基于铜氨方法的碳化/再生纤维素复合纤维的结构和机械性能
Yin Tang1,2,3, Shouwei Ban2, Jing Sun4
1College of Light Industry and Textiles, Qiqihar University, Qiqihar, Heilongjiang, China.
PloS one
|January 21, 2026
概括
碳化物/再生纤维素复合纤维使用铜氨法制造. 较小的碳化物颗粒会对纤维强度产生负面影响,但甲处理可以提高性.
科学领域:
- 材料科学 材料科学 材料科学
- 聚合物化学 聚合物化学
- 纳米技术纳米技术
背景情况:
- 再生纤维素纤维是一种多功能材料.
- 用陶纳米粒子增强纤维素纤维的特性是一个活跃的研究领域.
- 碳化物 (B4C) 提供了提高机械和热性能的潜力.
研究的目的:
- 为了研究碳化物/再生纤维素复合纤维的制造.
- 描述这些复合纤维的结构,热和机械性能.
- 为了评估碳化物颗粒大小和后处理对纤维特性的影响.
主要方法:
- 在铜氨溶液中溶解纤维素.
- 碳化物粉末的加入.
- 湿用于纤维的形成.
- 用谷氨酸进行后期治疗.
- 使用EDS,TG,XRD,FTIR和机械测试进行表征.
主要成果:
- 碳化添加改变了纤维形态 (更粗,更暗),并通过EDS确认了它的存在.
- 热稳定性 (TG) 和晶体结构 (XRD) 通过增加碳化含量来提高.
- 较小的碳化物颗粒 (500nm) 由于聚合和应力度而降低了断裂强度.
- 甲后处理改善了复合纤维的性.
结论:
- 取得了碳化/再生纤维素复合纤维的成功制造.
- 碳化的加入增强了热稳定性,但根据颗粒大小可能会对机械强度产生负面影响.
- 甲后处理提供了一种可行的方法来提高这些复合纤维的机械性能.
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