Effect of glaze thickness on the fracture toughness and hardness of alumina-reinforced porcelain

被引:30
|
作者
Baharav, H [1 ]
Laufer, BZ [1 ]
Pilo, R [1 ]
Cardash, HS [1 ]
机构
[1] Tel Aviv Univ, Maurice & Gabriela Goldschleger Sch Dent Med, Dept Oral Rehabil, IL-69978 Tel Aviv, Israel
来源
JOURNAL OF PROSTHETIC DENTISTRY | 1999年 / 81卷 / 05期
关键词
D O I
10.1016/S0022-3913(99)70204-0
中图分类号
R78 [口腔科学];
学科分类号
1003 ;
摘要
Statement of problem. Although porcelain is the most esthetic restorative material available, it is subject to fracture during function. Glazing reduces the size of flaws in the surface of the porcelain and increases its resistance to crack propagation, but the optimum thickness of this glazed layer has not been determined. Purpose. This study compared the fracture toughness (K-c) and Vickers hardness number (VHN) of an alumina-reinforced porcelain at different thicknesses of glaze. Material and methods. Disks of feldspathic porcelain reinforced with 2% aluminum oxide were prepared and glazed for 0, 30, 60, 90, and 120 seconds. Fracture toughness and Vickers microhardness were determined with a microindentation technique. Thickness of the glazed layers was measured with a SEM. Results. Mean Vickers hardness number and fracture toughness values both decreased significantly with glazing times from 0 to 60 seconds, and increased significantly with glazing times from 60 to 120 seconds (P<.001, ANOVA). SEM examination revealed an increase in glazed layer thickness with increased glazing time. Conclusions. Minimal and maximum thicknesses of glaze layers on alumina-reinforced porcelain resulted in a surface that was harder and more resistant to fracture than moderate glaze thicknesses.
引用
收藏
页码:515 / 519
页数:5
相关论文
共 50 条
  • [41] Effect of specimen thickness on mode II fracture toughness of rock
    Rao, Q.-H.
    Sun, Z.-Q.
    Wang, G.-Y.
    Xu, J.-C.
    Zhang, J.-Y.
    Journal of Central South University of Technology (English Edition), 2001, 8 (02): : 114 - 119
  • [42] Effect of specimen thickness on Mode II fracture toughness of rock
    Qiu-hua Rao
    Zong-qi Sun
    Gui-yao Wang
    Ji-cheng Xu
    Jing-yi Zhang
    Journal of Central South University of Technology, 2001, 8 : 114 - 119
  • [43] Investigation of specimen thickness effect on dynamic fracture toughness of PMMA
    Wada, Hitoshi
    Seika, Masaichiro
    Murase, Katsuhiko
    Nippon Kikai Gakkai Ronbunshu, A Hen/Transactions of the Japan Society of Mechanical Engineers, Part A, 1994, 60 (573): : 1183 - 1187
  • [44] Thickness effect on shear fracture toughness of sintered silver joints
    Kang, Rong
    Dai, Yanwei
    Qin, Fei
    Li, Yanning
    2023 24TH INTERNATIONAL CONFERENCE ON ELECTRONIC PACKAGING TECHNOLOGY, ICEPT, 2023,
  • [45] Effect of specimen thickness on Mode II fracture toughness of rock
    Rao, QH
    Sun, ZQ
    Wang, GY
    Xu, JC
    Zhang, JY
    JOURNAL OF CENTRAL SOUTH UNIVERSITY OF TECHNOLOGY, 2001, 8 (02): : 114 - 119
  • [46] Experimental investigations of the effect of thickness on fracture toughness of metallic foils
    Kang, YL
    Zhang, ZF
    Wang, HW
    Qin, QH
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2005, 394 (1-2): : 312 - 319
  • [47] Effect of specimen thickness on fracture toughness of bovine patellar cartilage
    Adams, DJ
    Brosche, KM
    Lewis, JL
    JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME, 2003, 125 (06): : 927 - 929
  • [48] HARDNESS AND FRACTURE-TOUGHNESS OF SIC-PARTICLE-REINFORCED MOSI2 COMPOSITES
    BHATTACHARYA, AK
    PETROVIC, JJ
    JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 1991, 74 (10) : 2700 - 2703
  • [49] The effect of agglomeration on the fracture toughness of CNTs-reinforced nanocomposites
    Zeinedini, Afshin
    Shokrieh, Mahmood M.
    Ebrahimi, Ali
    THEORETICAL AND APPLIED FRACTURE MECHANICS, 2018, 94 : 84 - 94
  • [50] The effect of microstructure on the fracture toughness of woodfiber-reinforced polyethylene
    Zhang, CJ
    Kortschot, MT
    Balatinecz, JJ
    FOURTH INTERNATIONAL CONFERENCE ON WOODFIBER-PLASTIC COMPOSITES, 1997, : 156 - 156