Abstract
Advanced polymer materials are finding an increasing range of industrial and defence applications. Ultra-high molecular weight polymers (UHMWPE) are already used in lightweight body armour because of their good impact resistance with light weight. However, a broader use of such materials is limited by the complexity of the manufacturing processes and the lack of experimental data on their behaviour and failure evolution under high-strain rate loading conditions. The current study deals with an investigation of the internal heat generation during tensile of UHMWPE. A 3D finite element (FE) model of the tensile test is developed and validated the with experimental work. An elastic-plastic material model is used with adiabatic heat generation. The temperature and stresses obtained with FE analysis are found to be in a good agreement with the experimental results. The model can be used as a simple and cost effective tool to predict the thermo-mechanical behaviour of UHMWPE part under various loading conditions. © Published under licence by IOP Publishing Ltd.
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CITATION STYLE
Gorwade, C. V., Alghamdi, A. S., Ashcroft, I. A., Silberschmidt, V. V., & Song, M. (2012). Finite element analysis of the high strain rate testing of polymeric materials. In Journal of Physics: Conference Series (Vol. 382). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/382/1/012043
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