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首页> 外文期刊>Journal of Applied Polymer Science >The influence of processing parameters on the structural and mechanical properties of drawn polypropylene fibres: A factorial design approach
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The influence of processing parameters on the structural and mechanical properties of drawn polypropylene fibres: A factorial design approach

机译:工艺参数对拉伸聚丙烯纤维结构和机械性能的影响:析因设计方法

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摘要

This article reports a study of multi-stage polypropylene fiber drawing (stretching) as a continuous, but independent stage of the overall fiber-forming process. The fibers were drawn according to a factorial experimental design, once appropriate spinning conditions had been devised. The structures of the drawn fibers were studied using wide-angle X-ray diffraction and birefringence measurements. In addition, the fibers were characterized with respect to filament tenacity, elongation to break, specific secant modulus, and extent of shrinkage at 130°C. All these properties were quantitatively assessed as responses to nine specially selected process control parameters in the drawing equipment. For every property analyzed, the temperatures of the hot plates in the draw frame were found to exert no significant influence, whereas the temperatures of the initial rollers were in most cases significant. Furthermore, the speed of the final roller also played an influential role, and a number of interactions between process parameters were identified as significant. Explanations are advanced for the parts played by significant process parameters on the properties of the drawn fibers. The article also demonstrates the advantages of factorial experimental design in determining correct settings for process parameters to give drawn fibers with the properties desired.
机译:本文报告了对多阶段聚丙烯纤维拉伸(拉伸)的研究,该过程是整个纤维成型过程的连续但独立的阶段。一旦设计了适当的纺丝条件,就根据析因实验设计拉伸纤维。使用广角X射线衍射和双折射测量来研究拉伸纤维的结构。另外,纤维还具有长丝强度,断裂伸长率,比正割模量和在130℃下的收缩程度的特征。所有这些特性都作为对拉伸设备中九种特殊选择的过程控制参数的响应进行了定量评估。对于所分析的每种性能,并条机中加热板的温度均未发现明显影响,而初始辊的温度在大多数情况下均显着。此外,最终辊的速度也起着重要的作用,过程参数之间的许多相互作用被认为是重要的。对于牵伸纤维的重要工艺参数所作用的零件,将作进一步说明。本文还展示了析因实验设计在确定工艺参数的正确设置以赋予拉伸纤维所需性能方面的优势。

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