Proceedings of the 8th International Conference on Manufacturing, Material and Metallurgical Engineering (ICMMME) 2024
Proceedings of the 8th International Conference on Manufacturing, Material and Metallurgical Engineering (ICMMME) 2024
Agarwal, Ramesh K.
Springer International Publishing AG
05/2025
248
Mole
9783031782947
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Numerical Modeling of C45 Steel to Predict the Temperature Ranges for Activation of Dynamic Strain Aging at Different Strain Rates.- Performance Analysis of the Use of Cutting Tools with Functional Geometry in the Processing of Aluminum Alloys used in the Aerospace Industry.- Finite Element Numerical Simulation and Experimental Study of 316L Stainless Steel Wire and Arc Hot Rolling Composite Additive Manufacturing Technology.- Metallurgical and Corrosion Behavior of Wire Arc Additively Manufactured and Thermally Aged AISI 316L.- Study on Microstructure and Mechanical Properties of Non-Contact Ultrasonic-Assisted Laser Metal Deposition at Different Excitation Distances.- Effect of Nb/Cr on Microstructure and Microhardness of Ti-Al Matrix Fabricated via Laser In-situ Alloying.
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Computer Aided Design & Manufacturing;Modelling, Analysis, and Simulation of Manufacturing Processes;Composite Materials Manufacturing;Nanomaterials and Mano-manufacturing;Non-traditional Manufacturing;Semiconductor Materials Manufacturing
Numerical Modeling of C45 Steel to Predict the Temperature Ranges for Activation of Dynamic Strain Aging at Different Strain Rates.- Performance Analysis of the Use of Cutting Tools with Functional Geometry in the Processing of Aluminum Alloys used in the Aerospace Industry.- Finite Element Numerical Simulation and Experimental Study of 316L Stainless Steel Wire and Arc Hot Rolling Composite Additive Manufacturing Technology.- Metallurgical and Corrosion Behavior of Wire Arc Additively Manufactured and Thermally Aged AISI 316L.- Study on Microstructure and Mechanical Properties of Non-Contact Ultrasonic-Assisted Laser Metal Deposition at Different Excitation Distances.- Effect of Nb/Cr on Microstructure and Microhardness of Ti-Al Matrix Fabricated via Laser In-situ Alloying.
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.