材料科学
旋节
旋节分解
硅酸铝
复合材料
下降(电信)
相(物质)
过冷
热力学
化学
有机化学
计算机科学
电信
物理
催化作用
作者
Feiyue Xia,Xiaowei Wang,Yadan Wang,Xiaoming Ren,Ang Qiao,Haizheng Tao
摘要
Here, spinodal decomposition is used as a strategy to enhance the mechanical properties of the 30Al2O3·70SiO2 glass. The melt-quenched 30Al2O3·70SiO2 glass exhibited a liquid-liquid phase separation with an interconnected snake-like nano-structure. Through further heat treatment at 850 °C for different durations of up to 40 hours, we observed a continuous increase of up to about 0.90 GPa in hardness (Hv) together with a drop in the slope for Hv rise at 4 hours. However, the crack resistance (CR) achieved a maximum value of 13.6 N when the heat treatment time was 2 hours. Detailed calorimetric, morphological and compositional analyses were conducted to elucidate the effect of tuning the thermal treatment time on hardness and crack resistance. These findings pave the way to utilize the spinodal phase-separated phenomena to enhance the mechanical properties of glasses.
科研通智能强力驱动
Strongly Powered by AbleSci AI