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High modulus polypropylene fibers. II. Influence of fiber preparation upon structure and morphology

机译:高模量聚丙烯纤维。二。纤维制备对结构和形态的影响

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The influence of drawing on the limiting draw ratio upon formation of the morphological structure of fibers spun fro, binary polypropylene (PP) blends was studied. Fibers were Spun from a fiber-grade CR-polymer and from the blends of a fiber-grade CR-polymer with a molding-grade polymer in the composition range of 10-50 wt % added. As-spun fibers were immediately moderately and additionally highly drawn at the temperature of 145 degrees C. The structure and morphology of these fibers were investigated by small-angle X-ray scattering, wide-angle X-ray scattering, differential scanning calorimetry, scanning electron microscopy, density, birefringence, and sound velocity measurements. It was shown that continuously moderately drawn fibers are suitable precursors for the production of high tenacity PP fibers of very high modulus, because of so called oriented "smectic" structure present in these fibers. With drawing at elevated temperature, the initial metastable structure of low crystallinity was disrupted and a c-axis orientation of monoclinic crystalline modification was developed. Hot drawing increased the size of crystallites and crystallinity degree, the orientation of crystalline domains, and average orientation of the macromolecular chains and resulted in extensive fibrillation and void formation. It was found that the blend composition has some influence on the structure of discontinuously highly drawn fibers. With increasing the content of the molding-grade polymer in the blend, the size of crystalline and amorphous domains, density and crystallinity, as well as amorphous orientation decreased. Relationship has been established between the mechanical properties, crystallinity, and orientation of PP fibers. It was confirmed that by blending the fiber-grade CR-polymer by a small percentage of the molding-grade polymer, maximization of elastic modulus is achieved, mainly because of higher orientation of amorphous domains. (c) 2006 Wiley Periodicals, Inc.
机译:研究了拉伸对极限拉伸比对纺制二元聚丙烯(PP)共混物纤维形态结构的影响。从纤维级CR聚合物和纤维级CR聚合物与模塑级聚合物的掺混物中纺制出的纤维,其组成范围为10-50重量%。立即在145摄氏度的温度下对初纺纤维进行适度和高度拉伸。通过小角X射线散射,广角X射线散射,差示扫描量热法,扫描法研究了这些纤维的结构和形态。电子显微镜,密度,双折射和声速测量。已经表明,连续适度拉伸的纤维是合适的前体,用于生产非常高模量的高韧性PP纤维,因为这些纤维中存在所谓的定向“近晶”结构。随着在高温下拉伸,低结晶度的初始亚稳态结构被破坏,并且单斜结晶修饰的c轴取向得以发展。热拉伸增加了微晶的尺寸和结晶度,晶畴的取向以及大分子链的平均取向,并导致大量的原纤化和空隙形成。已经发现,共混物组成对不连续高度拉伸的纤维的结构有一些影响。随着共混物中模塑级聚合物含量的增加,结晶域和非晶域的尺寸,密度和结晶度以及非晶取向降低。已在PP纤维的机械性能,结晶度和取向之间建立了关系。已经证实,通过将纤维级CR聚合物与少量模塑级聚合物共混,可以实现弹性模量的最大化,这主要是由于非晶域的取向较高。 (c)2006年Wiley Periodicals,Inc.

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