搜索资源列表
viscosylinder
- 梁的粘性材料用户子程序开发,采用四节点轴对称单元。-ABAQUS subroutine for viscous elastic beams using 4-node axisymetric element
UMAT
- A UMAT Drucker subroutine to be used in Abaqus.
abaqus 复合材料损伤问题
- abaqus 复合材料损伤问题 子程序开发-abaqus composite damage subroutine development
UMAT_Damage
- 对于abaqus子程序学习的初学者,这是一个学习umat的很好算例,-Abaqus subroutine for beginners to learn, this is a good example to learn umat,
nvumat
- abaqus子程序vuamt,可用于显式分析-abaqus subroutine vuamt, can be used to explicitly analyze
FRIC
- abaqus子程序fric摩擦材料clough-duncan模型,二三维通用,已经验证-abaqus subroutine frictional material fric
surface_DLOAD
- Abaqus DLOAD 非均匀分布载荷子程序-Abaqus subroutine Dload of nonuniform distributed load
R_K_Waspalloy
- Creep abaqus subroutine for Robotov Kachanov, using WASPALOY
MAT
- first try learning abaqus subroutine
UEL_XFEM
- 本例是研究断裂问题的ABAQUS 子程序代码,使用Fortran语言编辑,研究扩展有限元的同志们可以借鉴一下。-This example is the study of fracture problems ABAQUS subroutine code, Fortran language editing, extended finite element study comrades can learn it.
3-NODE-triangular-element-for-uel
- ABAQUS 平面三角形单元 uel子程序-ABAQUS subroutine flat triangular element uel
umat
- ABAQUS子程序umat自定义材料本构模型的实例详细解释,帮助umat初学者掌握编程过程,进一步实现自己编程进行模拟的目的-ABAQUS subroutine UMAT custom material constitutive model of the case in detail to explain, to help beginners master the UMAT programming process, to further realize the purpose of their
subroutine
- ABAQUS DFLUX热源密度子程序(ABAQUS DFLUX heat source density subroutine)
AbaqusStandard+1.1.22+UEL子程序
- 基于ABAQUS的非线性有限元分析,用户可以通过自身需求定义非线性单元,使用户自定义单元子程序可满足更多计算需求。(ABAQUS User subroutine to define an element.)
johnson-cook
- johnson-cook本构umat子程序(johnson-cook.for abaqus umat subroutine)
1-Writing User Subroutines with ABAQUS
- ABAQUS平台,用户子程序编写教程,基础教学说明(abaqus user subroutine course)
frictional model and umat
- frictional model to analysis in abaqus, a good subroutine to build a new frictional relationship
Abaqus用户子程序VUMAT
- abaqus vumat用户子程序,Hashin准则,使用3D实体单元(Abaqus vumat user subroutine, Hashin criterion, using 3D solid elements)
ABAQUS+UMAT+FORTRAN
- ABAQUS中用户材料子程序UMAT的开发主要解决两方面的问题:本构模型的建立和积分算法的选择。 本文主要研究非线性材料的UMAT实现方法,并重点研究其迭代算法部分,目前,用户材料子程序UMAT的迭代算法主要是常刚度法,常刚度法的优点在于算法原理较简单,程序编写较方便,缺点是当遇到复杂非线性材料时,其迭代次数较多,收敛速度也较慢,在这个情况下,本文采取的是一种迭代次数较少且收敛速度较快的切线刚度法,具体就是采用FORTRAN语言编制了基于Von-Mises模型的接口程序,并采用切线刚度算
Abaqus+VS+fortran
- abaqus子程序学习资料,欢迎大家下载学习,共同讨论~(ABAQUS subroutine learning materials)