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Effect of sintering temperature and holding time on structure and properties of Li_(1.5)Ga_(0.5)Ti_(1.5)(PO_4)_(3)electrolyte with fast ionic conductivity
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作者 Yin-yi LUO Hao-zhang LIANG +6 位作者 Ping ZHANG Lei HAN Qian ZHANG Li-dan LIU Zhi-wei LUO Tian-xiang NING An-xian LU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第9期2959-2971,共13页
Li1.5Ga0.5Ti1.5(PO4)3(LGTP)is recognized as a promising solid electrolyte material for lithium ions.In this work,LGTP solid electrolyte materials were prepared under different process conditions to explore the effects... Li1.5Ga0.5Ti1.5(PO4)3(LGTP)is recognized as a promising solid electrolyte material for lithium ions.In this work,LGTP solid electrolyte materials were prepared under different process conditions to explore the effects of sintering temperature and holding time on relative density,phase composition,microstructure,bulk conductivity,and total conductivity.In the impedance test under frequency of 1-10~6 Hz,the bulk conductivity of the samples increased with increasing sintering temperature,and the total conductivity first increased and then decreased.SEM results showed that the average grain size in the ceramics was controlled by the sintering temperature,which increased from(0.54±0.01)μm to(1.21±0.01)μm when the temperature changed from 750 to 950°C.The relative density of the ceramics increased and then decreased with increasing temperature as the porosity increased.The holding time had little effect on the grain size growth or sample density,but an extended holding time resulted in crack generation that served to reduce the conductivity of the solid electrolyte. 展开更多
关键词 sintering temperature holding time CONDUCTIVITY cracks solid-state electrolyte
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超薄铝硅酸盐玻璃离子交换工艺与性能研究
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作者 蒋兴星 林祥涛 +3 位作者 周子游 罗银易 卢安贤 肖卓豪 《陶瓷学报》 CAS 北大核心 2023年第6期1198-1207,共10页
选择纯KNO_(3)为熔盐,采用一步法和二步法对可用于手机显示屏的超薄玻璃进行离子交换强化。利用EDS对离子交换玻璃的离子浓度分布进行测试表征,研究了离子交换温度(380℃~440℃)、时间(1 h~12 h)对玻璃的离子交换深度、表面应力、显微... 选择纯KNO_(3)为熔盐,采用一步法和二步法对可用于手机显示屏的超薄玻璃进行离子交换强化。利用EDS对离子交换玻璃的离子浓度分布进行测试表征,研究了离子交换温度(380℃~440℃)、时间(1 h~12 h)对玻璃的离子交换深度、表面应力、显微硬度、透过率及化学稳定性的影响。结果表明:温度的升高和时间的延长有利于玻璃表面应力和显微硬度的提高,但当温度超过400℃,且时间超过2h后,玻璃出现应力松弛效应;二步法增大了离子浓度梯度,进一步提高了玻璃的表面应力和显微硬度;离子交换过程在不降低透过率的同时提高了玻璃致密度及化学稳定性。相关结论对手机显示屏领域超薄玻璃的强化具有指导意义。 展开更多
关键词 铝硅酸盐玻璃 离子交换工艺 表面应力 应力松弛 二步法
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