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kw.\*:("Hopkinson pressure bar")

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Results 1 to 25 of 130

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An SHPB set-up with reduced time-shift and pressure bar lengthMENG, H; LI, Q. M.International journal of impact engineering. 2003, Vol 28, Num 6, pp 677-696, issn 0734-743X, 20 p.Article

Correlation between the accuracy of a SHPB test and the stress uniformity based on numerical experimentsMENG, H; LI, Q. M.International journal of impact engineering. 2003, Vol 28, Num 5, pp 537-555, issn 0734-743X, 19 p.Article

Materials testing at high constant strain rates = Werkstoffpruefung mit hoher, konstanter DehnungsgeschwindigkeitELLWOOD, S; GRIFFITHS, L.J; PARRY, D.J et al.Journal of physics. E. Scientific instruments. 1982, Vol 15, Num 3, pp 280-281, issn 0022-3735Article

Energy for specimen deformation in a split hopkinson pressure bar experimentSONG, B; CHEN, W.Experimental mechanics. 2006, Vol 46, Num 3, pp 407-410, issn 0014-4851, 4 p.Article

Dynamic tensile testing of sheet metalMOURO, P; GARY, G; ZHAO, H et al.Journal de physique. IV. 2000, Vol 10, Num 9, pp Pr9.149-9.154, issn 1155-4339Conference Paper

Load Duration Effects in Wood at High Strain RatesGILBERTSON, Christopher G; BULLEIT, William M.Journal of materials in civil engineering. 2013, Vol 25, Num 11, pp 1647-1654, issn 0899-1561, 8 p.Article

Low frequency limitations of the split Hopkinson pressure bar method for identification of complex modulusWELCH, K; STROMME, M.International journal of impact engineering. 2007, Vol 34, Num 6, pp 1036-1046, issn 0734-743X, 11 p.Article

Mechanical properties of basalt fiber reinforced geopolymeric concrete under impact loadingWEIMIN LI; JINYU XU.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2009, Vol 505, Num 1-2, pp 178-186, issn 0921-5093, 9 p.Article

Dynamic mechanical behavior of some carbonate rocksDEMIRDAG, S; TUFEKCI, K; KAYACAN, R et al.International journal of rock mechanics and mining sciences (1997). 2010, Vol 47, Num 2, pp 307-312, issn 1365-1609, 6 p.Article

Nanoclay syntactic foam composites-High strain rate propertiesPETER, Sameer; WOLDESENBET, Eyassu.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2008, Vol 494, Num 1-2, pp 179-187, issn 0921-5093, 9 p.Article

The effect of strain rate on the mechanical behavior of Teflon foamTASDEMIRCI, A; TURAN, A. K; GUDEN, M et al.Polymer testing. 2012, Vol 31, Num 6, pp 723-727, issn 0142-9418, 5 p.Article

Strain rate effects on sandwich core materials: An experimental and analytical investigationCHAKRAVARTY, U; MAHFUZ, H; SAHA, M et al.Acta materialia. 2003, Vol 51, Num 5, pp 1469-1479, issn 1359-6454, 11 p.Article

Constitutive equation for AISI4140 steel applicable to a wide range of strain rates at elevated temperaturesKIM, S. I; BYON, S. M; SEO, S. W et al.Steel research international. 2006, Vol 77, Num 5, pp 355-360, issn 1611-3683, 6 p.Article

Experimental and numerical investigation of pulse-shaped split Hopkinson pressure bar testNAGHDABADI, R; ASHRAFI, M. J; ARGHAVANI, J et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2012, Vol 539, pp 285-293, issn 0921-5093, 9 p.Article

Dynamic Tensile Failure of the Rock Interface Between Tuff and BasaltFEI YAN; FENG, Xia-Ting; RONG CHEN et al.Rock mechanics and rock engineering. 2012, Vol 45, Num 3, pp 341-348, issn 0723-2632, 8 p.Article

An approach in parametric identification of high strain rate constitutive model using Hopkinson pressure bar test resultsSEDIGHI, M; KHANDAEI, M; SHOKROLLAHI, H et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2010, Vol 527, Num 15, pp 3521-3528, issn 0921-5093, 8 p.Article

Experimental study of stress wave propagation across a filled rock jointLI, J. C; MA, G. W.International journal of rock mechanics and mining sciences (1997). 2009, Vol 46, Num 3, pp 471-478, issn 1365-1609, 8 p.Article

Shock testing accelerometers with a Hopkinson pressure barFOSTER, J. T; FREW, D. J; FORRESTAL, M. J et al.International journal of impact engineering. 2012, Vol 46, pp 56-61, issn 0734-743X, 6 p.Article

Pulse shaping techniques for testing elastic-plastic materials with a split Hopkinson pressure barFREW, D. J; FORRESTAL, M. J; CHEN, W et al.Experimental mechanics. 2005, Vol 45, Num 2, pp 186-195, issn 0014-4851, 10 p.Article

Experimental Study on Dynamic Tensile Strength of Cement Mortar Using Split Hopkinson Pressure Bar TechniqueXUDONG CHEN; SHENGXING WU; JIKAI ZHOU et al.Journal of materials in civil engineering. 2014, Vol 26, Num 6, issn 0899-1561, 04014005.1-04014005.10Article

Tuning the band-gap of phononic crystals with an initial stressRONGXINFENG; KAIXIN LIU.Physica. B, Condensed matter. 2012, Vol 407, Num 12, pp 2032-2036, issn 0921-4526, 5 p.Article

Inertia-induced radial confinement in an elastic tubular specimen subjected to axial strain accelerationZHANG, M; LI, Q. M; HUANG, F. L et al.International journal of impact engineering. 2010, Vol 37, Num 4, pp 459-464, issn 0734-743X, 6 p.Article

On the Plastic Wave Propagation Along the Specimen Length in SHPB TestWANG, Z. G; MEYER, L. W.Experimental mechanics. 2010, Vol 50, Num 7, pp 1061-1074, issn 0014-4851, 14 p.Article

Impact characterization of basalt fiber reinforced geopolymeric concrete using a 100-mm-diameter split Hopkinson pressure barWEIMIN LI; JINYU XU.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2009, Vol 513-514, pp 145-153, issn 0921-5093, 9 p.Article

Effect of density, microstructure, and strain rate on compression behavior of polymeric foamsSAHA, M. C; MAHFUZ, H; CHAKRAVARTY, U. K et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2005, Vol 406, Num 1-2, pp 328-336, issn 0921-5093, 9 p.Article

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