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个人简介

The impact response of sandwich structures (Keynote Speech, Brazil 2005) Novel Fibre-metal Laminates based on Thermoplastic Matrices (Keynote Speech, ICCST 2005) Aerospace Admissions Tutor, Chair of Faculty Progress Committee, Responsible for exchange with University of Illinois, Leader of the Structural Materials and Infrastructure Group

研究领域

Composite materials, polymers, fracture mechanics, impact, lightweight aerospace structures, smart structures, adhesion. Advanced manufacturing techniques.

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

A numerical study of the energy-absorption characteristics of metal tube-reinforced polymer foams Modeling of the compression behavior of foam cores reinforced with composite rods The energy-absorbing properties of internally reinforced composite-metal cylinders with various diameter-to-thickness ratios Characterisation of aluminium matrix syntactic foams under drop weight impact Modelling of perforation failure in fibre metal laminates subjected to high impulsive blast loading Static and impact behaviour of a wing leading edge configuration with a micro lattice core The Energy-Absorbing Behaviour of Foam Cores Reinforced with Composite Rods Composite Structures The blast resistance of stitched sandwich panels The mechanical properties of natural fibre based honeycomb core materials The response of polymeric composite structures to air-blast loading: a state-of-the-art Finite Element Modelling of the Quasi-Static Collapse Behaviour of Lattice Structures Manufactured Using the Selective Laser Melting Technique Low-velocity impact performance of lattice structure core based sandwich panels The Impact Response of Graded Foam Sandwich Structures The progressive collapse of micro lattice structures manufactured using selective laser melting (plenary contribution) Low-impulse blast behaviour of fibre-metal laminates Modelling of the low-impulse blast behaviour of fibre-metal laminates based on different aluminium alloys The Properties of Lattice Structures Manufactured Using Selective Laser Melting The influence of core density on the blast resistance of foam-based sandwich structures The influence of core properties on the perforation resistance of sandwich structures – An experimental study The low velocity impact response of foam-based sandwich panels The perforation resistance of sandwich structures subjected to low velocity projectile impact loading Comparison on compressive behaviour of aluminium honeycomb and titanium alloy micro lattice blocks Structural behaviour of fibre metal laminates subjected to a low velocity impact The Impact Response of Sandwich Panels Based on Micro-lattice Structures The Properties of Lattice Structures Manufactured Using Selective Laser Melting

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