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Experimental cum computational investigation on interfacial and mechanical behavior of short glass fiber reinforced dental composites

机译:浅玻璃纤维增​​强牙科复合材料界面和力学行为的实验暨计算研究

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摘要

Achieving strong filler/matrix interactions is essential in the design and manufacturing of composite systems. Molecular dynamics simulation has played a vital role in the investigation of interfacial behavior by predicting the mechanical properties of polymer-based composites. There has been, however, a big gap for clearly establishing a correlation between simulations and experiments because of limitations in size and time scale. Herein, a comparative analysis on the interfacial adhesion behavior of the short glass fiber and dental resin matrix is performed combining the atomistic simulations and single fiber/microdroplet pull-out tests in micro-scale. The interfacial shear strength is measured at the molecular level by applying the scale factor on the glass fiber, and the simulations are compared with the experimental results of the pull-out tests. The enhanced reinforcement effects induced by the surface modification via silane coupling agents grafting on the glass fibers are verified in both studies. Moreover, the mechanical properties and dynamic behavior of the dental composites under the longitudinal and transverse tension loadings are examined with quantifying the free volume changes. The findings of this research provide the optimized design guidelines to precisely predict the mechanical performances of the short fiber reinforced dental composites via molecular dynamics simulations and experiments.
机译:在复合系统的设计和制造方面,实现强填充/矩阵相互作用是必不可少的。通过预测聚合物基复合材料的机械性能,分子动力学模拟在对界面行为的研究中发挥了重要作用。然而,由于大小和时间尺度的局限性,有一个很大的差距,用于清楚地建立模拟与实验之间的相关性。在此,对微尺度的原子模拟和单纤维/微滴水拉出试验相结合,进行了短玻璃纤维和牙科树脂基质的界面粘附性能的对比分析。通过在玻璃纤维上施加比例,在分子水平下测量界面剪切强度,并将模拟与拉出试验的实验结果进行比较。通过硅烷偶联剂在玻璃纤维上嫁接在玻璃纤维上诱导的增强的增强效果在两种研究中验证。此外,通过量化自由体积变化来检查纵向和横向张紧载荷下的牙科复合材料的机械性能和动态行为。该研究的发现提供了优化的设计指导,通过分子动力学模拟和实验精确地预测短纤维增强牙科复合材料的机械性能。

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