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纺织绒面清创材料纤维脱落性能的体外评价及机制分析

In Vitro Evaluation and Mechanism Analysis of the Fiber Shedding Property of Textile Pile Debridement Materials.

作者信息

Fu Yijun, Xie Qixue, Lao Jihong, Wang Lu

机构信息

Key Laboratory of Textile Science and Technology of Ministry of Education and College of Textiles, Donghua University, Shanghai 201620, China.

出版信息

Materials (Basel). 2016 Apr 22;9(4):302. doi: 10.3390/ma9040302.

Abstract

Fiber shedding is a critical problem in biomedical textile debridement materials, which leads to infection and impairs wound healing. In this work, single fiber pull-out test was proposed as an evaluation for the fiber shedding property of a textile pile debridement material. Samples with different structural design (pile densities, numbers of ground yarns and coating times) were prepared and estimated under this testing method. Results show that single fiber pull-out test offers an appropriate evaluation for the fiber shedding property of textile pile debridement materials. Pull-out force for samples without back-coating exhibited a slight escalating trend with the supplement in pile density and number of ground yarn plies, while back-coating process significantly raised the single fiber pull-out force. For fiber shedding mechanism analysis, typical pull-out behavior and failure modes of the single fiber pull-out test were analyzed in detail. Three failure modes were found in this study, , fiber slippage, coating point rupture and fiber breakage. In summary, to obtain samples with desirable fiber shedding property, fabric structural design, preparation process and raw materials selection should be taken into full consideration.

摘要

纤维脱落是生物医学纺织清创材料中的一个关键问题,它会导致感染并损害伤口愈合。在这项工作中,提出了单纤维拔出试验作为评估纺织绒头清创材料纤维脱落性能的方法。制备了具有不同结构设计(绒头密度、地纱数量和涂层次数)的样品,并在此测试方法下进行评估。结果表明,单纤维拔出试验为纺织绒头清创材料的纤维脱落性能提供了合适的评估。未进行背涂层的样品的拔出力随着绒头密度和地纱层数的增加呈现出轻微的上升趋势,而背涂层工艺显著提高了单纤维拔出力。为了分析纤维脱落机制,详细分析了单纤维拔出试验的典型拔出行为和失效模式。本研究发现了三种失效模式,即纤维滑动、涂层点破裂和纤维断裂。总之,为了获得具有理想纤维脱落性能的样品,应充分考虑织物结构设计、制备工艺和原材料选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8e4/5502995/0d0efe5f62ab/materials-09-00302-g001.jpg

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