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采用硅灰和聚丙烯纤维的预置集料法制备混凝土。

Concrete by Preplaced Aggregate Method Using Silica Fume and Polypropylene Fibres.

作者信息

Khanzada Farooq Azam, Nazir Kashif, Ishtiaq Muhammad, Javed Muhammad Faisal, Kashif-Ur-Rehman Sardar, Aslam Fahid, Musarat Muhammad Ali, Usanova Kseniia Iurevna

机构信息

Department of Transportation Engineering (SCEE), National University of Sciences and Technology, Islamabad 44000, Pakistan.

Department of Civil Engineering, School of Engineering, Nazabayev University, Astana 010000, Kazakhstan.

出版信息

Materials (Basel). 2022 Mar 8;15(6):1997. doi: 10.3390/ma15061997.

Abstract

Preplaced aggregate concrete (PAC) is prepared in two steps, with the coarse aggregate being initially laid down in the formwork, after which a specialised grout is injected into it. To enhance the properties of concrete and to reduce the emission of CO produced during the production of cement, supplementary cementitious materials (SCMs) are used to partially substitute ordinary Portland cement (OPC). In this study, 100 mm × 200 mm (diameter x height) PAC cylinders were cast with 10 per cent of cement being substituted with silica fume; along with that, 1.5% dosage of Macro polypropylene fibres were also introduced into the coarse aggregate matrix. Compressive strength test, splitting tensile strength test, mass loss at 250 °C, and compressive strength at 250 °C were performed on the samples. PAC samples with 10% of cement replaced with Silica Fume (SPAC) were used as control samples. The primary objective of this study was to observe the effect of the addition of Polypropylene fibres to PAC having Silica fume as SCM (FRPAC). The aforementioned tests showed that FRPAC had a lower compressive strength than that of the control mix (SPAC). FRPAC had greater tensile strength than that of NPAC and SPAC. Mass loss at 250 °C was greater in SPAC compared to FRPAC. The compressive strength loss at 250 °C was significantly greater in FRPAC compared to SPAC. FRPAC exhibited a greater strain for the applied stress, and their stress-strain curve showed that FRPAC was more ductile than SPAC.

摘要

预填集料混凝土(PAC)分两步制备,首先将粗集料铺设在模板中,然后向其中注入特制的灌浆料。为提高混凝土性能并减少水泥生产过程中产生的二氧化碳排放,使用辅助胶凝材料(SCMs)部分替代普通硅酸盐水泥(OPC)。在本研究中,浇筑了直径100毫米、高200毫米的PAC圆柱体,其中10%的水泥被硅灰替代;同时,还在粗集料基体中引入了1.5%剂量的宏观聚丙烯纤维。对样品进行了抗压强度试验、劈裂抗拉强度试验、250℃下的质量损失试验以及250℃下的抗压强度试验。用10%水泥被硅灰替代的PAC样品(SPAC)作为对照样品。本研究的主要目的是观察向以硅灰作为SCM的PAC(FRPAC)中添加聚丙烯纤维的效果。上述试验表明,FRPAC的抗压强度低于对照混合料(SPAC)。FRPAC的抗拉强度高于NPAC和SPAC。与FRPAC相比,SPAC在250℃下的质量损失更大。与SPAC相比,FRPAC在250℃下的抗压强度损失显著更大。FRPAC在施加应力时表现出更大的应变,其应力-应变曲线表明FRPAC比SPAC更具韧性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c60/8949887/4066d5b86177/materials-15-01997-g001.jpg

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