A Hierarchical Approach to Fracture Mechanics (Paperback)

,
Recent research conducted under NASA LaRC's Creativity and Innovation Program has led to the development of an initial approach for a hierarchical fracture mechanics. This methodology unites failure mechanisms occurring at different length scales and provides a framework for a physics-based theory of fracture. At the nanoscale, parametric molecular dynamic simulations are used to compute the energy associated with atomic level failure mechanisms. This information is used in a mesoscale percolation model of defect coalescence to obtain statistics of fracture paths and energies through Monte Carlo simulations. The mathematical structure of predicted crack paths is described using concepts of fractal geometry. The non-integer fractal dimension relates geometric and energy measures between meso- and macroscales. For illustration, a fractal-based continuum strain energy release rate is derived for inter-and transgranular fracture in polycrystalline metals.

R417

Or split into 4x interest-free payments of 25% on orders over R50
Learn more

Discovery Miles4170
Delivery AdviceOut of stock

Toggle WishListAdd to wish list
Review this Item

Product Description

Recent research conducted under NASA LaRC's Creativity and Innovation Program has led to the development of an initial approach for a hierarchical fracture mechanics. This methodology unites failure mechanisms occurring at different length scales and provides a framework for a physics-based theory of fracture. At the nanoscale, parametric molecular dynamic simulations are used to compute the energy associated with atomic level failure mechanisms. This information is used in a mesoscale percolation model of defect coalescence to obtain statistics of fracture paths and energies through Monte Carlo simulations. The mathematical structure of predicted crack paths is described using concepts of fractal geometry. The non-integer fractal dimension relates geometric and energy measures between meso- and macroscales. For illustration, a fractal-based continuum strain energy release rate is derived for inter-and transgranular fracture in polycrystalline metals.

Customer Reviews

No reviews or ratings yet - be the first to create one!

Product Details

General

Imprint

Bibliogov

Country of origin

United States

Release date

July 2013

Availability

Supplier out of stock. If you add this item to your wish list we will let you know when it becomes available.

First published

July 2013

Creators

Authors

,

Dimensions

246 x 189 x 2mm (L x W x T)

Format

Paperback - Trade

Pages

32

ISBN-13

978-1-287-26726-3

Barcode

9781287267263

Categories

LSN

1-287-26726-2



Trending On Loot