UM
Compressive properties of porous metal fiber sintered sheet produced by solid-state sintering process
Zhou W.2; Tang Y.1; Liu B.1; Song R.2; Jiang L.2; Hui K.S.3; Hui K.N.5; Yao H.4
2012-03-01
Source PublicationMaterials and Design
ISSN02641275 18734197
Volume35Pages:414-418
AbstractA novel porous metal fiber sintered sheet (PMFSS) with three-dimensional reticulated structure was fabricated by using solid-state sintering method of copper fibers. Uniaxial compressive test was carried out to investigate the effects of porosity and manufacturing parameters on the compressive properties of PMFSS. During the compressive process, it was found that the PMFSS initially exhibited short-term elastic deformation, and then quickly entered into the compact densification deformation stage. The stress-strain plots showed no obvious yield stage in the whole uniaxial compressive process. Under given stress, the PMFSS with higher porosity exhibited higher strain, hence implying lower effective stiffness. Additionally, our results showed that higher sintering temperature or longer sintering time would soften the PMFSS. © 2011.
KeywordB. Fibers and filaments C. Sintering E. Mechanical properties
DOI10.1016/j.matdes.2011.09.026
URLView the original
Language英語
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Cited Times [WOS]:26   [WOS Record]     [Related Records in WOS]
Document TypeJournal article
CollectionUniversity of Macau
Affiliation1.South China University of Technology
2.Sun Yat-Sen University
3.City University of Hong Kong
4.Hong Kong Polytechnic University
5.Pusan National University
Recommended Citation
GB/T 7714
Zhou W.,Tang Y.,Liu B.,et al. Compressive properties of porous metal fiber sintered sheet produced by solid-state sintering process[J]. Materials and Design,2012,35:414-418.
APA Zhou W..,Tang Y..,Liu B..,Song R..,Jiang L..,...&Yao H..(2012).Compressive properties of porous metal fiber sintered sheet produced by solid-state sintering process.Materials and Design,35,414-418.
MLA Zhou W.,et al."Compressive properties of porous metal fiber sintered sheet produced by solid-state sintering process".Materials and Design 35(2012):414-418.
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