A comparative study between fiber orientation closure approximations and a new orthotropic closure
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[1] Charles L. Tucker III. Fundamentals of Fiber Orientation , 2022 .
[2] Pearl Lee-Sullivan,et al. Application of Artificial Neural Networks to predict fibre orientation in long fibre compression moulded composite materials , 2020 .
[3] U. Gandhi,et al. Discontinuous Fiber-Reinforced Composites , 2020, Discontinuous Fiber-Reinforced Composites.
[4] L. Kärger,et al. Virtual process chain of sheet molding compound: Development, validation and perspectives , 2019, Composites Part B: Engineering.
[5] Rong-Yeu Chang,et al. Molding Simulation: Theory and Practice , 2018, Molding Simulation: Theory and Practice.
[6] R. Chang,et al. Numerical prediction of fiber orientation and mechanical performance for short/long glass and carbon fiber-reinforced composites , 2017 .
[7] Hongyi Xu,et al. Modeling and Simulation of Compression Molding Process for Sheet Molding Compound (SMC) of Chopped Carbon Fiber Composites , 2017 .
[8] Ulf Hassler,et al. Non-destructive characterization of fiber orientation in reinforced SMC as input for simulation based design , 2017 .
[9] R. Chang,et al. An objective tensor to predict anisotropic fiber orientation in concentrated suspensions , 2016 .
[10] S. Montgomery-Smith,et al. Effectiveness of recent fiber-interaction diffusion models for orientation and the part stiffness predictions in injection molded short-fiber reinforced composites , 2012 .
[11] N. Qadir,et al. Modeling fibre orientation in short fibre suspensions using the neural network-based orthotropic closure , 2009 .
[12] Douglas E. Smith,et al. Neural network-based closure for modeling short-fiber suspensions , 2009 .
[13] Charles L. Tucker,et al. An anisotropic rotary diffusion model for fiber orientation in short- and long-fiber thermoplastics , 2009 .
[14] Charles L. Tucker,et al. An objective model for slow orientation kinetics in concentrated fiber suspensions: Theory and rheological evidence , 2008 .
[15] Pierre Gilormini,et al. Comparison of several closure approximations for evaluating the thermoelastic properties of an injection molded short-fiber composite , 2007 .
[16] D. Smith,et al. Sixth-order Fitted Closures for Short-fiber Reinforced Polymer Composites , 2006 .
[17] D. E. Smith,et al. An invariant based fitted closure of the sixth-order orientation tensor for modeling short-fiber suspensions , 2005 .
[18] Tai Hun Kwon,et al. Invariant-based optimal fitting closure approximation for the numerical prediction of flow-induced fiber orientation , 2002 .
[19] Tai Hun Kwon,et al. Improved model of orthotropic closure approximation for flow induced fiber orientation , 2001 .
[20] L. G. Leal,et al. A closure approximation for liquid-crystalline polymer models based on parametric density estimation , 1998 .
[21] Charles L. Tucker,et al. Orthotropic closure approximations for flow-induced fiber orientation , 1995 .
[22] S. Güçeri,et al. Numerical prediction of three-dimensional fiber orientation in Hele-Shaw flows , 1990 .
[23] Suresh G. Advani,et al. Closure approximations for three‐dimensional structure tensors , 1990 .
[24] Suresh G. Advani,et al. The Use of Tensors to Describe and Predict Fiber Orientation in Short Fiber Composites , 1987 .
[25] C. L. Tucker,et al. Orientation Behavior of Fibers in Concentrated Suspensions , 1984 .
[26] Masao Doi,et al. Molecular dynamics and rheological properties of concentrated solutions of rodlike polymers in isotropic and liquid crystalline phases , 1981 .
[27] J. Halpin. Stiffness and Expansion Estimates for Oriented Short Fiber Composites , 1969 .
[28] Bernd Jähne,et al. Practical handbook on image processing for scientific and technical applications , 2004 .