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首页> 外文期刊>Journal of Chemical Engineering and Materials Science >Preliminary research on strength of polymer modified concrete with copolymer natural rubber as concrete additives
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Preliminary research on strength of polymer modified concrete with copolymer natural rubber as concrete additives

机译:以共聚天然橡胶为混凝土添加剂的聚合物改性混凝土强度的初步研究

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Polymer modified concrete is one of the alternative material of construction to obtain better performance in strength and durability of concrete. There are some types of PMC such as natural rubber, synthetic rubber, modified rubber and asphalt. In this work, copolymer of natural rubber styrene and copolymer of natural rubber methacrylate were used as PMC added to Portland cement concrete and Portland Pozzolan cement concrete up to 1 wt%. The aims of this work were to investigate the effects of curing methods (air curing and saturated lime curing) and addition of plasticizer on the compressive strength of concrete. Interactions among parameters were observed using factorial design analysis with Minitab (software) and strength value in concrete age of 28 days as a yield. The result showed that by saturated lime curing, calcium hydroxide as side product of cement hydration could be reacting with pozzolanic material of cement. So, there would be more calcium silicate hydrate (CSH) crystal that improve bond in the interfacial zone. It was found that the saturated lime curing produced concrete with compressive strength 20% higher than concrete produced by air curing. This result was supported by results from Scanning Electron Spectroscopy (SEM) that prove there were compactness factor of concrete structure. It was also found that plasticizer did not significantly influence compressive strength of concretes.
机译:聚合物改性混凝土是建筑的替代材料之一,以获得更好的混凝土强度和耐久性能。 PMC有一些类型,例如天然橡胶,合成橡胶,改性橡胶和沥青。在这项工作中,将天然橡胶苯乙烯的共聚物和天然橡胶甲基丙烯酸酯的共聚物用作PMC,添加至硅酸盐水泥混凝土和硅酸盐火山灰水泥混凝土中的含量不超过1 wt%。这项工作的目的是研究养护方法(空气养护和饱和石灰养护)以及增塑剂对混凝土抗压强度的影响。使用Minitab(软件)进行析因设计分析,观察参数之间的相互作用,并在28天的混凝土龄期作为屈服强度值。结果表明,通过饱和石灰固化,氢氧化钙作为水泥水化的副产物可以与水泥的火山灰物质发生反应。因此,将会有更多的硅酸钙水合物(CSH)晶体改善界面区域的键合。发现饱和石灰固化产生的混凝土的抗压强度比空气固化产生的混凝土高20%。扫描电子光谱法(SEM)的结果证明了这一结果,该结果证明混凝土结构具有致密性。还发现增塑剂没有显着影响混凝土的抗压强度。

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