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Process property studies of melt blown thermoplastic polyurethane polymers.

机译:熔喷热塑性聚氨酯聚合物的工艺性能研究。

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摘要

The primary goal of this research was to determine optimum processing conditions to produce commercially acceptable melt blown (MB) thermoplastic polyurethane (TPU) webs. The 6-inch MB line and the 20-inch wide Accurate Products MB pilot line at the Textiles and Nonwovens Development Center (TANDEC), The University of Tennessee, Knoxville, were utilized for this study.; The MB TPU trials were performed in four different phases: Phase 1 focused on the envelope of the MB operating conditions for different TPU polymers; Phase 2 focused on the production of commercially acceptable MB TPU webs; Phase 3 focused on the optimization of the processing conditions of MB TPU webs, and the determination of the significant relationships between processing parameters and web properties utilizing statistical analyses; Based on the first three phases, a more extensive study of fiber and web formation in the MB TPU process was made and a multi liner regression model for the MB TPU process versus properties was also developed in Phase 4.; In conclusion, the basic MB process was fundamentally valid for the MB TPU process; however, the MB process was more complicated for TPU than PP, because web structures and properties of MB TPUs are very sensitive to MB process conditions: Furthermore, different TPU grades responded very differently to MB processing and exhibited different web structure and properties.; In Phase 3 and Phase 4, small fiber diameters of less than 5mum were produced from TPU237, TPU245 and TPU280 pellets, and the mechanical strengths of MB TPU webs including the tensile strength, tear strength, abrasion resistance and tensile elongation were notably good. In addition, the statistical model showed useful interaction regarding trends for processing parameters versus properties of MB TPU webs. Die and air temperature showed multicollinearity problems and fiber diameter was notably affected by air flow rate, throughput and die/air temperature. It was also shown that most of the MB TPU web properties including mechanical strength, air permeability and fiber diameters were affected by air velocity and die temperature.
机译:这项研究的主要目的是确定最佳的加工条件,以生产商业上可接受的熔喷(MB)热塑性聚氨酯(TPU)纤维网。田纳西大学诺克斯维尔分校的纺织品和非织造布开发中心(TANDEC)的6英寸MB生产线和20英寸宽的Accurate Products MB试验生产线被用于这项研究。 MB TPU试验在四个不同阶段进行:第1阶段的重点是不同TPU聚合物的MB操作条件范围;第二阶段的重点是生产商业上可接受的MB TPU网;第三阶段的重点是优化MB TPU纤维网的加工条件,并利用统计分析确定加工参数与纤维网性能之间的重要关系;在前三个阶段的基础上,对MB TPU过程中纤维和纤网的形成进行了更广泛的研究,并且在阶段4中,还开发了MB TPU过程与性能的多线性回归模型。总之,基本的MB流程对于MB TPU流程从根本上是有效的。然而,由于TPU的网状结构和性能对MB工艺条件非常敏感,因此TPU的MB工艺比PP更复杂。此外,不同的TPU等级对MB加工的反应也非常不同,并且具有不同的网状结构和性能。在阶段3和阶段4中,由TPU237,TPU245和TPU280粒料生产的纤维直径小于5μm,MB TPU纤维网的机械强度(包括拉伸强度,撕裂强度,耐磨性和拉伸伸长率)非常好。此外,统计模型显示出有用的交互作用,涉及MB TPU网的处理参数趋势与性能之间的关系。模具和空气温度显示出多重共线性问题,并且纤维直径显着受空气流量,通过量和模具/空气温度的影响。还表明,大多数MB TPU纤维网特性(包括机械强度,透气性和纤维直径)均受空气速度和模头温度的影响。

著录项

  • 作者

    Lee, Youn Eung.;

  • 作者单位

    The University of Tennessee.;

  • 授予单位 The University of Tennessee.;
  • 学科 Engineering Materials Science.; Plastics Technology.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 258 p.
  • 总页数 258
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;整形外科学(修复外科学);
  • 关键词

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