Transformation Induced Plasticity (TRIP) steels have both high strength and high ductility. Retained austenite in the microstructure, upon straining, transforms to martensite and this absorbs energy and improves the work hardening of the steel, giving improved elongation.
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Effects of Tensile Specimen Geometry and Gripping System on the Mechanical Stability of Ausferrite in Austempered Ductile Irons. [PDF]
Fu L +8 more
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Accelerated age-hardening kinetics in additively manufactured 18Ni(300) maraging steel. [PDF]
Sajjadivand S +4 more
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Toughness enhancement by massive dislocation absorption at the crack front. [PDF]
Zhang J +9 more
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The Effect of In Situ Heat Treatment on the Microstructure and Mechanical Properties of H13 Tool Steel Specimens Produced by Laser-Engineered Net Shaping (LENS<sup>®</sup>). [PDF]
Rothen-Chaja M +5 more
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Cyclic Superelasticity, Elastocaloric Effect, and Shape Memory Effect of Solution-Treated Ti<sub>50</sub>Ni<sub>41</sub>Cu<sub>7</sub>Co<sub>2</sub> Alloy. [PDF]
Choudhry NK, Chou DS, Chen CH.
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Mechanical Response and Functional Performance of Heat-Treated LPBF NiTi Shape Memory Alloys. [PDF]
Ratajski J +6 more
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Analysis of Fatigue Property of the Aviation Gear Steel 15Cr14Co12Mo5Ni2 During High-Temperature Carburizing and Quenching. [PDF]
Feng W, Zhou Y, Zhang Y, Wang R, Zhao X.
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Stability of Retained Austenite in Austempered Ductile Iron under the Stress
UEDA, Yoshisada +3 more
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Design concept and phase transformation study of advanced bainitic-austenitic medium-Mn steel. [PDF]
Wojtacha A +6 more
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