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Oxygen plasma modification of carbon fiber rovings for enhanced interaction toward mineral-based impregnation materials and concrete matrices

机译:碳纤维腐蚀氧等离子体改性,提高矿物浸渍材料和混凝土矩阵的相互作用

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摘要

The insufficient bond strength of carbon fibers (CFs) towards cementitious matrices limits at present their prospective application as CF-reinforcement in construction. In this investigation an oxygen plasma modification process was utilized to tailor the surface properties of CF rovings in achieving higher affinity towards mineral-based aqueous suspensions. A systematic study on various process parameters was performed to outline expedient treatment regimes. X-ray photoelectron spectroscopy, single fiber tensile tests, and Weibull-analysis delivered insights on the effects of plasma modification on the carbon fibers' properties.Mineral-impregnated carbon fiber (MCF) reinforcement bars were produced and characterized by means of pullout tests. It was found that short plasma treatment time, high oxygen flow rates, low pressure, and long pulse duration improved the shear strengths of the MCF bonds on being extracted from the concrete matrix. Morphological analysis revealed that a higher oxygen concentration enables better wetting behavior towards the mineral matrices and, hence, yields higher bond strength. (C) 2020 Elsevier Ltd. All rights reserved.
机译:碳纤维(CFS)对水泥基质的不足强度在施工中将其前瞻性应用限制为CF加固。在该研究中,利用氧等离子体改性方法来定制CF粗纱的表面性质,以实现较高的矿物含水悬浮液。对各种工艺参数进行系统研究,对大纲有利的治疗制度进行了概述。 X射线光电子能谱,单纤维拉伸试验和Weibull分析对碳纤维的血浆改性的影响进行了见解。通过拉出试验制备并表征了碳纤维的碳纤维(MCF)加强棒。发现短等离子体处理时间,高氧气流量,低压和长脉冲持续时间改善了MCF键的剪切强度从混凝土基质中提取。形态学分析显示,较高的氧浓度使得能够更好地润湿朝向矿物质基质的行为,因此产生更高的粘合强度。 (c)2020 elestvier有限公司保留所有权利。

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