华西口腔医学杂志

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GI-Ⅱ型着色玻璃渗透后渗透陶瓷的性能测试

韩晓莉,廖运茂,巢永烈,孟玉坤   

  1. 610041 四川大学华西口腔医学院
  • 收稿日期:2002-10-25 修回日期:2002-10-25 出版日期:2002-10-20 发布日期:2002-10-20
  • 基金资助:
    本课题为国家教委博士点基金资助项目(编号9845)

Properties of GI-ⅡGlass/Alumina Composite Infiltrated with GI-ⅡTinted Infiltration Glass

Han Xiaoli, Liao Yunmao, Chao Yonglie, et al   

  1. Han Xiaoli, Liao Yunmao, Chao Yonglie, et al West China College ofStomatology, Sichuan University
  • Received:2002-10-25 Revised:2002-10-25 Online:2002-10-20 Published:2002-10-20

摘要:

目的 :探讨用GIⅡ型着色渗透玻璃渗透后的渗透陶瓷底层材料的热膨胀性能、机械力学性能和密度 ,为材料性能的改进和临床应用奠定基础。方法 :选用GIⅡ型着色渗透玻璃的IG2色玻璃料及GIⅡ型氧化铝粉体 ,制作氧化铝基体及渗透陶瓷样本 ,在TMA2940型热分析仪上绘制样本的热膨胀曲线 ,计算热膨胀系数 ;三点弯曲法测定渗透陶瓷材料的挠曲强度和弹性模量 ,显微压痕法测量断裂韧性和维氏硬度 ;重量体积法测定其密度。结果 :渗透陶瓷的热膨胀系数为 7.620×10(6)℃(-1)(2 5~ 5 0 0℃ ) ,略高于Vitaduralpha饰面瓷的热膨胀系数。材料的三点挠曲强度、弹性模量、维氏硬度、显微断裂韧性和密度分别为 389.6MPa、92GPa、9.409GPa、3.2425MNm3/2和3.662g/cm3 。结论 :用GIⅡ型着色渗透玻璃渗透后的渗透陶瓷底层材料 ,其热膨胀性能与Vitaduralpha饰面瓷匹配 ,机械强度也达到了临床应用的要求。

关键词: 渗透陶瓷, 热膨胀, 机械性能, 玻璃

Abstract:

Objective:The purpose of this study was to determine the thermal, mechanical properties and density of the composite infiltrated with GI-Ⅱtinted infiltration glass.Methods: The bar-shaped aluminum oxide and glass/alumina composite specimens with the size of 20 mm×5 mm×5 mm were prepared, with two free-end surfaces perpendicular to the long axis of the specimens and parallel to each other. The thermal expansion curves were obtained on a TMA2940 thermal analyzer with heating rate of 5℃/min and temperature range of 25℃ to 1000℃. The bar-shaped specimens with the size of 25 mm×5 mm×2 mm were fabricated and employed to test the density using Archimede’s method. The flexural strength, elastic modulus were measured by means of 3-point bending test with the same specimens. The fractured specimens were indented with Vicker’s diamond pyramid under load of 49 N for 15 seconds to determine the hardness and indentation fracture toughness.Results: The thermal expansion coefficient of the glass/alumina composite was 7.620×10+{-6}℃+{-1}(25~500℃), which was higher than that of Vitadur alpha veneering porcelain. The 3-poit flexural strength, elastic modulus, Vicker’s hardness, indentation fracture toughness and density were 389.6 MPa, 92 GPa, 9.409 GPa, 3.2425 MNm+{-3/2} and 3.662 g/cm+3 respectively.Conclusion: The thermal expansion of the GI-Ⅱ glass/alumina composite is compatible with that of Vitadur alpha veneering porcelain, and the material could meet the strength demands for clinical use.

Key words: glass/alumina composite, mechanical properties, infiltration glass