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首页> 外文期刊>Journal of Applied Polymer Science >Use of D-optimal design to model and the analysis of the effect of the draw ratio on some physical properties of hot multistage drawn nylon 6 fibers
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Use of D-optimal design to model and the analysis of the effect of the draw ratio on some physical properties of hot multistage drawn nylon 6 fibers

机译:使用D最优设计对拉伸比对热多段拉伸尼龙6纤维某些物理性能的影响进行建模和分析

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摘要

In this article, we present an experimental design methodology for studying the effect of the draw ratio on the physical properties of nylon 6 fibers on hot multistage drawing. A response surface methodology involving D-optimal design was used for the modeling and optimization. According to the analysis of variance results, the proposed models could be used to navigate the design space. We found that the responses of the tenacity and initial modulus were very sensitive to the factor of the second-stage draw ratio, and the shrinkage response was governed by the factor of the third-stage draw ratio. The results show a good agreement between the experimental and model predictions with high correlation coefficients. The operation conditions for obtaining the drawn yarn with the highest tenacity and initial modulus and low shrinkage are proposed.
机译:在本文中,我们提供了一种实验设计方法,用于研究热多段拉伸过程中拉伸比对尼龙6纤维物理性能的影响。涉及D最优设计的响应面方法用于建模和优化。根据方差结果的分析,提出的模型可用于导航设计空间。我们发现,韧度和初始模量的响应对第二阶段拉伸比的因素非常敏感,而收缩响应受第三阶段拉伸比的因素控制。结果表明,具有高相关系数的实验预测与模型预测之间具有良好的一致性。提出了获得具有最高的韧度和初始模量和低收缩率的拉伸纱线的操作条件。

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