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An innovative approach for resin infusion and impregnation processes of a commercial resin-impregnated paper bushing

机译:商业树脂浸渍纸衬套树脂输注和浸渍过程的创新方法

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In the present analysis, a new experimental pilot plant system for exploring resin-impregnated paper (RIP) bushing technology was conducted. Experimental and numerical studies were carried out on the resin infusion and impregnation processes in the paper condenser core of a RIP bushing. An innovative approach for the molding process (named molding method B) of a commercial RIP bushing was implemented. For this method, the homogeneity of the paper winding process was controlled precisely. The filling process was conducted by gravity due to the difference of heights between two vacuumed chambers and from bottom to top in the mold. The flow front position and infusion time were measured experimentally and used to obtain the axial permeability of the paper condenser core analytically and numerically. The results indicate that the molding methods have a significant effect on the RIP bushing quality, homogeneous filling, and impregnating process time. Also, it was found that homogeneity of the paper winding process and, consequently, uniform axial velocity of resin flow in the radial direction is the most effective factor to eject the air. Finally, it was recognized that the determination of axial permeability in the case of transient flow is novel in comparison with conventional procedures such as Darcy relation of steady flows. By decreasing the paper thickness from 0.3 to 0.2 mm, the permeability decreased from 8.84 x 10(-10)to 4.52 x 10(-10) m(2). The microstructure of the core illustrates that the axial permeability of the crepe paper condenser core is considerably affected by the variation of the paper thickness.
机译:在本分析中,进行了一种用于探索树脂浸渍纸(RIP)衬套技术的新的实验试验厂系统。在RIP衬套的纸张冷凝器芯中进行实验和数值研究。实施了商业RIP衬套的模塑过程(命名方法B)的一种创新方法。对于这种方法,精确地控制纸绕组过程的均匀性。由于两个真空腔室之间的高度和模具中的底部到顶部的高度差异,通过重力进行填充过程。实验测量流动前位置和输注时间,并用于分析和数值获得纸冷凝剂芯的轴向渗透性。结果表明,模塑方法对RIP衬套质量,均匀填充和浸渍处理时间具有显着影响。而且,发现纸绕组过程的均匀性以及径向沿着树脂流动的均匀轴向速度是喷射空气的最有效因素。最后,认识到在瞬态流动的情况下确定轴向渗透性是新颖的,与稳定流动的达西关系如达西关系等常规程序相比。通过将纸张厚度降低0.3至0.2mm,渗透率从8.84×10(-10)降至4.52×10(-10)m(2)。芯的微观结构示出了绉纱纸冷凝器芯的轴向渗透性受到纸张厚度的变化的显着影响。

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