ANSYS树形结构的材料模型库(☺第一级●第二级▪第三级▫第四级◦第五级)☺Linear:材料的线性行为●Elastic:弹性性能参数▪Isotropic:各向同性弹性性能参数▪Orthtropic:正交各向异性弹性性能参数▪Anisotropic:各向异性弹性性能参数☺Nonlinear:材料的非线性行为●Elastic:非线性的弹性模型▪Hyperelastic:超弹材料模型(包含多个模型)▫Curve Fitting:通过材料实验数据拟合获取材料模型▫Mooney-Rivilin:Mooney-Rivilin模型(包含2 、3、 5 与9 参数模型)▫Ogden:Ogden模型(包含1~5 项参数模型与通用模型)▫Neo-Hookean:Neo-Hookean模型▫Polynomial Form:Polynomial Form模型(包含1~5 项参数模型与通用模型)▫Arruda-Boyce:Arruda-Boyce:模型▫Gent:Gent模型▫Yeoh:Yeoh模型▫Blatz-Ko(Foam):Blatz-Ko(泡沫)模型▫Ogden(Foam) Ogden:(泡沫)模型▫Mooney-Rivlin(TB,MOON):Mooney-Rivlin(TB,MOON) 模型▪Multilinear Elastic:多线性弹性模型●Inelastic:非线性的非弹性模型▪Rate Independent:率不相关材料模型▫Isotropic Hardening Plasticity:各向等向强化率不相关塑性模型◦Mises Plasticity:各向等向强化的Mises 率不相关塑性模型Bilinear:双线性模型Multilinear:多线性模型Nonlinear:非线性模型◦Hill Plasticity:各向等向强化的Hill 率不相关塑性模型Bilinear:双线性模型Multilinear:多线性模型Nonlinear:非线性模型▫Generalized Anisotropic Hill Potenial:广义各向异性Hill 势能率不相关模型▫Kinematic Hardening Plasticity:随动强化率不相关塑性模型◦Mises Plasticity:随动强化的Mises率不相关塑性模型Bilinear:双线性模型Multilinear(Fixed table):多线性模型Nonlinear(General) :非线性模型Chaboche Chaboche:模型◦Hill Plasticity:随动强化的Hill 率不相关塑性模型Bilinea:双线性模型Multilinear(Fixed table):多线性模型Nonlinear(General):非线性模型Chaboche Chaboche:模型▫Combined Kinematic and Isotropic Hardening Plasticity:随动强化塑性与各向等向强化的率不相关塑性混合模型◦Mises Plasticity:等向强化的Mises 率不相关塑性模型Chaboche and Bilinear Isotropic:Chaboche模型与双线性等向强化混合模型Chaboche and Multilinear Isotropic:Chaboche模型与多线性等向强化混合模型Chaboche and Nonlinear Isotropic:Chaboche模型与非线性等向强化混合模型◦Hill Plasticity:各向等向强化的Hill 率不相关塑性模型Chaboche and Bilinear Isotropic:Chaboche模型与双线性等向强化混合模型Chaboche and Multilinear Isotropic:Chaboche模型与多线性等向强化混合模型Chaboche and Nonlinear Isotropic:Chaboche模型与非线性等向强化混合模型▪Rate dependent:率相关材料模型▫Visco-plasticity:粘塑模型◦Isotropic Hardening Plasticity:等向强化率相关塑性模型Mises Plasticity:等向强化的Mises 率相关塑性模型Bilinear:双线性模型Multilinear:多线性模型Nonlinear:非线性模型Hill Plasticity:等向强化的Hill 率相关塑性模型Bilinear:双线性模型Multilinear:多线性模型Nonlinear:非线性模型◦Anand’Model:Anand 模型▫Creep蠕变/徐变模型◦Creep only:蠕变模型Mises Potential:Mises 势蠕变模型Explicit:Mises 势显式蠕变模型Implicit:Mises 势隐式蠕变模型1: Strain Harding(Primary)2: Time Harding(Primary)3: Generalized Exponential(Primary)4: Generalized Graham(Primary)5: Generalized Blackburn(Primary)6: Modified Time Harding(Primary)7: Modified Strain Harding(Primary)8: Generalized Garofalo(Secondary)9: Exponential Foam(Secondary)10: Norton(Secondary)11: Time Harding(Primary+Secondary)12: Rational polynomial(Primary+Secondary)Hill Plasticity:Hill 塑性蠕变模型Implicit:Hill 塑性隐式蠕变模型(略,包含Creep only>Mises Potential> Implicit 相同模型)◦With Isotropic Hardening Plasticity:等向强化塑性蠕变模型With Mises Plasticity:Mises 等向强化塑性蠕变模型Bilinear:双线性蠕变模型Explicit:Mises 等向强化塑性的双线性显式蠕变模型Implicit:Mises 等向强化塑性的双线性隐式蠕变模型(略,包含Creep only>Mises Potential> Implicit相同模型)Multilinear:多线性蠕变模型Explicit Mises:等向强化塑性的多线性显式蠕变模型Implicit Mises:等向强化塑性的多线性隐式蠕变模型(略,包含Creep only>Mises Potential> Implicit相同模型)Nonlinear:非线性蠕变模型Explicit Mises:等向强化塑性的非线性显式蠕变模型Implicit Mises:等向强化塑性的非线性隐式蠕变模型(略,包含Creep only>Mises Potential> Implicit相同模型)With Hill Plasticity:Hill 等向强化塑性蠕变模型Bilinear:双线性蠕变模型Explicit:双线性显式蠕变模型Implicit:双线性隐式蠕变模型(略,包含Creep only>Mises Potential> Implicit 相同模型)Multilinear:多线性蠕变模型Explicit:多线性显式蠕变模型Implicit:多线性隐式蠕变模型(略,包含Creep only>Mises Potential> Implicit 相同模型)Nonlinear:非线性蠕变模型Explicit:非线性显式蠕变模型Implicit:非线性隐式蠕变模型(略,包含Creep only>Mises Potential> Implicit 相同模型)◦With Kinematic Hardening Plasticity:随动强化塑性蠕变模型With Mises Plasticity:Mises 随动强化塑性蠕变模型Bilinear:双线性蠕变模型Implicit Mises:随动强化塑性的双线性隐式蠕变模型(略,包含Creep only>Mises Potential> Implicit相同模型)With Hill Plasticity:Hill 随动强化塑性蠕变模型Bilinear:双线性蠕变模型Implicit 双线性隐式蠕变模型(略,包含Creep only>Mises Potential> Implicit 相同模型)◦With Swelling:融涨模型Explicit:显式融涨模型▪Non-metal Plasticity:非金属塑性模型▫Concrete:混凝土模型▫Drucker-Prager:D-P 模型▫Failure Criteria:复合材料失效模型▪Gasket:垫片材料模型▫General Parameters:广义参数模型▫Compression:压缩模型▫Linear Unloading:线性卸载模型▫Nonlinear Unloading:非线性卸载模型▪Cast-Iron:铸铁材料模型▫P lasticity Poisson’s Ratio:广义参数模型▫Uniaxial Compression:单轴压缩模型▫Uniaxial Tension:单轴拉伸模型▪Shape Memory Alloy形状记忆合金●Viscoelastic:非线性的粘弹模型▪Curve Fitting▪Maxwell:Maxwell 模型▪Prony:Prony 模型▫Shear Response:剪切响应模型▫V olumetric Response:体积响应模型▫Shift Function:转换函数模型☺Density:材料的密度☺Thermal Expansion Coef:材料的热膨胀系数●Isotropic:各向同性材料的热膨胀系数●Orthtropic:正交各向异性材料的热膨胀系数☺Damping:材料的阻尼☺Friction Coefficient:材料的摩擦系数☺User Material Options:用户自定义材料模型。