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PLASMA MODIFICATION OF POLYVINYL ALCOHOL MICROFIBERS TO IMPROVE COHESION WITH CEMENT MATRIX

机译:聚乙烯醇微纤维的等离子体改性,改善水泥基质的内聚力

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摘要

The article describes plasma modifications of the surface of polyvinyl alcohol (PVA) microfibers using oxygen and hydrogen plasma in order to improve the properties of the composite material containing modified microfibers, cement and recyclate. Five different modification times 30, 60, 120, 240 and 480 seconds were applied. Changes on fiber surface were detected by SEM analysis, packed cell wettability measurement, and weight loss during modification. The selected durations of plasma treatment were chosen to produce test samples on which the modulus of elasticity was continuously measured and then bending and compression tests were performed. The measured values were compared with the reference samples. Oxygen modified fibers behavior is more hydrophilic compare with reference fibers, but hydrogen modified fibres behave more hydrophobic than reference fibers.
机译:本文描述了使用氧气和氢等离子体的聚乙烯醇(PVA)微纤维表面的等离子体修饰,以改善含有改性微纤维,水泥和再循环的复合材料的性质。施加五次不同的修改时间30,60,120,240和480秒。通过SEM分析,填充细胞润湿性测量和修改期间减肥来检测纤维表面的变化。选择选定的等离子体处理持续时间以产生试验样品,在该试样上连续测量弹性模量,然后进行弯曲和压缩试验。将测量值与参考样品进行比较。氧气改性纤维行为与参考纤维更亲水,但氢气改性纤维表现得比参比纤维更疏水。

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