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Articles

Influence of low-temperature plasma treatment on properties of ramie fibers

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Pages 172-177 | Received 19 Mar 2016, Accepted 19 May 2017, Published online: 29 May 2017

References

  • Barani, H., & Calvimontes, A. (2014). Effects of oxygen plasma treatment on the physical and properties of wool fiber surface. Plasma Chemistry and Plasma Processing, 34, 1291–1302. doi:10.1007/s11090-014-9581-x
  • Barnat-Hunek, D., & Smarzewski, P. (2016). Influence of hydrophobisation on surface free energy of hybrid fiber reinforced ultra-high performance concrete. Construction & Building Materials, 102, 367–377. doi:10.1016/j.conbuildmat.2015.11.008
  • Bhattacharya, S. D., & Shah, S. R. (2007). Degumming of decorticated ramie: Effects of alkalis on gummy compositions vis-à-vis their properties. The Journal of The Textile Institute, 98, 431–436. doi:10.1080/00405000701502891
  • Chen, D., Li, J., & Ren, J. (2010). Study on sound absorption property of ramie fiber reinforced poly(l -lactic acid) composites: Morphology and properties. Composites Part A: Applied Science and Manufacturing, 41, 1012–1018. doi:10.1016/j.compositesa.2010.04.007
  • Chen, P., Wang, J., Wang, B., Li, W., Zhang, C., Li, H., & Sun, B. (2009). Improvement of interfacial adhesion for plasma-treated aramid fiber-reinforced poly(phthalazinone ether sulfone ketone) composite and fiber surface aging effects. Surface and Interface Analysis, 41, 38–43. doi:10.1002/sia.2972
  • Choi, H. Y., & Lee, J. S. (2012). Effects of surface treatment of ramie fibers in a ramie/poly(lactic acid) composite. Fibers and Polymers, 13, 217–223. doi:10.1007/s12221-012-0217-6
  • Ferreira, S. R., Silva, F. D. A., Lima, P. R. L., & Filho, R. D. T. (2015). Effect of fiber treatments on the sisal fiber properties and fiber–matrix bond in cement based systems. Construction & Building Materials, 101, 730–740. doi:10.1016/j.conbuildmat.2015.10.120
  • Gu, X., Cheng, L., & Wang, X. (2014). Influence of degumming loss rate on property of ramie fiber composites. Journal of Tian Jin Polytechnic University, 33, 5–9.
  • Kafi, A. A., Magniez, K., & Fox, B. L. (2011). A surface-property relationship of atmospheric plasma treated jute composites. Composites Science & Technology, 71, 1692–1698. doi:10.1016/j.compscitech.2011.07.011
  • Lee, T. S., Choi, H. Y., Choi, H. N., Lee, K. Y., Kim, S. H., Lee, S. G., & Yong, D. K. (2013). Effect of surface treatment of ramie fiber on the interfacial adhesion of ramie/acetylated epoxidized soybean oil (AESO) green composite. Journal of Adhesion Science and Technology, 27, 1335–1347. doi:10.1080/01694243.2012.697326
  • Li, Y., Xie, L., & Ma, H. (2015). Permeability and mechanical properties of plant fiber reinforced hybrid composites. Materials & Design, 86, 313–320. doi:10.1016/j.matdes.2015.06.164
  • Meysam, B. B., Ahmad, M. S., Aminoddin, H., & Sabet, E. N. (2016). Optimization of plasma treatment variables for the improvement of carbon fibres/epoxy composite performance by response surface methodology. Composites Science & Technology, 128, 215–221. doi:10.1016/j.compscitech.2016.03.020
  • Oladele, I. O., & Agbabiska, O. G. (2015). Investigation the Influence of mercerization treatment of sisal fiber on the mechanical properties of reinforced polypropylene composites and modeling of the properties. Fibers and Polymers, 16, 650–656. doi:10.1007/s12221-015-0650-4
  • Ren, Y., Wang, C., & Qiu, Y. (2007). Surface preparation for adhesive bonding of polycyanurate-based fiber-reinforced composites using atmospheric plasma treatment. Applied Surface Science, 253, 9283–9289. doi:10.1002/app.33261
  • Rui, C., Bechtold, T., & Rohrer, C. (2003). Fiber friction in yarn – A fundamental property of fibers. Textile Research Journal, 73, 721–726. doi:10.1177/004051750307300810
  • Shen, M., Wang, L., & Long, J. (2015). Biodegumming of ramie fiber with pectinases enhanced by oxygen plasma. Journal of Cleaner Production, 101, 395–403. doi:10.1016/j.jclepro.2015.03.081
  • Takemura, K., Takada, Y., & Katogi, H. (2012). Effect of treatment using silane coupling agenton creep properties of jute fiber reinforcedcomposites. High Performance Structure & Materials VI, 1, 417–424. doi:10.2495/HPSM120371
  • Teli, M. D., Samanta, K. K., Pandit, P., Basak, S., & Chattopadhyay, S. K. (2015). Low-temperature dyeing of silk fabric using atmospheric pressure helium/nitrogen plasma. Fibers and Polymers, 16, 2375–2383. doi:10.1007/s12221-015-5166-4
  • Trantidou, T., Prodromakis, T., & Toumazou, C. (2012). Oxygen plasma induced hydrophilicity of parylene-C thin films. Applied Surface Science, 261, 43–51. doi:10.1016/j.apsusc.2012.06.112
  • Wang, C. X., Du, M., Lv, J. C., Zhou, Q. Q., Ren, Y., Liu, G. Y., Gao, D. W., & Jin, L. M. (2015). Surface modification of aramid fiber by plasma induced vapor phase graft polymerization of acrylic acid. I. Influence of plasma conditions. Applied Surface Science, 349, 333–342. doi:10.1016/j.apsusc.2015.05.036
  • Wang, C. H., Liu, S. K., & Ye, Z. K. (2016). Mechanical, hygrothermal ageing and moisture absorption properties of bamboo fibers reinforced with polypropylene composites. Journal of Reinforced Plastics & Composites, 35, 1062–1074. doi:10.1177/0731684416637681
  • Wang, C. X., Lv, J. C., Gao, D. W., Liu, G. L., Jin, L. M., & Liu, J. H. (2013). Surface modification and aging effect of polysulfonamide yarns treated by atmospheric pressure plasma. Fibers and Polymers, 14, 1478–1484. doi:10.1007/s12221-013-1478-4
  • Wang, H., Xian, G., Li, H., & Sui, L. (2014). Durability study of a ramie-fiber reinforced phenolic composite subjected to water immersion. Fibers and Polymers, 15, 1029–1034. doi:10.1007/s12221-014-1029-7
  • Xu, Ch, Gu, Y. Z., Yang, Zh. J., Li, M., Li, Y. X., & Zhang, Z. G. (2015). Mechanical properties of surface-treated ramie fiber fabric/epoxy resin composite fabricated by vacuum-assisted resin infusion molding with hot compaction. Journal of Composite Materials, 50, 1189–1198. doi:10.1177/0021998315590259
  • Zaldivar, R. J., Kim, H. I., Steckel, G. L., Patel, D., Morgan, B. A., & Nokes, J. P. (2011). Surface preparation for adhesive bonding of polycyanurate-based fiber reinforced composites using atmospheric plasma treatment. Journal of Applied Polymer Science, 120, 921–931. doi:10.1002/app.33261
  • Zhang, Q., & Yan, S. Q. (2013). Degumming of ramie bast fibers by Ca2+-activated composite enzyme. The Journal of The Textile Institute, 104, 78–83. doi:10.1080/00405000.2012.693273
  • Zhou, F., Cheng, G., & Jiang, B. (2014). Effect of silane treatment on microstructure of sisal fibers. Applied Surface Science, 292, 806–812. doi:10.1016/j.apsusc.2013.12.054

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