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首页> 外文期刊>Journal of Materials Science >A novel nozzle design for producing hydroentangled nonwoven materials with minimum jet-mark defects
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A novel nozzle design for producing hydroentangled nonwoven materials with minimum jet-mark defects

机译:一种新颖的喷嘴设计,用于生产水刺缠结的非织造材料,具有最小的喷射痕迹缺陷

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摘要

The presence of jet-marks, or jet-streaks, on the surface of hydroentangled nonwoven fabrics, is usually regarded as an undesirable outcome of the hydroentangling process. Jet-streaks degrade aesthetic features and physical properties of the resulting fabrics. Jet-streaks are associated with low tear strength along the machine direction and non-uniform appearance. Reducing or eliminating the occurrence of jet-streaks will lead to increased use of this class of fabrics in many applications. Hydroentangling employs closely-packed single or multiple rows of high-speed waterjets to entangle and consolidate fibers or filaments in a loose (un-bonded) web. In this work, we demonstrated that a waterjet curtain made of two rows of staggered jets where the jets in the 2nd row are smaller in diameter than those in the 1st row can help minimize these jet-marks in a cost-effective manner. The optimal ratio between the diameter of the jets in the 1st and 2nd row depends on the hydroentangling pressure, as well as the web characteristics. In this study, different nozzle diameters ranging from 100 mu m to 130 mu m for the 2nd row were examined in combination with a fixed diameter of 130 mu m for the nozzles in the 1st row. For the type of fiber-web used and the operating pressures considered, a combination of nozzles with 130 mu m diameter in the 1st row, and nozzles with 110 mu m diameter in the 2nd row, was found to provide the optimum setting for eliminating/minimizing the jet-marks.
机译:在水刺缠结的非织造织物的表面上存在喷射痕迹或喷射条纹通常被认为是水刺缠结过程的不期望的结果。喷射条纹降低了所得织物的美学特征和物理性能。喷射条纹与沿机器方向的低撕裂强度和不均匀的外观有关。减少或消除喷射条纹的发生将导致此类织物在许多应用中的使用增加。水力缠结采用密排的单排或多排高速水刀将纤维或长丝缠结并固结在松散(未粘合)的网中。在这项工作中,我们证明了由两排交错的射流制成的水刀帘,其中第二排的射流直径小于第一排的射流直径,可以帮助以经济高效的方式使这些射流痕迹最小化。第一排和第二排中的喷嘴直径之间的最佳比例取决于水力缠结压力以及纤维网特性。在这项研究中,检查了第二排喷嘴的直径范围从100微米到130微米,结合第一排喷嘴的固定直径为130微米。对于所用纤维网的类型和所考虑的工作压力,发现第一排直径为130μm的喷嘴和第二排直径为110μm的喷嘴的组合为消除/减少喷射痕迹。

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