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复合树脂粘结水门汀与氧化锆陶瓷表面的粘结强度。

Bond strength of composite luting cement to zirconia ceramic surfaces.

作者信息

Derand Tore, Molin Margareta, Kvam Ketil

机构信息

Dental Technology and Dental Materials Science, Faculty of Odontology, Malmö University, Sweden.

出版信息

Dent Mater. 2005 Dec;21(12):1158-62. doi: 10.1016/j.dental.2005.02.005. Epub 2005 Jul 7.

Abstract

OBJECTIVES

To evaluate the bond strength of dental resin agent to zirconia ceramic after surface pre-treatment with different techniques.

METHODS

Specimens of hot isostatic pressed yttrium-oxide-partially-stabilized zirconia blocks (ZF) were fabricated (Procera Zircon, Nobel Biocare, Sweden) and compared to glossy dense zirconia blocks (ZG). Four groups of specimens with different surface treatment were prepared. Group I: ZF (n = 5) and ZG (n = 5) without any pre-treatment, Group II: ZF-s (n = 5) and ZG-s (n = 5) treated with silane solution, Group III: ZF-P (n = 10) and ZG-P (n = 10) treated with RF plasma spraying (hexamethyldisiloxane) using a reactor (Plasma Electronic, Germany), Group IV: ZF-p (n = 10) and ZG-p (n = 10) treated with micro pearls of low fusing porcelain (720 degrees C) on the surfaces. Composite cylinders (Charisma, Hereus Kulzer, Dormagen, Germany) were luted with Variolink II (Ivoclar-Vivadent, Schaan, Liechtenstein) to the test specimens. The specimens were then stored in air for 1 h before shear loading in a universal testing machine (LRX, Lloyd Instruments, Farnham, England) until failure.

RESULTS

No statistical difference was found between the untreated ZF and ZG specimens (Group I) neither between the specimens treated with silane (Group II). Plasma spraying treatment improved bond strength by a factor of three (p < 0.001). Treatment with low fusing porcelain micro pearls increased the bond strength by a factor of 10 compared to untreated surfaces (p < 0.001). No significant difference was seen between the surfaces treated ZF-p and ZG-p specimens. The thickness of the glass pearls layer did not exceed 5 microm. SEM showed dense grain borders of ZF and a flat glossy texture of ZG.

SIGNIFICANCE

Treatment of zirconia ceramic surfaces with plasma spraying or a low fusing porcelain pearl layer significantly increased the bond strength of resin cement to the ceramic surface.

摘要

目的

评估采用不同技术进行表面预处理后牙科树脂黏结剂与氧化锆陶瓷之间的黏结强度。

方法

制作热等静压钇部分稳定氧化锆块(ZF)标本(Procera Zircon,诺贝尔生物材料公司,瑞典),并与光滑致密氧化锆块(ZG)进行比较。制备四组经过不同表面处理的标本。第一组:未经过任何预处理的ZF(n = 5)和ZG(n = 5);第二组:用硅烷溶液处理的ZF-s(n = 5)和ZG-s(n = 5);第三组:使用反应釜(德国Plasma Electronic)通过射频等离子喷涂(六甲基二硅氧烷)处理的ZF-P(n = 10)和ZG-P(n = 10);第四组:在表面用低熔点瓷微珠(720摄氏度)处理的ZF-p(n = 10)和ZG-p(n = 10)。用Variolink II(义获嘉伟瓦登特公司,列支敦士登沙恩)将复合圆柱体(Charisma,贺利氏古莎公司,德国多马根)黏结到测试标本上。然后将标本在空气中保存1小时,之后在万能试验机(LRX,劳埃德仪器公司,英国法纳姆)上进行剪切加载直至破坏。

结果

未处理的ZF和ZG标本(第一组)之间以及用硅烷处理的标本(第二组)之间均未发现统计学差异。等离子喷涂处理使黏结强度提高了三倍(p < 0.001)。与未处理表面相比,用低熔点瓷微珠处理使黏结强度提高了10倍(p < 0.001)。在经过处理的ZF-p和ZG-p标本表面之间未观察到显著差异。玻璃微珠层的厚度不超过5微米。扫描电子显微镜显示ZF有致密的晶粒边界,ZG有光滑平整的纹理。

意义

用等离子喷涂或低熔点瓷珠层处理氧化锆陶瓷表面可显著提高树脂水门汀与陶瓷表面之间的黏结强度。

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