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- 2017
织物增强复合材料梁结构热校形工艺
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Abstract:
[1] | 岳广全, 张嘉振, 张博明. 模具对复合材料构件固化变形的影响分析[J]. 复合材料学报. 2013, 30(4):206-210. YUE G Q, ZHANG J Z, ZHANG B M. Influence of mold on cure-induced deformation of composite structure[J]. Acta Materiae Compositae Sinica, 2013, 30(4):206-210(in Chinese). |
[2] | LIU K, YE J, TANG Z, et al. Simulation and verification of machining deformation[J]. Journal of Wuhan University of Technology:Materials Science Edition, 2014, 29(5):917-922. |
[3] | 江天, 徐吉峰, 刘卫平, 等. 整体化复合材料结构分阶段固化变形预报方法及其实验验证[J]. 复合材料学报, 2013, 30(5):61-66. JIANG T, XU J F, LIU W P, et al. Simulation and verification of cure-induced deformation by stages for integrated composite structure[J]. Acta Materiae Compositae Sinica, 2013, 30(5):61-66(in Chinese). |
[4] | CAPEHART T W, MUHAMMAD N, HAMID G K. Compensating thermoset composite panel deformation using corrective molding[J]. Journal of Composite Materials, 2007, 41(14):1675-1701. |
[5] | LI J, YAO X F, LIU Y H, et al. Curing deformation analysis for the composite T-shaped integrated structures[J]. Applied Composite Materials. 2008, 15(4):207-225. |
[6] | KAPPEL E, STEFANIAK D, HüHNE C. Process distor-tions in prepreg manufacturing-An experimental study on CFRP L-profiles[J]. Composite Structures, 2013, 106(12):615-625. |
[7] | HO K C, LIN J, DEAN T A. Modelling of spring back in creep forming thick aluminum sheets[J]. International Jour-nal of Plasticity. 2004, 20(4-5):733-751. |
[8] | LIN J, DEAN T A. An integrated process for modeling of precipitation hardening and spring back in creep age forming[J]. International Journal of Machine Tools & Manufacture, 2006, 46(11):1266-1270. |
[9] | ZHANG B M, YUE G Q. Prediction of process-induced geometrical deformations for stiffened thermosetting compo-site panels[J]. Polymers & Polymer Composites, 2010, 18(5):175-186. |
[10] | LAM A C L, SHI Z S, YANG H L, et al. Creep-age forming AA2219 plates with different stiffener designs and pre-form age conditions:Experimental and finite element studies[J]. Journal of Materials Processing Technology, 2015, 219:155-163. |
[11] | MASUKO Y, KAWAI M. Application of a phenomeno-logical viscoplasticity model to the stress relaxation behavior of unidirectional and angle-ply CFRP laminates at high tem-perature[J]. Composites Part A:Applied Science and Manu-facturing, 2004, 35(7-8):817-826. |
[12] | 中国航空工业总公司. HB 7224-95复合材料构件通用技术条件[S]. 北京:中国航空工业总公司, 1995. Aviation Industry Corporation of China. HB 7224-95 General technical requirements for composite components[S]. Beijing:Aviation Indusitry Corporation of China, 1995(in Chinese). |
[13] | CHUNG I, SUN C T, CHANG I Y. Modeling creep in ther-moplastic composites[J]. Journal of Composite Materials, 1993, 27(10):1009-1029. |
[14] | SALLAH M, JR J P, FOROUDASTAN S. A mathematical model of autoclave age forming[J]. Journal of Materials Processing Technology, 1991, 28(1-2):211-219. |
[15] | SHONG Z C, LING Z R, PEKLENIK J. A study of the hot sizing and high temperature mechanical behaviour for titanium alloy sheet[J]. CIRP Annals-manufacturing Technology, 1983, 32(1):161-165. |
[16] | ZHAN L, LIN J, DEAN T A. A review of the development of creep age forming:Experimentation, modeling and appli-cations[J]. International Journal of Machine Tools & Manu-facture, 2011, 51(1):1-17. |
[17] | HO K C, LIN J, DEAN T A. Constitutive modeling of pri-mary creep for age forming an aluminum alloy[J]. Journal of Materials Processing Technology, 2004, 153-154:122-127. |