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丁苯橡胶(SBR)胶乳改性纤维增强混凝土的抗冲击性:集料尺寸的作用。

Impact Resistance of Styrene-Butadiene Rubber (SBR) Latex-Modified Fiber-Reinforced Concrete: The Role of Aggregate Size.

作者信息

Ashraf Muhammad Rehan, Akmal Usman, Khurram Nauman, Aslam Fahid, Deifalla Ahmed F

机构信息

Department of Civil Engineering, University of Engineering and Technology Lahore, Punjab 54890, Pakistan.

Department of Civil Engineering, College of Engineering in Al-Kharj, Prince Sattam bin Abdulaziz University, Al-Kharj 11942, Saudi Arabia.

出版信息

Materials (Basel). 2022 Feb 9;15(4):1283. doi: 10.3390/ma15041283.

Abstract

Improvements in tensile strength and impact resistance of concrete are among the most researched issues in the construction industry. The present study aims to improve the properties of concrete against impact loadings. For this purpose, energy-absorbing materials are used along with fibers that help in controlling the crack opening. A polymer-based energy-absorbing admixture, SBR latex, along with polypropylene fibers are used in this study to improve the impact resistance. Along with fibers and polymers, the effect of the size of aggregates was also investigated. In total, 12 mixes were prepared and tested against the drop weight test and the Charpy impact test. Other than this, mechanical characterization was also carried out for all the 12 concrete mixes. Three dosages of SBR latex, i.e., 0%, 4%, and 8% by weight of cement, were used along with three aggregates sizes, 19 mm down, 10 mm down, and 4.75 mm down. The quantity of polypropylene fibers was kept equal to 0.5% in all mixes. In addition to these, three control samples were also prepared for comparison. The mix design was performed to achieve a normal-strength concrete. For this purpose, a concrete mix of 1:1.5:3 was used with a water to a cement ratio of 0.4 to achieve a normal-strength concrete. The experimental study concluded that the addition of SBR latex improves the impact resistance of concrete. Furthermore, an increase in impact resistance was also observed for a larger aggregate size. The use of fibers and SBR latex is encouraged due to their positive results and the fact that they provide an economical solution for catering to impact strains. The study concludes that 4% SBR latex and 0.5% fibers with a larger aggregate size improve the resistance against impact loads.

摘要

混凝土抗拉强度和抗冲击性的提升是建筑行业中研究最多的问题之一。本研究旨在改善混凝土抵抗冲击荷载的性能。为此,将吸能材料与有助于控制裂缝开口的纤维一起使用。本研究中使用了一种聚合物基吸能外加剂丁苯橡胶胶乳(SBR胶乳)以及聚丙烯纤维来提高抗冲击性。除了纤维和聚合物外,还研究了骨料尺寸的影响。总共制备了12种混合料,并针对落锤试验和夏比冲击试验进行了测试。除此之外,还对所有12种混凝土混合料进行了力学性能表征。使用了三种丁苯橡胶胶乳剂量,即水泥重量的0%、4%和8%,以及三种骨料尺寸,最大粒径分别为19mm、10mm和4.75mm。所有混合料中聚丙烯纤维的用量均保持在水泥重量的0.5%。除此之外,还制备了三个对照样品用于比较。进行配合比设计以获得普通强度混凝土。为此,使用1:1.5:3的混凝土配合比,水灰比为0.4,以获得普通强度混凝土。试验研究得出结论,丁苯橡胶胶乳的添加提高了混凝土的抗冲击性。此外,对于较大的骨料尺寸,也观察到抗冲击性有所提高。由于纤维和丁苯橡胶胶乳的积极效果以及它们为应对冲击应变提供了经济的解决方案,因此鼓励使用它们。研究得出结论,4%的丁苯橡胶胶乳和0.5%的纤维与较大的骨料尺寸可提高对冲击荷载的抵抗力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4742/8875089/fc9be3921464/materials-15-01283-g003.jpg

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