Embeddable and locatable spinning

Article


Xu, Weilin, Xia, Zhigang, Wang, Xin, Chen, Jun, Cui, Weigang, Ye, Wenxiang, Ding, Cailing and Wang, Xungai. 2011. "Embeddable and locatable spinning." Textile Research Journal. 81 (3), pp. 223-229. https://doi.org/10.1177/0040517510380780
Article Title

Embeddable and locatable spinning

ERA Journal ID3629
Article CategoryArticle
AuthorsXu, Weilin (Author), Xia, Zhigang (Author), Wang, Xin (Author), Chen, Jun (Author), Cui, Weigang (Author), Ye, Wenxiang (Author), Ding, Cailing (Author) and Wang, Xungai (Author)
Journal TitleTextile Research Journal
Journal Citation81 (3), pp. 223-229
Number of Pages7
Year2011
Place of PublicationLondon, United Kingdom
ISSN0040-5175
1746-7748
Digital Object Identifier (DOI)https://doi.org/10.1177/0040517510380780
Web Address (URL)http://trj.sagepub.com/content/81/3/223
Abstract

A novel spinning method: embeddable and locatable spinning, is reported for the first time in this paper. Analysis of the key restrictions of the conventional and some novel ring-spinning were studied; evolvement and principles of embeddable and locatable spinning were then introduced. Analysis indicated that embeddable and locatable spinning could overcome the existing restrictions of ring spinning and improve the spinning performance of fiber strands as well as the quality of the resulting yarn. Super-fine and colorful figured yarns could be produced successfully, and most fibers shorter than can be spun in traditional spinning could be well embedded into a yarn by embeddable and locatable spinning method; even staple fibers of low qualities could be used to produce a fine yarn of high qualities in the novel spinning system. This novel spinning method shows huge application potentials in textile industry by improving the yarn quality, developing super-fine yarn, and increasing fiber utilization rate.

Keywordsembeddable; locatable; spinning; staple yarns
ANZSRC Field of Research 2020401413. Textile technology
350715. Quality management
401403. Flexible manufacturing systems
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Byline AffiliationsWuhan Textile University, China
Shandong Ruyi Technology Group, China
Deakin University
Institution of OriginUniversity of Southern Queensland
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Wang, Jing, Sutti, Alessandra, Lin, Tong and Wang, Xungai. 2013. "Thermo-responsive PNIPAM Hydrogel nanofibres photocrosslinked by Azido-POSS." Wang, Xungai (ed.) Fiber Society Spring 2013 Technical Conference (FS 2013): Advancing Scientific Knowledge Pertaining to Fibers and Fibrous Materials. Geelong, Australia 22 - 24 May 2013 Raleigh, NC. United States.
Evaluation of cottonised hemp fibre produced using a new catalytic degumming system
Hurren, Christopher, Wang, Jing, Wood, Raymon, Li, Qing, Bibeau, Louis and Wang, Xungai. 2013. "Evaluation of cottonised hemp fibre produced using a new catalytic degumming system." Fangueiro, Raul (ed.) 1st International Conference on Natural Fibers (ICNF 2013): Sustainable Materials for Advanced Applications. Guimaraes, Portugal 09 - 11 Jun 2013 Guimaraes, Portugal . https://doi.org/10.1155/2013/
Thermo-responsive PNIPAM nanofibres crosslinked by OpePOSS
Wang, Jing, Hurren, Christopher, Sutti, Alessandra, Lin, Tong and Wang, Xungai. 2013. "Thermo-responsive PNIPAM nanofibres crosslinked by OpePOSS." Epaarachchi, Jayantha A., Lau, Alan Kin-tak and Leng, Jinsong (ed.) 4th International Conference on Smart Materials and Nanotechnology in Engineering (SMN 2013). Gold Coast, Australia 10 - 12 Jul 2013 Bellingham, WA. United States. https://doi.org/10.1117/12.2021556
A new way to nanostructure hydrogels: electrospun thermo-responsive islands-in-the-sea nanofibres
Wang, Jing, Sutti, Alessandra, Wang, Xungai and Lin, Tong. 2012. "A new way to nanostructure hydrogels: electrospun thermo-responsive islands-in-the-sea nanofibres ." 5th Materials Research Society Fall Meeting (MRS 2011). Boston, United States 28 Nov - 02 Dec 2011 Warrendale, PA. United States. https://doi.org/10.1557/opl.2012.418
Thermo-responsive Hercosett/Poly(N-isopropylacrylamide) films: a new, fast, optically responsive coating
Wang, Jing, Sutti, Alessandra, Wang, Xungai and Lin, Tong. 2012. "Thermo-responsive Hercosett/Poly(N-isopropylacrylamide) films: a new, fast, optically responsive coating." Journal of Colloid and Interface Science. 369 (1), pp. 231-237. https://doi.org/10.1016/j.jcis.2011.11.035
Carbon nanotube reinforced rigid-rod polyimide
Naebe, Minoo, Wang, Jing, Xue, Yuhua, Wang, Xungai and Lin, Tong. 2010. "Carbon nanotube reinforced rigid-rod polyimide." Journal of Applied Polymer Science. 118 (1), pp. 359-365. https://doi.org/10.1002/app.32395
Bleaching and dyeing of superfine wool powder/polypropylene blend film
Wang, Xin, Xu, Weilin, Cui, Weigang, Li, Wenbin and Wang, Xungai. 2008. "Bleaching and dyeing of superfine wool powder/polypropylene blend film." Research Journal of Textile and Apparel. 12 (4), pp. 12-20.
Needleless electrospinning and direct electrospinning of nanofiber yarns
Lin, Tong, Niu, Haitao, Wang, Xin, Ali, Usman and Wang, Xungai. 2011. "Needleless electrospinning and direct electrospinning of nanofiber yarns." New Frontiers in Fiber Materials Science (AATCC 2011). Charleston, United States 11 - 13 Oct 2011 Research Triangle Park, NC. United States.
A study on the relationship between irregularity and hairiness of spun yarns
Xia, Zhigang, Wang, Hongshan, Wang, Xin, Ye, Wenxiang and Xu, Weilin. 2011. "A study on the relationship between irregularity and hairiness of spun yarns." Textile Research Journal. 81 (3), pp. 273-279. https://doi.org/10.1177/0040517510380112
Scaling up the production rate of nanofibers by needleless electrospinning from multiple ring
Wang, Xin, Lin, Tong and Wang, Xungai. 2014. "Scaling up the production rate of nanofibers by needleless electrospinning from multiple ring ." Fibers and Polymers. 15 (5), pp. 961-965. https://doi.org/10.1007/s12221-014-0961-x
Use of aluminum-coated interlayers to develop a cold-protective fibrous assembly
Wang, Xin and Fan, Jintu. 2014. "Use of aluminum-coated interlayers to develop a cold-protective fibrous assembly ." Journal of Applied Polymer Science. 131 (9). https://doi.org/10.1002/app.40205
Experimental investigation on the surface humidity of fabric during the process of dynamic moisture liberation
Li, Wenbin, Jiang, Peiqing, Wang, Xin, Li, Gaowen and Xu, Weilin. 2013. "Experimental investigation on the surface humidity of fabric during the process of dynamic moisture liberation." International Journal of Clothing Science and Technology. 25 (6), pp. 451-456. https://doi.org/10.1108/IJCST-05-2012-0023
Electric field analysis of spinneret design for needleless electrospinning of nanofibers
Wang, Xin, Wang, Xungai and Lin, Tong. 2012. "Electric field analysis of spinneret design for needleless electrospinning of nanofibers ." Journal of Materials Research. 27 (23), pp. 3013-3019. https://doi.org/10.1557/jmr.2012.346
Effect of repeated winding on carded ring cotton yarn properties
Xia, Zhigang, Wang, Xin, Ye, Wenxiang, Xu, Weilin and Eltahir, Hafiz A.. 2011. "Effect of repeated winding on carded ring cotton yarn properties ." Fibers and Polymers. 12 (4), pp. 534-540. https://doi.org/10.1007/s12221-011-0534-1
A study of influence of the delivery rubber roller on yarn properties
Xia, Zhigang, Wang, Xin, Huang, Juan, Wang, Yan, Ye, Wenxiang and Xu, Weilin. 2011. "A study of influence of the delivery rubber roller on yarn properties ." Textile Research Journal. 81 (14), pp. 1477-1483. https://doi.org/10.1177/0040517511399964
Fiber trapping comparison of embeddable and locatable spinning with sirofil and siro core-spinning with flute pipe air suction
Xia, Zhigang, Wang, Xin, Ye, Wenxiang, Eltahir, Hafiz A. and Xu, Weilin. 2012. "Fiber trapping comparison of embeddable and locatable spinning with sirofil and siro core-spinning with flute pipe air suction ." Textile Research Journal. 82 (12), pp. 1255-1262. https://doi.org/10.1177/0040517512439918
Effect of hydrogen peroxide treatment on the properties of wool fabric
Wang, Xin, Shen, Xiaolin and Xu, Weilin. 2012. "Effect of hydrogen peroxide treatment on the properties of wool fabric ." Applied Surface Science. 258 (24), pp. 10012-10016. https://doi.org/10.1016/j.apsusc.2012.06.065
Needleless electrospinning of uniform nanofibers using spiral coil spinnerets
Wang, Xin, Niu, Haitao, Wang, Xungai and Lin, Tong. 2012. "Needleless electrospinning of uniform nanofibers using spiral coil spinnerets." Journal of Nanomaterials. 2012, pp. 1-9. https://doi.org/10.1155/2012/785920
Effect of experimental parameters on needleless electrospinning from a conical wire coil
Wang, Xin and Xu, Weilin. 2012. "Effect of experimental parameters on needleless electrospinning from a conical wire coil." Journal of Applied Polymer Science. 123 (6), pp. 3703-3709. https://doi.org/10.1002/app.35044
Needleless electrospinning of nanofibers with a conical wire coil
Wang, Xin, Niu, Haitao, Lin, Tong and Wang, Xungai. 2009. "Needleless electrospinning of nanofibers with a conical wire coil." Polymer Engineering and Science. 49 (8), pp. 1582-1586. https://doi.org/10.1002/pen.21377
Study on the electrical resistance of textiles under wet conditions
Wang, Xin, Xu, Weilin, Li, Wenbin and Cui, Weigang. 2009. "Study on the electrical resistance of textiles under wet conditions." Textile Research Journal. 79 (8), pp. 753-760. https://doi.org/10.1177/0040517508092018
Improving the hydrophilic properties of wool fabrics via corona discharge and hydrogen peroxide treatment
Wang, Xin, Cao, Genyang and Xu, Weilin. 2009. "Improving the hydrophilic properties of wool fabrics via corona discharge and hydrogen peroxide treatment ." Journal of Applied Polymer Science. 112 (4), pp. 1959-1966. https://doi.org/10.1002/app.29573
Thermoplastic film from superfine wool powder
Wang, Xin, Xu, Weilin, Li, Wenbin and Wang, Xungai. 2009. "Thermoplastic film from superfine wool powder ." Fibres and Textiles in Eastern Europe. 17 (2 (73)), pp. 82-86.
Dynamic analysis on the thermal and electrical properties of fabrics in the process of moisture absorption and liberation
Cui, Weigang, Wang, Xin, Li, Wenbin and Xu, Weilin. 2009. "Dynamic analysis on the thermal and electrical properties of fabrics in the process of moisture absorption and liberation ." International Journal of Clothing Science and Technology. 21 (5), pp. 279-285. https://doi.org/10.1108/09556220910983777
Application of corona discharge on desizing of polyvinyl alcohol on cotton fabrics
Ma, Pibo, Wang, Xin, Xu, Weilin and Cao, Genyang. 2009. "Application of corona discharge on desizing of polyvinyl alcohol on cotton fabrics ." Journal of Applied Polymer Science. 114 (5), pp. 2887-2892. https://doi.org/10.1002/app.30837
Characterization of superfine down powder
Xu, Weilin, Wang, Xin, Cui, Weigang, Peng, Xuqiang, Li, Wenbin and Liu, Xin. 2009. "Characterization of superfine down powder ." Journal of Applied Polymer Science. 111 (5), pp. 2204-2209. https://doi.org/10.1002/app.29205
Characterization of hot-pressed films from superfine wool powder
Wang, Xin, Xu, Weilin and Wang, Xungai. 2008. "Characterization of hot-pressed films from superfine wool powder ." Journal of Applied Polymer Science. 108 (5), pp. 2852-2856. https://doi.org/10.1002/app.27738
A novel method to analyze the moisture liberation of textile fabrics
Li, Wenbin, Xu, Weilin, Cui, Weigang and Wang, Xin. 2008. "A novel method to analyze the moisture liberation of textile fabrics ." Fibers and Polymers. 9 (3), pp. 312-316. https://doi.org/10.1007/s12221-008-0050-0
Mass production of nanofibers from a spiral coil
Wang, Xin and Wang, Xun Gai. 2013. "Mass production of nanofibers from a spiral coil." Zheng, Laijiu, Skuroda, Shin-ichi , Liu, Huawu, Du, Bing, Ju, Wei and Zhao, Yuping (ed.) 3rd International Conference on Textile Engineering and Materials (ICTEM 2013). Dalian, China 24 - 25 Aug 2013 Zurich, Switzerland. https://doi.org/10.4028/www.scientific.net/AMR.821-822.36