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The behaviour under impact loading of stainless steels used for reinforcing bars is studied.
In order to study the material behaviour under impact loading, perforation tests have been performed using a drop weight tower.
In order to study the material behaviour under impact loading, experimental tests have been performed using a drop-weight tower and a pneumatic gas gun within the range of impact energies (20J
In addition, the influence of the FFRP laminate thickness was investigated in terms of (1) flexural strength and toughness under static loading, (2) flexural behaviour under impact loading, and (3) failure mode.
In order to study the material behaviour under impact loading, perforation tests have been performed at room temperature using both, a drop weight tower and a pneumatic gas gun within the range of impact velocities 2.5 m/s≤V0≤85 m/s.
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This investigation aimed at understanding the dynamic behaviour of CFFTs under impact loading and to develop a procedure for their analysis and design.
In the analysis, an axisymmetric mesoscale SFRC model is developed with distinctive consideration of the fibres, aggregates and cement mortar to investigate the dynamic failure behaviour of SFRC material under impact loading at different strain rates.
The experiments revealed that the sliding behaviour of the scalp under impact loading is characterised by three main phases: (1) the low friction sliding of the scalp over the skull (scalp-skull friction), (2) the tensioning effect of the scalp and (3) the sliding of the liner fabric over the scalp (scalp-liner friction).
In this paper, the fundamental behaviour of precast segmental columns under impact loading is investigated through laboratory tests.
This paper examines the dynamic behaviour of square tubular T-joints under impact loading by means of experimental, numerical and analytical studies.
However, there is a gap in understanding the bonding behaviour between CFRP laminates and steel members under impact loading.
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