Low Fibrillation Lyocell Fiber: Analysis of Fiber and its Crosslinking Agent

IF 6.4 3区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Advanced Materials Technologies Pub Date : 2024-10-23 DOI:10.1002/admt.202400639
Yaoxian Guo, Ting Li, Chunzu Cheng, Jigang Xu, Xuele Ma, Min Cheng, Jiayu Zhang, Shanping Guo
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Abstract

In this paper, the hydrolysis process of Dichlorohydroxytriazine (NHDT) under alkaline conditions are studied. A qualitative and quantitative method for the determination of HNDT and its hydrolysis products are established, which further clarified the hydrolysis mechanism of NHDT. Under alkaline conditions, the hydrolysis products are mainly compound 4, compound 6 and chloride (Cl). The hydrolysis rate of NHDT at different NaOH concentration and temperature is studied. This research can be used to guide the high efficiency preparation of low fibrillation Lyocell fiber. According to the quantitative detection of wet abrasion numbers and the qualitative analysis of the fiber by SEM after slapping, it is concluded that the low fibrillation Lyocell fiber is less prone to fibrillation under the combined action of wet state and mechanical force. Due to hydrolysis of the unreacted second chlorine resulting in harmful products on the low fibrillation Lyocell fiber, the fibrillation propensity increased with the increase of storage time. The mechanical properties of low fibrillation Lyocell fiber prepared under different fiber states are studied. The tensile breaking strength of low fibrillation Lyocell fiber prepared in the form of sequentially arranged fiber bundles are better, which is closely related to the fiber surface.

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低纤Lyocell纤维:纤维及其交联剂的分析
研究了二氯羟三嗪(NHDT)在碱性条件下的水解过程。建立了HNDT及其水解产物的定性和定量测定方法,进一步阐明了NHDT的水解机理。在碱性条件下,水解产物主要为化合物4、化合物6和氯离子(Cl−)。研究了不同NaOH浓度和温度下NHDT的水解速率。本研究可用于指导低纤Lyocell纤维的高效制备。通过湿磨损次数的定量检测和拍打后纤维的SEM定性分析,得出低纤Lyocell纤维在湿态和机械力的共同作用下不易发生纤颤的结论。由于未反应的二氯在低纤Lyocell纤维上水解产生有害产物,纤维的纤化倾向随着贮存时间的增加而增加。研究了不同纤维状态下制备的低纤Lyocell纤维的力学性能。以纤维束顺序排列的形式制备的低纤Lyocell纤维的拉伸断裂强度较好,这与纤维表面密切相关。
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来源期刊
Advanced Materials Technologies
Advanced Materials Technologies Materials Science-General Materials Science
CiteScore
10.20
自引率
4.40%
发文量
566
期刊介绍: Advanced Materials Technologies Advanced Materials Technologies is the new home for all technology-related materials applications research, with particular focus on advanced device design, fabrication and integration, as well as new technologies based on novel materials. It bridges the gap between fundamental laboratory research and industry.
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