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Friction Determination for Filament Winding Applications, Part 1: Mandrel Shape and Machine Control

机译:细丝缠绕应用中的摩擦测定,第1部分:心轴形状和机器控制

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The design procedure of non-geodesic filament wound products requires well-determined values for the available friction situated between the applied roving and the supporting surface. In this paper, we propose a mandrel shape with a specially designed meridian profile that enables a linearly proportional relation between the feed eye carriage translation and the measured values for the coefficients of friction. As a result of this property, the optically or chronometrically obtained measurements can directly be translated into coefficients of friction. Additional features of this approach are the high accuracy, repeatability, low experimental costs, and simple machine control strategies. With the proposed mandrel, we performed several experiments corresponding to the variation of typical filament winding-related process parameters: fiber speed, roving tension, roving dimensions, wet vs. dry winding and surface quality of the mandrel. The experiments and the obtained results are presented in [15] 'Friction Experiments for Filament Winding Applications: Part 2'.
机译:非大地长丝缠绕产品的设计程序需要确定的值,才能确定所施加的粗纱和支撑表面之间的可用摩擦力。在本文中,我们提出了一种具有经特殊设计的子午线轮廓的心轴形状,该形状使进给眼滑架平移与摩擦系数的测量值之间具有线性比例关系。由于这种特性,光学或按时间顺序获得的测量结果可以直接转换为摩擦系数。这种方法的其他特征是高精度,可重复性,低实验成本和简单的机器控制策略。对于提出的心轴,我们进行了与典型的与长丝缠绕相关的工艺参数变化相对应的实验:纤维速度,粗纱张力,粗纱尺寸,湿/干缠绕以及心轴的表面质量。实验和获得的结果在[15]“细丝缠绕应用的摩擦实验:第2部分”中进行介绍。

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