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纤维预张拉增强型复合树脂:应力分布的三维有限元研究。

Composite resin reinforced with pre-tensioned fibers: a three-dimensional finite element study on stress distribution.

机构信息

School and Hospital of Stomatology, Fujian Medical University, 246 Yangqiao Zhong Road, Fuzhou, Fujian, People's Republic of China.

出版信息

Odontology. 2013 Jan;101(1):29-33. doi: 10.1007/s10266-012-0061-6. Epub 2012 Feb 28.

Abstract

Pre-tensioned construction material is utilized in engineering applications of high strength demands. The purpose of this study was to evaluate the effect of the pre-tensioning fibers of fiber-reinforced composite (FRC) using three-dimensional finite element (FE) analysis. The 3D FE models of particulate composite resin (CR), FRC and composite resin reinforced with pre-tensioned fibers (PRE-T-FRC) were constructed. The uniaxial three-point bending test was simulated using FE analysis to calculate the principal stress distribution. In the FRC and PRE-T-FRC, stresses were higher than CR, and they were located in the fiber. However, the maximum principal stress value at the composite of PRE-T-FRC was lower than the FRC and CR. Composite resin reinforced with pre-tensioned fibers was advantageous for stress distribution and lowering the stress at the composite itself. Experimental studies on physical properties of pre-tensioned FRC are encouraged to be conducted.

摘要

在高强度需求的工程应用中使用了预应力施工材料。本研究旨在利用三维有限元(FE)分析评估纤维增强复合材料(FRC)的预张拉纤维的效果。建立了颗粒复合材料树脂(CR)、FRC 和预张拉纤维增强的复合材料树脂(PRE-T-FRC)的三维有限元模型。采用FE 分析模拟单向三点弯曲试验,计算主应力分布。在 FRC 和 PRE-T-FRC 中,应力高于 CR,并且位于纤维中。然而,PRE-T-FRC 复合材料的最大主应力值低于 FRC 和 CR。预应力增强纤维的复合材料有利于应力分布和降低复合材料本身的应力。鼓励进行预应力 FRC 物理性能的实验研究。

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