[评价市售硅烷偶联剂对瓷的附着力]。

M Aida, H Kanaya, Y Murata, T Hayakawa, K Horie
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摘要

我们考察了市售硅烷偶联剂对复合树脂与陶瓷的粘附效果。作为硅烷偶联剂,我们使用Cosmotech引物。清理瓷粘接。瓷衬M,和苏格兰底漆。作为陶瓷,我们使用Cosmotech陶瓷DA2,用氢氟酸或磷酸凝胶蚀刻。用硅烷偶联剂处理的陶瓷在37℃的水中浸泡1天后,测定复合树脂与瓷的拉伸结合强度。在硅烷偶联剂中,Clearfil瓷键的结合强度最高,约为175 kgf/cm2。当使用任何一种硅烷偶联剂时,氢氟酸蚀刻比磷酸蚀刻更能提高键强度。特别是在Scotchprime处理的情况下,氢氟酸蚀刻对增加粘结强度非常有效。氢氟酸刻蚀比磷酸刻蚀值高3倍。从扫描电镜观察,氢氟酸蚀刻使陶瓷表面变得更粗糙,这导致树脂的机械联锁更大。在Cosmotech底漆处理的情况下,与GC粘结剂联合使用没有增加粘结强度,而与Clearfil新粘结剂联合使用有增加粘结强度的作用。Clearfil新键中的磷酸酯单体,被称为强酸,被认为是催化硅烷偶联剂的活化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[The evaluation of commercially available silane coupling agents for porcelain adhesion].

We investigated the effectiveness of commercially available silane coupling agents on the adhesion between the composite resin and the porcelain. As silane coupling agents, we used Cosmotech primer. Clearfil porcelain bond. Porcelain liner M, and Scotchprime. As porcelain, we used Cosmotech porcelain DA2 which was etched either with hydrofluoric acid or with phosphoric acid gel. The tensile bond strengths between composite resin and the porcelain treated with silane coupling agents were measured after one day immersion in 37 degrees C water. Among the silane coupling agents, Clearfil porcelain bond gave the highest bond strength of about 175 kgf/cm2. When any of these silane coupling agents were used, the bond strengths were increased more by hydrofluoric acid etching than by phosphoric acid etching. Especially in the case of Scotchprime treatment, hydrofluoric acid etching was remarkably effective on the increase in the bond strengths. The value in hydrofluoric acid etching was 3 times higher than that in phosphoric acid etching. From SEM observation, hydrofluoric acid etching gave greater roughness to the porcelain surface, which resulted in greater mechanical interlocking of the resin. In the case of Cosmotech primer treatment, the combination with GC bonding agent did not increase the bond strengths, while combination with Clearfil new bond did. The phosphoric acid ester monomer in Clearfil new bond, which is known as strong acid, was supposed to catalyze the activation of silane coupling agent.

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