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Stability analysis of non-isothermal fibre spinning of polymeric solutions

机译:聚合物溶液非等温纤维纺丝的稳定性分析

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The stability of fibre spinning flow of a polymeric fluid is analysed in the presence of thermal effects. The spinline is modelled as a one-dimensional slender-body filament of the entangled polymer solution. The previous study (Gupta & Chokshi, J. Fluid Mech., vol.?776, 2015, pp.?268–289) analysed linear and nonlinear stability behaviour of an isothermal extensional flow in the air gap during the fibre spinning process. The present study extends the analysis to take in to account the non-isothermal spinning flow in which the spinline loses heat by convection to the surrounding air as well as by solvent evaporation. The nonlinear rheology of the polymer solution is described using the eXtended Pom-Pom (XPP) model. The non-isothermal effects influence the rheology of the fluid through viscosity, which is taken to be temperature and concentration dependent. The linear stability analysis is carried out to obtain the draw ratio for the onset of instability, known as the draw resonance, and a stability diagram is constructed in the $DR_{c}{-}De$ plane. $DR_{c}$ is the critical draw ratio, and $De$ is the flow Deborah number. The enhancement in viscosity driven by spinline cooling leads to postponement in the onset of draw resonance, indicating the stabilising role of non-isothermal effects. Weakly nonlinear stability analysis is also performed to reveal the role of nonlinearities in the finite amplitude manifold in the vicinity of the flow transition point. For low to moderate Deborah numbers, the bifurcation is supercritical, and the flow attains an oscillatory state with an equilibrium amplitude post-transition when $DR>DR_{c}$ . The equilibrium amplitude of the resonating state is found to be smaller when non-isothermal effects are incorporated in comparison to the isothermal spinning flow. For very fast flows in the regime of high Debora
机译:在热效应存在下分析聚合物流体的纤维纺丝流动的稳定性。旋转线被建模为缠结的聚合物溶液的一维纤维体细丝。以前的研究(Gupta&Chokshi,J. Fluid Mech。,Vol.Over.776,2015,PP.?268-289)在纤维纺丝过程中分析了空气间隙中的等温延伸流动的线性和非线性稳定性行为。本研究扩展了分析,以考虑非等温纺丝流动,其中旋转线通过对周围空气以及溶剂蒸发而转移到周围空气中的热量。该聚合物溶液的流变学非线性使用扩展POM-POM(XPP)模型来描述。非等温效应会影响流体通过粘度的流变学,其被依赖于温度和浓度。线性稳定性分析进行,以获得不稳定的发病,被称为拉伸共振的拉伸比,和一个稳定区域图是在$ DR_ {C}构造{ - }德$平面。 $ DR_ {C} $是临界拉伸比,和$ $德是流底波拉数。旋转线冷却驱动的粘度的增强导致汲取共振发作的推迟,表明非等温效应的稳定作用。还执行弱非线性稳定性分析,以揭示非线性在流动转变点附近的有限幅度歧管中的作用。对于低至中等的Deborah编号,分叉是超临界的,并且当$ DR> DR_ {C} $时,流量达到了平衡幅度的振动状态。当与等温纺丝相比,共振状态的平衡幅度被发现较小。在高德莫拉政权中非常快速流动

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