Taylor & Francis

Durability Analysis of Structural Composite Systems - Hardback

Edition: 1st Edition
Subjects: Engineering, Environmental science, engineering & technology
ISBN13: 9789054106401
Published: 01 Jan 1996

Format - Hardback
By Albert H. Cardon

Usually ready in 7-10 days.

Regular price A$252.00
Sale price A$252.00 Regular price A$315.00

Durability Analysis of Structural Composite Systems - Hardback

Regular price A$252.00
Sale price A$252.00 Regular price A$315.00
Product description

Durability analysis can be defined as the prediction methodology of safe residual behaviour after a given life time under a complex mechanical loading history in combination with a program of environmental variations. This was, and is a central problem for the reliability of structural components whatever are the basic material systems. With composite systems, combination of different materials in interaction, an integrated material structure design becomes possible. If one of the phases is a polymer, the composite system has time dependent properties and as consequence durability analysis has to be performed taking into account the internal time factor in combination with strong influences from temperature changes and moisture diffusion. Insurance companies need information on durability and reliability in order to cover the risks, and in the event of failure lawyers have to arrive at an agreement om the responsibilites of the different actors involved in the constructiion. This book is an overview of the state of the different aspects of safe structural integrity for a given lifetime of composite structures, with special emphasis on polymer matrix composites. It is of interest for scientists and engineers involved in composites and for designers of composite structural components.

Shipping & Return

Shipping cost is based on weight. Just add products to your cart and use the Shipping Calculator to see the shipping price.

We want you to be 100% satisfied with your purchase. Items can be returned or exchanged within 30 days of delivery.