Theory of Thermomechanical Processes in Welding [electronic resource] / by Andrzej Służalec.

By: Służalec, Andrzej [author.]Contributor(s): SpringerLink (Online service)Material type: TextTextLanguage: English Publisher: Dordrecht : Springer Netherlands : Imprint: Springer, 2005Description: X, 174 p. online resourceContent type: text Media type: computer Carrier type: online resourceISBN: 9781402029912Subject(s): Engineering | Mechanical engineering | Materials | Surfaces (Physics) | Engineering | Engineering, general | Metallic Materials | Characterization and Evaluation of Materials | Mechanical EngineeringAdditional physical formats: Printed edition:: No titleDDC classification: 620 LOC classification: TA1-2040Online resources: Click here to access online
Contents:
Fundamentals of Welding Thermomechanics -- Description of Welding Deformations -- Stress Tensor -- Thermodynamical Background of Welding Processes -- Motion of Fluids -- Thermomechanical Behaviour -- Numerical Analysis of Welding Problems -- Numerical Methods in Thermomechanics -- Heat Flow in Welding -- Analytical Solutions of Thermal Problems in Welding -- Numerical Solutions of Thermal Problems in Welding -- Welding Stresses and Deformations -- Thermal Stresses in Welding -- Welding Deformations.
In: Springer eBooksSummary: This book presents a modern viewpoint of welding thermomechanics and provides a unified and systematic continuum approach for engineers and applied physicists working on the modelling of welding processes. The theory presented includes developments in the areas of welding thermodynamics, thermoplasticity and numerical methods. The book describes the calculation of thermal stresses in welding structures, the theory of heat conduction in welding, and the basic equations of thermoplasticity, then applies the concepts to solutions of thermoplasticity problems and to thermal stresses in arc welding, laser welding, spot welding, electroslag welding and friction welding.
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Fundamentals of Welding Thermomechanics -- Description of Welding Deformations -- Stress Tensor -- Thermodynamical Background of Welding Processes -- Motion of Fluids -- Thermomechanical Behaviour -- Numerical Analysis of Welding Problems -- Numerical Methods in Thermomechanics -- Heat Flow in Welding -- Analytical Solutions of Thermal Problems in Welding -- Numerical Solutions of Thermal Problems in Welding -- Welding Stresses and Deformations -- Thermal Stresses in Welding -- Welding Deformations.

This book presents a modern viewpoint of welding thermomechanics and provides a unified and systematic continuum approach for engineers and applied physicists working on the modelling of welding processes. The theory presented includes developments in the areas of welding thermodynamics, thermoplasticity and numerical methods. The book describes the calculation of thermal stresses in welding structures, the theory of heat conduction in welding, and the basic equations of thermoplasticity, then applies the concepts to solutions of thermoplasticity problems and to thermal stresses in arc welding, laser welding, spot welding, electroslag welding and friction welding.

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