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Erschienen in: Metallurgical and Materials Transactions A 1/2021

09.11.2020

Quantitative Investigation on the Slip/Twinning Activity and Cracking Behavior During Low-Cycle Fatigue of an Extruded Mg-3Y Sheet

verfasst von: Y. C. Deng, Z. J. Huang, T. J. Li, D. D. Yin, J. Zheng

Erschienen in: Metallurgical and Materials Transactions A | Ausgabe 1/2021

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Abstract

The slip/twinning activity and cracking behavior of an extruded Mg-3Y sheet during strain-controlled tension-compression low-cycle fatigue (LCF) at room temperature were studied quantitatively and statistically by slip trace analysis and EBSD-based misorientation analysis combined with SEM. The twinned area fraction was 1.7 pct after 200 cycles indicating that twinning contributed limited plastic deformation, and only tension twins were observed. Among 989 grains analyzed, 11.4 pct grains exhibited observable slip traces. Basal slip, with a relative frequency of 81.4 pct, was the dominant deformation mode, and pyramidal II slip (12.4 pct) also exhibited a high activity. The slip-dominated deformation was responsible for the symmetrical hysteresis loops. Among the total 311 cracks observed after 200 cycles, 80.1 pct were intergranular and 19.9 pct were transgranular. The appearance of the two kinds of cracks was closely related. Persistent slip band (PSB, 13.8 pct) and twin (TW, 5.5 pct) were two key transgranular crack initiation sites. The PSB cracking fraction (cracked PSBs/total PSBs) for different slip modes followed pyramidal II (64 pct) > basal (36 pct) > prismatic (14 pct). Strain localization was likely to be responsible for the high cracking fraction of pyramidal II PSBs, which was consistent with their small normalized Schmid factors and the heterogeneous distribution of geometrically necessary dislocation density. Slip/Twinning transfers at grain boundary were also occasionally observed and they were closely associated with transgranular cracks.

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Metadaten
Titel
Quantitative Investigation on the Slip/Twinning Activity and Cracking Behavior During Low-Cycle Fatigue of an Extruded Mg-3Y Sheet
verfasst von
Y. C. Deng
Z. J. Huang
T. J. Li
D. D. Yin
J. Zheng
Publikationsdatum
09.11.2020
Verlag
Springer US
Erschienen in
Metallurgical and Materials Transactions A / Ausgabe 1/2021
Print ISSN: 1073-5623
Elektronische ISSN: 1543-1940
DOI
https://doi.org/10.1007/s11661-020-06083-7

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