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Initial dynamic viscoelasticity change of composites during light curing

机译:光固化过程中复合材料的初始动态粘弹性变化

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摘要

Objectives. The aim of this study was to measure the initial dynamic viscoelastic modulus change of dental composites during light curing using a custom made oscillation rheometer. Methods. Six commercial universal hybrid resin composites: Z100 (Z1), Z250 (Z2), Z350 (Z3), DenFil (DF), Tetric Ceram (TC), and Clearfil AP-X (CF) were examined. A custom designed oscillation rheometer was made, which consisted of three parts: (1) an oscillatory shear strain induction unit, (2) a measuring unit of parallel plates made of glass rods, and (3) a stress measurement unit. For the measurement of the initial viscoelastic modulus change of composites during light curing as a function of time, a dynamic oscillatory shear test was undertaken at a frequency of 6 Hz and strain amplitude of 0.00579 rad for 10 s. From the strain-stress curves, the complex shear modulus (G~*), storage shear modulus (G'), loss shear modulus (G") and loss tangent (tan δ), and the time to reach a G~* of 10 Mpa were determined. The data were analyzed with one-way ANOVA and Tukey's post hoc test (α = 0.05). Results. There were great differences in the development of viscoelasticity among materials. At 10 s, the complex modulus G~* of Zl was the highest (563.7 Mpa), followed by CF, Z2, Z3, TC, and finally DF being the lowest (150.3 Mpa). The time to reach the G~* of 10 Mpa ranged from 2.55 s (Z1) to 4.06 s (DF). The tan S of the composites decreased with time as the polymerization reaction proceeded.rnSignificance. The initial modulus development of composites during curing plays a very important role in determining the polymerization shrinkage stress. The custom made oscillation rheometer was able to measure the very initial dynamic viscoelasticity change of several commercial composites during light curing; therefore, the instrument can be used to study the initial curing kinetics of newly developed composites.
机译:目标。这项研究的目的是使用定制的振荡流变仪测量光固化过程中牙科复合材料的初始动态粘弹性模量变化。方法。检验了六种商用通用杂化树脂复合材料:Z100(Z1),Z250(Z2),Z350(Z3),DenFil(DF),Tetric Ceram(TC)和Clearfil AP-X(CF)。定制的振荡流变仪由三部分组成:(1)振荡剪切应变感应单元;(2)由玻璃棒制成的平行板的测量单元;(3)应力测量单元。为了测量光固化过程中复合材料的初始粘弹性模量随时间的变化,在6 Hz的频率和0.00579 rad的应变幅度下进行了10 s的动态振荡剪切测试。根据应变-应力曲线,复数剪切模量(G〜*),储能剪切模量(G'),损耗剪切模量(G“)和损耗角正切(tanδ)以及达到G〜*的时间测定10 Mpa,用单向方差分析和Tukey事后检验分析数据(α= 0.05)结果:材料之间的粘弹性发展差异很大,在10 s时,材料的复数模量G〜* Z1最高(563.7 Mpa),其次是CF,Z2,Z3,TC,最后DF最低(150.3 Mpa),达到10 Mpa G〜*的时间为2.55 s(Z1)至4.06意义:在固化过程中,复合材料的初始模量发展在确定聚合收缩应力方面起着非常重要的作用;定制的振荡流变仪能够测量几种商品复合材料在光固化过程中的初始动态粘弹性变化;因此e,该仪器可用于研究新开发的复合材料的初始固化动力学。

著录项

  • 来源
    《Dental materials》 |2010年第5期|p.463-470|共8页
  • 作者单位

    Department of Conservative Dentistry and Dental Research Institute, School of Dentistry, Seoul National University, 28-2 Yeongeon-Dong, Jongro-Gu, 110-749 Seoul, South Korea;

    rnDepartment of Conservative Dentistry and Dental Research Institute, School of Dentistry, Seoul National University, 28-2 Yeongeon-Dong, Jongro-Gu, 110-749 Seoul, South Korea;

    rnDepartment of Restorative Dentistry, Division of Biomaterials and Biomechanics, School of Dentistry, Oregon Health & Science University, Portland, OR, USA;

    rnDepartment of Conservative Dentistry and Dental Research Institute, School of Dentistry, Seoul National University, 28-2 Yeongeon-Dong, Jongro-Gu, 110-749 Seoul, South Korea;

  • 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

    viscoelasticity; dental composite; oscillation rheometer; complex shear modulus; storage shear modulus; loss shear modulus; loss tangent;

    机译:粘弹性牙科复合材料;振荡流变仪复数剪切模量储能剪切模量损耗剪切模量损耗角正切;
  • 入库时间 2022-08-18 03:47:25

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