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Characterizing Spin Finish Layers on Polypropylene Fiber Surfaces by Means of Scanning Force Microscopy Techniques

机译:借助扫描力显微镜技术表征聚丙烯纤维表面上的纺丝油剂层

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摘要

For a better understanding of the structure, distribution, and composition of spin finish layers on fiber surfaces, scanning force microscopy techniques are used to image spin finish layers on polypropylene fiber surfaces with submicrometer resolution. The polypropylene staple fibers are made into nonwovens, and common antistatic, wetting, and hydrophobizing agents are the spin finishes. Distribution and thickness profiles of the wax-like antistatic and hydrophobizing agents are successfully measured with contact mode atomic force microscopy and lateral force microscopy. Nanometer scale measurements of local adhesion forces and elastic moduli of the spin finish layer surfaces by force modulation techniques (pulsed force mode) provide further information on the distribution and composition of the spin finish layers. In addition, the oil-like wetting agent layer, which is too soft and sticky for contact mode measurements, can be imaged with the pulsed force mode technique.
机译:为了更好地理解纤维表面上纺丝油剂层的结构,分布和组成,使用扫描力显微镜技术以亚微米分辨率对聚丙烯纤维表面上的纺丝油剂层进行成像。聚丙烯短纤维被制成非织造布,常用的抗静电剂,润湿剂和疏水剂是纺丝油剂。蜡状抗静电剂和疏水剂的分布和厚度分布已通过接触模式原子力显微镜和横向力显微镜成功测量。通过力调制技术(脉冲力模式)对纺丝油剂层表面的局部粘附力和弹性模量进行纳米级测量,可提供有关纺丝油剂层的分布和组成的更多信息。另外,对于油性润湿剂层来说,它对于接触模式的测量来说太软和太粘,可以用脉冲力模式技术进行成像。

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