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Fracture Mechanics In Layered And Graded Solids Analysis Using Boundary Element Methods Tian Xiaohong Quentin Zhong Qi Yue Higher Education Press

  • SKU: BELL-51109602
Fracture Mechanics In Layered And Graded Solids Analysis Using Boundary Element Methods Tian Xiaohong Quentin Zhong Qi Yue Higher Education Press
$ 31.00 $ 45.00 (-31%)

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Fracture Mechanics In Layered And Graded Solids Analysis Using Boundary Element Methods Tian Xiaohong Quentin Zhong Qi Yue Higher Education Press instant download after payment.

Publisher: De Gruyter
File Extension: PDF
File size: 20.94 MB
Pages: 317
Author: Tian Xiaohong; Quentin Zhong Qi Yue; Higher Education Press
ISBN: 9783110297973, 3110297973
Language: English
Year: 2014

Product desciption

Fracture Mechanics In Layered And Graded Solids Analysis Using Boundary Element Methods Tian Xiaohong Quentin Zhong Qi Yue Higher Education Press by Tian Xiaohong; Quentin Zhong Qi Yue; Higher Education Press 9783110297973, 3110297973 instant download after payment.

Mechanical responses of solid materials are governed by their material properties. The solutions for estimating and predicting the mechanical responses are extremely difficult, in particular for non-homogeneous materials. Among these, there is a special type of materials whose properties are variable only along one direction, defined as graded materials or functionally graded materials (FGMs). Examples are plant stems and bones. Artificial graded materials are widely used in mechanical engineering, chemical engineering, biological engineering, and electronic engineering.


This work covers and develops boundary element methods (BEM) to investigate the properties of realistic graded materials. It is a must have for practitioners and researchers in materials science, both academic and in industry.


  • Covers analysis of properties of graded materials.
  • Presents solutions based methods for analysis of fracture mechanics.
  • Presents two types of boundary element methods for layered isotropic materials and transversely isotropic materials.
  • Written by two authors with extensive international experience in academic and private research and engineering.

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