材料科学
热电偶
陶瓷
垫片
钨
钽
加热元件
复合材料
温度测量
钻石
绝缘体(电)
校准
有限元法
表征(材料科学)
光电子学
冶金
纳米技术
热力学
物理
统计
数学
作者
Muyun Han,Wenhui Liu,Min Cao,Weichao Li,Dawei Jiang,Yonghao Han,Chunxiao Gao
摘要
The diamond anvil cell is a powerful tool for investigating material behavior under extreme pressure and temperature, but achieving efficient and uniform heating remains challenging. This study introduces a ring-type furnace integrated into a gasket with a metal-insulator-metal sandwich structure, using tantalum (Ta) for heating, tungsten (W) for electrodes, and mica-ceramic powder for insulation, enabling stable and uniform heating up to 2000 K. A calibration method combining thermocouple data and finite element simulations ensures accurate temperature measurement. Experimental validation shows that the furnace maintains optical access for spectroscopic measurements and supports in situ conductivity characterization under high-pressure and high-temperature conditions. This advancement provides a robust platform for multi-physics experiments under extreme conditions.
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