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Application of copper as a pulse shaper in SHPB tests on brittle materials- experimental study, constitutive parameters identification, and numerical simulations - ScienceDirect

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Application of copper as a pulse shaper in SHPB tests on brittle materials-  experimental study, constitutive parameters identification, and numerical  simulations - ScienceDirect

PDF) Experimental and numerical studies on pulse shaping techniques used in SHPB for testing concrete material

Application of copper as a pulse shaper in SHPB tests on brittle materials-  experimental study, constitutive parameters identification, and numerical  simulations - ScienceDirect

Materials, Free Full-Text

Application of copper as a pulse shaper in SHPB tests on brittle materials-  experimental study, constitutive parameters identification, and numerical  simulations - ScienceDirect

SciELO - Brazil - Experimental study on pulse shaping techniques of large diameter SHPB apparatus for concrete Experimental study on pulse shaping techniques of large diameter SHPB apparatus for concrete

Application of copper as a pulse shaper in SHPB tests on brittle materials-  experimental study, constitutive parameters identification, and numerical  simulations - ScienceDirect

Materials, Free Full-Text

Application of copper as a pulse shaper in SHPB tests on brittle materials-  experimental study, constitutive parameters identification, and numerical  simulations - ScienceDirect

PDF) Modeling and Design of SHPB to Characterize Brittle Materials Under Compression for High Strain Rates

Application of copper as a pulse shaper in SHPB tests on brittle materials-  experimental study, constitutive parameters identification, and numerical  simulations - ScienceDirect

SciELO - Brazil - Experimental study on pulse shaping techniques of large diameter SHPB apparatus for concrete Experimental study on pulse shaping techniques of large diameter SHPB apparatus for concrete

Application of copper as a pulse shaper in SHPB tests on brittle materials-  experimental study, constitutive parameters identification, and numerical  simulations - ScienceDirect

2014 Swanson School of Engineering Statistical Summary by PITT

Application of copper as a pulse shaper in SHPB tests on brittle materials-  experimental study, constitutive parameters identification, and numerical  simulations - ScienceDirect

Effect of grain structure on Charpy impact behavior of copper

Application of copper as a pulse shaper in SHPB tests on brittle materials-  experimental study, constitutive parameters identification, and numerical  simulations - ScienceDirect

PDF) Methodology for experimental verification of steel armour impact modelling

Application of copper as a pulse shaper in SHPB tests on brittle materials-  experimental study, constitutive parameters identification, and numerical  simulations - ScienceDirect

PDF) Dynamic behavior of rock during its post failure stage in SHPB tests

Application of copper as a pulse shaper in SHPB tests on brittle materials-  experimental study, constitutive parameters identification, and numerical  simulations - ScienceDirect

PDF) A new split Hopkinson tensile bar design

Application of copper as a pulse shaper in SHPB tests on brittle materials-  experimental study, constitutive parameters identification, and numerical  simulations - ScienceDirect

Application of copper as a pulse shaper in SHPB tests on brittle materials- experimental study, constitutive parameters identification, and numerical simulations - ScienceDirect

Application of copper as a pulse shaper in SHPB tests on brittle materials-  experimental study, constitutive parameters identification, and numerical  simulations - ScienceDirect

Application of copper as a pulse shaper in SHPB tests on brittle materials- experimental study, constitutive parameters identification, and numerical simulations - ScienceDirect

Application of copper as a pulse shaper in SHPB tests on brittle materials-  experimental study, constitutive parameters identification, and numerical  simulations - ScienceDirect

PDF) Modeling and Design of SHPB to Characterize Brittle Materials Under Compression for High Strain Rates