Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1575716 | Materials Science and Engineering: A | 2014 | 7 Pages |
Abstract
The martensitic phase transformation behavior and its relations with the macroscopic hardening rate and the evolutions in the crystallographic texture of the constituent phases were studied for a 304L stainless steel that exhibits the transformation induced plasticity (TRIP) phenomenon. Time-of-flight neutron diffraction was used to measure the evolutions of phase fractions and texture in terms of pole figures as a function of the applied compressive strain at the liquid nitrogen temperature (77Â K). The phase transformation analyses show that the hcp-martensite phase fraction reaches a significant level of about 22Â wt% at 15% applied strain and remains constant. The bcc-martensite phase fraction increases continuously with the deformation that correlates well with the macroscopic hardening behavior. Furthermore, the texture analyses show that transformation has dominant effect on the bcc-martensite texture evolution with little influence from subsequent plastic deformation at current testing conditions.
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Physical Sciences and Engineering
Materials Science
Materials Science (General)
Authors
Ercan Cakmak, Sven C. Vogel, Hahn Choo,