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Surface strengthening of lithium disilicate glass-ceramic by ion-exchange using Rb, Cs nitrates

机译:使用Rb,Cs硝酸盐通过离子交换通过离子交换强化锂静止玻璃陶瓷

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摘要

In order to further improve the flexural strength of lithium disilicate glass-ceramic, surface strengthening by ion exchange using Rb, Cs nitrates has been studied for the first time. The influences of ion exchange using rubidium and cesium salts on the flexural strength and corrosion resistance have been investigated. It was found that the mechanical properties of the lithium disilicate glass-ceramic could be increased greatly by the ion exchange in rubidium nitrate (RbNO3) salt. After ion exchange for 4 h in RbNO3 salt, the flexural strength and microhardness increased from 169 MPa and 587 kgf mm(-2) (5.75 Gpa) of the original lithium disilicate glass-ceramic to 493 MPa and 654 kgf mm(-2) (6.4 Gpa), respectively. Moreover, the corrosion resistance of the lithium disilicate glass-ceramic was further improved by ion exchange in rubidium and cesium nitrate salts. Furthermore, the maximum thickness of the ion exchange layer using RbNO3 and CsNO3 was only 4.3 mu m and 0.45 mu m respectively. Such a thin exchange layer, which will only require very low Rb+, Cs+ ions exchange amount, indicates that the molten salts of RbNO3 and CsNO3 can be reused for many times. So it is suggested that surface strengthening of lithium disilicate glass-ceramic by ion exchange using Rb, Cs nitrates is cost-efficient and very suitable for the actual production and applications.
机译:为了进一步提高锂硅酸盐玻璃陶瓷的弯曲强度,使用RB通过离子交换的表面强化,首次研究了Cs硝酸盐。研究了使用铷和铯盐对弯曲强度和耐腐蚀性的影响。发现硝酸铷(RBNO 3)盐中的离子交换可以大大增加锂钠玻璃陶瓷的机械性能。在RBNO 3盐中的离子交换后,弯曲强度和微硬度从原始锂钠玻璃 - 陶瓷的169MPa和587kgf mm(-2)(5.75gPa)增加到493MPa和654kgf mm(-2) (6.4 GPA)分别。此外,通过铷和硝酸铯盐中的离子交换进一步改善了锂钠玻璃陶瓷的耐腐蚀性。此外,使用RBNO 3和CSNO 3的离子交换层的最大厚度分别仅为4.3μm和0.45μm。这种薄的交换层仅需要非常低的Rb + Cs +离子交换量,表明RBNO3和CSNO3的熔融盐可以多次重复使用。因此,建议使用RB的离子交换通过离子交换表面强化锂静止玻璃陶瓷,CS硝酸盐是成本效率,非常适合实际生产和应用。

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