Evaluation of Fatigue Crack Growth Characteristics of Whisker-Reinforced Aluminium Alloy Matrix Composite
スポンサーリンク
概要
- 論文の詳細を見る
Metal matrix composites (MMCs) are generally considered attractive as structural materials because of their superiority over polymer matrix composites (PMCs) for high-temperature application as well as their specific strength and modulus. It has been the most important and urgent problem to characterize the damage tolerance behavior for a wide use of advanced MMCs for primary aerospace and automotive structural applications. In this paper, fatigue crack growth tests were conducted on silicon-carbide-whisker-reinforced high-strength aluminium alloy matrix composite SiC_w/2025 Al over a wide range of fatigue crack growth rates covering the threshold stress intensity factor range ΔK_<th>. The effects of whisker orientation and stress ratio on the fatigue crack growth characteristics were investigated on the basis of fracture mechanics and fractography. The whisker reinforcements of the high strength 2025 Al alloy are found to be effective in improving the fatigue crack growth resistance, especially in the near-threshold stress intensity factor range.
- 一般社団法人日本機械学会の論文
- 1991-04-15
著者
-
Hirano Kazumi
Mechanical Engineering Laboratory
-
Hirano Kazumi
Mechanical Engineering Laboratory Agency Of Industrial Science And Technology
-
TAKIZAWA Hidekazu
Nagano Precision Industry Research Institute
関連論文
- Evaluation of Fatigue Crack Growth Characteristics of Whisker-Reinforced Aluminium Alloy Matrix Composite
- Toughening Mechanism for Ceramics by a Ductile Metallic Phase
- Monitoring of Surface Fatigue Crack Growth and Crack Tip Closure Behavior by the Ultrasonic Isoscanning Technique : Solid-Mechanics, Strength of Materials
- Determination of Fracture Toughness for Whisker-Reinforced Aluminium Alloy Matrix Composite using Chevron-Notched Specimen
- Characteristics of Static and Fatigue Strength of Alumina Ceramic Joints