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Fracture mechanics : integration of mechanics, materials science, and chemistry

Author: Robert Peh-ying Wei
Publisher: New York : Cambridge University Press, 2010.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
"Fracture and 'slow' crack growth reflect the response of a material (i.e., its microstructure) to the conjoint actions of mechanical and chemical driving forces and are affected by temperature. There is therefore a need for quantitative understanding and modeling of the influences of chemical and thermal environments and of microstructure, in terms of the key internal and external variables, and for their  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Wei, Robert Peh-ying, 1931-
Fracture mechanics.
New York : Cambridge University Press, 2010
(DLC) 2009044098
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Robert Peh-ying Wei
ISBN: 052119489X 9780521194891 9780511684715 0511684711 9780511685972 0511685971 9780511806865 0511806868 9780511676994 0511676999 0511681488 9780511681486 9780511682605 0511682603
OCLC Number: 647920105
Description: 1 online resource (xvi, 214 pages) : illustrations
Contents: 1. Introduction --
2. Physical basis of fracture mechanics --
3. Stress analysis of cracks --
4. Experimental determination of fracture toughness --
5. Fracture considerations for design (safety) --
6. Subcritical crack growth : creep-controlled crack growth --
7. Subcritical crack growth : stress corrosion cracking and fatigue crack growth (phenomenology) --
8. Subcritical crack growth --
environmentally enhanced crack growth under sustained loads (or stress corrosion cracking) --
9. Subcritical crack growth : environmentally enhanced fatigue crack growth (or corrosion fatigue) --
10. Science-based probability modeling and life-cycle engineering and management.
Responsibility: Robert Wei.

Abstract:

This text integrates fracture mechanics, surface and electrochemistry, materials science, probability and statistics to address fracture safety and durability issues.  Read more...

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