Exact(13)
These HSC mixes are tested experimentally for compression, split tension, flexure and workability.
The composite mixtures were subjected to the compression, split tensile and flexural tests.
Compression, split tensile and notched bending tests were applied to three samples from each mix with simultaneous electrical resistance measurements.
In the current investigation, a compression Split Hopkinson Pressure Bar was modified to load the samples in punch shear mode.
In the current investigation, a compression split Hopkinson pressure bar (SHPB) was modified to load the samples in punch shear mode.
The samples are subjected to high strain rate loading using modified compression split Hopkinson's pressure bar at three different strain rates ranging from 320 to 1149 s−1149
Similar(47)
Performed and simulated tests include unconfined compression, splitting (Brazilian), and three-point-bending tests.
Finite Element simulations of three-point bending tests and compression splitting tests show that nonlocal enhancement indeed avoids mesh dependency, and that the axial and transverse dimensions of the damage process zone are scaled by the two characteristic lengths.
For comparison purpose, static properties from uniaxial compression and split tensile tests are obtained and discussed.
These specimens are then tested by MTS for static compression and split Hopkinson pressure bar (SHPB) for dynamic impact.
The response observed in HSR uniaxial compression tests, split Hopkinson pressure bar (SHPB) tests, and triaxial tests is investigated.
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