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首页> 外文期刊>Journal of the Australasian ceramic society >Enhancing mechanical endurance of chemical-tempered thin soda-lime silicate float glass by ion exchange
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Enhancing mechanical endurance of chemical-tempered thin soda-lime silicate float glass by ion exchange

机译:加强机械耐力chemical-tempered薄钠钙硅酸盐浮动通过离子交换玻璃

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摘要

The aim of this study is to determine the mechanical properties differences in between the air and tin surfaces of thin soda-lime silicate float glasses that subjected to ion exchange using KNO3 salt bath. The ion exchange process was carried out at different times and temperatures. Chemically tempered glasses were investigated by means of compressive stress (CS), microhardness measurements, cracking probability, fractographic analysis, and flexural strength. The relationship among these properties was also discussed. The Weibull distributions of the samples were determined for a better understanding of the strength results. The AFM was used to determine the surface roughness. The weight of glass samples was increased gradually with increasing ion exchange time and temperature due to the inter-diffusion of K+-Na+ ions. The fracture load of chemically strengthened glass with ion exchange at 435 degrees C-8 h showed an increase of ~ 4.4 times that of untreated glass (raw glass), and it was selected as the optimum process conditions. The number of broken pieces was increased by increasing flexural strength, and smaller pieces were obtained with a great deal of branching. The air side always has greater compressive stress than the tin side. The maximum hardness value was reached with ion exchange at 435 degrees C for 12 h on a tin surface was 8.25 GPa with an increase of ~ 18% with respect to the raw glass. The crack resistance of chemically tempered glasses showed an increase in the range of 410-1290% and 241-1895% for air and tin surfaces, respectively. According to the AFM analysis, surface roughness of the samples after ion exchange did not change dramatically. SEM-EDS analysis revealed that the surface potassium concentration and diffusion depth increase with temperature.
机译:本研究的目的是确定的机械性能之间的差异空气和锡表面薄钠钙硅酸盐浮动眼镜进行离子交换用硝酸钾盐浴。进行了在不同时间温度。调查通过压应力(CS),显微硬度测量,开裂概率,显微镜观察的分析,和抗弯强度。这些属性也之间的关系进行了讨论。样本到一个更好的决定对力量的理解的结果。被用来确定表面粗糙度。玻璃样品的重量逐渐增加随着离子交换时间和温度由于inter-diffusion K + na +离子。骨折负荷的化学增强玻璃与离子交换在435度7 8 h显示增加了~未经处理的玻璃的4.4倍(毛坯玻璃),它被选为最佳工艺条件。增加了挠曲强度增加,和一个伟大的小块了大量的分支。压应力大于锡。最大硬度值达到了离子交易所在435摄氏度12 h锡表面是GPa增加8.25 ~ 18%对原始的玻璃。化学钢化玻璃的电阻增加410 - 1290%的范围241 - 1895%的空气和锡表面,分别。根据AFM分析、表面粗糙度离子交换并没有改变后的样品巨大的变化。表面钾浓度和扩散深度随着温度增加。

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