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首页> 外文期刊>International Journal of Mechanical Sciences >Single-fiber pull-out analysis comparing the intensities of singular stress fields (ISSFs) at fiber end/entry points
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Single-fiber pull-out analysis comparing the intensities of singular stress fields (ISSFs) at fiber end/entry points

机译:单纤维拔出分析比较光纤端/入口点的奇异应力场(ISSFS)的强度比较

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摘要

This paper deals with a partially-embedded single-fiber under pull-out force in comparison with a single fiber embedded in matrix focusing on two distinct singular stress fields. Then, the intensities of the singular stress fields (ISSFs) are compared at the fiber end named Point A and the fiber/surface intersection named Point E. The results show that if the embedded length l(in) is shorter, interface debonding may occur at Point A. Instead, if l(in) is longer, the interface debonding may occur at Point E. To analyze the ISSFs accurately, a mesh-independent technique coupled with the finite element method (FEM) is indicated by applying the same FEM mesh pattern to the pull-out model and the reference model. As the reference solution, a single fiber embedded in matrix is also calculated under arbitrary material combinations by using the body force method (BFM). Stress distributions along the fiber/matrix interfaces are also calculated for carbon and glass fibers.
机译:本文与拉出力下的部分嵌入式单纤维涉及与矩阵嵌入的单纤维聚焦在两个不同的奇异应力场上。 然后,在命名点A和光纤/表面交叉点处比较奇异应力字段(ISSFS)的强度,并命名点E.结果表明,如果嵌入式L长L(in)更短,则可能发生接口剥离 在A点。相反,如果L(IN)更长,则接口剥离可能在D点E处发生。要准确地分析ISSFS,通过施加相同的FEM来指示与有限元方法(FEM)耦合的网状独立技术 网格图案到拉出模型和参考模型。 作为参考解决方案,通过使用体力方法(BFM),还在任意材料组合下嵌入矩阵中的单纤维。 还针对碳和玻璃纤维计算沿光纤/基质界面的应力分布。

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