[粘接桥用粘接树脂研究]。

Aichi Gakuin Daigaku Shigakkai shi Pub Date : 1991-06-01
T Abe, S Takehana, K Hashimoto, H Murakami, K Sakuma, M Watanabe, K Sakai
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引用次数: 0

摘要

未标明:我们怀疑是硬化粘合树脂的成分导致粘合桥脱落。在本研究中,我们使用扫描型电子显微镜观察了拉伸试验后粘接树脂的断裂面。我们还检查了硬化后切割和研磨的树脂的表面,以及脱落的粘合桥的表面。结果:1)拉力试验结果。粘接树脂间无显著差异。我们注意到金属表面处理方法之间没有显著差异。2)拉力试验后断裂侧观察。当我们检查Panavia EX时,我们观察到金属面和牙釉质有剥落。我们注意到,无论金属的预处理方法如何,表面都是光滑的。但是胶粘剂树脂的表面是凹凸不平的,我们在树脂表面发现了大小不一的气泡。当我们检查Super-Bond C&B时,我们观察到金属面和牙釉质有剥落,无论金属预处理方法如何,表面都很光滑。然而,与Panavia EX不同的是,我们发现了大大小小的各种空洞,就像Super-Bond C&B光滑表面上的气泡一样。3)加筋粘接树脂磨粒表面观察。在15度和28度的环境温度下,我们在Panavia EX和Super-Bond C&B的磨料表面发现了许多像气泡一样的微小空洞。4)脱落粘接桥的粘接材料表面观察。我们发现粘接树脂表面凹凸不平,粘接桥的金属侧,无论粘接桥脱落的位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[A study of the adhesive resins used in adhesion bridges].

Unlabelled: We suspected that the composition of stiffened adhesive resins may cause adhesion bridges to drop out. In this study, by using a scanning type electron microscope, we observed the breaking sides of the adhesive resin after the tension test. We also examined the surfaces of the resin that we cut and ground after it had hardened, and the surfaces of the adhesion bridges that dropped out.

Results: 1) RESULTS of the tension test. No significant differences between the adhesive resins were observed. We noticed no significant differences between the metal surface treatment methods. 2) Observations of the breaking side after the tension test. When we examined Panavia EX, we observed flaking of the metallic side and the tooth enamel. We noticed that the surface was smooth regardless of the method of preprocessing the metal. But the surface of the adhesive resin was bumpy, and we found bubbles of different sizes on the resin surfaces. When we examined Super-Bond C&B, we observed flaking of the metallic side and the tooth enamel, and the surfaces were smooth regardless of the method of preprocessing the metal. Unlike Panavia EX, however, we found various hollows, big and small, like the bubbles on the smooth surfaces of Super-Bond C&B. 3) Observations of the abrasive surface of stiffened adhesive resins. With an ambient temperature of 15 and 28 degrees, we found many minute hollows like bubbles on the abrasive surfaces of Panavia EX and Super-Bond C&B. 4) Observations of the surface of the bonding materials of the adhesion bridges which dropped out. We found bumpy surfaces on the adhesive resin which remained on the metallic side of the adhesion bridges, whichever position the adhesion bridges dropped out of.

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