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Effects of Methane Cold Plasma in Sisal Fibers

机译:甲烷冷等离子体在Sisal纤维中的影响

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One of the main problems in using vegetable fibers as reinforcement in aggressive cement matrix is the penetration of alkaline products in the porous structure of the filaments, making them very fragile with the time. In this sense a series of physical and chemical methods of surface modification has been used in order to improve its characteristics. The plasma surface modification technique is a physical method surface modification that utilizes ionized gas at low pressure to change the chemical nature and the substrate surface morphology of both organic and inorganic materials without changing their intrinsic properties. This is considered an environmentally friendly process without generation of contamination and has a low operating cost compared to some chemical (such as silane based) treatments. In the present study, the sisal fibers were treated with methane plasma generated by direct electric current during 10, 20 and 30 min with gas flow of 5 cm~3/s and current of 0.10 A. The study presents some mechanical, physics and chemical characteristics of sisal fiber after being subjected to treatment with methane cold plasma. The results presented indicate that treatment with methane cold plasma induced changes in sisal fibers at all times of exposure to treatment (10, 20 and 30 min). However, the major changes in structural and mechanical components may be seen in fibers treated with 10 min of exposure to plasma.
机译:使用植物纤维作为侵蚀性水泥基质的增强的主要问题之一是碱性产品在长丝的多孔结构中渗透,使它们非常脆弱。在这意义上,已经使用了一系列表面改性的物理和化学方法,以改善其特性。等离子体表面改性技术是物理方法表面改性,其在低压下使用电离气体以改变有机和无机材料的化学性质和基材表面形态而不改变其内在特性。这被认为是一种环境友好的过程,而不产生污染,与某些化学物质(如硅烷基)处理相比具有低的运营成本。在本研究中,通过在10,20和30分钟内通过直接电流产生的甲烷等离子体处理,气体流量为5cm〜3 / s,电流为0.10 A.该研究提出了一些机械,物理和化学品甲烷冷等离子体处理后剑麻纤维的特征。提出的结果表明,在接触治疗(10,20和30分钟)的所有时间,用甲烷冷等离子体诱导甲烷冷等离子体的处理。然而,在用10分钟暴露于血浆处理的纤维中可以看出结构和机械部件的主要变化。

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