Lin Jia-Horng, Chuang Yu-Chun, Li Ting-Ting, Huang Chen-Hung, Huang Chien-Lin, Chen Yueh-Sheng, Lou Ching-Wen
Department of Chemistry and Chemical Engineering, Minjiang University, Fuzhou 350108, China.
Laboratory of Fiber Application and Manufacturing, Department of Fiber and Composite Materials, Feng Chia University, Taichung 40724, Taiwan.
Materials (Basel). 2016 Dec 9;9(12):1000. doi: 10.3390/ma9121000.
Factories today are equipped with diverse mechanical equipment in response to rapid technological and industrial developments. Industrial areas located near residential neighborhoods cause massive environmental problems. In particular, noise pollution results in physical and psychological discomfort, and is a seen as invisible and inevitable problem. Thus, noise reduction is a critical and urgent matter. In this study, rigid polyurethane (PU) foam plates undergo perforation using a tapping machine. The mechanical and acoustic properties of these perforated plates as related to perforation rate and perforation depth are evaluated in terms of compression strength, drop-weight impact strength, and sound absorption coefficient. Experimental results indicate that applying the perforation process endows the rigid PU foaming plates with greater load absorption and better sound absorption at medium and high frequencies.
如今,随着技术和工业的快速发展,工厂配备了各种各样的机械设备。位于居民区附近的工业区会引发大量环境问题。特别是,噪音污染会导致身体和心理不适,并且被视为一个无形且不可避免的问题。因此,降噪是一个至关重要且紧迫的问题。在本研究中,使用攻丝机对硬质聚氨酯(PU)泡沫板进行穿孔处理。根据压缩强度、落锤冲击强度和吸声系数,评估这些穿孔板与穿孔率和穿孔深度相关的机械性能和声学性能。实验结果表明,穿孔工艺使硬质PU发泡板具有更强的负载吸收能力以及在中高频下更好的吸声性能。