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Structural, mechanical, and tribological properties of electrospun poly(hexamethylene adipamide) fiber mats

机译:电纺聚(己二酰己二胺)纤维垫的结构,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 in a large number of applications. In this work, mats of electrospun fibers of poly(hexamethylene adipamide) (PA 6,6) with average fiber diameter of 238±22 nm are characterized for their crystal structure as well as their mechanical and tribological properties. Post-spin thermal annealing was used to modify the fiber morphology and crystallinity within the fibers. Morphological changes, in-plane tensile response, friction coefficient and wear rate were characterized as functions of the annealing temperature. The mechanical and tribological properties of the thermally annealed PA 6,6 fiber mats exhibited significant improvements through the Brill transition temperature, comparable to the improvements observed for amorphous polyamide electrospun mats annealed near the glass transition temperature. The effective wear rate of the electrospun fiber mats is well-described by a previously proposed modification of the Ratner-Lancaster relationship that relates wear to the yield behavior of these nonwoven mats.
机译:电纺纤维毡的机械和摩擦学性能对其在许多应用中的实用性至关重要。在这项工作中,具有平均纤维直径为238±22 nm的聚己二酸己二酰胺(PA 6,6)的电纺纤维毡的晶体结构以及机械和摩擦学特性得到了表征。纺丝后热退火用于改变纤维的形态和纤维内的结晶度。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。热退火的PA 6,6纤维毡的机械性能和摩擦学性能在Brill转变温度下表现出显着改善,与在玻璃化转变温度附近退火的无定形聚酰胺电纺毡所观察到的改善相当。电纺纤维垫的有效磨损率已通过先前提出的对Ratner-Lancaster关系的修改来很好地描述,该关系将磨损与这些非织造垫的屈服行为相关联。

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