Determination of Acrylic Denture Resin Surface Roughness by Different Processing Techniques

Akhlas Zeid Abood
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Abstract

Background: Poly (methyl methacrylate) (PMMA) seems to be the most commonly used material in the construction of denture base due to its advantages. However, it is still far from being ideal in fulfilling the physical and mechanical properties. Therefore, attempts to improve the properties of PMMA were taken by the researcher through many ways The purpose of this study was to estimate the effect of different processing techniques on surface roughness of acrylic base denture resin. Materials and Methods: A total sample of (50) specimens were prepared; these specimens were divided into 3 main processing techniques, and 5 experimental sub-groups (n=10): Group (A), acrylic denture base material processed by conventional water bath technique (74C for 1 and half hours then boiled for 30 min; Group (B), acrylic resins processed by microwave oven at (500 Watts) for 3 min; Group (C) samples processed by autoclave device with 3 different timing set up : (C1) for l0 min, (C2) for 20 min and (C3) for 30 min. This is done to make a comparison of different autoclave polymerization conditions on the surface roughness of denture base resin. Results: Statistically, there was no significant difference between the traditional water bath group technique and an autoclave system when the specimen processed at (121C/210Kpa) for 30 min. However, there was a statistically significant difference compared to other experimental groups. Conclusion: The autoclave processing technique could be the new alternative system to process the acrylic resin base material alongside the conventional methods. The experimental group prepared by autoclave system at (121C/21Kpa) for 30 min showed an improvement in the surface roughness compared to microwave and water bath techniques.
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不同加工工艺对丙烯酸义齿树脂表面粗糙度的测定
背景:聚甲基丙烯酸甲酯(PMMA)由于其优点成为义齿基托最常用的材料。然而,它在满足物理和机械性能方面还远远不够理想。因此,研究者尝试通过多种方式来改善PMMA的性能。本研究的目的是评估不同的加工工艺对丙烯酸基托树脂表面粗糙度的影响。材料与方法:共制备标本50份;将标本分为3种主要加工工艺,5个实验亚组(n=10): A组:常规水浴工艺处理丙烯酸基托材料(74C) 1半小时后煮沸30 min;(B)组,丙烯酸树脂经(500瓦)微波炉处理3分钟;(C)组样品经高压灭菌装置处理,设置3种不同的时间:(C1) 10min, (C2) 20min, (C3) 30min。比较不同的高压灭菌聚合条件对义齿基托树脂表面粗糙度的影响。结果:在(121C/210Kpa)条件下处理30min时,传统水浴组技术与高压灭菌系统的差异无统计学意义,但与其他实验组相比差异有统计学意义。结论:高压釜加工技术可作为常规工艺加工丙烯酸树脂基材的一种新的替代系统。在(121C/21Kpa)高压灭菌系统下制备30 min的实验组,与微波和水浴技术相比,表面粗糙度有所改善。
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