CHANDRA T. | Department of Materials Engineering, University of Wollongong
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概要
関連著者
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CHANDRA T.
Department of Materials Engineering, University of Wollongong
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Chandra T.
Department Of Materials Engineering University Of Wollongong
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MANOHAR P.
Department of Materials Science and Engineering, Carnegie Mellon University
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Manohar P.
Department Of Materials Engineering University Of Wollongong
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Chandra T
Univ. Wollongong Nsw Aus
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YU D.
Department of Materials Engineering, The University of Wollongong
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Manohar P
Univ. Wollongong Nsw Aus
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Dunne D.
Department Of Materials Engineering The University Of Wollongong
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KILLMORE C.
BHP Steel-Flat Products Division, Port Kembla Steel Works
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Killmore C.
Bhp Steel-slab And Plate Products Division Port Kembla Steel Works
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Dunne D.
Department Of Materials Eng. University Of Wollongong
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DUNNE D.
Department of Materials Engineering, The University of Wollongong
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Ferry M
Univ. New South Wales Nsw Aus
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Barbaro F.
Slab And Plate Products Division Bhp Steel
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FERRY M.
Department of Materials Engineering, University of Wollongong
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Killmore C.
Product Development Bhp Steel-flat Products Division
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SCHMICKL A.
Department of Materials Engineering, University of Wollongong
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LANGLEY D.
Product Development, BHP Steel-Flat Products Division
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Dunne D.
Department Of Materials Engineering University Of Wollongong
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FERRY M.
School of Materials Science and Engineering, University of New South Wales
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Ferry M.
School Of Materials Science And Engineering University Of New South Wales
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Langley D.
Product Development Bhp Steel-flat Products Division
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Schmickl A.
Department Of Materials Engineering University Of Wollongong
著作論文
- Dimensions of Grain Boundary Mobility
- Continuous Cooling Transformation Behaviour of Microalloyed Steels Containing Ti, Nb, Mn and Mo
- Grain Growth Predictions in Microalloyed Steels
- Effect of Large Particles and Fine Precipitates on Recrystallization and Transformation Behaviour of Ti Treated Low Carbon TiO Steel
- Five Decades of the Zener Equation
- Prediction of Ferrite Grain Size after Warm Deformation of Low Carbon Steel
- Influence of Hot Deformation Conditions on the Annealing Behaviour of Cold Rolled Ultra Low Carbon Steel