A simple pair of ordinary differential equations describing a one-dimensional model of a deforming Taylor impact specimen were numerically integrated. The Johnson-Cook strength model was assumed to apply and was used to estimate material strengths and plastic wave speeds during the deformation proce
Evaluation of strength model parameters from Taylor impact tests
โ Scribed by Julien Nussbaum; Norbert Faderl
- Publisher
- Elsevier
- Year
- 2011
- Tongue
- English
- Weight
- 337 KB
- Volume
- 10
- Category
- Article
- ISSN
- 1877-7058
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โฆ Synopsis
This paper provides a method to extract sets of parameters from Taylor impact tests . The method consists in a two steps algorithm which associates a Monte-Carlo method to a Levenberg-Marquardt [2, 3] optimization loop, as proposed by Nistor [4]. Iteratively, the algorithm searches the set of constants that best fits the simulations to the experiments by minimizing the error between the data. The deformation of the cylinder is modeled by an axisymetric, two-dimensional model. Validation of the solver is performed by comparisons with ANSYS Autodyn simulations. We focus our study on the Johnson-Cook model . First tests on the 6061-T6 aluminum and 4340 steel have shown good agreements. Some improvements are proposed.
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