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Investigations of the preparation technology for polyglycolic acid fiber with perfect mechanical performance

机译:具有良好机械性能的聚乙醇酸纤维的制备工艺研究

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Polyglycolic acid (PGA) fibers were prepared by melt-spinning process in this report. The effects of spinning parameters, such as windup rates and drawn ratio, on the mechanical properties of the fibers were discussed by analyzing the internal stress of as-spun fibers, axial sound velocity, fiber tenacity, etc. The results showed that windup rate had a slight effect on the macromolecular orientation degree of the as-spun fibers, which was quite unusual for melt spinning, whereas, the subsequent drawing process effectively increased the macromolecular orientation degree of the PGA fibers and consequently increased the tensile strength of the fibers. Low internal stress of as-spun fibers obtained at lower windup rate led to higher drawing ratio, and the drawn fibers possessed relatively excellent mechanical properties. As a contrast, higher windup rate resulted in the strong internal stress of the as-spun fibers, which had a negative influence on the drawing process, and so the tensile strength of the drawn fibers was relatively poor. Therefore, PGA fiber with perfect mechanical performance could be prepared at the technical parameters of lower windup rate and higher drawing multiples as well as slow drawing rate. (C) 2007 Wiley Periodicals, Inc.
机译:本报告中通过熔融纺丝工艺制备了聚乙醇酸(PGA)纤维。通过分析初纺纤维的内应力,轴向声速,纤维强度等,讨论了纺丝参数如缠绕率和拉伸比对纤维力学性能的影响。对初纺纤维的大分子取向度的影响很小,这对于熔融纺丝来说是非常罕见的,而随后的拉伸过程有效地提高了PGA纤维的大分子取向度,因此提高了纤维的拉伸强度。以较低的缠绕率获得的初纺纤维的低内应力导致较高的拉伸比,并且拉伸的纤维具有相对优异的机械性能。相反,较高的缠绕率导致初纺纤维的内部应力很强,这对拉伸过程具有负面影响,因此拉伸纤维的拉伸强度相对较差。因此,可以在较低的缠绕率和较高的拉伸倍数以及较慢的拉伸速率的技术参数下制备具有良好机械性能的PGA纤维。 (C)2007 Wiley期刊公司

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