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The Structure of Cellular Solids
The Mechanics of Honeycombs
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absorbed aluminium analysed anisotropy Ashby axial behaviour biaxial brittle fracture calculated cancellous bone cell edges cell shape cell wall bending cell walls cellular materials cellular solids ceramics Chapter closed cells closed-cell foams collapse stress compression constant core density core thickness cork crack creep deformation densification depends described diagram dimensions elastic buckling elastic collapse elastomeric foams elastomers energy absorption equation factor failure mode fluid fracture toughness Gibson given gives glass glass temperature heat honeycomb in-plane indentation linear linear-elastic loading low-density maximum metals micrographs normal open cells open-cell foams optimum package peak stress plane plastic collapse plastic foams plotted Poisson's ratio polyethylene polymer foams polymers polyurethane polyurethane foam radial regime regular hexagons relative density sandwich panels shear modulus shear stress shown in Fig shows stiffness strain strain-rate stress-strain curve structure Table tangential temperature tensile tension thermal conductivity uniaxial wood X2 direction yield strength Young's modulus