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- W1544157074 abstract "This chapter discusses various aspects of fibers and filaments that are accessible from slender I-D models. Therefore, it is mainly based on viscoelastic and liquid crystalline polymer fiber. An important issue is a unified derivation of I-D fiber models. Different industrial processes vary widely in the dominant competing physical effects.For a wide range of inviscid, Newtonian viscous, viscoelastic, and liquid crystalline polymer constitutive relations, together with surface tension, gravity, and inertia, a slender fiber perturbation algorithm can be developed that produces all one-dimensional slender, axisymmetric, isothermal and thermal models, as well as several relevant new models. This approach posits a separable radial and axial structure at every order in perturbation, and therefore, has one major advantage as well as disadvantage. The advantage is that the method is algorithmic, can be implemented with symbolic manipulations, and works whenever separable slender flows exist." @default.
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- W1544157074 date "1999-01-01" @default.
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- W1544157074 title "Free surface viscoelastic and liquid crystalline polymer fibers and jets" @default.
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- W1544157074 doi "https://doi.org/10.1016/s0169-3107(99)80014-8" @default.
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