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使用受洛伦兹力影响的 Phan-Thien-Tanner 流体对线材涂层进行分析,作为典型覆盖模具中的聚合物涂层材料。

Wire coating analysis using Phan-Thien-Tanner fluid subject to Lorentz force as a polymer coating material in a canonical covering die.

机构信息

Department of Mathematics and Statistics, Bacha Khan University, Charsadda, Pakistan.

Research Centre, Future University in Egypt, New Cairo, Egypt.

出版信息

Sci Prog. 2023 Apr-Jun;106(2):368504231172617. doi: 10.1177/00368504231172617.

Abstract

Wire coating is widely used for electrical insulation to protect the wire from electric shock, prevent electrical leakage, and ensure that the electrical current flows smoothly. In this investigation, a pressurized coating die is used to explore the PTT fluid as a polymer material for wire in a magnetic field. The flow field, flow rate, temperature profile, thickness of the wire coating, volume flow rate, and shear stress are all given exact solutions. Graphs were used to illustrate the effects of certain important technical parameters, including flow rate, wire coating thickness, shear stress, and pressure gradient. It has been noted that as the values of , Deborah number, and ratio of radii are improved, the volume and thickness of the coated wire rise. The Deborah number has a higher volume flow than the and radii ratios. A reference to existing literature is made in order to support the validity of the current study.

摘要

电线涂层广泛应用于电绝缘,以保护电线免受电击、防止漏电,并确保电流平稳流动。在这项研究中,使用加压涂层模具探索 PTT 流体作为电线在磁场中的聚合物材料。给出了流场、流速、温度分布、电线涂层厚度、体积流量和剪切应力的精确解。使用图表说明了某些重要技术参数的影响,包括流速、电线涂层厚度、剪切应力和压力梯度。注意到,随着 、 Deborah 数和半径比的提高,涂覆线的体积和厚度增加。与 和半径比相比,Deborah 数具有更高的体积流量。为了支持当前研究的有效性,参考了现有文献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a64/10373864/69a6d480c5d7/10.1177_00368504231172617-fig1.jpg

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