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Fatigue of Fiber-reinforced Composites

Fatigue of Fiber-reinforced Composites

by Thomas Keller and Anastasios P. Vassilopoulos
Hardback
Publication Date: 14/07/2011

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Fatigue has long been recognized as a mechanism that can provoke catastrophic material failure in structural applications and researchers are now turning to the development of prediction tools in order to reduce the cost of determining design criteria for any new material. Fatigue of Fiber-reinforced Composites explains these highly scientific subjects in a simple yet thorough way.

Fatigue behavior of fiber-reinforced composite materials and structural components is described through the presentation of numerous experimental results. Many examples help the reader to visualize the failure modes of laminated composite materials and structural adhesively bonded joints. Theoretical models, based on these experimental data, are demonstrated and their capacity for fatigue life modeling and prediction is thoroughly assessed.

Fatigue of Fiber-reinforced Composites gives the reader the opportunity to learn about methods for modeling the fatigue behavior of fiber-reinforced composites, about statistical analysis of experimental data, and about theories for life prediction under loading patterns that produce multiaxial fatigue stress states. The authors combine these theories to establish a complete design process that is able to predict fatigue life of fiber-reinforced composites under multiaxial, variable amplitude stress states. A classic design methodology is presented for demonstration and theoretical predictions are compared to experimental data from typical material systems used in the wind turbine rotor blade industry.

Fatigue of Fiber-reinforced Composites also presents novel computational methods for modeling fatigue behavior of composite materials, such as artificial neural networks and genetic programming, as a promising alternative to the conventional methods. It is an ideal source of information for researchers and graduate students in mechanical engineering, civil engineering and materials science.
ISBN:
9781849961806
9781849961806
Category:
Materials science
Format:
Hardback
Publication Date:
14-07-2011
Language:
English
Publisher:
Springer London Ltd
Country of origin:
United Kingdom
Pages:
238
Dimensions (mm):
235x155x15mm
Weight:
0.55kg
Thomas Keller

Thomas Keller, author of The French Laundry Cookbook, Bouchon, Under Pressure, Ad Hoc at Home, and Bouchon Bakery, has six restaurants and five bakeries in the United States.

He is the first and only American chef to have two Michelin Guide three-star-rated restaurants, the French Laundry and Per Se, both of which continue to rank among the best restaurants in America and the world. In 2011 he was designated a Chevalier of the French Legion of Honor, the first American male chef to be so honored.

That same year, he launched Cup4Cup, the first gluten-free flour that replaces traditional all-purpose flour or whole wheat flour in any recipe, cup for cup, such that you’d never know the difference.

As part of the ment’or BKB Foundation, established with chefs Jerome Bocuse and Daniel Boulud, Keller led Team USA to win silver at the 2015 Bocuse d’Or competition in Lyon, France, which was the first time the United States has ever placed on the podium.

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