UJI EKSPERIMENTAL SEMEN PAPAN PARTIKEL BERBAHAN BAKU LIMBAH FLY ASH BATU APUNG SEBAGAI BAHAN PEREDAM SUARA

Apip Amrullah
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Abstract

By the development in technology especially in architecture and industry with its noise activity, encourage us to do some efforts to solve noise problem. One might done is utilize pumice as noise absorber. Raw material used in this reaserch is pumice ash. Mixing compotsition variation between cement composition, pumice ash as sand subtitution, with comparison mixing composition at 1 : 6 (1 cemen : 6 ash), 1 : 8 (1 cement : 8 ash :), 1 : 10 (1 cement : 10 ash). Sound absorbtion coefisien are measured by standing wave tube apparatus. The result of the research indicates that mixing composition affects the sound absorbtion coefisien. Reaserch shows taht 1 : 6, 1 :8 and 1 : 10 sound absorbtion coefisien which is 0.96, 0,86 and 0.89 in 8000 Hz frequency. Comparison at 1 : 6, 1 : 8 and 1 : 10 (cement : sand ) has the best absorbtion coefisien at comparation 1 : 10 which is 0.98 with 4000 Hz frequency (middle level frequency).
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科技的发展,尤其是建筑和工业的噪音活动,促使我们为解决噪音问题做一些努力。一种可行的方法是利用浮石作为消声器。本研究的原料为浮石灰。水泥掺合成分的变化,以浮石灰代替砂石,对比掺合成分在1:6(1水泥:6灰分)、1:8(1水泥:8灰分)、1:10(1水泥:10灰分)。用驻波管仪测量了吸声系数。研究结果表明,混合成分对吸声系数有一定的影响。研究表明,在8000hz频率下,1:6、1:8和1:10的吸声系数分别为0.96、0.86和0.89。对比1:6、1:8和1:10(水泥:砂)时,在4000 Hz频率(中电平频率)下,1:10的吸声系数为0.98,吸声系数最佳。
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