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Multiple Response Optimization of Rotor Yarn for Strength, Unevenness,Hairiness and Imperfections

机译:针对强度,不均匀度,毛发和瑕疵的转子纱多响应优化

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摘要

In this study, a multiple response optimization model based on response surface methodology was developed to determine the best rotor speed and yarn twist level for optimum rotor yam strength and unevenness, and minimum yam hairiness and imperfections. Cotton yam of 30 tex, was produced on rotor spinning machine with different twist levels (i.e. 500, 550, 600 and 700 tpm) at different rotor speeds (i.e. 70000, 80000, 90000 and 100000 rpm). Yarn quality characteristics were determined for all the experiments. Based on the results, multiple response optimization model was developed using response surface regression on MINITAB~R 16 statistical tool. Optimization results indicate that with the quality of raw material selected for this study, top 50 % quality level, according to USTER~R yarn quality benchmarks, can be achieved with 100 % desirability satisfaction for all the selected yam quality parameters at rotor speed of 77,800 rpm and yam twist of 700 twists per meter.
机译:在这项研究中,开发了一种基于响应面方法的多重响应优化模型,以确定最佳转杯速度和纱线捻度,以实现最佳的转杯纱强度和不均匀度以及最小的纱线毛羽和不完美度。在转杯纺纱机上以不同的转杯速度(即70000、80000、90000和100000 rpm)以不同的捻度(即500、550、600和700 tpm)生产30 tex的棉纱。确定所有实验的纱线质量特性。根据结果​​,在MINITAB〜R 16统计工具上使用响应面回归开发了多响应优化模型。优化结果表明,根据本研究选择的原料质量,根据USTER〜R纱线质量基准,可以在77,800的转子转速下对所有选定的纱线质量参数达到100%的理想满意度,从而达到最高50%的质量水平rpm和纱线的捻度为每米700捻。

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