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Extended Finite Element Method - Tsinghua University Press Computational Mechanics Series (Hardcover): Zhuo Zhuang, Zhanli Liu,... Extended Finite Element Method - Tsinghua University Press Computational Mechanics Series (Hardcover)
Zhuo Zhuang, Zhanli Liu, Binbin Cheng, Jianhui Liao
R2,180 Discovery Miles 21 800 Ships in 12 - 17 working days

"Extended Finite Element Method" provides an introduction to the extended finite element method (XFEM), a novel computational method which has been proposed to solve complex crack propagation problems. The book helps readers understand the method and make effective use of the XFEM code and software plugins now available to model and simulate these complex problems.

The book explores the governing equation behind XFEM, including level set method and enrichment shape function. The authors outline a new XFEM algorithm based on the continuum-based shell and consider numerous practical problems, including planar discontinuities, arbitrary crack propagation in shells and dynamic response in 3D composite materials.
Authored by an expert team from one of China's leading academic and research institutionsOffers complete coverage of XFEM, from fundamentals to applications, with numerous examplesProvides the understanding needed to effectively use the latest XFEM code and software tools to model and simulate dynamic crack problems

Dislocation Mechanism-Based Crystal Plasticity - Theory and Computation at the Micron and Submicron Scale (Paperback): Zhuo... Dislocation Mechanism-Based Crystal Plasticity - Theory and Computation at the Micron and Submicron Scale (Paperback)
Zhuo Zhuang, Zhanli Liu, Yinan Cui
R4,271 R3,964 Discovery Miles 39 640 Save R307 (7%) Ships in 12 - 17 working days

Dislocation Based Crystal Plasticity: Theory and Computation at Micron and Submicron Scale provides a comprehensive introduction to the continuum and discreteness dislocation mechanism-based theories and computational methods of crystal plasticity at the micron and submicron scale. Sections cover the fundamental concept of conventional crystal plasticity theory at the macro-scale without size effect, strain gradient crystal plasticity theory based on Taylar law dislocation, mechanism at the mesoscale, phase-field theory of crystal plasticity, computation at the submicron scale, including single crystal plasticity theory, and the discrete-continuous model of crystal plasticity with three-dimensional discrete dislocation dynamics coupling finite element method (DDD-FEM). Three kinds of plastic deformation mechanisms for submicron pillars are systematically presented. Further sections discuss dislocation nucleation and starvation at high strain rate and temperature effect for dislocation annihilation mechanism.

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