Effects of Non-isothermal Aging on Microstructure and Mechanical Properties of WE43 Alloy

In the present work, the effect of non-isothermal aging (NIA) on the microstructural and mechanical properties of WE43 alloy was investigated by microhardness measurements, transmission electron microscopy observations and tensile tests. The effects of initial and secondary aging temperature and the...

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Published inJournal of materials engineering and performance Vol. 30; no. 11; pp. 7909 - 7916
Main Authors Babacan, Nazim, Yurtkuran, Emre, Balci, Arif, Bieda-Niemiec, Magdalena, Jarzębska, Anna
Format Journal Article
LanguageEnglish
Published New York Springer US 01.11.2021
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Abstract In the present work, the effect of non-isothermal aging (NIA) on the microstructural and mechanical properties of WE43 alloy was investigated by microhardness measurements, transmission electron microscopy observations and tensile tests. The effects of initial and secondary aging temperature and the heating/cooling rate of the NIA processes on the properties were systematically examined. While β″ precipitates formed during the continuous heating from 150 to 250 °C, secondary precipitation was observed in the continuously cooled samples from 250 to 150 °C. Similar mechanical properties compared to the peak-aged T6 sample (at 250 °C for 16 h) were obtained by NIA processes. However, continuous cooling, which leads to high mechanical properties after about 6 h of aging, was more efficient in time. NIA processes performed for the first time on Mg-Y-Nd-based alloys showed that high mechanical properties can be obtained in shorter period by tuning the properties of the precipitates.
AbstractList In the present work, the effect of non-isothermal aging (NIA) on the microstructural and mechanical properties of WE43 alloy was investigated by microhardness measurements, transmission electron microscopy observations and tensile tests. The effects of initial and secondary aging temperature and the heating/cooling rate of the NIA processes on the properties were systematically examined. While β″ precipitates formed during the continuous heating from 150 to 250 °C, secondary precipitation was observed in the continuously cooled samples from 250 to 150 °C. Similar mechanical properties compared to the peak-aged T6 sample (at 250 °C for 16 h) were obtained by NIA processes. However, continuous cooling, which leads to high mechanical properties after about 6 h of aging, was more efficient in time. NIA processes performed for the first time on Mg-Y-Nd-based alloys showed that high mechanical properties can be obtained in shorter period by tuning the properties of the precipitates.
Author Yurtkuran, Emre
Bieda-Niemiec, Magdalena
Jarzębska, Anna
Babacan, Nazim
Balci, Arif
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CitedBy_id crossref_primary_10_1007_s11665_022_06888_0
crossref_primary_10_1007_s11665_023_08154_3
crossref_primary_10_1007_s11665_023_08277_7
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non-isothermal aging
magnesium alloy
mechanical property
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Snippet In the present work, the effect of non-isothermal aging (NIA) on the microstructural and mechanical properties of WE43 alloy was investigated by microhardness...
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SubjectTerms Characterization and Evaluation of Materials
Chemistry and Materials Science
Corrosion and Coatings
Engineering Design
Materials Science
Quality Control
Reliability
Safety and Risk
Tribology
Title Effects of Non-isothermal Aging on Microstructure and Mechanical Properties of WE43 Alloy
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