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连续丝束剪切(CTS)作为一种新的丝束变角度(VAT)铺放技术,能克服传统的自动铺丝技术(AFP)的诸多缺陷.鉴于此,分别采用CTS和AFP这2种技术铺设而成的VAF层合板为研究对象,对其屈曲性能进行了有限元分析;在施加相同端部轴向位移的条件下,以铺层顺序[90±<0|75>]4s为例,对比分析了2种层合板的内力分布;最后,讨论了丝束最小转弯半径对2种铺放技术的影响.结果表明:CTS层合板因其变厚度的特性,其屈曲性能优于AFP层合板;与AFP技术受制于最小转弯半径,导致其在小尺寸结构中的应用受到限制相比,CTS技术适用于各种尺寸的层合板.

参考文献

[1] Hyer M W;Charette R F.Use of curvilinear fiber format in composite structure design[J].AIAAJournal,199129(6):1011-1015.
[2] Gürdal Z;Olmedo R.In-plane response of laminates with spatially varying fiber orientations:variable stiffness concept[J].AIAA Journal,199331(4):751-758.
[3] Tatting B F;Gürdal Z .Design and manufacture of elastically tailored tow placed plates,NASA/CR-2002-211919[R].Washington:NASA,2002.
[4] Z. Gurdal;B.F. Tatting;C.K. Wu.Variable stiffness composite panels: Effects of stiffness variation on the in-plane and buckling response[J].Composites. Part A, Applied science and manufacturing,20085(5):911-922.
[5] Zhangming Wu;Paul M. Weaver;Gangadharan Raju;Byung Chul Kim.Buckling analysis and optimisation of variable angle tow composite plates[J].Thin-Walled structures,2012:163-172.
[6] Blom, AW;Lopes, CS;Kromwijk, PJ;Gurdal, Z;Camanho, PP.A Theoretical Model to Study the Influence of Tow-drop Areas on the Stiffness and Strength of Variable-stiffness Laminates[J].Journal of Composite Materials,20095(5):403-425.
[7] Waldhart C .Analysis of tow-placed,variable-stiffness laminates[D].Virginia:Virginia Polytechnic Institute and State University,1996.
[8] Tatting B F;Gürdal Z .Automated finite element analysis of elastically-tailored plates,NASA/CR-2003-212679[R].Washington:NASA,2003.
[9] Kim B C;Hazra K;Weaver P.Limitations of fibre placement techniques for variable angle tow composites and their process-induced defects[A].London:The Institute of Materials,Minerals and Mining,2011:1-6.
[10] Byung Chul Kim;Kevin Potter;Paul M. Weaver.Continuous tow shearing for manufacturing variable angle tow composites[J].Composites, Part A. Applied science and manufacturing,20128(8):1347-1356.
[11] Liu W L;Butler R;Kim H A .Buckling optimization of variable angle tow panels using exact strip models,AIAA-2012-1460[R].Reston:AIAA,2012.
[12] Ghiasi H;Fayazbakhsh K;Pasini D.Optimum stacking sequence design of composite materials Part Ⅱ:Variable stiffness design[J].Computers & Structures,201093(1):1-13.
[13] Gürdal Z;Tatting B F .Tow-placement technology and fabrication issues for laminated composite structures,AIAA-2005-2017[R].Reston:AIAA,2005.
[14] IJsselmuiden S T .Optimal design of variable stiffness composite structures using lamination parameters[D].Delft:Delft University of Technology,2012.
[15] Gangadharan Raju;Zhangming Wu;Byung Chul Kim;Paul M. Weaver.Prebuckling and buckling analysis of variable angle tow plates with general boundary conditions[J].Composite structures,20129(9):2961-2970.
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