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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Recent progress to understand stress corrosion cracking in sodium borosilicate glasses: linking the chemical composition to structural, physical and fracture properties
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Recent progress to understand stress corrosion cracking in sodium borosilicate glasses: linking the chemical composition to structural, physical and fracture properties

机译:了解硼硅酸钠玻璃中应力腐蚀裂纹的最新进展:将化学成分与结构,物理和骨折性能连接

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摘要

This topical review is dedicated to understanding stress corrosion cracking in oxide glasses and specifically the SiO2-B2O3-Na2O (SBN) ternary glass systems. Many review papers already exist on the topic of stress corrosion cracking in complex oxide glasses or overly simplified glasses (pure silica). These papers look at how systematically controlling environmental factors (pH, temperature...) alter stress corrosion cracking, while maintaining the same type of glass sample. Many questions still exist, including: What sets the environmental limit? What sets the velocity versus stress intensity factor in the slow stress corrosion regime (Region I)? Can researchers optimize these two effects to enhance a glass' resistance to failure? To help answer these questions, this review takes a different approach. It looks at how systemically controlling the glass' chemical composition alters the structure and physical properties. These changes are then compared and contrasted to the fracture toughness and the stress corrosion cracking properties. By taking this holistic approach, researchers can begin to understand the controlling factors in stress corrosion cracking and how to optimize glasses via the initial chemical composition.
机译:该局部审查专用于了解氧化物眼镜中的应力腐蚀,特别是SiO2-B2O3-Na2O(SBN)三元玻璃系统。许多审查论文已经存在于复合氧化物眼镜或过度简化的眼镜(纯二氧化硅)中的应力腐蚀裂缝的主题。这些论文看出了系统控制的环境因素(pH,温度......)改变应力腐蚀开裂,同时​​保持相同类型的玻璃样品。许多问题仍然存在,包括:什么设定了环境限制?什么在慢速应力腐蚀制度(区域I)中设置了速度与应力强度因子?研究人员可以优化这两种效果,以提高玻璃的抵抗力吗?为了帮助回答这些问题,这篇评论采用了不同的方法。它看着玻璃化学成分的系统性如何改变结构和物理性质。然后将这些变化与断裂韧性和应力腐蚀裂化性能进行比较和对比。通过采取这种整体方法,研究人员可以开始了解压力腐蚀开裂中的控制因子以及如何通过初始化学成分优化眼镜。

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