众所周知,各向同性材料结构的极限分析与设计只需一个应力强度条件(如采用第一或者第四强度理论).但是在复合材料的情况下,问题要复杂得多.本文中提出除了一个应力强度条件之外,还须补充一个临界变形条件或者称为临界刚度条件才可以确定复合材料结构在横向载荷作用下的极限破坏状态的观点.对本文作者近期在这方面的研究工作作了介绍,尤其侧重介绍如何确定复合材料结构的极限承载能力,并指出复合材料结构受有横向载荷作用的一些有待研究解决的紧迫问题.
参考文献
[1] | Hinton M J, Soden P D. Predicting failure in composite laminates:The background to the exercise[J]. Comp Sci & Tech, 1998, 58: 1001-1010. |
[2] | Soden P D, Hinton M J, Kaddour A S. A comparison of the predictive capabilities of current failure theories for composite laminates[J]. Comp Sci & Tech, 1998, 58: 1225-1254. |
[3] | Hinton M J, Kaddour A S, Soden P D. A comparison of the predictive capabilities of current failure theories for composite laminates, judged against experimental evidence[J]. Comp Sci & Tech, 2002, 62(12-13): 1725-1797. |
[4] | Hinton M J, Kaddour A S, Soden P D. A further assessment of the predictive capabilities of current failure theories for composite laminates: Comparison with experimental evidence[J]. Comp Sci & Tech, 2004, 64(3-4): 549-588. |
[5] | Whitney J M, Browning C E, Mair A. Analysis of the flexure test for laminated composite materials[A]. In: Composite Materials: Testing and Design, ASTM STP 546[C]. American Society for Testing and Materials, 1974. 30-45. |
[6] | Turvey G J. Uniformly loaded, antisymmetric cross-ply laminated, rectangular plates: An initial flexural failure analysis[J]. Fiber Sci & Tech, 1982, 16: 1-10. |
[7] | Dvorak G J, Laws N. Analysis of progressive matrix cracking in composite laminates Ⅱ: First ply failure[J]. J Comp Mater, 1987, 21: 309-329. |
[8] | Kam T Y, Sher H F. Nonlinear and first-ply failure analyses of laminated composite cross-ply plates[J]. J Comp Mater, 1995, 29: 463-482. |
[9] | Greif R, Chapon E. Investigation of successive failure modes in graphite/epoxy laminated composite beams[J]. J Reinf Plas & Comp, 1993, 12: 602-621. |
[10] | Echaabi J, Trochu F, Pham X T, et al. Theoretical and experimental investigation of failure and damage progression of graphite-epoxy composites in flexural bending test[J]. J Reinf Plas & Comp, 1996, 15: 740-755. |
[11] | Smith P A, Ogin S L. On transverse matrix cracking in cross-ply laminates loaded in simple bending[J]. Composites: Part A, 1999, 30: 1003-1008. |
[12] | Spottswood S M, Palazotto A N. Progressive failure analysis of a composite shell[J]. Composite Structures, 2001, 53: 117-131. |
[13] | Huang Z M, Teng X C, Ramakrishna S. Bending behavior of laminated knitted fabric reinforced beams[J]. Advanced Composites Letters, 2001, 10(5): 211-218. |
[14] | Huang Z M, Fujihara K, Ramakrishna S. Bending failure characterization of laminated beams with braided fabric reinforcement[J]. Advanced Composites Letters, 2003, 12(3): 85-96. |
[15] | Huang Z M. Simulation of the mechanical properties of fibrous composites by the bridging micromechanics model[J]. Composites Part A, 2001, 32(2): 143-172. |
[16] | Huang Z M, Teng X C, Ramakrishna S. Progressive failure analysis of laminated knitted fabric composites under bending[J]. J of Thermoplastic Composite Materials, 2001, 14(6): 499-522. |
[17] | Zhang Y Z, Huang Z M, Ramakrishna S. Tensile behavior of multilayer knitted fabric composites with different stacking configuration[J]. Applied Composite Materials, An International Journal for the Science & Application of Composite Materials, 2001, 8(4): 279-295. |
[18] | Huang Z M. Modeling and characterization of bending st-rength of braided fabric reinforced laminates[J]. J of Composite Mater, 2002, 36(22): 2537-2566. |
[19] | Padhi G S, Shenoi R A, Moy S S J, et al. Progressive failure and ultimate collapse of laminated composite plates in bending[J]. Composite Structures, 1998, 40: 277-291. |
[20] | Reddy J N, Pandey J N. A first-ply failure analysis of composite laminates[J]. Composite Structures, 1987, 25: 371-393. |
[21] | Huang Z M. Modeling strength of multidirectional laminates under thermo-mechanical loads[J]. J Comp Mater, 2001, 35(4): 281-315. |
[22] | Adams D F. Elastoplastic behavior of composites[A]. In: Sendeckyj G P, ed. Mechanics of Composite Materials[M]. New York: Academic Press, 1974. 169-208. |
[23] | Watari F, Yamagata S, Imai T, et al. The fabrication and properties of aesthetic FRP wires for use in orthodontics[J]. J Mater Sci, 1998, 33: 5661-5664. |
[24] | Toyoizumi H, Watari F, Imai T, et al. Fabrication of aesthetic wires with flexural and torsional stiffness by photo curing method[J]. The Journal of the Japanese Society for Dental Materials and Devices, 1999, 18(6): 429-440. |
[25] | Fallis D W, Kusy R P. Variation in flexural properties of photo-pultruded composite archwires: Analyses of round and rectangular profiles[J]. J Mater Sci Mater Med, 2000, 11: 683-693. |
[26] | Huang Z M, Gopal R, Fujihara K, et al. Fabrication of a new composite orthodontic archwire and validation by a bridging micromechanics model[J]. Biomaterials, 2003, 24(17): 2941-2953. |
[27] | Soden P D, Hinton M J, Kaddour A S. Lamina properties, lay-up configurations and loading conditions for a range of fiber-reinforced composite laminates[J]. Comp Sci & Tech, 1998, 58: 1011-1022. |
[28] | Huang Z M. Micromechanical strength formulae of unidirectional composites[J]. Materials Letters, 1999, 40(4): 164-169. |
[29] | Huang Z M, Ramakrishna S, Tay A A O. A micromechanical approach to the tensile strength of a knitted fabric composite[J]. J of Comp Mater, 1999, 33(19): 1758-1791. |
[30] | Huang Z M. The mechanical properties of composites reinforced with woven and braided fabrics[J]. Comp Sci & Tech, 2000, 60: 479-498. |
[31] | Huang Z M. Ultimate strength of a composite cylinder subjected to three-point bending: Correlation of beam theory with experiment[J]. Composite Structures, 2004, 63: 439-445. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%