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High-temperature mechanical properties of calcium sulfate whisker-reinforced high-alumina cement

机译:硫酸钙晶须 - 增强高氧化铝水泥的高温力学性能

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Brittleness and low flexural or tensile strength limit the applications of calcium aluminate cement (CAC)-based composites in high-temperature oil or gas well cementing. The reinforcement of the CAC with whiskers substantially enhances its strength and toughness and is a sophisticated approach to overcome the mechanical limitations of the CAC. In this study, the effect of calcium sulfate whiskers (CSWs) on the mechanical properties of the CAC-based composites was investigated; six cement specimens, with whisker contents of 0-5%, were prepared and tested. The results exhibited an improvement in the compressive and tensile strengths and the toughness of the whisker-reinforced samples over the control samples. The compressive strength of the samples cured at 50 degrees C and then subjected to high temperature (500 degrees C) increased by 25.93% at 14 d and the tensile strength increased by 93.63% with the addition of 4% CSW to the cement. The cement slurry properties were stable when 0-5% of CSWs was added. Finally, X-ray diffraction and scanning electron microscopy were used to determine the phase compositions and micromorphology of the cement composites. The results indicated that the CSWs improved the toughness of the cement binders by forming a stable phase and deflecting cracks in the cement matrix.
机译:脆性和低弯曲或拉伸强度限制铝酸钙水泥(CAC)基复合材料在高温油或气体井中的应用。 CAC的加强晶须基本上提高了其强度和韧性,并且是一种复杂的方法,可以克服CAC的机械限制。在该研究中,研究了硫酸钙晶须(CSW)对CAC基复合材料的力学性能的影响;制备和测试六个水泥标本,晶须含量为0-5%。结果表现出压缩和拉伸强度和对照样品上晶须增强样品的韧性的改善。在50℃下固化的样品的压缩强度,然后在14d下进行高温(500℃),并在14d中增加25.93%,并加入4%CSW的抗拉强度增加了93.63%。当加入0-5%的CSW时,水泥浆液性质稳定。最后,使用X射线衍射和扫描电子显微镜来确定水泥复合材料的相组合物和微晶。结果表明,通过在水泥基质中形成稳定的相和偏转裂缝,CSWS改善了水泥粘合剂的韧性。

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