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Study on the Preparation and Fracture Behavior of Red Mud-Yellow Phosphorus Slag-Based Concrete

机译:红泥黄磷矿渣的制备及断裂行为研究

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Serious environmental pollution issues caused by the storage and exposure of large amounts of red mud (RM) and yellow phosphorus slag (YPS) have raised significant concerns. Red mud-yellow phosphorous slag-cement concrete (RM-YPS-CC) is prepared with 25% yellow phosphorus slag content (YPSC) and 10% red mud content (RMC) to replace a portion of the cement at the age of 28 days and was found in this study to satisfy the mechanical property requirements. More ettringite and portlandite were generated with the RM-YPS-CC than with the yellow phosphorous slag-cement concrete (YPS-CC). In addition, the cementitious materials were more interlaced, and there was more disorder in the crystals of the RM-YPS-CC, which formed a more complex spatial structure than the YPS-CC did. Without RM, the initial cracking strength on the surface of the concrete was 5–6?MPa, the maximum crack width was 3.96?mm, and the crack number was 8. However, the cracking strength was 26.5–27?MPa with RMC5, the maximum crack width was 0.66?mm with RMC15, and the crack number was 3 with RMC15. Moreover, studies using the digital image correlation (DIC) method indicated that the displacement distribution and evolution of the first crack area changed quickly at 10?MPa in either horizontal or vertical direction, and a similar trend was maintained from 10?MPa to 27.1?MPa for the YPS-CC. However, with a small distribution and evolution of horizontal or vertical displacement from 5?MPa to 25?MPa, the evolution would change rapidly when reaching 30?MPa for RM-YPS-CC. This study aims to provide new insights into the wide application of YPS and RM for saving energy and reducing emissions and to develop a new method to study the fracture behavior of concrete.
机译:由大量红泥(RM)和黄色磷渣(YPS)储存和暴露引起的严重环境污染问题提出了显着的担忧。红泥 - 黄色磷渣水泥混凝土(RM-YPS-CC)用25%黄磷渣含量(YPSC)和10%红泥含量(RMC)制备,以替代28天的一部分水泥并在本研究中发现以满足机械性能要求。使用RM-YPS-CC产生更多Ettringite和波特兰石,而不是用黄色磷渣混凝土(YPS-CC)产生。此外,水泥材料更加隔行,RM-YPS-CC的晶体中有更多的紊乱,其形成比YPS-CC更复杂的空间结构。没有RM,混凝土表面上的初始开裂强度为5-6ΩMPa,最大裂缝宽度为3.96Ωmm,裂缝数为8.然而,裂解强度为26.5-27〜27℃,具有RMC5, RMC15的最大裂缝宽度为0.66Ωmm,裂缝数为3,RMC15为3。此外,使用数字图像相关性(DIC)方法的研究表明,第一裂纹区域的位移分布和进化在水平或垂直方向上以10≤MPa变化,并且将类似的趋势从10℃保持相似。 YPS-CC的MPA。然而,随着水平或垂直位移的小分布和演变,从5?MPa到25?MPA,在达到30μm的达到RM-YPS-CC时,进化会迅速变化。本研究旨在为节约能源和减少排放的广泛应用提供新的洞察,并开发一种研究混凝土骨折行为的新方法。

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