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Direct Methods for Limit States in Structures and Materials (Hardcover, 2014 ed.): Konstantinos Spiliopoulos, Dieter Weichert Direct Methods for Limit States in Structures and Materials (Hardcover, 2014 ed.)
Konstantinos Spiliopoulos, Dieter Weichert
R4,228 R3,427 Discovery Miles 34 270 Save R801 (19%) Ships in 10 - 15 working days

Knowing the safety factor for limit states such as plastic collapse, low cycle fatigue or ratcheting is always a major design consideration for civil and mechanical engineering structures that are subjected to loads. Direct methods of limit or shakedown analysis that proceed to directly find the limit states offer a better alternative than exact time-stepping calculations as, on one hand, an exact loading history is scarcely known, and on the other they are much less time-consuming. This book presents the state of the art on various topics concerning these methods, such as theoretical advances in limit and shakedown analysis, the development of relevant algorithms and computational procedures, sophisticated modeling of inelastic material behavior like hardening, non-associated flow rules, material damage and fatigue, contact and friction, homogenization and composites.

Direct Methods for Limit States in Structures and Materials (Paperback, Softcover reprint of the original 1st ed. 2014):... Direct Methods for Limit States in Structures and Materials (Paperback, Softcover reprint of the original 1st ed. 2014)
Konstantinos Spiliopoulos, Dieter Weichert
R3,366 Discovery Miles 33 660 Ships in 18 - 22 working days

Knowing the safety factor for limit states such as plastic collapse, low cycle fatigue or ratcheting is always a major design consideration for civil and mechanical engineering structures that are subjected to loads. Direct methods of limit or shakedown analysis that proceed to directly find the limit states offer a better alternative than exact time-stepping calculations as, on one hand, an exact loading history is scarcely known, and on the other they are much less time-consuming. This book presents the state of the art on various topics concerning these methods, such as theoretical advances in limit and shakedown analysis, the development of relevant algorithms and computational procedures, sophisticated modeling of inelastic material behavior like hardening, non-associated flow rules, material damage and fatigue, contact and friction, homogenization and composites.

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