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Influence of chemical treatment on microstructure and mechanical properties of chemically-toughened glass by ion exchange process

机译:用离子交换过程对化学钢化玻璃微观结构和机械性能的影响

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摘要

In this study, an attempt was made to investigate the influence of immersion temperature and time of ion exchange on the microstructure and mechanical properties of chemically toughened soda-lime glass (CTG). Glass samples of 120 x 50 x 40 mm were immersed in potassium nitrate (KNO3) salt placed inside a salt bath and subjected to heating at temperatures of 450 degrees C and 500 degrees C with the immersion time varied for 4 h and 5 h for each temperature inside a muffle furnace. Scanning Electron Microscopy (SEM) was used to evaluate the microstructure of the chemically toughened glasses while tests such as hardness, flexural strength and impact strength were used to assess the mechanical properties of the chemically toughened glasses. The results obtained show that hardness value decreased as temperature and time increases with maximum hardness of 26.35 BHN for CTG(1) (450 degrees C for 4 h). The impact strength increased as temperature and time increases with maximum impact strength of 36.72 J for CTG(4) (500 degrees C for 5 h). However, the maximum flexural strength of 95.87 MPa was obtained for CTG(2) (450 degrees C for 5 h).
机译:在该研究中,尝试研究浸入温度和离子交换时间对化学增韧钠钙玻璃(CTG)的微观结构和力学性能的影响。将120×50×40mm的玻璃样品浸入硝酸钾(KNO3)盐中,盐浴放置在盐浴内,并在450℃的温度下进行加热,500℃,浸入时间为4小时和5小时在马弗炉内的温度。扫描电子显微镜(SEM)用于评估化学钢化玻璃的微观结构,同时使用诸如硬度,弯曲强度和冲击强度的试验来评估化学钢化玻璃的机械性能。得到的结果表明,随着温度和时间增加,硬度值随着CTG(1)的最大硬度为26.35bHn(450℃,4小时)的温度增加。随着温度和时间增加,冲击强度增加,CTG(4)的最大冲击强度为36.72J(5小时500℃)。然而,对于CTG(2)(5小时450℃)获得95.87MPa的最大弯曲强度。

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