首页> 美国卫生研究院文献>Materials >Effects on the Physical and Mechanical Properties of Porous Concrete for Plant Growth of Blast Furnace Slag Natural Jute Fiber and Styrene Butadiene Latex Using a Dry Mixing Manufacturing Process
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Effects on the Physical and Mechanical Properties of Porous Concrete for Plant Growth of Blast Furnace Slag Natural Jute Fiber and Styrene Butadiene Latex Using a Dry Mixing Manufacturing Process

机译:干混制造工艺对高炉矿渣天然黄麻纤维和苯乙烯丁二烯胶乳生长对多孔混凝土物理力学性能的影响

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摘要

To evaluate the effects of industrial by-products materials on the performance of porous concrete for plant growth, this study investigated the physical, strength, and freeze/thaw resistances of porous concrete for plant growth, prepared by replacing cement with blast furnace slag powder at 60% by weight, and replacing natural stone aggregates with coarse blast furnace slag aggregates at rates of 0%, 20%, 40%, 60% and 100% by weight. In addition, the effects of adding natural jute fiber and styrene butadiene >(SB) latex to these concrete mixtures were evaluated. The void ratio, compressive strength, and freeze/thaw resistance of the samples were measured. With increasing replacement rate of blast furnace aggregates, addition of latex, and mixing of natural jute fiber the void ratio of the concrete was increased. Compressive strength decreased as the replacement rate of blast-furnace slag aggregates increased. The compressive strength decreased after 100 freeze/thaw cycles, regardless of the replacement rate of blast furnace slag aggregates or of the addition of natural jute fiber and latex. The addition of natural jute fiber and latex decreased the compressive strength after 100 freeze/thaw cycles. The test results indicate that the control mixture satisfied the target compressive strength of 10 MPa and the target void ratio of 25% at replacement rates of 0% and 20% for blast furnace aggregates, and that the mixtures containing latex satisfied the criteria up to an aggregate replacement rate of 60%. However, the mixtures containing natural jute fiber did not satisfy these criteria. The relationship between void ratio and residual compressive strength after 100 freeze/thaw cycles indicates that the control mixture and the mixtures containing jute fiber at aggregate replacement rates of 20% and 40% satisfied the target void ratio of 25% and the target residual compressive strength of over 80% after 100 freeze/thaw cycles. The mixtures containing latex and aggregate replacement rates up to 60% satisfied the target void ratio and compressive strength.
机译:为了评估工业副产品材料对多孔混凝土对植物生长的影响,本研究调查了用高炉矿渣粉代替水泥制备的多孔混凝土对植物生长的物理,强度和耐冻融性。 60%(重量),并用粗高炉矿渣骨料代替天然石材骨料,其比率为0%,20%,40%,60%和100%(重量)。此外,还评估了向这些混凝土混合物中添加天然黄麻纤维和苯乙烯丁二烯>( SB)乳胶的效果。测量样品的空隙率,抗压强度和抗冻融性。随着高炉骨料置换率的提高,乳胶的添加以及天然黄麻纤维的混合,混凝土的空隙率增加。抗压强度随着高炉矿渣骨料置换率的增加而降低。不管高炉矿渣骨料的替代率或添加天然黄麻纤维和乳胶,在100次冷冻/融化循环后,抗压强度都会降低。经过100次冷冻/融化后,天然黄麻纤维和乳胶的加入降低了抗压强度。测试结果表明,在高炉骨料的置换率分别为0%和20%时,对照混合物满足10 MPa的目标抗压强度和25%的目标空隙率,并且含乳胶的混合物满足以下标准:总替换率为60%。但是,含有天然黄麻纤维的混合物不满足这些标准。 100次冻融循环后空隙率与残余抗压强度之间的关系表明,对照混合物和骨料含量分别为20%和40%的黄麻纤维混合物满足目标空隙率25%和目标残余抗压强度在100次冷冻/解冻循环后,其含量超过80%。包含胶乳和骨料替代率高达60%的混合物满足目标空隙率和抗压强度。

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