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Mechanical manifestation of the C-factor in relation to photopolymerization of dental resin composites

机译:C因子与牙科树脂复合材料光聚合的机械表现

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摘要

Objective. This study aims to assess the validity of a recent theory which proposes that (1) the magnitude of the shrinkage stress of resin composites depends on the thickness of the boundary layer under triaxial constraints relative to the total thickness of the specimen and (2) the boundary-layer thickness is proportional to the diameter of the specimen.Methods. Cylindrical specimens of three commercially available resin composites, three diameters (4, 5 and 6.3 mm) and four thicknesses (2, 3, 5 and 6.5 mm) were tested. Curing was applied using a LED light for 40 s. Microscopic images (32x) of the specimens before and after curing were analyzed to determine the lateral shrinkage profile along the vertical axis. Boundary-layer thickness was determined from the point where lateral shrinkage displacement first reached the maximum value found at mid-thickness.Results. Lateral shrinkage displacement at mid-thickness was close to the theoretical value based on published shrinkage-strain data, with the ratio between experimental and theoretical values being 1.04 f 0.06. The boundary-layer thickness was found to be proportional to specimen diameter only, independent of material, C-factor, and specimen thickness. The proportionality constant was 0.64 f 0.07, which was approximately 3 times that of the effective value indicated by shrinkage strain/stress calculations. Significance. This study validates the assumption made in the shrinkage-stress theory recently proposed and provides a more precise and mechanistic interpretation for the C factor, i.e. the C-factor, as a measure of a specimen's constraint, is the ratio between boundary-layer thickness and the total thickness of the specimen. (C) 2020 The Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
机译:客观的。本研究旨在评估最近理论的有效性,提出(1)树脂复合材料的收缩应力的幅度取决于相对于样本的总厚度和(2)的三轴限制下的边界层的厚度边界层厚度与样本的直径成比例。方法。测试三种市售树脂复合材料的圆柱形样品,三径(4,5和6.3mm)和四厚度(2,3,5和6.5mm)。使用LED灯施加固化,用于40秒。分析固化前后试样的显微图像(32X)以沿垂直轴线确定横向收缩曲线。从横向收缩位移首先达到在中间厚度下发现的最大值的点确定边界层厚度。结果。在中间厚度的横向收缩位移接近基于已发表的收缩 - 应变数据的理论值,实验和理论值之间的比率为1.04°F 0.06。发现边界层厚度仅与样品直径成比例,与材料,C型,标本厚度无关。比例常数为0.64°F 0.07,其约3倍的收缩应变/应力计算所示的有效值。意义。该研究验证了最近提出的收缩 - 应力理论在收缩 - 应力理论中的假设,并为C因子提供了更精确的和机械解释,即C因子,作为样本的约束的量度,是边界层厚度和的比率样本的总厚度。 (c)2020牙科材料学院。由elsevier Inc.出版的所有权利保留。

著录项

  • 来源
    《Dental materials》 |2020年第8期|1108-1114|共7页
  • 作者单位

    Qingdao Univ Coll Stomatol Affiliated Hosp Dept Prosthodont Qingdao 266003 Peoples R China|Univ Minnesota Sch Dent Minnesota Dent Res Ctr Biomat & Biomech Minneapolis MN 55455 USA;

    Univ Minnesota Sch Dent Minnesota Dent Res Ctr Biomat & Biomech Minneapolis MN 55455 USA;

    Univ Minnesota Sch Dent Minnesota Dent Res Ctr Biomat & Biomech Minneapolis MN 55455 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Composite resins; Shrinkage strain; C-factor; Boundary layer;

    机译:复合树脂;收缩菌株;C因子;边界层;
  • 入库时间 2022-08-18 21:10:40

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