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-  2015 

螺栓夹持填充孔复合材料层压板层间应力分析
Interlaminar stress analysis of filled-hole composite laminate with bolt clamping

DOI: 10.13801/j.cnki.fhclxb.20140718.003

Keywords: 复合材料层压板,层间应力,填充孔压缩,螺栓夹持力,分层失效
composite laminates
,interlaminar stress,filled-hole compression,bolt-clamping force,delamination failure

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Abstract:

为了研究含螺栓复合材料层压板连接接头的层间应力分布规律, 提出了采用填充孔形式和虚拟界面层方法求解层间应力, 并建立了三维有限元模型对受面内压缩载荷的螺栓夹持填充孔层压板进行分析。结果表明: 层压板层间应力集中不仅发生在孔边, 还会在螺栓头边缘附近出现, 且夹持力越大螺栓头边缘附近的层间应力集中越严重;合理的螺栓夹持力能改善孔边应力状态, 提高孔边抵抗分层的能力, 但无法改善螺栓头边缘附近的层间剪切应力集中状态。因此, 在进行含螺栓夹持的层压板机械连接结构孔边层间强度设计时, 也要考虑螺栓头边缘的层间剪切应力集中问题, 以提高复合材料结构的安全性。 Filled-hole form and virtual interlaminar boundary method were proposed to solve interlaminar stress to study interlaminar stress distribution law of composite laminates connector with bolts, and three-dimensional finite element model was established for analyzing the filled-hole laminate with bolt clamping under in-plane compression load. The results show that interlaminar stress concentration of laminates occurs not only at the hole edge, but also in the vicinity of bolt head edge, and the greater bolt-clamping force, the more serious interlaminar stress concentration near the bolt head edge. A reasonable bolt-clamping force can improve the stress state of hole edge, and enhance the ability to resist delamination of hole edge, but can not change the interlaminar shear stress concentration state near the bolt head edge. Therefore, to improve the safety of composite structures, the interlaminar shear stress concentration problems near the bolt head edge should be considered in the laminate mechanical joint interlaminar strength design of hole edge with bolt clamping.

References

[1]  McCarthy M A, McCarthy C T, Lawlor V P, et al. Three-dimensional finite element analysis of single-bolt,single-lap composite bolted joints: Part I—model development and validation[J]. Composite Structures, 2005, 71(2): 150-158.
[2]  Thoppul S D, Finegan J, Gibson R F. Mechanics of mechanically fastened joints in polymer-matrix composite structures-A review[J]. Composites Science and Technology, 2009, 69(3-4): 301-329.
[3]  Castanie B, Creze S, Barrau J J, et al. Experimental analysis of failures in filled hole compression tests of carbon/epoxy laminate[J]. Composite Structures, 2010, 92(5): 1192-1199.
[4]  Zhong X D, Chen P H. Combined joint design and analysis at stringer run-outs in stiffened composite panels[J]. Acta Materiae Compositae Sinica, 2013, 30(6): 197-202 (in Chinese). 钟小丹, 陈普会. 复合材料加筋壁板长桁终止端混合连接设计分析[J]. 复合材料学报, 2013, 30(6): 197-202.
[5]  Esquej R, Castejon L, Lizaranzu M, et al. A new finite element approach applied to the free edge effect on composite materials[J]. Composite Structures, 2013, 98: 121-129.
[6]  Guo S W, Zhang Y C, Song E P, et al. Interlaminar stress analysis of carbon fiber-reinforced laminated plate with a hole[J]. Acta Materiae Compositae Sinica, 2011, 28(5): 228-233 (in Chinese). 郭绍伟, 张永存, 宋恩鹏, 等. 开孔碳纤维层合板层间应力分析[J]. 复合材料学报, 2011, 28(5): 228-233.
[7]  Chen L M,Yang B N. Mechanical analysis for composite materials[M]. Beijing: China Science and Technology Press, 2006: 148-188 (in Chinese). 陈烈民, 杨宝宁. 复合材料的力学分析[M]. 北京: 中国科学技术出版社, 2006: 148-188.
[8]  Fagiano C, Abdalla M M, Kassapoglou C, et al. Interlaminar stress recovery for three- dimensional finite elements[J]. Composites Science and Technology, 2010, 70(3): 530-538.
[9]  Li Y Z, Guo X B, Huang Z Y. 3D stress analysis of composite laminate based on a kind of interfacial element[J]. Acta Materiae Compositae Sinica, 2009, 26(3): 207-212 (in Chinese). 李亚智, 郭晓波, 黄志远. 基于组合单元的层压复合材料三维应力分析[J]. 复合材料学报, 2009, 26(3): 207-212.
[10]  Dakshina M C M, Reddy J N. Recovery of interlaminar stresses and strain energy release rates in composite laminates[J]. Finite Elements in Analysis and Design, 1999, 33(1): 1-27.
[11]  Turon A, Davila C G, Camanho P P, et al. An engineering solution for mesh size effects in the simulation of delamination using cohesive zone models[J]. Engineering Fracture Mechanics, 2007, 74(10): 1665-1682.
[12]  American Society for Testing Materials International. D6742/D6742M-12 Standard practice for filled-hole tension and compression testing of polymer matrix composite laminates[S]. West Conshohocken: ASTM International, 2012.
[13]  Kou J F.The analysis of glue bonding failure for laminated composite[D]. Xi'an: Northwestern Polytechnical University, 2010 (in Chinese). 寇剑锋. 复合材料层合板胶接结构破坏分析[D]. 西安: 西北工业大学, 2010.
[14]  Mccarthy C T, Mccarthy M A, Stanley W F, et al. Experiences with modeling friction in composite bolted joints[J]. Journal of Composite Materials, 2005, 39(21): 1881-1908.

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