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人工晶体学报 ›› 2017, Vol. 46 ›› Issue (9): 1864-1868.

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烧结温度对96Al2O3陶瓷力学性能及热导率的影响

伍海东;刘伟;程利霞;刘健;谭毅成;向其军;伍尚华   

  1. 广东工业大学机电工程学院,广州,510006;深圳市商德先进陶瓷有限公司,深圳,518125
  • 出版日期:2017-09-15 发布日期:2021-01-20
  • 基金资助:
    广东省引进领军人才专项资金(400120001)

Research on the Mechanical Properties and Thermal Conductivity of 96 Alumina Ceramics

WU Hai-dong;LIU Wei;CHENG Li-xia;LIU Jian;TAN Yi-cheng;XIANG Qi-jun;WU Shang-hua   

  • Online:2017-09-15 Published:2021-01-20

摘要: 采用CaO-MgO-SiO2为烧结助剂,采用无压烧结技术,研究了烧结温度对96Al2O3陶瓷热导率及力学性能的影响.采用阿基米德排水法、三点弯曲法、激光脉冲法、扫描电子显微镜(SEM)及X射线衍射(XRD)等分析手段和设备,对烧结后陶瓷样品的密度、力学性能、热导率和微观组织结构进行了分析研究.研究结果表明:1600℃烧结的Al2O3样品的具有较好的导热性和力学性能,其热导率、密度、维氏硬度和抗弯强度分别为24.9W/(m·K),3.82g/cm3,(13.8±0.2)GPa,(362.9±26.9)MPa.

关键词: 氧化铝;烧结温度;力学性能;导热率

Abstract: The effect of sintering temperature on mechanical property and thermal property of alumina ceramics consolidated by pressureless sintering were investigated .The density , mechanical properties , thermal conductivity , microstructure , and phase composition were analyzed by Archimedes , three point bending , laser pulse method , scanning electron microscope and X-ray diffraction , respectively .The results showed that better thermal property and higher mechanical properties can be obtained at 1600 ℃and the value of thermal conductivity , density, hardness, bending strength are 24.9 W/(m· K), 3.82 g/cm3,(13.8 ±0.2) GPa, (362.9 ±26.9) MPa, respectively.

Key words: The effect of sintering temperature on mechanical property and thermal property of alumina ceramics consolidated by pressureless sintering were investigated .The density , mechanical properties , thermal conductivity , microstructure , and phase composition were analyzed by Archimedes , three point bending , laser pulse method , scanning electron microscope and X-ray diffraction , respectively .The results showed that better thermal property and higher mechanical properties can be obtained at 1600 ℃and the value of thermal conductivity , density, hardness, bending strength are 24.9 W/(m· K), 3.82 g/cm3,(13.8 ±0.2) GPa, (362.9 ±26.9) MPa, respectively.

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