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Heat Transfer in Light Activated Dental Resin Composites.

机译:光活化牙科树脂复合材料的传热。

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摘要

The objective of this research is to design a satisfactory analytical and experimental model so as to determine the heat generated during the process of polymerization in the light-activated composite dental resin materials in the process of restoration of cavities in teeth.;When the curing light is subjected at the top surface of the composite resin, the overall temperature at the pulp-dentine junction increases. This temperature rise is due to the generation of heat within the composite resin. The energy released by the light activation unit along with the exothermic polymerization reaction, which occurs within the monomer molecules of the resin compound, increases the temperature at the pulp-dentin junction.;With the increase of the temperature beyond a certain scale (~ 20 °F ), the condition of the nerves and blood vessel at the pulp-dentin junction deteriorates in 60% of cases studied, and the pulp fails to recover from the intra-pulpal temperature increase. A major conclusion is that the restorative resin compound which produces the minimum temperature rise over the time-period of curing, ~ 40 s is the best composite to use for dental restoration purpose.;In this paper the temperature rise due to polymerization for the three composite dental resins such as, 3MTM ESPETM Z100TM Restorative, FiltekTM LS Low Shrink Posterior Restorative System, and 3MTM ESPETM Filtek Bulk Fill Flowable Restorative (assumed to be made up off 100% resins) are measured.;The depth of curing of the restorative resin is equally important as the generation of heat. If the resin is not fully cured, i.e., incomplete polymerization occurs then it can adversely affect the mechanical properties, environmental resistance, wear behavior and biocompatibility with the pulpal tissue of these restorative materials. So, the knowledge of the heat generation and curing depth are essential in determining the effectiveness of a resin from the restoration point of view.;To determine the two parameters; the heat generation due to polymerization of the resins and the curing depth, a detailed literature review is done on some relating topics in Chapter 1, so as to create a foundation for the thesis problem. Analysis and experiments have been conducted. The temperature rise versus time and temperature rise versus the curing depth are measured using thermal infrared techniques. Experimental results are compared to an one-dimensional heat conduction model for which the solutions is obtained using the general integral transform method. The comparison between measurement and prediction is good from the trend and shape of the plots point of view but did not agree well on the basis of the values of temperature, time and specimen depth.;As the curing depth of the three resins are well beyond 5-6 mm (practical filling depth) , so all of them could be used for the dental restorative purpose. But the results showed the heat generation due to polymerization is highest for 3MTM ESPETM Filtek Bulk Fill Flowable Restorative and lowest for 3M TM ESPETM Z100TM Restorative. Thus this makes 3MTM ESPETM Z100TM Restorative the most suitable restorative resin out of the three for dental filling purpose.
机译:这项研究的目的是设计一个令人满意的分析和实验模型,以便确定光活化复合牙科树脂材料在牙齿蛀牙修复过程中聚合过程中产生的热量。当在复合树脂的顶表面处进行处理时,纸浆-牙本质接合处的整体温度升高。该温度升高是由于复合树脂内发热的缘故。在树脂化合物的单体分子中发生的光活化单元释放的能量与放热聚合反应一起升高了纸浆-牙本质连接处的温度;随着温度的升高超过一定范围(约20) °F),在所研究的60%病例中,牙髓与牙本质交界处的神经和血管状况恶化,并且牙髓无法从髓内温度升高中恢复。一个主要结论是,在固化过程中产生最小温度升高的恢复性树脂复合物〜40 s是用于牙科修复目的的最佳复合材料。测量3MTM ESPETM Z100TM修复剂,FiltekTM LS低收缩后路修复系统和3MTM ESPETM Filtek散装可流动修复剂(假设由100%树脂组成)等复合牙科树脂;修复剂树脂的固化深度与产生热量同等重要。如果树脂没有完全固化,即发生不完全聚合,那么它会不利地影响这些修复材料的机械性能,耐环境性,磨损行为和与牙髓组织的生物相容性。因此,从恢复的角度出发,对热量的产生和固化深度的了解对于确定树脂的有效性至关重要。由于树脂聚合产生的热量和固化深度,第1章中的一些相关主题进行了详细的文献综述,从而为论文的研究奠定了基础。已经进行了分析和实验。使用热红外技术测量温度随时间的变化和温度随固化深度的变化。将实验结果与一维热传导模型进行比较,该模型使用通用积分变换方法获得解。从曲线的趋势和形状的角度来看,测量和预测之间的比较是很好的,但是在温度,时间和样品深度的值上并不能很好地达成一致;因为这三种树脂的固化深度都远远超出了5-6毫米(实际填充深度),因此它们都可以用于牙齿修复。但是结果表明,聚合产生的热量对于3MTM ESPETM Filtek大容量可流动修复剂最高,而对于3MTM ESPETM Z100TM修复剂最低。因此,这使得3MTM ESPETM Z100TM修复剂成为三种用于牙科填充目的的最合适的修复剂。

著录项

  • 作者

    Mohapatra, Shilpa.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.M.E.
  • 年度 2013
  • 页码 126 p.
  • 总页数 126
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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