留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

多晶镍基合金循环塑性细观本构关系

蔚夺魁 杨晓光 张克实

蔚夺魁, 杨晓光, 张克实. 多晶镍基合金循环塑性细观本构关系[J]. 航空动力学报, 2013, 28(10): 2167-2173.
引用本文: 蔚夺魁, 杨晓光, 张克实. 多晶镍基合金循环塑性细观本构关系[J]. 航空动力学报, 2013, 28(10): 2167-2173.
YU Duo-kui, YANG Xiao-guang, ZHANG Ke-shi. Mesoscopic mechanical constitutive relation of cyclic plasticity for nickel based polycrystalline superalloy[J]. Journal of Aerospace Power, 2013, 28(10): 2167-2173.
Citation: YU Duo-kui, YANG Xiao-guang, ZHANG Ke-shi. Mesoscopic mechanical constitutive relation of cyclic plasticity for nickel based polycrystalline superalloy[J]. Journal of Aerospace Power, 2013, 28(10): 2167-2173.

多晶镍基合金循环塑性细观本构关系

Mesoscopic mechanical constitutive relation of cyclic plasticity for nickel based polycrystalline superalloy

  • 摘要: 基于晶体塑性的本构理论,考虑金属材料晶体细观塑性变形流动的各向异性性质及晶体滑移的非线性运动硬化,以Voronoi多晶集合体作为材料的代表性体积单元(RVE),用晶体塑性模拟描述ZSGH4169多晶镍基合金材料的细观本构关系,对ZSGH4169多晶镍基合金进行了晶粒尺度的对称和非对称循环细观分析.通过对称循环数值模拟表明:该模型适合模拟金属材料循环试验中常见的应变硬化现象和Bauschinger效应;通过非对称循环数值模拟表明该模型具有对棘轮效应的描述能力,计算中发现背应力的演化对滑移切应变率有很大的影响,滑移切应变率的数值很大程度取决于背应力演化主导的非线性硬化过程.

     

  • [1] Taylor G I,Elam C F.The plastic extension of fracture of aluminum crystal[J].Proceedings of the Royal Society A,1925,108(745):28-51.
    [2] Taylor G I,Elam C F.The distortion of an aluminum crystal during a tensile test[J].Proceedings of the Royal Society:Series A,1923,102(719):643-667.
    [3] Taylor G I.The mechanism of plastic deformation of crystal:Part 1 theoretical[J].Proceedings of the Royal Society:Series A,1934,145(855):362-387.
    [4] Hill R,Rice J R.Constitutive analysis of elastic-plastic crystals at arbitrary strain[J].Journal of the Mechanics and Physics of Solids,1972,20(6):401-413.
    [5] Asaro R J.Crystal plasticity[J].Journal of Applied Mechanics,1983,50(4b):921-934.
    [6] Rice J R.Inelastic constitutive ralations for solids:an internal variable theory and its application to metal plasticity[J].Journal of the Mechanics and Physics of Solids,1971,19(6):433-455.
    [7] Peirce D,Asaro R J,Needleman A.Material rate dependence and localized deformation in crystalline solids[J].Acta Metallurgica,1983,31(12):1951-1976.
    [8] Hill R,Havner K S.Perspectives in the mechanics of elastoplastic crystal[J].Journal of the Mechanics and Physics of Solids,1982,30(1):5-22.
    [9] Havner K S.Finite plastic deformation of crystalline solids[M].Cambrige,UK:Cambrideg University Press,1992.
    [10] Nasser S N.Rate dependent finite elastic plastic deformation of polycrystals[J].Proceedings of the Royal Society:Series A,1986,407(1833):343-375.
    [11] Rashid M M,Nasser S N.A constitutive algorithm for rate dependent crystal plasticity[J].Computer Methods in Applied Mechanics and Engineering,1992,94(2):201-228.
    [12] Cuitino A M,Ortiz M.Computational modelling of single crystals[J].Modeling and Simulation in Material Sciences and Engineering,1999,1(3):225-263.
    [13] Roters F,Eisenlohr P,Hantcherli L,et al.Overview of constitutive laws,kinematics,homogenization and multiscale methods in crystal plasticity finite-element modeling:theory,experiments,applications[J].Acta Materialia,2010,58(4):1152-1211.
    [14] 张克实,石艳柯,许凌波,等.对称拉压循环下金属屈服硬化的各向异性与细观变形转动的不均匀性[J].金属学报,2011,47(10):1292-1300. ZHANG Keshi,SHI Yanke,XU Lingbo,et al.Anisotropy of yielding/hardening and microinhomogeneity of deforming/rotating for a ploycrystalline metal under cyclic tension-compression[J].Acta Metallurgical Sinica,2011,47(10):1292-1300.(in Chinese)
    [15] 尹泽勇,岳珠峰,杨治国,等.各向异性单晶合金结构强度与寿命[M].北京:国防工业出版社,2003.
    [16] Hutchinson J W.Bounds and self-consistent estimates for creep of polycrystalline materials[J].Proceedings of the Royal Society:Series A,1976,348(1652):101-127.
    [17] Chaboche J L.A review of some plasticity and viscoplasticity constitutive theories[J].International Journal of Plasticity,2008,24(10):1642-1693.
    [18] 《航空发动机设计用材料数据手册》编委会.航空发动机设计用材料数据手册:第4册[M].北京:航空工业出版社,2010.
  • 加载中
计量
  • 文章访问数:  1129
  • HTML浏览量:  0
  • PDF量:  1638
  • 被引次数: 0
出版历程
  • 收稿日期:  2012-10-09
  • 刊出日期:  2013-10-28

目录

    /

    返回文章
    返回