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Mechanical properties of hybrid short fibers reinforced oil well cement by polyester fiber and calcium carbonate whisker

机译:聚酯纤维和碳酸钙晶须混合短纤维增强油井水泥的力学性能

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摘要

In the present work, a novel fiber hybridization containing PET fiber and CaCO3 whisker is developed to improve the multiscale cracking resistance, as well as to boost the toughness and mechanical performance of cement pastes. The mechanical properties, microstructure, the uniaxial and triaxial compression of hybrid fiber reinforced oil well cement pastes are investigated. The results indicate that after the introduction of mono PET fiber, the flexible strength and tensile strength were increased by 19.4% and 40.1%, but the compressive strength was decreased by 11.5%. Therefore, the CaCO3 whisker combined with the PET fiber is used to enhance the compressive strength of the cement matrix. Because PET fibers and CaCO3 whiskers are different in size, elasticity modulus and length-diameter ratio, the hybrid fiber can effectively interact with micro to macro cracks at multiple load stages. Hence, the hybridization contributes to enhancing multiscale cracking resistance from the microscale to the macroscale level, and the capability coefficients index of the cementious material are improved by 450.7% and 284.5% compared with those of control samples, respectively, under confining pressure. Moreover, the strategy enables to reduce the production cost of the cementing sheath of oil and gas well, and other large-scale construction project applications. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在目前的工作中,开发了一种新型的包含PET纤维和CaCO3晶须的纤维杂交技术,以提高多尺度抗裂性,并提高水泥浆的韧性和机械性能。研究了混杂纤维增强油井水泥浆的力学性能,微观结构,单轴和三轴压缩。结果表明,引入单PET纤维后,其柔韧性和抗拉强度分别提高了19.4%和40.1%,而抗压强度降低了11.5%。因此,将CaCO3晶须与PET纤维结合使用可增强水泥基体的抗压强度。由于PET纤维和CaCO3晶须的尺寸,弹性模量和长径比不同,因此杂化纤维可以在多个载荷阶段有效地与微观至宏观裂纹相互作用。因此,杂交有助于从微观尺度到宏观尺度提高多尺度抗裂性,并且在限制压力下,胶凝材料的能力系数指数与对照样品相比分别提高了450.7%和284.5%。而且,该策略能够降低油气井固井套管的生产成本以及其他大规模建设项目的应用。 (C)2018 Elsevier Ltd.保留所有权利。

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