This book focuses on the plastic property of materials, and the way in which structures made of such material behave under load. It is intended for civil, mechanical, electro-mechanical, marine, and aeronautical engineers for under-graduate or post-graduate courses or research, and professionals in industry. Professor Calladine, from long experience in teaching, research and industry, here delivers a readable and authoritative account of theory and applications. He presents the classical "perfect plasticity material" as a model of irreversible mechanical behaviour, using this perfect plasticity property to analyse a range of continuum structural problems and metal-forming processes relevant to engineering practice.
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This is an excellent and lucidly-written book, warmly recommended to students studying M.Eng or Masters programmes and researchers., Structures and Buildings
Calladine is the person who invented plasticity and it is not a big surprise that he can explain well in his book. It is easy to read, very well structured and it has all you need to know about plasticity in there..-starting off with the simple theorems, he then carries on talking about rotating discs, torsion and indentation problems. Last few chapters are about slip-line fields, circular plates under transverse loading and metal-forming processes.. (wire drawing and extrusion). I started reading this book at university and I believe it it is one of the best reference books about Plasticity., Review by a customer on Amazon.co.uk
This book focuses on the plastic property of materials, and the way in which structures made of such material behave under load. It is intended for civil, mechanical, electro-mechanical, marine, and aeronautical engineers for under-graduate or post-graduate courses or research, and professionals in industry. Professor Calladine, from long experience in teaching, research and industry, here delivers a readable and authoritative account of theory and applications. He presents the classical "perfect plasticity material" as a model of irreversible mechanical behaviour, using this perfect plasticity property to analyse a range of continuum structural problems and metal-forming processes relevant to engineering practice.
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