Direct measurement of the intense loading produced by the detonation of a buried explosive is an extremely difficult task. Historically, high-fidelity measurement techniques have not been sufficiently robust to capture the extremely high pressures associated with such events, and researchers have relied on ‘global’ measurements such as the average loading acting over a particular area of interest. Recently, a large-scale experimental approach to the direct measurement of the spatial and temporal variation in loading resulting from an explosive event has been developed, which utilises Hopkinson pressure bars (HPBs) inserted through holes in a large target plate such that their faces lie flush with the loaded face. This article presents resul...
The shock wave generated from a high explosive detonation can cause significant damage to any object...
The design of blast-resistant structures and protective systems requires a firm understanding of the...
The detonation of a buried explosive is known to be highly influenced by the conditions of the surro...
Recent experiments into characterisation of the loading resulting from detonation of a shallow burie...
The spatial and temporal distribution of pressure and impulse from explosives buried in saturated ...
Near-field blast load measurement presents an issue to many sensor types as they must endure very ag...
While it is well known that detonation of shallow-buried high explosive charges generally results in...
Experiments have been conducted to quantify the effect the geotechnical conditions surrounding a bur...
It is self-evident that a crucial step in analysing the performance of protective structures is to b...
Recent work has concentrated on the characterisation of the temporal and spatial impulse distributio...
Background: The design and analysis of protective systems requires a detailed understanding of, and ...
A large scale experimental approach to the direct measurement of the spatial and temporal variation ...
The Blast & Impact Research Group at the University of Sheffield is currently involved in several pr...
The pressure distribution on the bottom of an armored vehicle caused by a detonating explosive burie...
The accurate characterisation of pressure loads imposed on structural members following the detonati...
The shock wave generated from a high explosive detonation can cause significant damage to any object...
The design of blast-resistant structures and protective systems requires a firm understanding of the...
The detonation of a buried explosive is known to be highly influenced by the conditions of the surro...
Recent experiments into characterisation of the loading resulting from detonation of a shallow burie...
The spatial and temporal distribution of pressure and impulse from explosives buried in saturated ...
Near-field blast load measurement presents an issue to many sensor types as they must endure very ag...
While it is well known that detonation of shallow-buried high explosive charges generally results in...
Experiments have been conducted to quantify the effect the geotechnical conditions surrounding a bur...
It is self-evident that a crucial step in analysing the performance of protective structures is to b...
Recent work has concentrated on the characterisation of the temporal and spatial impulse distributio...
Background: The design and analysis of protective systems requires a detailed understanding of, and ...
A large scale experimental approach to the direct measurement of the spatial and temporal variation ...
The Blast & Impact Research Group at the University of Sheffield is currently involved in several pr...
The pressure distribution on the bottom of an armored vehicle caused by a detonating explosive burie...
The accurate characterisation of pressure loads imposed on structural members following the detonati...
The shock wave generated from a high explosive detonation can cause significant damage to any object...
The design of blast-resistant structures and protective systems requires a firm understanding of the...
The detonation of a buried explosive is known to be highly influenced by the conditions of the surro...