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A characterization of the mechanical behavior of resin-infiltrated dentin using nanoscopic Dynamic Mechanical Analysis

机译:纳米动态力学分析表征树脂浸润牙本质的力学行为

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摘要

This study explored the spatial variations in mechanical behavior of resin-infiltrated dentin using nanoscopic Dynamic Mechanical Analysis (DMA). Objective. The objectives were to: (1) evaluate the mechanical behavior of resin-infiltrated dentin using a scanning-based approach to nanoindentation, (2) identify contributions of the collagen matrix to time-dependent deformation of the hybrid layer, and (3) assess the importance of specimen hydration on the nanoDMA response. Methods. Specimens of completely demineralized dentin infiltrated with commercial resin adhesive and control samples of resin adhesive were evaluated using a nanoindenter in scanning mode. The load and displacement responses were used to perform DMA and to estimate the complex (E~*), storage (E~') and loss (E~") moduli over selected regions of evaluation. The importance of hydration on the mechanical behavior was also examined from a comparison of responses in the hydrated and dehydrated conditions. Results. In the hydrated state the apparent complex, storage and loss moduli for the resin-infiltrated dentin samples were 3.5±0.3GPa, 3.4±0.2GPa and 0.9±0.3GPa, respectively. Those values for the resin adhesive control were 2.7 ± 0.3 GPa, 2.7 ± 0.3 GPa and 0.2 ± 0.02 GPa, respectively. Viscoelastic deformation of the resin-infiltrated collagen exceeded that occurring in regions of uniform resin adhesive. Though dehydration resulted in a significant increase in both the complex and storage moduli of the macro hybrid layer, the largest changes occurred to the resin adhesive. Significance. The microstructure and hydration play critical roles on the mechanical behavior of the hybrid layer and nanoDMA provides a potent measurement tool for identifying the spatial variations.
机译:这项研究使用纳米动态力学分析(DMA)探索了树脂浸润牙本质的力学行为的空间变化。目的。目的是:(1)使用基于扫描的纳米压痕方法评估树脂浸润牙本质的机械行为;(2)识别胶原蛋白基质对杂化层随时间变化的变形的贡献;以及(3)评估标本水化对nanoDMA响应的重要性。方法。使用纳米压痕仪以扫描模式评估用市售树脂粘合剂渗入的完全脱矿质牙本质的样品和树脂粘合剂的对照样品。载荷和位移响应用于执行DMA并估算选定评估区域上的复数(E〜*),储能(E〜')和损耗(E〜“)模量。水合对机械性能的重要性是结果还表明,在水合状态下,树脂浸润牙本质样品的表观配合物,储能和损耗模量分别为3.5±0.3GPa,3.4±0.2GPa和0.9±0.3GPa。树脂粘合剂控制的数值分别为2.7±0.3GPa,2.7±0.3GPa和0.2±0.02GPa,树脂渗透的胶原的粘弹性变形超过在均匀的树脂粘合剂区域中发生的粘弹性变形。宏观杂化层的复数和储能模量都显着增加,最大的变化发生在树脂胶粘剂上,意义。微观结构和水合作用对hy的机械性能起着至关重要的作用。桥接层和nanoDMA提供了一种有效的测量工具,可用于识别空间变化。

著录项

  • 来源
    《Dental materials》 |2013年第7期|719-728|共10页
  • 作者单位

    Department of Mechanical Engineering, University of Maryland Baltimore County, Baltimore, MD, USA;

    Department of Oral Biology, School 0/Dentistry, Georgia Regents University, Augusta, GA, USA;

    Department of Oral Biology, School 0/Dentistry, Georgia Regents University, Augusta, GA, USA,Department of Endodontics, School 0/Dentistry, Georgia Regents University, Augusta, GA, USA;

    Department of Mechanical Engineering, University of Maryland Baltimore County, Baltimore, MD, USA,Department 0/Endodontics, Prosthodontics, and Operative Dentistry, Dental School, University 0f Maryland Baltimore, Baltimore, MD,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

    Dynamic Mechanical Analysis; Elastic modulus; Hybrid layer; Nanoindentation;

    机译:动态力学分析;弹性模量混合层;纳米压痕;

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