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Effect of Adding Carbon Nanotubes on the Freeze-Thaw and Thermal Fatigue Resistance of Latex Modified Mortar

机译:添加碳纳米管对乳胶改性砂浆的抗冻融性和抗热疲劳性的影响

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摘要

This paper aims to investigate the effect of adding carbon nanotubes (CNTs) on the durability of latex modified mortar (LMM). Up to 2.5% of CNTs by wt. of styrene-butadiene latex (SBR latex) CNTs were added to latex modified mortar (LMM) specimens before they are subjected to two different thermal tests: freeze-thaw and thermal fatigue. LMM specimens were subjected to a number of freeze-thaw cycles according to American Society for Testing and Materials (ASTM) C-666 in order to simulate winter outdoor conditions in the United States (US) northern areas. Also, the specimens were subjected to thermal fatigue cycles similar to summer outdoor conditions. A large number of specimens were prepared in cubes, cylinders, and prisms, and were mechanically tested in compression, splitting tension, and flexure in order to evaluate the LMM specimens after the thermal exposure. Compression and tension specimens were tested after 50% and after 100% of the total number of cycles in order to assess the effect of the number of cycles on the mechanical performance. For LMM prims, dimensional stability was assessed first by monitoring the development of shrinkage strains during the application of thermal cycles. The LMM prisms were then tested in flexure after the completion of all the thermal cycles. The effectiveness of adding CNTs was evaluated by comparing between the performance of control LMM specimens and those with different CNTs contents. CNTs were found to alter the compressive strength, tensile strength, and flexural load carrying capacity of LMM specimens.
机译:本文旨在研究添加碳纳米管(CNTs)对乳胶改性砂浆(LMM)耐久性的影响。高达2.5%(重量)的CNT。的丁苯胶乳(SBR胶乳)中,将CNTs加到胶乳改性砂浆(LMM)样品中,然后对其进行两种不同的热测试:冻融和热疲劳。根据美国材料试验学会(ASTM)C-666对LMM样品进行了许多冻融循环,以模拟美国(美国)北部地区的冬季室外条件。而且,样品经受类似于夏季户外条件的热疲劳循环。大量的样品被制成立方体,圆柱体和棱柱形,并进行了压缩,劈拉和挠曲的机械测试,以评估热暴露后的LMM样品。在总循环次数的50%和100%之后测试压缩和拉伸试样,以评估循环次数对机械性能的影响。对于LMM底漆,首先通过监控热循环过程中收缩应变的发展来评估尺寸稳定性。在完成所有热循环后,再对LMM棱镜进行弯曲测试。通过比较对照LMM样品和具有不同CNT含量的LMM样品的性能来评估添加CNT的有效性。发现碳纳米管会改变LMM样品的抗压强度,抗张强度和挠曲承载能力。

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