E-Book, Englisch, 292 Seiten, eBook
Reihe: Lecture Notes on Multidisciplinary Industrial Engineering
Dixit / Kant Simulations for Design and Manufacturing
1. Auflage 2018
ISBN: 978-981-10-8518-5
Verlag: Springer Singapore
Format: PDF
Kopierschutz: 1 - PDF Watermark
Select Papers from AIMTDR 2016
E-Book, Englisch, 292 Seiten, eBook
Reihe: Lecture Notes on Multidisciplinary Industrial Engineering
ISBN: 978-981-10-8518-5
Verlag: Springer Singapore
Format: PDF
Kopierschutz: 1 - PDF Watermark
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Weitere Infos & Material
Design and Analysis of an Innovative Nozzle.- Distribution of Electromagnetic Field and Pressure of Single Turn Circular Coil for Magnetic Pulse Welding using FEM.- Computational Fluid Dynamics Analysis of MQL Spray Parameters and its Influence on MQL Milling of SS304.- Pulse Electromagnetic Cladding of Al-Tube on DP Steel Rod.- Design, Development and Computational Analysis of Low Pressure Abrasive Flow Finishing Machine.- Dynamic Analysis of Robotic Manipulator for Incremental Sheet Metal Forming.- Finite Element and Experimental Study of Self-Reacting Friction Stir Welding of Aluminium Alloy AA6061-T6.- Prediction of Critical Thinning during Self-Pierced Riveting of Sheets.- Numerical Prediction of Fracture in Parts formed with Incremental Sheet Forming Process.- Numerical Modeling of Micro-EDM Process using Finite Volume Method.- Experimental Studies and Numerical Simulations of a Displacement Amplifying Compliant Mechanism.- Study on the Delamination of GFRP Composites in Drilling: A Finite Element Model.- A Coupled Thermo-mechanical Model to Predict Forces, Temperature and Material Flow in Friction Stir Welding.- Improving Dynamic Stability of Machine Tool Structure with Operational Modal Analysis.- A Novel Approach for Prediction and Calculation of Sheet Thinning in Incremental Sheet Forming.- Studies on Springback Effect of TIG Welded Ti-6Al-4V Sheets.- Finite Element Analysis of V-shape Incremental ECAP.- Finite Element Method Analysis of Electrochemical Discharge Machine using Explicit Dynamics ANSYS.- Molecular Dynamics Simulation Study of Neck-growth in Micro-selective Laser Sintering of Copper Nanoparticles.