低碳粉煤灰气圈板的制备和吸声性能

Yongli Yi, Chu Li, Yu Han, Jingkai Nie, Chao Fan, Qiang He
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引用次数: 0

摘要

以固体废弃物为基础的胶凝材料为粘结剂,通过简单的工艺制备了一系列低碳粉煤灰纤网板,同时研究了纤网的粒度和粒度分布对微观结构和性能的影响。在 20-200 目范围内,随着粒度的减小,吸声性能降低,而强度提高。适当的颗粒级配可以有效提高抗压强度,但会导致吸音性能显著下降。由粒径为 20-40 目粉煤灰仙贝制备的样品具有良好的吸声性能:当空腔尺寸为 0 mm 时,50-1600 Hz 范围内的最大吸声系数为 0.64,平均值为 0.36;当空腔尺寸为 100 mm 时,100 Hz 时的吸声系数为 0.47,50-1600 Hz 范围内的最大吸声系数为 0.90,100-500 Hz 范围内的平均值为 0.57。所制备的低碳粉煤灰气圈板在低频处具有优异的吸声性能,有望在低频降噪和吸声方面具有广阔的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Preparation and sound absorption performance of low-carbon fly ash cenosphere plates

Preparation and sound absorption performance of low-carbon fly ash cenosphere plates

A series of low-carbon fly ash cenosphere plates was prepared using solid waste based cementitious material as binder through a simple process; meanwhile, effects of cenosphere's particle size and size distribution on microstructure and properties were investigated. In the range of 20–200 mesh, as particle size decreases, sound absorption performance decreases while strength improves. Appropriate particle grading can effectively improve the compressive strength, but it will lead to a significant decrease in sound absorption performance. Samples prepared from fly ash cenosphere with a particle size of 20–40 mesh show good sound absorption performance: when the cavity size is 0 mm, the maximum sound absorption coefficient is 0.64 and the average value is 0.36 in the range of 50–1 600 Hz; when the cavity size is 100 mm, sound absorption coefficient at 100 Hz is 0.47, the maximum sound absorption coefficient in the range of 50–1 600 Hz is 0.90, and the average value is 0.57 in the range of 100–500 Hz. The prepared low-carbon fly ash cenosphere plates show excellent sound absorption performance at low-frequency and are expected to have broad application prospects in low-frequency noise reduction and absorption.

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