含聚合物纤维的工程水泥基复合混凝土的长期干燥收缩应变

IF 1.7 Q2 ENGINEERING, MULTIDISCIPLINARY Journal of Engineering Pub Date : 2024-05-15 DOI:10.1155/2024/8887928
Ikram Faraoun Al-Mulla, Abbas Salim Al-Ameeri, Tareq Salih Al-Attar
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引用次数: 0

摘要

由于混凝土抗拉强度不足,人们发明了工程水泥基复合材料。然而,由于混合物中没有砂石,再加上粘结剂含量高,可能会导致收缩应变大。因此,从根本上解决这一问题值得期待。这项研究的重要性在于调查工程水泥基复合材料的长期干燥收缩应变,因为目前还缺乏关于这种行为的信息。使用聚乙烯醇纤维 PVA-ECC 和聚丙烯纤维 PP-ECC 生产了强度分别为 30 和 60 兆帕的混合料。将 PVA-ECC 混合料的干燥收缩应变与 PP-ECC 混合料的干燥收缩应变进行了短期(0-28 天)和长期(0-360 天)比较。结果表明,所有 PVA-ECC 混合料的干燥收缩应变都低于 PP-ECC 混合料。根据记录,28 天时的最终干燥收缩应变为 1200 微应变。28 天后,PVA-ECC 混合料的干燥收缩应变增量为 5.6%,而 PP-ECC 混合料的增量为 6.77%。就高强度水平而言,与 PP-ECC 混合料相比,PVA-ECC 混合料在 360 天龄期的干燥收缩应变减少了 3.5%。此外,60 兆帕的混合料(6.3%)也低于 30 兆帕的混合料(7.6%)。因此,尽管强度为 60 兆帕的混合料的水泥含量较高,但较高的纤维体积分数和较高的 PVA 溶液百分比限制了干燥收缩应变的增量。研究还涉及工程水泥基复合混凝土的一些力学测试,如抗压强度、抗弯强度和应变能力,这些测试可能与不同混合料的干燥收缩行为有密切关系。本研究还使用了扫描电子显微镜图像,以说明纤维类型对 ECC 混合料微观结构的影响。
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Long-Term Drying Shrinkage Strain of Engineered Cementitious Composite Concrete Contains Polymeric Fibers
The lack of concrete tensile stress endurance led to the invention of engineered cementitious composite. However, the absence of gravel from the mixture in addition to the high binder content may lead to high shrinkage strain. Therefore, a radical solution to this problem is worth to be anticipated. The importance of this research lies in investigating the long-term drying shrinkage strain of the engineered cementitious composite since there is a lack of information regarding this behavior. Mixes of 30 and 60 MPa strengths were produced with polyvinyl alcohol fibers PVA-ECC and polypropylene fibers PP-ECC. The drying shrinkage strain of PVA-ECC mixes has been compared to PP-ECC mixes for both short term (0–28 days) and long term (0–360 days). Results indicated that all PVA-ECC mixes exhibited lower drying shrinkage strains than PP-ECC mixes. The ultimate drying shrinkage strain was recorded to be 1200 microstrain at 28 days. The increment in drying shrinkage strain after 28 days was 5.6% in PVA-ECC mixes when compared to that in PP-ECC mixes which was 6.77%. For high strength levels, the drying shrinkage strain at the age of 360 days declared a reduction of 3.5% for PVA-ECC compared to PP-ECC mixes. Also, it was lower for mixes with 60 MPa (6.3%) than for mixes with 30 MPa (7.6%). Therefore, despite the higher cement content for mixes with 60 MPa strength, the higher fiber volume fraction and the higher PVA solution percentage restricted the drying shrinkage strain increment. The research also addresses some mechanical tests of engineered cementitious composite concrete such as compressive strength, flexural strength, and strain capacity that may provide a strong relation to the drying shrinkage behavior of the different mixes. The scanning electron microscope images were involved in this research to declare the impact of fiber types on the microstructure of the ECC mixes.
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来源期刊
Journal of Engineering
Journal of Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
4.20
自引率
0.00%
发文量
68
期刊介绍: Journal of Engineering is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in several areas of engineering. The subject areas covered by the journal are: - Chemical Engineering - Civil Engineering - Computer Engineering - Electrical Engineering - Industrial Engineering - Mechanical Engineering
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