Performance of reactive powder concrete with different fiber varieties at higher temperatures and retention periods

IF 1.8 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY Magazine of Concrete Research Pub Date : 2024-02-05 DOI:10.1680/jmacr.23.00191
Parameshwar Hiremath
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Abstract

Reactive Powder Concrete (RPC) is used to create high-rise buildings, thermal power plants, nuclear power plants, and footbridges worldwide. RPC performance at high temperatures and retention periods must be assessed. In the present study, RPC (110 MPa) samples were prepared with different fiber verities at an optimum fiber dosage of 0.5% by weight of cement. The fibers used in the present study are polypropylene fibers, polyester fibers, and a combination of polypropylene and polyester fibers with 0.5% fiber dosage. The fiber-reinforced RPC was exposed to elevated temperatures ranging from 200°C to 800°C with different retention periods such as 30, 60, 90 and 120 minutes. The evaluation includes determining remaining physical characteristics like color change, fracture formation, weight loss, and residual mechanical strength like reduced compressive strength. Also used for non-destructive testing was ultrasonic pulse velocity. Water absorption of Reactive Powder Concrete (RPC) samples after different exposure durations has been compared to diverse RPC mixes with different fiber kinds. Scanning Electron Microscopes were used to observe microstructure and assess deuteriation of hydrated substances at extreme temperatures with varying retention times. Results demonstrate increased strength for all fiber-reinforced RPC varieties at 200°C for up to 120 minutes. The strength was raised at 400°C for 30 minutes under retention. All retention durations showed a decrease in strength for fiber-reinforced RPC at 600°C and 800°C. RPC with polyester fiber has 10-15% greater residual strength than other fibers during 600-800°C retention durations. Polypropelene fiber reinforced RPC absorbs 6-12% more water than polyester and mixed fibers after 120 minutes at 800°C.
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含有不同纤维品种的活性粉末混凝土在较高温度和较长的保持期下的性能
反应粉末混凝土(RPC)在世界各地被用于建造高层建筑、火力发电厂、核电站和人行天桥。必须对 RPC 在高温和保留期的性能进行评估。在本研究中,以水泥重量的 0.5% 为最佳纤维掺量,用不同纤维制备了 RPC(110 兆帕)样品。本研究中使用的纤维包括聚丙烯纤维、聚酯纤维以及纤维掺量为 0.5% 的聚丙烯纤维和聚酯纤维组合。纤维增强的 RPC 暴露在 200°C 至 800°C 的高温下,停留时间分别为 30、60、90 和 120 分钟。评估包括确定剩余物理特性(如颜色变化、断裂形成、重量损失)和剩余机械强度(如抗压强度降低)。超声波脉冲速度也用于无损检测。将不同暴露持续时间后的反应粉末混凝土(RPC)样品的吸水性与含有不同纤维的各种 RPC 混合物进行了比较。使用扫描电子显微镜观察了微观结构,并评估了水合物质在不同保留时间的极端温度下的脱水情况。结果表明,所有纤维增强 RPC 品种在 200°C 下保持 120 分钟的强度都有所提高。在 400°C 下保持 30 分钟,强度有所提高。在 600°C 和 800°C 时,所有保留时间都显示纤维增强 RPC 的强度有所下降。使用聚酯纤维的 RPC 在 600-800°C 保温时间内的残余强度比其他纤维高 10-15%。在 800°C 下保持 120 分钟后,聚丙烯纤维增强的 RPC 比聚酯纤维和混合纤维多吸收 6-12% 的水分。
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来源期刊
Magazine of Concrete Research
Magazine of Concrete Research 工程技术-材料科学:综合
CiteScore
4.60
自引率
11.10%
发文量
102
审稿时长
5 months
期刊介绍: For concrete and other cementitious derivatives to be developed further, we need to understand the use of alternative hydraulically active materials used in combination with plain Portland Cement, sustainability and durability issues. Both fundamental and best practice issues need to be addressed. Magazine of Concrete Research covers every aspect of concrete manufacture and behaviour from performance and evaluation of constituent materials to mix design, testing, durability, structural analysis and composite construction.
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