Influence of Microstructural Change on Damping Capacity of Mg-X%Li Alloys

Author:

Jun Joong Hwan1,Seong Ki Duk1,Kim Jeong Min2,Kim Ki Tae1,Jung Woon Jae1

Affiliation:

1. Korea Institute of Industrial Technology

2. Kyungpook National University

Abstract

The Effects of Li content and annealing treatment on microstructure and damping capacity for Mg-X%Li alloys have been investigated, based on experimental results from X-ray diffractometry (XRD), optical microscopy (OM), hardness tests and vibration damping tests in a flexural mode. The Mg-X%Li alloys containing Li of 3%, 8% and 13% consist of α (HCP) single phase, (α + β (BCC)) dual phases and β single phase, respectively. In as-rolled state, the damping capacity for Mg-Li alloys shows a similar level regardless of Li content. The annealing treatments at 200oC and 400οC give rise to an enhancement of damping capacity only for the Mg-3%Li and Mg-8%Li alloys containing α phase, and at the same annealing temperature, the Mg-3%Li alloy with fully α structure exhibits higher damping capacity. This result indicates that the damping capacity of Mg-Li alloys depends principally on α phase, and that the annealing treatment is necessary to improve its damping capacity.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference11 articles.

1. Magnesium Elektron Data Sheet 462 (ELEKTRON ZA).

2. K. Sugimoto: Mem. Inst. Sci. Ind. Res. Osaka Univ. Vol. 35 (1978), p.31.

3. H. Okamoto: Desk Handbook of Phase Diagrams for Binary Alloys (ASM International, USA 2000).

4. L. Feng, B. Chen, P. Liu, T. Zhou and H. Li: Mater. Sci. Forum Vol. 488-489 (2005), p.239.

5. G.Y. Sha, Y.B. Xu and E.H. Han: Mater. Sci. Forum Vol. 488-489 (2005), p.717.

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