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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Analysis of Necking Deformation Behavior in High-Speed In-line Drawing Process of PET by On-line Diameter and Velocity Measurements
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Analysis of Necking Deformation Behavior in High-Speed In-line Drawing Process of PET by On-line Diameter and Velocity Measurements

机译:在线直径和速度测量分析PET高速在线拉伸过程中的颈缩变形行为

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摘要

To clarify the characteristic behavior of filament deformation in high-speed in-line drawing process of poly(ethylene ter-ephthalate) (PET),on-line measurements of filament velocity and diameter were performed.In the process,velocity of the first godet roller was fixed at 2 km/min and the draw ratio was varied from 1.75 to 2.25 by changing the velocity of the second godet roller from 3.5 to 4.5 km/min.For comparison,on-line measurements were also performed for the high-speed melt spinning process at take-up velocities of 2 to 5 km/min.Diameter and velocity profiles of PET filament in the high-speed in-line drawing process indicated that the filament started to deform immediately after passing through the first godet roller (GR-1),and finished its deformation at 40 approx 60 cm from the GR-1.The region of deformation became narrower and shifted toward the GR-1 with an increase in the draw ratio.Detailed analysis of necking deformation through simultaneous diameter measurements at two positions of close distance revealed that the position of necking deformation fluctuates along the drawing-line and its shape varies significantly depending on the direction of its movement.When the position of necking deformation was shifting toward the upstream,its shape was steeper than the one shifting toward the downstream.Results of the simultaneous on-line measurements of diameter and velocity supported this conclusion qualitatively.The analyzed maximum strain rate at the draw ratio of 2.0 reached a high value of 510 s~(-1).
机译:为了阐明聚对苯二甲酸乙二醇酯(PET)高速在线拉伸过程中细丝变形的特征行为,对细丝的速度和直径进行在线测量。在此过程中,第一个导丝辊的速度通过将第二导丝辊的速度从3.5 km / min更改为2 km / min,将拉伸比从1.75改变为2.25,将导丝辊的速度从3.5改变为4.5 km / min。为进行比较,还对高速进行了在线测量以2至5 km / min的卷取速度进行熔体纺丝工艺.PET细丝的直径和速度曲线在高速在线拉伸过程中表明,细丝在通过第一个导丝辊之后立即开始变形(GR -1),并在距离GR-1约40 cm处完成变形。随着拉伸比的增加,变形区域变窄并向GR-1偏移。两宝近距离位置显示缩颈变形的位置沿画线波动,并且其形状根据其移动方向而显着变化。当缩颈变形的位置向上游移动时,其形状比向后移动的形状更陡峭同时进行直径和速度在线测量的结果在质量上支持了这一结论。在2.0的拉伸比下分析的最大应变率达到了510 s〜(-1)的高值。

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