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Mechanical Properties of Carbon-Fiber RPC and Design Method of Carbon-Fiber Content under Different Curing Systems

机译:不同固化体系下碳纤维RPC的力学性能及碳纤维含量的设计方法

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摘要

Natural, standard, and compound curing are adopted to study the effect of different curing systems on the reinforcement of carbon fiber in reactive powder concrete (RPC). This work systematically studies the changes in RPC compressive and tensile strengths under different curing systems. Taking age, fiber content, and curing system as parameters, Scanning electron microscope (SEM) and X-ray diffraction (XRD) microscopic methods are used to study the influencing mechanism of carbon-fiber content and curing systems on RPC. The calculation methods of the RPC strength of different carbon-fiber contents are studied. Results show that the optimum carbon-fiber content of carbon-fiber RPC is 0.75% under the natural, standard, and compound curing conditions. In comparison with standard curing, compound curing can improve the early strength of carbon-fiber RPC and slightly affect the improvement of late strength. The strength is slightly lower in natural curing than in standard curing, but the former basically meets the requirements of the project and is beneficial for the practical application of this project. The calculation formula of 28-day compressive and splitting tensile strengths of carbon-fiber content from 0% to 0.75% is proposed to select the carbon-fiber content flexibly to satisfy different engineering requirements.
机译:采用自然,标准和复合养护方法来研究不同养护体系对活性粉末混凝土(RPC)中碳纤维增强的影响。这项工作系统地研究了不同固化体系下RPC抗压强度和抗张强度的变化。以年龄,纤维含量和固化体系为参数,采用扫描电子显微镜(SEM)和X射线衍射(XRD)显微镜方法研究碳纤维含量和固化体系对RPC的影响机理。研究了不同碳纤维含量的RPC强度的计算方法。结果表明,在自然,标准和复合固化条件下,碳纤维RPC的最佳碳纤维含量为0.75%。与标准固化相比,复合固化可以提高碳纤维RPC的早期强度,并稍微影响后期强度的提高。天然固化后的强度略低于标准固化,但前者基本满足项目要求,有利于本项目的实际应用。提出了碳纤维含量从0%到0.75%的28天抗压强度和劈裂抗拉强度的计算公式,可以灵活地选择碳纤维含量,以满足不同的工程需求。

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