Packing Density in Oxide Glasses.

作者信息

Østergaard Martin B, Hansen Søren R, Januchta Kacper, To Theany, Rzoska Sylwester J, Bockowski Michal, Bauchy Mathieu, Smedskjaer Morten M

机构信息

Department of Chemistry and Bioscience, Aalborg University, 9220 Aalborg East, Denmark.

Institute of High-Pressure Physics, Polish Academy of Sciences, 01-142 Warsaw, Poland.

出版信息

Materials (Basel). 2019 Jul 31;12(15):2439. doi: 10.3390/ma12152439.

Abstract

Poisson's ratio () defines a material's propensity to laterally expand upon compression, or laterally shrink upon tension for non-auxetic materials. This fundamental metric has traditionally, in some fields, been assumed to be a material-independent constant, but it is clear that it varies with composition across glasses, ceramics, metals, and polymers. The intrinsically elastic metric has also been suggested to control a range of properties, even beyond the linear-elastic regime. Notably, metallic glasses show a striking brittle-to-ductile (BTD) transition for ν-values above ~0.32. The BTD transition has also been suggested to be valid for oxide glasses, but, unfortunately, direct prediction of Poisson's ratio from chemical composition remains challenging. With the long-term goal to discover such high-ν oxide glasses, we here revisit whether previously proposed relationships between Poisson's ratio and liquid fragility () and atomic packing density () hold for oxide glasses, since this would enable and to be used as surrogates for . To do so, we have performed an extensive literature review and synthesized new oxide glasses within the zinc borate and aluminoborate families that are found to exhibit high Poisson's ratio values up to ~0.34. We are not able to unequivocally confirm the universality of the Novikov-Sokolov correlation between and and that between and for oxide glass-formers, nor for the organic, ionic, chalcogenide, halogenide, or metallic glasses. Despite significant scatter, we do, however, observe an overall increase in with increasing and , but it is clear that additional structural details besides or are needed to predict and understand the composition dependence of Poisson's ratio. Finally, we also infer from literature data that, in addition to high , high Young's modulus is also needed to obtain glasses with high fracture toughness.

摘要

泊松比(ν)定义了材料在压缩时横向膨胀或在拉伸时横向收缩的倾向(对于非负泊松比材料而言)。在某些领域,这个基本度量传统上被认为是一个与材料无关的常数,但很明显,它会因玻璃、陶瓷、金属和聚合物的成分不同而变化。这个本质上具有弹性的度量还被认为可以控制一系列性质,甚至超出线性弹性范围。值得注意的是,对于ν值高于约0.32的金属玻璃,会出现显著的脆韧转变(BTD)。有人还提出BTD转变对氧化物玻璃也有效,但遗憾的是,从化学成分直接预测泊松比仍然具有挑战性。为了实现发现这种高ν氧化物玻璃的长期目标,我们在此重新审视之前提出的泊松比与液体脆性(m)和原子堆积密度(ρ)之间的关系是否适用于氧化物玻璃,因为这将使m和ρ能够用作ν的替代指标。为此,我们进行了广泛的文献综述,并合成了硼酸锌和硼酸铝系列中的新型氧化物玻璃,发现这些玻璃的泊松比值高达约0.34。我们无法明确证实氧化物玻璃形成体中m与ρ之间以及m与ρ之间的诺维科夫 - 索科洛夫相关性的普遍性,对于有机玻璃、离子玻璃、硫属化物玻璃、卤化物玻璃或金属玻璃也是如此。尽管存在显著的离散性,但我们确实观察到随着m和ρ的增加,ν总体上有所增加,但很明显,除了m或ρ之外,还需要更多的结构细节来预测和理解泊松比的成分依赖性。最后,我们还从文献数据中推断出,除了高ν之外,还需要高杨氏模量才能获得具有高断裂韧性的玻璃。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cff7/6696245/9456a8525a17/materials-12-02439-g001.jpg

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