Artikel
Open Access
Improvement of Low Temperature Fracture Toughness of AIST 403 Stainless Steel by Microalloying and Heat Treatment
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G. Gupta,
, S. Wadekar, , J.S. Dubey, , R.T. Savalia, , K.S. Balakrishnan, , S. Anantharaman, , Y.V. Kamatian, und J.K. Chadravarty,
Veröffentlicht/Copyright:
6. Mai 2011
Published Online: 2011-05-06
Published in Print: 1997-04
©2011 by Walter de Gruyter GmbH & Co.
Artikel in diesem Heft
- TABLE OF CONTENTS
- Electrochemical Evaluation of Aging of Al-Zn Mg Alloys
- Dwell Sensitivity Fatigue Behaviour of High Temperature Materials
- An Analysis of a Set of Creep-Strain and Time-to-Creep Fracture Data for a SCR-1Mo-0.2V Steel
- Effective Pair Potentials of a Binary Fluid Mixture and their Application to Molten Salts
- Studies and Preparation of Hafnium Metal
- Fracture Micromechanisms of Strengthened Al-Al4-C3 Systems
- Internal Distribution of Lattice Defects and Splitting in Lamp Grade Tungsten Wires Deformed by Torsion
- Improvement of Low Temperature Fracture Toughness of AIST 403 Stainless Steel by Microalloying and Heat Treatment
Creative Commons
BY-NC-ND 3.0
Artikel in diesem Heft
- TABLE OF CONTENTS
- Electrochemical Evaluation of Aging of Al-Zn Mg Alloys
- Dwell Sensitivity Fatigue Behaviour of High Temperature Materials
- An Analysis of a Set of Creep-Strain and Time-to-Creep Fracture Data for a SCR-1Mo-0.2V Steel
- Effective Pair Potentials of a Binary Fluid Mixture and their Application to Molten Salts
- Studies and Preparation of Hafnium Metal
- Fracture Micromechanisms of Strengthened Al-Al4-C3 Systems
- Internal Distribution of Lattice Defects and Splitting in Lamp Grade Tungsten Wires Deformed by Torsion
- Improvement of Low Temperature Fracture Toughness of AIST 403 Stainless Steel by Microalloying and Heat Treatment