Research ArticleOpen AccessGoogle Scholar indexed
Study on Natural Minerals Applying in Developing New Health Textiles
College of Fashion, Shanghai University of Engineering Science, Shanghai, China
The Paris Fashion School for Design and Business, Shanghai, China
College of Fashion, Shanghai University of Engineering Science, Shanghai, China
Shanghai Textile (Group) Co., Ltd., Shanghai, China
- 1 College of Fashion, Shanghai University of Engineering Science, Shanghai, China
- 2 The Paris Fashion School for Design and Business, Shanghai, China
- 3 College of Fashion, Shanghai University of Engineering Science, Shanghai, China
- 4 Shanghai Textile (Group) Co., Ltd., Shanghai, China
Journal of Minerals and Materials Characterization and Engineering·Volume 03 (2015)·Pages 248–254·Published 29 May 2015·DOI10.4236/jmmce.2015.34027
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Abstract
This paper introduces types and health functions of natural minerals applied in the textile field, details the processing methods of health textiles containing natural minerals, summarizes the development situation of the health textiles containing natural minerals at home and abroad, and analyzes its potential problems and development direction. Health textiles containing natural minerals have broad developing prospects; the current main task is to solve the problems caused by technical immaturity, improve efficiency and durability of its health properties, and expand production scale.
KeywordsHealth TextilesNatural MineralHealth FunctionsElectrostatic Spinning
- Zheng, K. and Shen, H. (2010) Care Textiles Development and Application. Textile Industry and Technology, 39, 50- 52.
- Fang, C.S. and Meng, J.G. (2008) Maifan Stone Fiber Properties and Its Application. Hebei Textile, 3, 32-34.
- Zhao, B. (2008) Features and Develop Applications of Maifan Stone Fiber Properties. Foreign Silks, 23, 38-40.
- Jilin Chemical Fiber Group Co., Ltd. (1999) Maifan Stone Functional Fibers. Silk, 9, 52-52.
- Pirajno, F., Seltmann, R. and Yang, Y.Q. (2011) A Review of Mineral Systems and Associated Tectonic Settings of Northern Xinjiang, NW China. Geoscience Frontiers, 2, 157-185. http://dx.doi.org/10.1016/j.gsf.2011.03.006
- Wang, Y., Wang, J., Wang, L., et al. (2012) The Tuerkubantao ophiolite mélange in Xinjiang, NW China: New Evidence for the Erqis Suture Zone. Geoscience Frontiers, 3, 587-602. http://dx.doi.org/10.1016/j.gsf.2012.02.002
- Kaygusuz, A., Sipahi, F., lbeyli, N., et al. (2013) Petrogenesis of the Late Cretaceous Turnagöl Intrusion in the Eastern Pontides: Implications for Magma Genesis in the Arc Setting. Geoscience Frontiers, 4, 423-438. http://dx.doi.org/10.1016/j.gsf.2012.09.003
- Wu, C.C. and Lee, G.W.M. (2004) Oxidation of Volatile Organic Compounds by Negative Air Ions. Atmospheric Environment, 38, 6287-6295. http://dx.doi.org/10.1016/j.atmosenv.2004.08.035
- Wang, G.W., Wang, W.H. and Yu, J.K. (2002) Negative Oxygen Ions in Polyester Fiber and Preparation: China, CN1360092A [P] .2002-07-24.
- Liu, Y., Cui, S.L. and Yin, F. (2008) A New Fiber: Jade Advent of Fiber. Hebei Textile, 4, 39-42.
- Han, Y.H., Meng, J.G. and Li, N. (2011) New Health Fiber-Jade Fibe. Textiles, 29, 47-48.
- Shanghai Ordifen Lingerie Boutique Co., Ltd. (2013) A Taichi Stone Cup with a High-Frequency Resonance Effect Function. China Pattent No. 201210017287.X.
- Lin, R.Y. and Xu, H.G. (2014) A Health Fiber Which Can Promote Human Microcirculation and Its Preparation. China Patent No. CN104153031A.
- Shiro, N. (2001) Patent Laid Flat 13-123374.
- Sano, Y., Saegusa, T. and Kimura, Y. (1995) Antistatic Modification of Synthetic Fibers by Blend-Spinning of Polymers Containing Zwitterionic Antistatic Modifiers and Their Copolymers. Die Angewandte Makromolekulare Chemie, 224, 153-166. http://dx.doi.org/10.1002/apmc.1995.052240116