...
首页> 外文期刊>The Journal of Prosthetic Dentistry >Effects of polishing techniques on the surface roughness of acrylic denture base resins.
【24h】

Effects of polishing techniques on the surface roughness of acrylic denture base resins.

机译:抛光技术对丙烯酸义齿基托树脂表面粗糙度的影响。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

STATEMENT OF PROBLEM: Rough surfaces of denture bases promote adhesion of microorganisms and plaque formation. It is therefore important to know how different polishing systems affect surface roughness of denture base acrylic resins. PURPOSE: The objective of this study was to compare the effects of 4 chairside polishing kits and 2 conventional laboratory techniques used for polishing 3 different acrylic denture base resins. MATERIAL AND METHODS: Using contact profilometric measurement, the surface texture of 54 specimens (15x30x3 mm) per acrylic material (autopolymerized ProBase Cold, heat-polymerized ProBase Hot, and injection heat-polymerized SR Ivocap plus) was studied before and after cutting with a tungsten carbide bur, and during and after chairside polishing with 4 polishing kits (Exa Technique, Acrylic Polisher HP blue, AcryPoint, Becht Polishing Cream), and after conventional polishing with 2 polishing systems (Universal Polishing Paste for Resins and Metals, Lesk Polishing Liquid). There were 9 specimens for each acrylic resin material and polishing method combination. Conventional lathe polishing with polishing paste served as the control. Mean average surface roughness (Ra) values of each specimen group were analyzed using a 2-way analysis of variance, the Scheffe post-hoc test, and paired t test (alpha=.05) with the Bonferroni adjustment. After testing the polished acrylic resin surfaces were evaluated under a scanning electron microscope. RESULTS: The highest mean average surface roughness (Ra=2.86+/-0.8 microm to 3.99+/-1.31 microm) was measured for surfaces finished with a tungsten carbide bur. The lowest surface roughness values (Ra=0.02+/-0.01 microm) were determined for acrylic resin specimens polished with a lathe and polishing paste. The Ra values of resin specimens after polishing with chairside silicone polishing kits ranged from 0.05+/-0.0 microm to 0.35+/-0.05 microm. Mean average Ra values of specimens polished with a polishing cream alone (Ra=1.01+/-0.17 microm to 1.68+/-0.47microm) were significantly higher (P<.05) than those obtained with other polishing systems tested, which was confirmed by scanning electron microscope images of acrylic resin surfaces. Significant differences in mean average surface roughness were found between autopolymerizing and injected heat-polymerizing resin specimens. In addition, scanning electron microscopy revealed increased porosity of autopolymerizing resin specimens. CONCLUSIONS: Conventional laboratory polishing was found to produce the smoothest surface of denture base acrylic resin. Chairside silicone polishing kits produced a significantly smoother surface of acrylic resin than specimens polished with a tungsten carbide bur. The presence of large pores was characteristic for the autopolymerizing resin material.
机译:问题陈述:义齿基托的粗糙表面会促进微生物的粘附和斑块的形成。因此,重要的是要知道不同的抛光系统如何影响义齿基丙烯酸树脂的表面粗糙度。目的:本研究的目的是比较4种椅子旁抛光套件和2种用于抛光3种不同丙烯酸义齿基托树脂的常规实验室技术的效果。材料和方法:使用接触轮廓光度法测量,每种丙烯酸材料(自动聚合的ProBase Cold,热聚合的ProBase Hot和注射热聚合的SR Ivocap plus)在切割前后分别有54个样品(15x30x3 mm)的表面纹理。碳化钨钻头,以及在椅边抛光期间和之后使用4种抛光套件(Exa技术,丙烯酸抛光剂HP蓝色,AcryPoint,Becht抛光膏)以及常规抛光之后的2种抛光系统(树脂和金属通用抛光膏,沥干抛光液) )。每种丙烯酸树脂材料和抛光方法的组合都有9个样品。常规的用抛光膏抛光的车床作为对照。每个样本组的平均平均表面粗糙度(Ra)值使用方差的2-way分析,Scheffe post-hoc检验和带有Bonferroni调整的配对t检验(alpha = .05)进行了分析。测试之后,在扫描电子显微镜下评估抛光的丙烯酸树脂表面。结果:测量了用碳化钨车针精加工的表面的最高平均平均表面粗糙度(Ra = 2.86 +/- 0.8微米至3.99 +/- 1.31微米)。确定了用车床和抛光膏抛光的丙烯酸树脂样品的最低表面粗糙度值(Ra = 0.02 +/- 0.01微米)。用椅边硅胶抛光套件抛光后的树脂样品的Ra值范围为0.05 +/- 0.0微米至0.35 +/- 0.05微米。单独用抛光膏抛光的样品(Ra = 1.01 +/- 0.17微米至1.68 +/-0.47μm)的平均平均Ra值显着高于(P <.05)使用其他测试的抛光系统得到的结果,这已得到证实通过扫描丙烯酸树脂表面的电子显微镜图像。在自动聚合和注入的热聚合树脂样品之间发现平均平均表面粗糙度存在显着差异。另外,扫描电子显微镜显示自聚合树脂样品的孔隙率增加。结论:发现常规实验室抛光可产生义齿基丙烯酸树脂最光滑的表面。椅子旁的硅酮抛光套件产生的丙烯酸树脂表面比用碳化钨钻头抛光的样本光滑得多。大孔的存在是自聚合树脂材料的特征。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号