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High-speed video graphic study of filament-core yarn spinning

机译:长丝芯纱纺丝的高速视频图形研究

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One of the challenges in spinning fine-count core yarns is to achieve a perfect coverage of the core, especially when the filament core comprises a large proportion of the yarn. Any uncovered parts of the core will appear on the yarn surface as periodical defects, known as the barber-pole effect. The main tool available for spinners to improve yarn coverage (i.e. reduction of barber-pole effect) is optimising the relative roving and filament feeding configuration at the entrance to the yarn-forming zone. Using high-speed video photography, we investigated the formation of the barber-pole effect for several feeding configurations and the use of a false-twisting device. Core-yarn coverage could be improved by applying false twist in the yarn-formation zone. The direction of the false twist relative to the final twist imparted by the ring spindle was found to be critical to the improvement of the resultant core-yarn coverage. The coverage of core yarns produced in the trials was evaluated using an objective method based on a fast Fourier transform (FFT) algorithm. The objective assessment method is also described.
机译:纺制细支芯纱的挑战之一是如何实现芯的完美覆盖,特别是当长丝芯占纱线的很大一部分时。芯线的任何未覆盖部分都会以周期性缺陷的形式出现在纱线表面,这就是所谓的“理发极效应”。纺纱厂可用来改善纱线覆盖率(即减少理发杆效应)的主要工具是优化纱线形成区域入口处的粗纱和长丝进料配置。使用高速视频摄影,我们研究了几种进纸方式的梳子杆效应的形成以及假捻装置的使用。可以通过在纱线形成区施加假捻来改善芯纱覆盖率。发现相对于由环形锭子施加的最终扭曲而言,错误扭曲的方向对于改善所得芯纱覆盖率至关重要。使用基于快速傅里叶变换(FFT)算法的客观方法评估了试验中生产的芯纱的覆盖率。还描述了客观评估方法。

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