Search Results - "Markaki, AE"

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  1. 1

    Collagen scaffolds with tailored pore geometry for building three-dimensional vascular networks by Berdichevski, A., Birch, M.A., Markaki, A.E.

    Published in Materials letters (01-08-2019)
    “…•Fabrication of collagen scaffolds with uniaxially-aligned or randomly-oriented pores.•Scaffold pore structure affects specific permeability and endothelial…”
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    Journal Article
  2. 2

    Nano-terracing on polycrystalline palladium induced via simple heat treatment by Sobral, JM, Clyne, TW, Rezk, R, Markaki, AE

    Published in Scripta materialia (15-03-2017)
    “…This paper concerns formation of terraces on polycrystalline Pd, via heat treatments followed by quenching with gas jets. The driving force for terrace…”
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  3. 3

    The effect of cell wall microstructure on the deformation and fracture of aluminium-based foams by Markaki, A.E, Clyne, T.W

    Published in Acta materialia (25-05-2001)
    “…This study primarily concerns the role of cell wall microstructure in influencing the mechanical behaviour of metallic foams. Three closed-cell foams have been…”
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  4. 4

    Porous materials for thermal management under extreme conditions by Clyne, T.W, Golosnoy, I.O, Tan, J.C, Markaki, A.E

    “…A brief analysis is presented of how heat transfer takes place in porous materials of various types. The emphasis is on materials able to withstand extremes of…”
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  5. 5

    Mechanical and magnetic properties of metal fibre networks, with and without a polymeric matrix by Clyne, T.W., Markaki, A.E., Tan, J.C.

    Published in Composites science and technology (01-12-2005)
    “…Bonded networks of metal fibres are highly porous, permeable materials, which often exhibit relatively high strength. Material of this type has been produced,…”
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  6. 6

    Magneto-mechanical stimulation of bone growth in a bonded array of ferromagnetic fibres by Markaki, Athina E., Clyne, T.William

    Published in Biomaterials (01-08-2004)
    “…A brief experimental and theoretical study is presented into the elastic deformation of bonded arrays of ferromagnetic fibres, when subjected to an external…”
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  7. 7

    Magneto-mechanical actuation of bonded ferromagnetic fibre arrays by Markaki, A.E., Clyne, T.W.

    Published in Acta materialia (01-02-2005)
    “…Strongly bonded assemblies of metallic fibres constitute an interesting class of highly porous, permeable materials. A high degree of control can be exercised…”
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  8. 8

    Mechanics of thin ultra-light stainless steel sandwich sheet material: Part I. Stiffness by Markaki, A.E., Clyne, T.W.

    Published in Acta materialia (14-03-2003)
    “…Three variants of a novel steel sandwich sheet material have been studied. The geometrical arrangements of the steel fibres in the core have been…”
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  9. 9

    Production of a highly porous material by liquid phase sintering of short ferritic stainless steel fibres and a preliminary study of its mechanical behaviour by Markaki, A.E., Gergely, V., Cockburn, A., Clyne, T.W.

    Published in Composites science and technology (01-12-2003)
    “…A procedure is outlined for the production of highly porous material by liquid phase sintering of short stainless steel fibres, about 100 μm in diameter. The…”
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  10. 10

    Mechanics of thin ultra-light stainless steel sandwich sheet material: Part II. Resistance to delamination by Markaki, A.E., Clyne, T.W.

    Published in Acta materialia (14-03-2003)
    “…This study concerns three variants of a novel type of thin sandwich sheet. Details of the core structures, and also the results of an investigation into…”
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  11. 11

    Energy absorption during failure of layered metal foam/ceramic laminates by Markaki, A.E, Clyne, T.W

    “…This study is concerned with the fracture behaviour of laminates made up of alternate layers of metal foam and ceramic. It is shown that the fracture energy of…”
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  12. 12

    Excimer laser treatment of nickel-coated cast iron by Panagopoulos, C.N, Markaki, A.E, Agathocleous, P.E

    “…Nickel-coated cast iron was laser treated using pulsed excimer radiation. The amount of processing was varied by varying the laser power density, number of…”
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