Dynamic Compressive Property of Closed-Cell Mg Alloy Composite Foams Reinforced with SiC Particles |
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Authors: | Wen-Zhan Huang Hong-Jie Luo Yong-Liang Mu Jian-Rong Xu Ai-Chun Zhao |
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Affiliation: | 1.School of Metallurgy, Northeastern University,Shenyang 110819, China2 Engineering Research Center of Ministry of Education for Advanced Materials Preparation Technology,Shenyang 110819, China3 School of Materials Science and Engineering, Taiyuan University of Science and Technology, Taiyuan 030024,China |
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Abstract: | The high-strain-rate mechanical response of Mg alloy/SiC_p composite foams has received increased attention in recent years due to their light weight and potential to absorb large amounts of energy during deformation. Dynamic compressive properties of closed-cell Mg alloy/SiC_p composite foams with diff erent relative densities(0.162, 0.227 and 0.351) and diff erent SiC_p additions(0, 4 and 8 wt%) have been investigated using Split-Hopkinson pressure bar. It is shown that peak stress and energy absorption capacity signifi cantly increase as the relative density increases at the range of testing strain rates. Peak stress and energy absorption display strain rate dependence. The peak stress of specimens with 0 wt% and 4 wt% SiC particles additions grows with increasing strain rate. Meanwhile, the increment in the peak stress of specimens with 8 wt% addition is not signifi cant with strain rate increasing. The increase in strain rate increases the energy absorption capacity. The suitable amount of SiC particles addition has great advantages over increasing the peak stress and energy absorption capacity at the high strain rate. The strain-rate-sensitive matrix, cell morphology, morphological defects and gas pressure have an impact on the strain-rate sensitivity of Mg alloy/SiC_p composite foams. |
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Keywords: | Mg alloy SiC particles Mg alloy/SiCp composite foam Split-Hopkinson pressure bar system (SHPB) Dynamic compressive |
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