材料
Online ISSN : 1880-7488
Print ISSN : 0514-5163
ISSN-L : 0514-5163
論文
FeCrSi繊維強化Al合金基複合材料の高温変形構成式の構築
府山 伸行青木 良晃上杉 徳照瀧川 順庸東 健司
著者情報
ジャーナル フリー

2018 年 67 巻 11 号 p. 1000-1005

詳細
抄録

We clarify elevated temperature strength and deformation mechanisms of the eutectic Al-Si alloy (AC8A) matrix composites reinforced by 15 vol% and 20 vol% FeCrSif and then construct the constitutive equation of the elevated temperature deformation. Compression test was carried out by strain rate rapid change method on the materials under the conditions of the temperatures from 648 to 723 K and the strain rates between 3 ×10-5 and 1×10-3 s-1. As the results, the flow stress of all aluminum alloy matrix composites was increased with increasing volume fraction of the reinforcements. Threshold stress, which was calculated using a stress exponent of 5, decreased with increasing temperature. The values of the activation energies for FeCrSif/AC8A were close to the activation energy of the lattice diffusion for pure aluminium. Experimental results suggested that the dominant deformation mechanism in FeCrSif/AC8A was the climb-controlled dislocation creep controlled by the lattice diffusion. By using the constitutive equation obtained in this study, it is possible to estimate the elevated temperature strength of FeCrSif/AC8A.

著者関連情報
© 2018 日本材料学会
前の記事 次の記事
feedback
Top