Page 45 - New Cloth Market December 2022 Digital Edition
P. 45

Industrial Hemp Fibers: An Overview



             Matovic, D. Tensile  Properties of  fects in Mechanical Polishing of Nat-  M.R.; Nuraini, A.A. Materials Selec-
             Hemp and Agave Americana Fibres.   ural Fiber Composites. Procedia   tion of Thermoplastic Matrices for
             Handb. Tensile Prop. Text. Tech. Fibres  Manuf. 2018, 26, 294–304. [Cross-  ’Green’ Natural Fibre Composites for
             2009, 73–99. [CrossRef]            Ref]                              Automotive Anti-Roll Bar with Partic-
                                                                                  ular Emphasis on the Environment.
         29. Salentijn, E.M.J.; Zhang, Q.; Amaduc-  39. Kabir, M.M.; Wang, H.; Lau, K.T.; Car-
                                                                                  Int. J. Precis. Eng. Manuf. Green Tech-
             ci, S.; Yang, M.; Trindade, L.M. New  dona, F. Effects of Chemical Treat-
             Developments in Fiber Hemp (Can-   ments on Hemp Fibre Structure. Appl.  nol. 2018, 5, 111–119. [CrossRef]
             nabis Sativa, L.) Breeding. Ind. Crops  Surf. Sci. 2013, 276, 13–23. [Cross-  50. Manaia, J.P.; Pires, F.A.; de Jesus,
             Prod. 2015, 68, 32–41. [CrossRef]  Ref]                              A.M.P.; Wu, S. Yield Behaviour of High-
                                                                                  Density Polyethylene: Experimental
         30. Pappu, A.; Pickering, K.L.; Thakur, V.K.  40. Väisänen, T.; Batello, P.; Lappalain-
             Manufacturing and Characterization  en, R.; Tomppo, L. Modification of  and Numerical Characterization.
             of Sustainable Hybrid Composites   Hemp Fibers (Cannabis Sativa, L.)  Eng.  Fail. Anal. 2019, 97, 331–353.
             Using Sisal and Hemp Fibres as Re-  for Composite Applications. Ind.  [CrossRef]
             inforcement of Poly (Lactic Acid) Via  Crops Prod. 2018, 111, 422–429.  51. Shahzad, A. Hemp Fiber and Its Com-
             Injection Moulding. Ind. Crops Prod.  [CrossRef]                     posites—A Review. J. Compos. Mat-
             2019, 137, 260–269. [CrossRef]                                       er. 2012, 46, 973–986. [CrossRef]
                                            41. Hepworth, D.G.; Hobson, R.N.; Bruce,
         31. Sature, P.; Mache, A. Mechanical char-  D.M.; Farrent, J.W. The Use of Unret-  52. Sain, M.; Suhara, P.; Law, S.; Bouil-
             acterization and water absorption  ted Hemp Fibre in Composite Manu-  loux, A. Interface Modification and
             studies on jute/hemp reinforced hy-  facture. Compos. Part A Appl. Sci.  Mechanical Properties of Natural Fi-
             brid composites. Am.  J. Mater. Sci.  Manuf. 2000, 31, 1279–1283. [Cross-  ber-Polyolefin Composite Products. J.
             2015, 5, 133–139. [CrossRef]       Ref]                              Reinf. Plast. Compos. 2005, 24, 121–
                                                                                  130. [CrossRef]
         32. Chen, T.; Liu, W.; Qiu, R. Mechanical  42. Nunes, L. Nonwood Bio-Based Ma-
             Properties and Water Absorption of  terials; Elsevier: Amsterdam, The  53. Li, H.; Sain, M.M. High Stiffness Natu-
             Hemp Fibers-Reinforced Unsaturat-  Netherlands, 2017. [CrossRef]     ral Fiber-Reinforced Hybrid Polypro-
             ed Polyester Composites: Effect of  43. Teixeira, F.P.; Gomes, O.d.F.M.; Silva,  pylene Composites. Polym. Plast.
             Fiber Surface Treatment with a Het-                                  Technol. Eng. 2003, 42, 853–862.
                                                F.d.A. Degradation Mechanisms of
             erofunctional Monomer. BioResourc-                                   [CrossRef]
                                                Curaua, Hemp, and Sisal Fibers Ex-
             es 2013, 8, 2780–2791. [CrossRef]
                                                posed to Elevated Temperatures.  54. Sullins, T.; Pillay, S.; Komus, A.; Ning,
         33. Kabir, M.M.; Wang, H.; Lau, K.T.; Car-  BioResources 2019, 14, 1494–1511.  H. Hemp Fiber Reinforced Polypro-
             dona, F. Tensile Properties of Chemi-  [CrossRef]                    pylene Composites: The Effects of
             cally Treated Hemp Fibres as Rein-                                   Material Treatments. Compos. Part B
                                            44. Shahzad, A. A Study in Physical and
             forcement for Composites. Compos.  Mechanical Properties of Hemp Fi-  Eng. 2017, 114, 15–22. [CrossRef]
             Part B Eng. 2013, 53, 362–368.     bres. Adv. Mater. Sci. Eng. 2013, 2013,
             [CrossRef]                                                        55. Keener, T.J.; Stuart, R.K.; Brown, T.K.
                                                1–9. [CrossRef]                   Maleated Coupling Agents for Natu-
         34. Pil, L.; Bensadoun, F.; Pariset, J.; Ver-
                                            45. Mohammed, L.; Ansari, M.N.M.; Pua,  ral Fibre Composites. Compos. Part
             poest, I. Why Are Designers Fascinat-  G.; Jawaid, M.; Islam, M.S. A Review  A Appl. Sci. Manuf. 2004, 35, 357–
             ed by Flax and Hemp Fibre Compos-  on Natural Fiber Reinforced Polymer  362. [CrossRef]
             ites? Compos. Part A Appl. Sci. Manuf.  Composite and Its Applications. Int. J.
             2016, 83, 193–205. [CrossRef]                                     56. Mutjé, P.; Vallejos, M.E.; Gironès, J.;
                                                Polym. Sci. 2015, 2015, 1–15. [Cross-  Vilaseca, F.; López, A.; López, J.P.;
         35. Horne, M. Bast Fibres: Hemp Cultiva-  Ref]                           Méndez, J.A. Effect of Maleated
             tion and Production; Woodhead Pub-  46. Sarikaya, E.; Çalliog?lu, H.; Demirel,  Polypropylene as Coupling Agent for
             lishing: Amsterdam, The Netherlands,  H. Production of Epoxy Composites  Polypropylene Composites Rein-
             2012; Volume 1. [CrossRef]
                                                Reinforced by Different Natural Fi-  forced with Hemp Strands. J. Appl.
                                                bers and Their Mechanical Proper-  Polym. Sci. 2006, 102, 833–840.
         36. Kiruthika, A.V. A Review on Physico-  ties. Compos. Part B Eng. 2019, 167,  [CrossRef]
             Mechanical Properties of Bast Fibre  461–466. [CrossRef]
             Reinforced Polymer Composites.  J.                                57. Gassan, J.; Bledzki, A.K. Thermal
             Build. Eng. 2017, 9, 91–99. [Cross-  47. Wambua, P.; Ivens, J.; Verpoest, I. Nat-  Degradation of Flax and Jute Fibers.
             Ref]                               ural Fibres: Can They Replace Glass  J. Appl. Polym. Sci. 2001, 82, 1417–
                                                in Fibre Reinforced Plastics? Com-  1422. [CrossRef]
         37. Zheng, G.Y. Numerical Investigation  pos. Sci. Technol. 2003, 63, 1259–
             of Characteristic of Anisotropic Ther-  1264. [CrossRef]          58. Ray, S.S.; Bousmina, M. Biodegrad-
             mal Conductivity of Natural Fiber                                    able Polymers and Their Layered Sil-
             Bundle with Numbered Lumens.   48. Mishra, S.; Sain, M. Long-Term Per-  icate Nanocomposites: In Greening
             Math. Probl. Eng. 2014, 2014, 1–8.  formance of Natural-Fiber Compos-  the 21st Century Materials World.
             [CrossRef]                         ites. Prop.  Perform. Nat. Compos.  Prog. Mater. Sci. 2005, 50, 962–1079.
                                                2008, 460–502. [CrossRef]         [CrossRef]
         38. Chegdani, F.; Bukkapatnam, S.T.S.; El
             Mansori, M. Thermo-Mechanical Ef-  49. Mastura, M.T.; Sapuan, S.M.; Mansor,  59. Siakeng, R.; Jawaid, M.; Ariffin, H.;


                                               NCM-DECEMBER 2022
                                                           45
   40   41   42   43   44   45   46   47   48   49   50