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首页> 外文期刊>Journal of Applied Polymer Science >The influence of cobaltous chloride modification on physical properties and microstructure of modified PAN fiber during carbonization
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The influence of cobaltous chloride modification on physical properties and microstructure of modified PAN fiber during carbonization

机译:碳化过程中氯化钴改性对改性PAN纤维物理性能和微观结构的影响

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Modification of polyacrylonitrile (PAN) fibers with cobaltous chloride has increased crystal size, crystallinity, and density, and also improved tensile strength and modulus of the resulting carbon fibers. In this study, the effect of cobaltous chloride modification on the physical properties, microstructure, and elemental composition of PAN fibers during the carbonization process was examined. The resultant carbon fibers developed from modified PAN fibers had a lower formation temperature of carbon basal planes than those fibers that developed from the original one. The modification process not only improved the tensile strength but also increased the tensile modulus by about 15% of the resulting carbon fibers at carbonization temperature of 1300 degrees C. A higher stacking size (L-c), or a greater carbon basal plane in crystalline, is one of the reasons to improve the modulus and conductivity of the final carbon fibers. The modification process also increased the electrical conductivity by about 15% at 1300 degrees C and by about 150% at 2500 degrees C. (C) 1998 John Wiley & Sons, Inc. [References: 26]
机译:用氯化钴改性聚丙烯腈(PAN)纤维具有增加的晶体尺寸,结晶度和密度,并且还改善了所得碳纤维的拉伸强度和模量。在这项研究中,研究了氯化钴改性对碳化过程中PAN纤维的物理性能,微观结构和元素组成的影响。由改性PAN纤维制成的所得碳纤维的碳基面形成温度低于由原始PAN纤维形成的碳纤维。改性过程不仅提高了抗张强度,而且在1300℃的碳化温度下将所得碳纤维的拉伸模量提高了约15%。更高的堆积尺寸(Lc)或晶体中更大的碳基面是改善最终碳纤维的模量和导电性的原因之一。改性过程还在1300摄氏度下将电导率提高了约15%,在2500摄氏度下使电导率提高了约150%。(C)1998 John Wiley&Sons,Inc. [参考:26]

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