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基于流变分析优化纺丝工艺制备的角蛋白/聚酰胺 6 复合纤维的结构与性能表征。

Characterization of the keratin/polyamide 6 composite fiber's structure and performance prepared by the optimized spinning process based on the rheological analysis.

机构信息

School of Textile Science and Engineering, Xi'an Polytechnic University, Xi'an, Shaanxi 710048, China; Key Laboratory of Functional Textile Material and Product (Xi'an Polytechnic University), Ministry of Education, Xi'an, Shaanxi 710048, China.

School of Textile Science and Engineering, Tiangong University, Tianjin 300387, China.

出版信息

Int J Biol Macromol. 2022 Dec 1;222(Pt A):938-949. doi: 10.1016/j.ijbiomac.2022.09.229. Epub 2022 Sep 29.

Abstract

The complex chemical structure of polypeptide and the imperfection of processing technology cause the mechanical properties of regenerated keratin to be hard and brittle. This defect seriously affects the application prospects of keratin materials. To solve the above problems, α-lipoic acid modified keratin (KER) was blended with Polyamide 6 (PA6) and prepared into composite fibers via the wet-spinning method in this work. The spinnability and spinning conditions of the KER/PA6 blend solution were analyzed by rheological theory. The results illustrated that keratin solution will easily form a gel state under certain temperatures and concentrations, which was not conducive to the preparation of regenerated fiber. When the temperature was 45 °C and the mass fraction was 10 %, the viscosity and rheology of the solution were appropriate. The rheological properties of the blend solution showed that too much keratin would make the solution easy to gel, which was not conducive to the preparation of regenerated fibers and may affect the fiber properties. On this basis, the prepared composite fibers were characterized to explore the macromolecular aggregation state of keratin and PA6 in fibers. FT-IR and XRD results proved that there was no chemical reaction between keratin and PA6 in the composite fibers, which belonged to physical blending. At the same time, the two polymers had good compatibility and can be blended at the molecular level. SEM, DSC, and tensile strength test results indicated that when the proportion of keratin was too high, the structure and properties of the composite fibers will have obvious defects, which was consistent with the rheological analysis. Therefore, the blend ratio of keratin/PA6 was determined to be 3:7. Under this condition, the fibers exhibited a homogeneous structure and good thermal properties, especially its mechanical properties were close to wool fibers. The KER/PA6 composite fibers show important research value and can also provide technical reference for the development of regenerated biomass materials.

摘要

角蛋白的复杂化学结构和加工工艺的不完善导致其力学性能表现为坚硬和脆性。这一缺陷严重影响了角蛋白材料的应用前景。为了解决上述问题,本工作通过湿法纺丝法将 α-硫辛酸修饰角蛋白(KER)与聚酰胺 6(PA6)共混,制备成复合纤维。利用流变学理论分析了 KER/PA6 共混溶液的可纺性和纺丝条件。结果表明,在一定的温度和浓度下,角蛋白溶液容易形成凝胶状态,不利于再生纤维的制备。当温度为 45℃、质量分数为 10%时,溶液的黏度和流变性能适中。共混溶液的流变性能表明,过多的角蛋白会使溶液容易凝胶,不利于再生纤维的制备,可能会影响纤维的性能。在此基础上,对制备的复合纤维进行了表征,以探讨角蛋白和 PA6 在纤维中的高分子聚集态。FT-IR 和 XRD 结果表明,复合纤维中角蛋白和 PA6 之间没有发生化学反应,属于物理共混。同时,两种聚合物具有良好的相容性,可以在分子水平上共混。SEM、DSC 和拉伸强度测试结果表明,当角蛋白比例过高时,复合纤维的结构和性能会出现明显缺陷,这与流变分析结果一致。因此,确定角蛋白/PA6 的共混比例为 3:7。在该条件下,纤维呈现均匀的结构和良好的热性能,特别是其力学性能接近羊毛纤维。KER/PA6 复合纤维具有重要的研究价值,也可为可再生生物质材料的开发提供技术参考。

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