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? Ebook Mechanics of Materials and Interfaces: The Disturbed State Concept, by Chandrakant S. Desai

Ebook Mechanics of Materials and Interfaces: The Disturbed State Concept, by Chandrakant S. Desai

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Mechanics of Materials and Interfaces: The Disturbed State Concept, by Chandrakant S. Desai

Mechanics of Materials and Interfaces: The Disturbed State Concept, by Chandrakant S. Desai



Mechanics of Materials and Interfaces: The Disturbed State Concept, by Chandrakant S. Desai

Ebook Mechanics of Materials and Interfaces: The Disturbed State Concept, by Chandrakant S. Desai

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Mechanics of Materials and Interfaces: The Disturbed State Concept, by Chandrakant S. Desai

The disturbed state concept (DSC) is a unified, constitutive modelling approach for engineering materials that allows for elastic, plastic, and creep strains, microcracking and fracturing, stiffening or healing, all within a single, hierarchical framework. Its capabilities go well beyond other available material models yet lead to significant simplifications for practical applications. Until now, however, there has been no resource that fully describes the theory, techniques, and potential of this powerful method.

Mechanics of Materials and Interfaces: Disturbed State Concept presents a detailed theoretical treatment of the DSC and shows that it can provide a unified and simplified approach for mathematical characterization of the mechanical response of materials and interfaces. Within this comprehensive treatment, the author:

  • Compares the DSC with other available models
  • Identifies the physical meaning of the relevant parameters and presents procedures to determine them from laboratory test data
  • Validates the DSC models with respect to laboratory tests used to find the parameters and independent tests not used in the calibration
  • Implements the models in computer procedures
  • Validates those procedures by comparing predictions with observations from simulated and field boundary value problems
  • Solves problems from a variety of disciplines, including civil, mechanical, and electrical engineering

    If you are involved in the mechanics of materials, you owe it to yourself to explore the disturbed state concept. Mechanics of Materials and Interfaces provides the first-and to date, the only-comprehensive means of doing so.
    • Sales Rank: #6824710 in Books
    • Published on: 2000-12-20
    • Original language: English
    • Number of items: 1
    • Dimensions: 9.25" h x 6.50" w x 1.75" l, 2.59 pounds
    • Binding: Hardcover
    • 712 pages

    Review
    "a very comprehensive, yet mainly traditional, book on mathematical modelling aimed essentially at the chemical engineering and related areas -- although I would feel happy about recommending this book to anyone interested in mathematical modelling in any area of science and engineeringa great readIt ranges over many applicationsthe treatment in each case takes no prisoners, and is very sophisticated -- it is definitely addressed to the competent mathematics graduatePlenty of references for further reading and many exercises, projects, etc, make this another gold-mine." - The Mathematical Gazette, November 2001 "The author's writing style is frank, simple and directbook is quite readableaccessible to a wide variety of readers." --RL Houston

    Most helpful customer reviews

    3 of 6 people found the following review helpful.
    An interesting book
    By S.K. Jain
    The book presents the disturbed state concept, or the concept of correction functions, as it applies to the modeling of engineering materials. The book is well written, simple to understand, and full of new ideas.
    I take great pride in stating that my thesis under the author, Professor C.S. Desai, at Virginia Tech in 1979 was the beginning of what the author has named "The Disturbed State Concept." The thesis was subsequently published as a book:
    "Fundamental Aspects of the Normality Rule and Their Role in Deriving Constitutive Laws of Soils," EP, 1980.
    At that time a flier for the book read, "This book which establishes a link between theoretical mechanics and engineering is the only one available of its kind." The same can be said of the book by Professor Desai.
    In essence, the Disturbed State Concept (DSC) says that for some materials, well founded equations of theoretical mechanics apply only when a material has attained some characteristic state called the fully adjusted state (FA) by the author. For other states, we must incorporate suitably chosen correction functions in order to model the OBSERVED material behavior. The correction functions attain a value of unity at the the characteristic state.
    A typical example of the characteristic state is the critical state attained by a class of geomaterials at some unique combination of stress, strain, and internal structure.
    The author asserts that with the help of DSC, we are able to apply some standard concepts of theoretical mechanics, e.g. the Drucker-Prager associative plasticity to a nonstandard material behavior such as nonassociative plasticity.
    The beauty of the concept lies in its simplicity -- to an extent that the concept appears childish at times -- yet the concept gives us a powerful tool for making some abstract notions of mechanics work for engineering.
    In the beginning chapter on introduction, the author sounds like a professor of Budhists Philosophy. Here is an excerpt.
    "For a given material, the fully adjusted state can be described as the critical state at which the material approaches the state of invariant properties......The critical state is like the state Buddhist call NIRVANA, in which all biases, pushes, and pulls, due to KARMIC action (like nonsymmetric forces on materials, say, causing shear stresses), disappear, leading to the equilibrium or isotropic state."
    An interesting chapter on DSC has recently appeared in the following book.
    "Modeling in Geomechanics," Eds. M. Zaman, G. Gioda and J. Booker, Wiley, 2000.

    4 of 4 people found the following review helpful.
    A great reference book
    By A Customer
    I found this book to be an excellent source for engineering students and practitioners. The distinguishing feature of the book is the way in which it introduces reader to complex modelling concepts in an easy to understand manner, covering both ordinary and partial differential equations. The book is rich in practical examples, and useful tables and graphs. Earlier prints suffer from typographical errors that are found to be corrected in the latest print of the book.

    See all 2 customer reviews...

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