M&M材料力学カンファレンス
Online ISSN : 2424-2845
セッションID: OS1924
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OS1924 7000系発泡アルミニウム合金の衝撃圧縮変形挙動
渡辺 浩正小林 秀敏小川 欽也堀川 敬太郎谷垣 健一鈴木 進補野中 由寛福井 貴明
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会議録・要旨集 フリー

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7000 series aluminum alloy has been mainly used as aircraft materials because 7000 series aluminum alloy has the highest intensity ratio among the aluminum alloy. Recently, 7000 series aluminum alloy foam has been developed. 7000 series aluminum alloy foam can be expected high strength than pure aluminum foam, and has attracted attention as a new shock absorber and structural members in the transport machinery and aircraft. In this study, the compressive deformation behavior of a foam material with closed cells made of 7075 aluminum alloy was examined under static, medium and dynamic loading speed conditions. A dropping weight testing apparatus and a Split Hopkinson Pressure Bar (SHPB) were used for medium and dynamic tests, respectively. The variation of the specimen density caused the difference of strength. By comparing the plateau stress at medium speed and static tests, it was found that the compressive strength is decreased with increasing strain rate. It is possibly considered that the specimen deformation behavior changed due to the different strain rates.

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