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Copolymer Natural Latex in Concrete: Dynamic Evaluation Through Energy Dissipation of Polymer Modified Concrete

机译:混凝土中的共聚物天然乳胶:通过聚合物改性混凝土耗散的动态评估

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Portland cement concrete have been used in construction due to its strength and ecomical value. But it has some limitations, such low flexural strength, low tensile strength, low chemical resistant and etc. Due to its limitations in flexural and tensile strength, Portland cement concrete more susceptible by seismic force. There are some methods for improving its limitations. Polymer addition into concrete mixture could be one of solution for improving the flexural and tensile strength, in aiming to get erthquake resistant properties. Also, the eartquake resistant could be achieved by improving energy dissipation capacity. In this research, the earthquake resistant evalution was approached from dynamic evaluation through energy dissipation capacity, after polymer addition as concrete additives. The polymers were natural latex (Indonesian naural resource) grafted with styrene and methacrylate, forming copolymer - natural latex methacrylate (KOLAM) and copolymer - natural latex styrene (KOLAS). They were added into concrete mixture resulting polymer modified concrete. The composition of polymer are 1%, 5% and 10% weight/weight of cement. The higher capacity of energy dissipation will give more capability in either absorbing or dissipating energy, and it was predicted would give better earthquake resistant.. The use of KOLAM gave better performance than KOLAS in energy dissipation capacity. It gave about 46% for addition of 1% w/w compared to Portland cement concrete. But for addition 5% w/w and 10% w/w, they gave about 7% and 5% higher energy dissipation capacity. The KOLAM addition into concrete mixture would reduce the maximum impact load with maximumabout 35% impact load reducing after 1% w/w addition. The higher concentration of KOLAM in concrete mixture, lower reducing of impact load, they were about 4% and 3% for KOLAM 5% and 10%. For KOLAS addition in any compositions, there were no positive trend either in energy dissipation capacity or impact load properties,
机译:由于其强度和生态价值,波特兰水泥混凝土已被用于建筑。但它具有一些局限性,如此低的抗弯强度,低抗拉强度,耐化学性等的等抗性,抗弯曲强度的局限性,波特兰水泥混凝土更容易受到抗震力的影响。有一些方法可以提高其限制。聚合物加入混凝土混合物中可以是改善弯曲和拉伸强度的溶液中的一种,旨在获得抗抗性性能。而且,可以通过提高能量耗散能力来实现耐电磁特性。在本研究中,通过能量耗散能力,聚合物添加到混凝土添加剂后,从动态评估接近地震抗性评估。聚合物是用苯乙烯和甲基丙烯酸酯接枝的天然乳胶(印度尼西亚NAural资源),形成共聚物 - 天然胶乳甲基丙烯酸酯(Kolam)和共聚物 - 天然乳胶苯乙烯(Kolas)。将它们加入混凝土混合物中,得到的聚合物改性混凝土。聚合物的组成是1%,5%和10%重量/重量水泥。能量耗散的容量越高将在吸收或耗散能量方面提供更多的能力,预测它将提供更好的地震抵抗力。使用Kolam的使用比kolas在能量耗散能力方面的性能更好。与波特兰水泥混凝土相比,加入1%W / W的约46%。但是,除了加入5%w / w和10%w / w,它们的能量耗散能力增加了约7%和5%。加入混凝土混合物的KOLAM将减少最大冲击载荷35%的冲击载荷减少1%w / w加入后。在混凝土混合物中较高浓度的kolam,较低的冲击载荷减少,kolam 5%和10%的约4%和3%。对于kolas添加任何组合物,在能量耗散能力或冲击载荷属性中没有正趋势,

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