
Computational Welding Mechanics for Engineering Application
Buckling Distortion of Thin Plate and Residual Stress of Thick Plate
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Product details:
- Edition number 1
- Publisher CRC Press
- Date of Publication 28 November 2025
- ISBN 9781032580982
- Binding Paperback
- No. of pages241 pages
- Size 234x156 mm
- Weight 453 g
- Language English
- Illustrations 152 Illustrations, black & white; 78 Halftones, black & white; 74 Line drawings, black & white; 24 Tables, black & white 700
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Short description:
The book deals with two special issues in the field of computational welding mechanics: buckling distortion of thin plate and residual stress of thick plate.
MoreLong description:
Computational Welding Mechanics for Engineering Application: Buckling Distortion of Thin Plate and Residual Stress of Thick Plate deals with two special issues in the field of computational welding mechanics: buckling distortion of thin plate and residual stress of thick plate.
Through experiment, theory, and computational analysis, the authors systematically introduce the latest progress and achievements of computational welding mechanics, such as weld buckling in lightweight fabrication and residual stress in HTSS thick plate welding. In addition, they also explore its application to address real-world engineering problems in advanced manufacturing, such as precision manufacturing and mechanical performance evaluation.
The book will be of interest to scholars and engineers of computational welding mechanics who wish to represent the welding mechanics response, predict the distribution and magnitude of mechanical variables, or optimize the welding technique to improve the manufacturing quality.
MoreTable of Contents:
1 Introduction 2 Elementary Theories and Method 3 C-Mn Thin Plates Butt Welding and Measurement 4 Butt Welding Buckling Prediction with FE Analysis 5 Parameter Sensitivity Analysis of Thermal Tension Techniques 6 Fillet Welding Buckling Experiment 7 Thick Plate Butt Welding and Measurement 8 Residual Stress Evaluations with FE Analysis 9 Fracture of Welded Joint with GTN Model
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