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采用三维光弹性实验应力分析和有限元计算两种方法,在拉拔载荷和热残余应力联合作用下,对单丝拔出树脂基复合材料三维冻结切片界面剪应力进行了研究.实验结果和计算表明,在单纤维与基体界面的埋入端及埋入末端附近出现界面残余剪应力的极值;力、热载荷作用下纤维界面剪应力呈抛物线分布,单丝埋入端附近是应力的主要传递区域,最先达到危险应力,出现界面脱胶破坏,然后剪应力沿纤维埋入长度由纤维埋入端附近向埋入末端逐渐传递;界面热残余应力对界面剪应力的影响是使纤维埋入末端应力集中程度降低,使界面剪应力最大值增大.

参考文献

[1] 王安强,万建松,苟文选,矫桂琼,岳珠峰.单纤维界面强度光弹性实验和理论研究[J].复合材料学报,2003,20(6):147-150.Wang Anqiang,Wan Jiansong,Gou Wenxuan,Jiao Guiqiong,Yue Zhufeng.Study of interfacial stress of single-fiber composite by photo-elastic experiment[J].Acta Materiae Compositae Sinica,2003,20(6):147-150.
[2] Sayman O.Thermal-plastic stress analysis of symmetric aluminum metal-matrix composite laminated plates under linearly distributed temperature[J].Journal of Thermal Stress,2003,26(1):1-12.
[3] Keiji O.Influence of thermal history on transverse cracking in a carbon fiber reinforced epoxy composite[J].Advanced Composite Material,2003,11(3):265-275.
[4] Kwadwo K,David J R.Nanoindentation method for measuring residual stress in brittle materials[J].J Am Cerum Soc,2003,86(5):811-816.
[5] Schultek F B.A shear-lag approach to the early stage of interfacial failure in the fiber direction in notched two dimensional unidirectional composites[J].Composites Science and Technology,1997,57(7):775-785.
[6] Ocial S,Tadanobu H M.Shear-lag simulation of the progress of interfacial debonding in unidirectional composites[J].Composites Science and Technology,1999,59(1):77-88
[7] Liu Y F,Masluda C,Yuuki R.Effect of micro-structural parameters on the fracture behavior of fiber reinforced ceramics[J].Mechanics of Materials,1998,29(2):111-121.
[8] Liu Y F,Kagawa Y.Analysis of debonding and frictional sliding in fiber reinforced brittle matrix composites:Basic problems[J].Materials Science and Engineering,1996,212(1):75-86.
[9] Rauchs G,Withers P J.Computational assessment of the influence of load ratio on fatigue crack growth in fiberreinforced metal matrix composites[J].International Journal of Fatigue,2002,24(12):1205-1211.
[10] Rauchs G,Thomason P F,Withers P J.Finite element modeling of frictional bridging during fatigue crack growth in fiber-reinforced metal matrix composites[J].Computational Materials Science,2002,25(1/2):166-173.
[11] 董振英,李庆斌.纤维增强脆性复合材料细观力学若干进展[J].力学进展,2001,31(4):555-582.Dong Zhenying,Li Qingbin.Some developments on mesomechanics of fiber-reinforced quasi-brittle composites[J].Advanees in mechanics,2001,31(4):555-582.
[12] Vazquez-Rodriguez J M,Herrera-Franco P J,Gonzalez-Chi P I.Analysis of the interface between a thermoplastic fiber and a thermosetting matrix using photoelasticity[J].Composites Part A,2007,38(3):819-827.
[13] Pink P,Umezaki E.Digitally whole-field analysis of isoclinic parameter in photoelasticity by four-step color phase-shifting technique[J].Optics and Lasers in Engineering,2007,45(7):795-807.
[14] Quiroga J A,Gonzalez-Cano A.Phase measuring algorithm for extraction of isoehromatics of photoelastic fringe patterns[J].Applied Optics,1997,36(32);8397-8402.
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