采用复合材料细观有限元分析方法,并借助先进循环塑性本构模型的有限元实现,对颗粒性态的随机性对SiC颗粒增强6061A1复合材料棘轮行为的影响进行了有限元数值模拟.采用随机序列吸附方法(RSA)生成各种多颗粒随机分布的模型,探讨了颗粒分布方式、数目、形状和大小以及各自的随机性对复合材料棘轮行为的影响.研究发现:颗粒尺寸越小、数目越多、分布在基体表面的比例越大,颗粒的增强效果越好;颗粒的大小和空间位置分布越均匀,复合材料抗循环变形的能力越强;球形颗粒和均匀分布的假设可以得到很好的模拟结果.
参考文献
[1] | 袁广江,章文峰,王殿斌,桂满昌,吴洁君.SiC颗粒增强铝基复合材料制备及机加工性能研究[J].复合材料学报,2000,17(2):38-41.Yuan Guangjiang,Zhang Wenfeng,Wang Dianbin,Gui Manchang,Wu Jiejun.Preparation and cutting property of SiC particles reinforced aluminum matrix composite[J].Acta Mater Comp Sin,2000,17(2):38-41. |
[2] | 曲寿江,耿林,曹国剑,雷廷权.挤压铸造法制备可变形SiCp/Al复合材料的组织与性能[J].复合材料学报,2003,20(3):69-73.Qu Shoujiang,Geng Lin,Cao Guojian,Lei Tingquan.Microstructure and properties of deformable SiCp/Al composite fabricated by squeeze casting method EJ].Acta Mater Comp Sin,2003,20(3):69-73. |
[3] | Maason R,Bornert M,Suquet P,Zaoui A.An affine formulation for the prediction of the effective properties of nonlinear composites and polycrystals[J].J Mech Phys Solids,2000,48(6/7):1203-1227. |
[4] | Gonzalez G,Segurado J,Llorca J.Numerical simulation of elasto-plastic deformation of composites:evolution of stress microfields and implications for homogenization models[J].J Mech Phys Solids,2004,52(7):1573-1593. |
[5] | Pierard O,Llorca J,Segurado J,Doghri I.Micromechanics of particle-reinforeed elasto-viscoplastic composites:Finite element simulations versus affine homogenization[J].Int J Plasticity.2007,23(6):1041-1060. |
[6] | Ohno N.Recent progress in constitutive modeling for ratchetting FJ].Mater Sci Res Int,1997,3(2):1-9. |
[7] | 陈旭,焦荣,田涛.棘轮效应预测及其循环本构模型研究进展[J].力学进展,2003,33(4):461-470.Chen Xu,Jiao Rong,Tian Tao.Research advances of ratcheting effects and cyclic constitutive models[J].Advances in Mechanics,2003,33(4):461-470. |
[8] | Kang G Z.Ratcheting:Recent progresses in phenomenon observation,constitutive modeling and application[J].Int J Fatigue,2008,30(8):1448-1472. |
[9] | Abdel-Karim M.Shakedown of complex structures according to various hardening rules[J].Int J Press Vessel & Piping,2005,82(6):427-458. |
[10] | 高庆,康国政,杨川,等.高温下短纤维增强金属摹复合材料界面的微观结构和热残余应力状态研究[J].复合材料学报,2002,19(4):46-50.Gao Qing,Kang Guozheng.Yang Chuan,et al.Study on the microstructure characteristics and thermal residual stress state of interface in short fiber reinforced composites at elevated temperature[J].Acta Materiae Compositae Sinica,2002,19(4):46-50. |
[11] | 柴东朗,李晓军,曹利强,等.增强相形态对复合材料微区力学状态影响的有限元分析[J].应用力学学报,2004,21(3):145-148.Chai Donglang,Li Xiaojun,Cao Liqiang,et al.Effect of reinforcement's shape on the local stress field of metal matrix composites[J].Chinese Journal of Applied Mechanics,2004,21(3):145-148. |
[12] | 邵雪娇,康国政,郭素娟.界面性能对SiCP/6061Al复合材料棘轮行为的影响[J].复合材料学报,2008,25(4):119-125.Shao Xuejiao,Kang Guozheng,Guo Sujuan.Effect of interhcial bonding on ratcheting of SiCP/6061Al composite[J].Acta Mater Comp Sin,2008,25(4):119-125. |
[13] | Fleming W J,Temis J M.Numerical simulation of cyclic plasticity and damage of an aluminium metal matrix composite with particulate SiC inclusions[J].Int J Fatigue,2002,24(10):1079-1088. |
[14] | Drugan W J,Willis J R.A micromechanics-based nonlocal constitutive equation and estimates of the representative volume element size for elastic composites[J].J Mech Phys Solids,1996.44(4):497-524. |
[15] | Drugan W J.Micromeehanics-based variational estimates for a higher-order nonlocal constitutive equation and optimal choice of effective moduli of elastic composites[J].J Mech Phys Solids,2000,48(6/7):1359-1387. |
[16] | 于敬宇,李玉龙,周宏霞,徐绯.颗粒尺寸对颗粒增强型金属基复合材料动态特性的影响[J].复合材料学报,2005,22(5):31-38.Yu Jingyu,Li Yuiong,Zhou Hongxia,Xu Fei.Influence of particle size on the dynamic behavior of PMMCs[J].Acta Mater Comp Sin,2005,22(5):31-38. |
[17] | Leon L,Mishnaevky J.Three dimensional numerical testing of microstructures of particle reinforced composites[J].Acta Materialia,2004,52(14):4177-4188. |
[18] | 金泉,覃继宁,张获,吕维洁.颗粒和纤维混杂增强复合材料力学性能的三维有限元模拟[J].复合材料学报,2006,23(2):15-20.Jin Quan.Qin Jining,Zhang Di,Lǖ Weijie.3-D FEM simulation of mechanical property of composites reinforced by both particles and fibers[J].Acta Mater Comp Sin,2006,23(2):15-20. |
[19] | Kang G Z.A visco-plastic constitutive model for ratcheting of cyclically stable materials and its finite element implementation[J].Mech Mater,2004,36(4):299-312. |
[20] | Llorca J,Segurado J.Three-dimensionsl multiparticle cell simulations of deformation and damage in sphere 2reinforced composites[J].Materials Science and Engineering A,2004,365(1/2):267-274. |
[21] | Bohm H J,Eckschlager A,Han W.Multi-inclusion unit cell models for metal matrix composites with randomly oriented discontinuous reinforcements[J].Computational Materials Science,2002,25(1/2):42-53. |
[22] | Kang G Z.Uniaxial time-dependent ratcheting of SiCP/6061Al alloy composites at room and high temperature[J].Comp Sci Teeh,2006,66(10):1418-1430. |
[23] | 邵雪娇,康国政,郭素娟.考虑界面结合的SiCp/6061A1复合材料时间相关棘轮行为的三维有限元分析[J].复合材料学报,2009,26(2):18-24.Shao Xuejiao,Kang Guozheng,Guo Sujuan.3-D finite element analysis for time-dependent ratcheting of SiCp/6061Al composites considering interface bonding[J].Acta Mater Comp Sin,2009,26(2):18-24. |
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%