By Rui Wang; Huawu Liu
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Extra resources for Advances in textile engineering : selected, peer reviewed papers from the 2011 International Conference on Textile Engineering and Materials, (ICTEM 2011), 23-25 September, 2011, Tianjin, China
Over the right line of the large rectangle is the protruding part of the fiber assembly, which is similar to the combed part of cotton screen in cotton combing process. Simulation of the Cotton Combing Process After the cotton screen is generated, the combing process can be simulated according to the combing principle. In combing process, there are usually two forms of feeding of cotton, one is forward feed, and another is backward feed. Here we only take forward feed as a example to simulate the combing process.
Wang, J. C. Yu and C. 2552  Y. Zhang, Z. Long, Y. Jiang, F. Xu and J. Lei: J. Sol-Gel Sci. 176  H. Yan , Q. Tai and H. W. Chana: Biosens. 1646  N. Wu, A. Wei and Q. Wei: J. Ind. Texti. Xia, H. Zhuang and D. Xiao: J. Alloys Compd. Vol. 2, Kening Chen3, Zhuxian Tang3, Guoqiang Ding3, Shengyuan Lin3 1. 2. School of Textiles, Tianjin Polytechnic University, Tianjin, 300160, China; Key Laboratory of Advanced Textile Composites (Tianjin Polytechnic University), Ministry of Education, Tianjin 300160, China 3.
2mm, R = 20mm ) 0 0 5 10 15 20 25 fiber length(mm) 30 35 40 Fig 9. 95%, much smaller than the first case. In the third case, we adopt a new set of parameters. The results are seen in Figure 9 and 10. 01 0 0 0 5 10 15 20 25 fiber length(mm) 30 35 40 Fig 9. 6, F = 7 mm, R = 22mm ) 0 5 10 15 20 25 fiber length(mm) 30 35 40 Fig 10. 11%. In all the three cases we can see that the parameter a, F , R all have influence on the dropping rate, in which R has an impact pn dropping rate dramatically. Conclusions Cotton combing process can be simulated from a randomly generated cotton screen.