Affiliation:
1. Feng Chia University
2. Ling Tung University
3. Central Taiwan University of Science and Technology
Abstract
In this research, we used the special needle punching process to improve the disadvantages of the ordinary needle punching process. First, we manufactured the single-layer needle punching nonwoven by the ordinary needle punching process and then nonwovens were laminated followed by needle punching. We carried on this manufacturing processing until the multiple needle-punching nonwoven reached the certain thickness and area weight which were both limited in the ordinary needle punching process. The combination of two manufacture techniques as multiple thermal bonding and multiple needle-punching freed the single needle-punching from the limit of the expected thickness and area density. In this research, we tested the mechanical properties and sound absorption of the multi-layer needle-punching nonwoven and multi-layer thermal bonding nonwoven. According to the results, the tensile strength is higher than the multi-layer thermal bonding nonwoven; however, there was no distinct difference between the multi-layer needle-punching nonwoven and multi-layer thermal bonding nonwoven on the sound absorption performance.
Publisher
Trans Tech Publications, Ltd.
Reference10 articles.
1. Shoshani, Y., and Batra, S., Use of Some Fiberwebs as Noise Insulation Materials-An Assessment, in Proc. INDA Conference, Philadelphia, PA, (1986), pp.14-33.
2. Shoshani, Y., Effect of Nonwoven Backings on the Noise Absorption Capacity of Tufted Carpets, Textile Res. J. 60, (1990) p.452.
3. Shoshani, Y., Studies of Textile Assemblies Used for Acoustic Control, Tech. Textiles Int. 2, (1993) pp.32-34.
4. Shoshani, Y., and Rosenhouse, G., Noise Absorption by Woven Fabrics, Appl. Acoustics 30, (1990) pp.321-333.
5. Shoshani, Y., and Rosenhouse, G., Noise Insulating Blankets Made of Textiles, Appl. Acoustics 35, (1992) pp.129-138.
Cited by
19 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献