Oh Nam-Sik, Kim Dae-Joon, Ong Joo L, Lee Ho-Young, Lee Keun-Woo
Department of Dentistry, Inha University, Incheon, Republic of Korea.
Dent Mater. 2007 Apr;23(4):442-9. doi: 10.1016/j.dental.2006.02.015. Epub 2006 Apr 18.
The purpose of this study was to investigate the properties of tape cast alumina composite produced using a water-based solvent and its possible clinical use as an all ceramic crown system in a fixed partial denture. Durability of the system will be measured by fatigue test to simulate the masticating conditions of the oral cavity.
The optimal weight ratio of water-based alumina tape was determined by tensile strength, shrinkage ratio and durability. The coefficient of thermal expansion, fracture toughness, biaxial flexural strength and flexural strength after fatigue test of a composite produced from alumina tape at optimal weight ratios were determined and compared to In-Ceram alumina core (control).
The weight ratio of alumina/(alumina+binder+plasticizer) of 0.84 and binder/(binder+plasticizer) of 0.5 was observed to be the optimal composition for achieving excellent composite properties. Coefficient of thermal expansion of the sintered alumina tape was observed to be 7.3x10(-6)/degrees C, and this value was increased to 7.5x10(-6)/degrees C after infiltrating the sintered tape with glass. The fracture toughness and biaxial flexural strength of glass infiltrated alumina tape was observed to be 4.6 MPa m(1/2) and 498 MPa, respectively. After cyclic loading for 10(2)-10(6) cycles, no significant change in the biaxial flexural strength was observed between the glass infiltrated alumina core and the In-Ceram alumina core (p>0.05).
The observed properties provide evidence that the water-based tape cast alumina-glass composite is suitable for clinical use as an all ceramic crown system in a fixed partial denture.
本研究旨在探究使用水基溶剂制备的流延成型氧化铝复合材料的性能,以及其作为全瓷冠系统在固定局部义齿中可能的临床应用。该系统的耐久性将通过疲劳试验来测定,以模拟口腔的咀嚼条件。
通过拉伸强度、收缩率和耐久性确定水基氧化铝带的最佳重量比。测定了由最佳重量比的氧化铝带制备的复合材料在热膨胀系数、断裂韧性、双轴弯曲强度以及疲劳试验后的弯曲强度,并与In-Ceram氧化铝核(对照)进行比较。
观察到氧化铝/(氧化铝+粘结剂+增塑剂)的重量比为0.84且粘结剂/(粘结剂+增塑剂)的重量比为0.5是实现优异复合材料性能的最佳组成。观察到烧结氧化铝带的热膨胀系数为7.3×10⁻⁶/℃,在用玻璃渗透烧结带后该值增加到7.5×10⁻⁶/℃。观察到玻璃渗透氧化铝带的断裂韧性和双轴弯曲强度分别为4.6 MPa·m¹/²和498 MPa。在进行10²-10⁶次循环加载后,玻璃渗透氧化铝核和In-Ceram氧化铝核之间的双轴弯曲强度未观察到显著变化(p>0.05)。
观察到的性能提供了证据,表明水基流延成型氧化铝-玻璃复合材料适用于作为固定局部义齿中的全瓷冠系统用于临床。