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Acoustic Performance of Resilient Materials Using Acrylic Polymer Emulsion Resin

机译:使用丙烯酸聚合物乳液树脂的弹性材料的声学性能

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摘要

There have been frequent cases of civil complaints and disputes in relation to floor impact noises over the years. To solve these issues, a substantial amount of sound resilient material is installed between the concrete slab and the foamed concrete during construction. A new place-type resilient material is made from cement, silica powder, sodium sulfate, expanded-polystyrene, anhydrite, fly ash, and acrylic polymer emulsion resin. Its physical characteristics such as density, compressive strength, dynamic stiffness, and remanent strain are analyzed to assess the acoustic performance of the material. The experimental results showed the density and the dynamic stiffness of the proposed resilient material is increased with proportional to the use of cement and silica powder due to the high contents of the raw materials. The remanent strain, related to the serviceability of a structure, is found to be inversely proportional to the density and strength. The amount of reduction in the heavyweight impact noise is significant in a material with high density, high strength, and low remanent strain. Finally, specimen no. R4, having the reduction level of 3 dB for impact ball and 1 dB for bang machine in the single number quantity level, respectively, is the best product to obtain overall acoustic performance.
机译:这些年来,经常发生与地板撞击声有关的民事投诉和纠纷。为了解决这些问题,在施工期间在混凝土板和泡沫混凝土之间安装了大量的隔音材料。一种新型的场所型弹性材料是由水泥,硅石粉,硫酸钠,膨胀聚苯乙烯,硬石膏,粉煤灰和丙烯酸聚合物乳液树脂制成。分析其物理特性,例如密度,抗压强度,动态刚度和剩余应变,以评估材料的声学性能。实验结果表明,由于原材料的含量高,所建议的弹性材料的密度和动态刚度与水泥和二氧化硅粉末的使用成比例增加。发现与结构的可使用性有关的残余应变与密度和强度成反比。在具有高密度,高强度和低残余应变的材料中,重量减轻的撞击声的减少量是显着的。最后,标本号。 R4在单个数量水平上分别具有3 dB的撞击球和bang机1 dB的降低水平,是获得整体声学性能的最佳产品。

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