Design of an Innovative System for Wave Generation in Direct Tension–Compression Split Hopkinson Bar
نویسندگان
چکیده
منابع مشابه
Improved specimen recovery in tensile split Hopkinson bar.
This paper presents an improved specimen recovery method for the tensile split Hopkinson bar (TSHB) technique. The method is based on the trapping of residual stress waves with the use of momentum trap bars. As is well known, successful momentum trapping in TSHB is highly sensitive to experimental uncertainties, especially on the incident bar side of the set-up. However, as is demonstrated in t...
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The compressive split Hopkinson pressure bar (SHPB) technique allows the stresses on each end of the specimen to be measured individually. Results are presented showing a large difference between these end pressures, depending on specimen length and loading rate. The mechanisms responsible are shown to be a combination of inertial forces and non-uniform deformation due to wave propagation. Impl...
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This paper gives a discussion of the use of the split-Hopkinson bar with particular reference to the requirements of materials modelling at QinetiQ. This is to deploy validated material models for numerical simulations that are physically based and have as little characterization overhead as possible. In order to have confidence that the models have a wide range of applicability, this means, at...
متن کاملA Tensile Split Hopkinson Bar for Testing Particulate Polymer Composites Under Elevated Rates of Loading
A tensile split Hopkinson bar apparatus is developed for testing high strain rate behavior of glass-filled epoxy. The apparatus uses a specimen gripping configuration which does not require fastening and/or gluing and can be readily used for castable materials. Details of the experimental setup, design of grips and specimen, specimen preparation method, benchmark experiments, and tensile respon...
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ژورنال
عنوان ژورنال: Journal of Dynamic Behavior of Materials
سال: 2015
ISSN: 2199-7446,2199-7454
DOI: 10.1007/s40870-015-0019-1