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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >High temperature behaviour of the crystalline phases in unfilled and clay-filled nylon 6 fibers
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High temperature behaviour of the crystalline phases in unfilled and clay-filled nylon 6 fibers

机译:未填充和填充粘土的尼龙6纤维中结晶相的高温行为

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Temperature-induced crystalline phase transitions in neat nylon 6 fibers as well as nylon 6/montmorillonite nanocomposite fibers have been studied by means of wide-angle X-ray scattering. Both types of melt spun fibers only consist of the y crystalline phase that does not display any transition during heating up to the melt. In contrast, fibers drawn up to the maximum draw ratio at 140 degrees C display the single a phase with a high degree of chain orientation. During the temperature increase, the a phase undergoes a gradual structural disordering but preserves its monoclinic character up to melting. The structural evolution of the a form turned out sensitive to the thermal and mechanical treatment of the fibers. Annealing the unfilled drawn fibers at 150 degrees C prior to the WAXS experiment improves the thermal stability of the alpha form due to heating of the processing-induced crystalline defects. The montmorillonite-filled fibers display both the a and the y crystals, which readily turn into a crystal form only upon drawing. Due to the matrix shearing between the MMT platelets, the H-bonded sheets display a higher thermal stability as compared with unfilled drawn fibers. Upon cooling from the melt, the first signs of crystallization are of y form in the MMT-PA6 fibers, but the a form rapidly turns predominant. Crystallization kinetics considerations are put forward to account for this finding. (c) 2006 Elsevier Ltd. All rights reserved.
机译:已通过广角X射线散射研究了纯尼龙6纤维以及尼龙6 /蒙脱土纳米复合纤维中温度诱导的结晶相变。两种类型的熔体纺丝纤维仅由y晶相组成,在加热到熔体的过程中,它不显示任何转变。相反,在140℃下被拉伸至最大拉伸比的纤维显示出具有高链取向度的单相。在温度升高期间,α相经历了逐渐的结构紊乱,但一直保持其单斜晶特征直至融化。形式的结构演变证明对纤维的热处理和机械处理敏感。在WAXS实验之前,对未填充的拉伸纤维进行150℃的退火处理可改善α型晶形的热稳定性,这是由于加工引起的晶体缺陷的加热所致。蒙脱土填充的纤维同时显示a和y晶体,仅在拉伸时它们容易转变为晶体形式。由于MMT薄片之间的基质剪切,与未填充的拉伸纤维相比,H粘合片材显示出更高的热稳定性。从熔体冷却后,MMT-PA6纤维中的第一个结晶迹象为y形式,但该形式迅速转变为主要形式。提出了结晶动力学考虑因素以解释该发现。 (c)2006 Elsevier Ltd.保留所有权利。

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