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Dive into the research topics where Joseph D. Wood is active.

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Featured researches published by Joseph D. Wood.


Nature Communications | 2017

Adhesion toughness of multilayer graphene films

Joseph D. Wood; Christopher M. Harvey; Simon Wang

Interface adhesion toughness between multilayer graphene films and substrates is a major concern for their integration into functional devices. Results from the circular blister test, however, display seemingly anomalous behaviour as adhesion toughness depends on number of graphene layers. Here we show that interlayer shearing and sliding near the blister crack tip, caused by the transition from membrane stretching to combined bending, stretching and through-thickness shearing, decreases fracture mode mixity GII/GI, leading to lower adhesion toughness. For silicon oxide substrate and pressure loading, mode mixity decreases from 232% for monolayer films to 130% for multilayer films, causing the adhesion toughness Gc to decrease from 0.424 J m−2 to 0.365 J m−2. The mode I and II adhesion toughnesses are found to be GIc = 0.230 J m−2 and GIIc = 0.666 J m−2, respectively. With point loading, mode mixity decreases from 741% for monolayer films to 262% for multilayer films, while the adhesion toughness Gc decreases from 0.543 J m−2 to 0.438 J m−2.The reason why the surface adhesion of a graphene monolayer is much greater than that of graphene multilayers remains unclear. Here, the authors build a model to show interlayer sliding and fracture mode mixity cause the decrease in adhesion toughness of multilayer graphene.


Composite Structures | 2014

A novel method for the partition of mixed-mode fractures in 2D elastic laminated unidirectional composite beams

Christopher M. Harvey; Joseph D. Wood; Simon Wang; Andrew Watson


Composite Structures | 2016

Partition of mixed-mode fractures in 2D elastic orthotropic laminated beams under general loading

Joseph D. Wood; Christopher M. Harvey; Simon Wang


Composite Structures | 2015

Brittle interfacial cracking between two dissimilar elastic layers: part 1-analytical development

Christopher M. Harvey; Joseph D. Wood; Simon Wang


Composite Structures | 2015

Brittle interfacial cracking between two dissimilar elastic layers: Part 2—Numerical verification

Christopher M. Harvey; Joseph D. Wood; Simon Wang


Composite Structures | 2016

Effect of Poisson's ratio mismatch on brittle interfacial cracking between two dissimilar elastic layers

Joseph D. Wood; Christopher M. Harvey; Simon Wang


The 14th International Conference on Fracture | 2017

The mechanics of interface fracture:(1) brittle homogenous and bi-material interfaces

Simon Wang; Christopher M. Harvey; Joseph D. Wood


21st International Conferences on Composite Materials | 2017

The mechanics of interface fracture in layered composite materials: (1) brittle homogenous and bi-material interfaces

Simon Wang; Christopher M. Harvey; Joseph D. Wood


19th International Conference on Composite Structures | 2016

Partition of mixed-mode fractures in 2D elastic beams with through-thickness shear forces

Joseph D. Wood; Christopher M. Harvey; Simon Wang


International Conference on Composite Structures | 2015

Brittle interface crack between two dissimiliar elastic layers

Christopher M. Harvey; Joseph D. Wood; Simon Wang

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Simon Wang

Loughborough University

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