2006
DOI: 10.1016/j.ijplas.2005.03.013
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Prediction of six or eight ears in a drawn cup based on a new anisotropic yield function

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Cited by 281 publications
(153 citation statements)
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“…The blank was meshed using approximately 700 first order reduced integration quadrilateral shell elements with 11 Gauss integration points through the thickness. Earing profiles of AA 2090-T3 predicted from Barlat et al's (2005) (Yld2004-18p) and an analytical approach can be found in the works of Yoon et al (2006Yoon et al ( , 2011, respectively. Earing simulation to predict more than four ears using Yld20000-2d under non-associated flow can be found at Yoon et al (2007), Park and Chung (2012) and Safaei et al (2013b).…”
Section: Impact Of Model Simplification On Cup Drawing Simulationmentioning
confidence: 97%
“…The blank was meshed using approximately 700 first order reduced integration quadrilateral shell elements with 11 Gauss integration points through the thickness. Earing profiles of AA 2090-T3 predicted from Barlat et al's (2005) (Yld2004-18p) and an analytical approach can be found in the works of Yoon et al (2006Yoon et al ( , 2011, respectively. Earing simulation to predict more than four ears using Yld20000-2d under non-associated flow can be found at Yoon et al (2007), Park and Chung (2012) and Safaei et al (2013b).…”
Section: Impact Of Model Simplification On Cup Drawing Simulationmentioning
confidence: 97%
“…To provide more accurate predictions, yield locus expressions with more coefficients have been introduced, which necessitate more material tests for calibration. For example, the Yld2004-18p [7] yield function includes 18 parameters; the criterion BBC2008 [8] needs 16 or 24 parameters; and the CPB06 [9] yield locus may contain 28 anisotropy coefficients.…”
Section: Introductionmentioning
confidence: 99%
“…In a number of contributions, Barlat and coworkers have developed several non-quadratic anisotropic yield functions ( [21], [22], [23], [24], [3]) for the description of the sheet anisotropy in aluminium alloys. The finite element formulation and implementation of Barlat's yield functions together with prediction of earings is discussed in a number of works of Yoon and coworkers ( [25], [26], [27], [28], [29] [30]). Further recent papers discussing the modelling and simulation of earings in cup drawing include [31], [32], [33], [34], [35], [36] and [37].…”
Section: Introductionmentioning
confidence: 99%