Influence of Boron on the Creep Behavior and the Microstructure of Particle Reinforced Aluminum Matrix Composites
Author:
Funder
Deutsche Forschungsgemeinschaft
Publisher
MDPI AG
Subject
General Materials Science,Metals and Alloys
Link
http://www.mdpi.com/2075-4701/8/2/110/pdf
Reference30 articles.
1. High-strength aluminum-based light-weight materials for safety components – recent progress by microstructural refinement and particle reinforcement
2. Influence of milling atmosphere on the high-energy ball-milling process of producing particle-reinforced aluminum matrix composites;Siebeck,2013
3. Herstellung einer partikelverstärkten AlCuMgMn-Legierung durch mechanisches Legieren
4. Hochenergie-Kugelmahlen zur Herstellung partikelverstärkter AMCs mit hochfester, maßgeschneiderter Aluminummatrix;Siebeck,2013
5. Effect of SiC-Reinforcement and Equal-Channel Angular Pressing on Microstructure and Mechanical Properties of AA2017
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1. Influencing the Size and Shape of High-Energy Ball Milled Particle Reinforced Aluminum Alloy Powder;Materials;2022-04-21
2. Comparative analysis of thrust force, roughness and roundness error in drilling of aluminium composites using RSM, ANN and fuzzy logic;Materials Today: Proceedings;2022
3. The High-Temperature Creep Behavior of In-Situ TiB2 Particulate Reinforced Al12Si4Cu2NiMg Composite;Metals;2018-11-07
4. Light-Weight Aluminum-Based Alloys—From Fundamental Science to Engineering Applications;Metals;2018-04-11
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