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作 者:钟璇[1] 童贤涛[1] 张玥[1] 袁象恺[1] 余木火[1]
机构地区:[1]东华大学材料科学与工程学院,纤维改性国家重点实验室,上海201620
出 处:《纤维素科学与技术》2014年第1期12-17,共6页Journal of Cellulose Science and Technology
摘 要:采用新型碱复合溶剂NaOH/j琉脲/尿素水溶液对纤维素进行溶解,并采用H2S04/Na2SO4溶液作为凝固浴,对纤维素溶液进行湿法纺丝,获得纤维素纤维。通过改变凝固浴组分,研究纤维素纤维结构和性能的变化,获得更好的纺丝条件。研究表明,当H2S04质量分数为8%~10%,Na2SO4质量分数6%~12%时,纺丝过程稳定,纤维素纤维的力学性能较好且相对稳定。纤维素纤维的断裂强度最大值可达2.06cN/dtex,纤维素纤维横截面均呈近圆形结构,且无明显的皮芯结构,同时纤维素纤维具有纤维素II的结晶特征,凝固浴组分变化对纤维素纤维的结晶度和取向因子影响不大。The cellulose fiber was prepared by wet-spinning from NaOH/thiourea/urea aqueous solution, while H2SO4/Na2SO4 aqueous solution was used as the coagulation. The effects of coagulation components on the structure, morphology, mechanical properties and thermal properties of the prepared fiber were investigated by X-ray diffraction (XRD), scanning electron microscope (SEM), tensile tester and TGA, respectively. The process of spinning was stable and properties of prepared fiber were optimum under condition of 8%~ 10% H2SO4 and 6%~ 12% Na2SO4. The maximum tensile strength reached 2.06 cN/dtex with circular cross-sectional shapes and smooth surface. And the crystalline structure was cellulose (II). The orientation factor changed a little.
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