Analysis of fiber pullout or push-in with frictional sliding at the fiber-matrix interface

Kishore Pochiraju, Alan C.W. Lau, Albert S.D. Wang
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引用次数: 5

Abstract

The detail stress fields caused by fiber pullout or push-in while the fiber-matrix interface is under compressive thermal residual stress and undergoing frictional sliding are studied. The dominant stress fields in the local region at the immediate vicinity of the fiber protrusion point are solved using Muskhelishvili-Kolosov complex potential theory and asymptotic analysis. Parameteric studies determined the effects cast on the local fields by fiber-matrix material property combination, coefficient of friction, and the direction of relative fiber sliding. Reversing fiber sliding from pullout to push-in completely changes the nature of the local field.

Using two specific composite systems as examples (fiber push-in Nicalon/calcium aluminosilicate composite, and fiber pullout in AVCO-SCS-6/borosilicate composite), the germane features of the local fields are independently verified by finite element global analyses.

纤维-基体界面摩擦滑动下的纤维拔入分析
研究了纤维-基体界面在压缩热残余应力和摩擦滑动作用下,纤维拉出或推入所产生的细部应力场。利用Muskhelishvili-Kolosov复势理论和渐近分析方法求解了光纤突出点附近局部区域的优势应力场。参数化研究确定了纤维-基体材料性能组合、摩擦系数和纤维相对滑动方向对局部场的影响。扭转光纤从拉出到推入的滑动完全改变了局部场的性质。以Nicalon/钙铝硅酸盐复合材料的纤维推入和AVCO-SCS-6/硼硅酸盐复合材料的纤维拉出为例,通过有限元全局分析独立验证了局部场的相关特征。
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