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Cooling routes and microstructure development in AHSS. Source: Adapted from...
Available to Purchase
in Advanced High-Strength Steels
> Advanced-High Strength Steels: Science, Technology, and Applications
Published: 01 August 2013
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Published: 01 June 2008
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Microstructure development for a 5 wt% germanium and aluminum-germanium all...
Available to Purchase
in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
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Microstructure development for a 20 wt% germanium and aluminum-germanium al...
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in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
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Microstructure development of a 51.6 wt% germanium and aluminum-germanium a...
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in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
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Microstructure development for an 80 wt% germanium and aluminum-germanium a...
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in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
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in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
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Microstructure development for an 85 wt% manganese and copper-manganese all...
Available to Purchase
in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
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in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
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in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
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Microstructure development for a 0.25 wt% carbon steel from 1700 to 1250 °C...
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in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
Fig. A25 Microstructure development for a 0.25 wt% carbon steel from 1700 to 1250 °C (3090 to 2280 °F)
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Microstructure development during the solidification of a 0.75 wt% carbon s...
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in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
Fig. A27 Microstructure development during the solidification of a 0.75 wt% carbon steel from 1700 to 1300 °C (3090 to 2370 °F)
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in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
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in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
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Microstructure development of an 88 wt% manganese and copper-manganese allo...
Available to Purchase
in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
Image
in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
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in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
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in Phase Diagram Problems and Solutions
> Phase Diagrams: Key Topics in Materials Science and Engineering
Published: 31 January 2024
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Cooling routes and microstructure development in advanced high-strength ste...
Available to Purchase
in Advanced High-Strength Steels
> Advanced High-Strength Steels: Science, Technology, and Applications, Second Edition
Published: 31 October 2024
Fig. 3.7 Cooling routes and microstructure development in advanced high-strength steels. TRIP, transformation-induced plasticity. Adapted from Ref 3.7
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Transmission electron micrograph of spinodal microstructure developed in a ...
Available to PurchasePublished: 01 October 2011
Fig. 14.9 Transmission electron micrograph of spinodal microstructure developed in a 66.3Cu-30Ni-2.8Cr (wt%) alloy during slow cooling from 950 °C (1740 °F). The microstructure is homogeneous up to the grain boundary indicated by the arrow. Original magnification: 35,000×. Source: Ref 14.6
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