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Mechanical and tribological properties of electrospun PA 6(3)T fiber mats

机译:电纺pa 6(3)T纤维垫的机械和摩擦学性能

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摘要

The mechanical and tribological properties of electrospun fiber mats are of paramount importance to their utility as components in a large number of applications. Although some mechanical properties of these mats have been reported previously, reports of their tribological properties are essentially nonexistent. In this work, electrospun nanofiber mats of poly(trimethyl hexamethylene terephthalamide) (PA 6(3)T) with average fiber diameter of 463 ± 64 nm are characterized mechanically and tribologically. Post-spin thermal annealing was used to modify the properties of the fiber mats. Morphological changes, in-plane tensile response, friction coefficient and wear rate were characterized as functions of the annealing temperature. The Young's moduli, yield stresses and toughnesses of the nonwoven mats improved by two- to ten-fold when annealed slightly above the glass transition temperature, but at the expense of mat porosity. The coefficient of friction and the wear rate decrease by factors of two and ten, respectively, under the same conditions. The wear rate correlates with the yield properties of the mat, in accord with a modified Ratner–Lancaster model. The variation in mechanical and tribological properties of the mats with increasing annealing temperature is consistent with the formation of fiber-to-fiber junctions and a mechanism of abrasive wear that involves the breakage of fibers between junctions.
机译:电纺纤维毡的机械和摩擦学性能对于它们在许多应用中作为组件的用途至关重要。尽管以前已经报道过这些垫子的一些机械性能,但是基本上没有关于它们的摩擦学性能的报告。在这项工作中,机械和摩擦学上表征了平均纤维直径为463±64 nm的聚(三甲基六亚甲基对苯二甲酰胺)(PA 6(3)T)的静电纺纳米纤维毡。纺丝后热退火用于改变纤维垫的性能。形貌变化,面内拉伸响应,摩擦系数和磨损率是退火温度的函数。当在略高于玻璃化温度的温度下退火时,非织造垫的杨氏模量,屈服应力和韧性提高了2到10倍,但以垫的孔隙率为代价。在相同条件下,摩擦系数和磨损率分别降低了两倍和十倍。根据改良的Ratner-Lancaster模型,磨损率与毡的屈服特性相关。垫子的机械和摩擦学性能随退火温度的升高而变化,这与纤维间连接处的形成以及涉及连接处间纤维断裂的磨料磨损机理相一致。

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