Suppr超能文献

丙烯酸牙齿表面处理的效果

The Effect of Surface Preparation of Acrylic Teeth.

作者信息

Pispili M, Pissiotis A, Michalakis K

机构信息

Aristotle University of Thessaloniki.

Aristotle University School of Dentistry/Tufts University School of Dental Medicine.

出版信息

Eur J Prosthodont Restor Dent. 2017 Dec 1;25(4):209-218. doi: 10.1922/EJPRD_01713Pispili10.

Abstract

PURPOSE

To investigate whether the chemical bond between acrylic teeth and heat polymerized PMMA can be altered by chemical and/or mechanical treatment.

MATERIALS AND METHODS

One hundred fifty acrylic teeth were divided in groups of 10. Their ridge lap surface underwent mechanical and/or chemical treatments: 1) no treatment, 2) air-abrasion with Al₂O₃ particles, 3) acid etching with phosphoric acid, 4) application of composite resin bonding agent, 5) application of MMA and ethylmethylketone bonding agent, 6) PMMA monomer application. The teeth were then placed in heat polymerized acrylic resin. Each specimen was compressed with a universal testing machine. Descriptive statistics, one-way ANOVA (α=0.05) and Tukey's HSD test were used. A scanning electron microscope (SEM) was also used to study the fracture areas.

RESULTS

Statistically significant differences (p⟨0.001) in the bond strength were found. The strongest bond (239.41 N), was noted in the group treated with sandblasting followed by PMMA monomer application.

CONCLUSIONS

Mechanical and/or chemical preparations affect significantly the bond strength between the acrylic resin denture teeth and the PMMA denture base. Air abrasion was the most effective treatment, either alone or combined with other treatments.

摘要

目的

研究化学和/或机械处理是否能改变丙烯酸树脂牙与热聚合聚甲基丙烯酸甲酯(PMMA)之间的化学键。

材料与方法

将150颗丙烯酸树脂牙分成每组10颗的小组。其嵴搭接面进行机械和/或化学处理:1)不处理;2)用Al₂O₃颗粒进行空气喷砂;3)用磷酸进行酸蚀;4)应用复合树脂粘结剂;5)应用甲基丙烯酸甲酯(MMA)和甲乙酮粘结剂;6)应用PMMA单体。然后将牙齿置于热聚合丙烯酸树脂中。每个样本用万能试验机进行压缩。使用描述性统计、单因素方差分析(α = 0.05)和Tukey's HSD检验。还使用扫描电子显微镜(SEM)研究断裂区域。

结果

发现粘结强度存在统计学显著差异(p < 0.001)。粘结最强(239.41 N)的是先进行喷砂处理然后应用PMMA单体的组。

结论

机械和/或化学预处理显著影响丙烯酸树脂义齿牙与PMMA义齿基托之间的粘结强度。空气喷砂是最有效的处理方法,单独使用或与其他处理方法联合使用均如此。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验