Improving Elevated-Temperature Strength of an Al–Mn–Si Alloy by Strain-Induced Precipitation
Author:
Funder
National Natural Science Foundation of China
Publisher
MDPI AG
Subject
General Materials Science,Metals and Alloys
Link
http://www.mdpi.com/2075-4701/8/6/446/pdf
Reference24 articles.
1. Tensile, Fatigue, and Creep Properties of Aluminum Heat Exchanger Tube Alloys for Temperatures from 293 K to 573 K (20 °C to 300 °C)
2. Development of Al–Mn–Mg 3004 alloy for applications at elevated temperature via dispersoid strengthening
3. Quantitative study on the precipitation behavior of dispersoids in DC-cast AA3003 alloy during heating and homogenization
4. Precipitation of partially coherent α-Al(Mn,Fe)Si dispersoids and their strengthening effect in AA 3003 alloy
5. Dispersoid strengthening in AA3xxx alloys with varying Mn and Si content during annealing at low temperatures
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1. Heat Treatment of Aluminum Alloys with the Natural Combination of Dopants;Materials;2022-08-12
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3. Issues and Requirements for Aluminum Alloys Used in Aircraft Components: State of the Art;Russian Journal of Non-Ferrous Metals;2021-03
4. Solidification and Precipitation Microstructure Simulation of a Hypereutectic Al–Mn–Fe–Si Alloy in Semi-Quantitative Phase-Field Modeling with Experimental Aid;Metals;2020-10-03
5. Investigation on Contact Heating of Aluminum Alloy Sheets in Hot Stamping Process;Metals;2019-12-12
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