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Variable viscosity effects on third- grade liquid flow in post-treatment analysis of wire coating in the presence of nanoparticles

机译:纳米粒子存在下金属丝涂层的后处理分析中粘度对三级液体流动的影响

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Purpose - The features of coated wire product are measured by the flow and heat transport occurring in the interior of dies. Therefore, an understanding of characteristics of polymers momentum, heat mass transfer and wall shear stress is of great interest. Enhancement of heat transfer rate is fundamental need of wire coating process. Therefore, this study aims to investigate the effect of suspended nanoparticles in heat and mass transport phenomena of third-grade liquid in post-treatment of wire coating process. Buongiomo model for nanofluid is adopted. Two cases of temperature dependent viscosity are considered. Design/methodology/approach - The governing equations are modelled with the help of steady-state conservation equations of mass, momentum, energy and nanoparticle concentration. Some appropriate dimensionless variables are introduced. Numerical solutions for the nonlinear problem are developed through Runge-Kutta-Fehlberg technique. The outcome of sundry variables for dimensionless flow, thermal and nanoparticle volume fraction fields are scrutinised through graphical illustrations. Findings - The study's numerical results disclose that the force on the total wire surface and shear stress at the surface in case of Reynolds Model dominate Vogel's Model case. Impact of nanoparticles is constructive for force on the total wire surface and shear stress at the surface. The velocity of the coating material can be enhanced by the non-Newtonian property. Practical implications - This study may provide useful information to improve the wire coating technology. Originality/value - Effect of nanoparticles in wire coating analysis by using Brownian morion and thermophoresis slip mechanisms is investigated for the first time Two different models for variable viscosity are used.
机译:目的-涂层金属丝产品的特征通过模具内部发生的流动和热传递来衡量。因此,对聚合物动量,传热和壁切应力特性的理解引起了极大的兴趣。传热速率的提高是导线涂覆工艺的基本需求。因此,本研究旨在研究悬浮纳米粒子在金属丝涂层工艺后处理中对三级液体的传热和传质现象的影响。采用Buongiomo纳米流体模型。考虑两种取决于温度的粘度。设计/方法/方法-借助质量,动量,能量和纳米粒子浓度的稳态守恒方程对控制方程建模。引入了一些适当的无量纲变量。通过Runge-Kutta-Fehlberg技术开发了非线性问题的数值解。通过图形说明详细检查了无因次流动,热和纳米颗粒体积分数字段的杂项变量的结果。发现-研究的数值结果表明,在雷诺模型的情况下,作用在金属丝总表面上的力和表面的切应力占主导地位,在沃格尔模型的情况下。纳米粒子的冲击对于总导线表面上的力和表面上的切应力具有建设性作用。涂层材料的速度可以通过非牛顿特性来提高。实际意义-这项研究可能会提供有用的信息,以改善导线涂层技术。独创性/价值-首次研究了使用Brownian morion和热泳滑移机制的纳米粒子在金属丝涂层分析中的作用。使用了两种不同的可变粘度模型。

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