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Erschienen in: Cellulose 2/2019

12.07.2018 | Original Paper

The effects of huntite–hydromagnesite inclusion in acrylate-based polymer paste coating process on some textile functional performance properties of cotton fabric

verfasst von: Nurhan Onar Camlibel, Ozan Avinc, Buket Arik, Arzu Yavas, Ismail Yakin

Erschienen in: Cellulose | Ausgabe 2/2019

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Abstract

In this study, cotton fiber fabrics were coated with polyacrylate-based polymer paste containing huntite–hydromagnesite by knife over roll process. The flame retardancy properties of the cotton fabrics were tested according to vertical flame test, limit oxygen index (LOI) test, smoldering cigarette and match flame tests. Thermal behavior of cotton fabrics was investigated by DTA–TG analysis. The antibacterial activities of coated cotton fabrics were qualitatively determined according to AATCC Method 147. Mechanical properties of cotton fabrics were evaluated with the help of tear strength, abrasion strength, thickness and stiffness measurements. Air permeability, UV protection and color properties were also investigated. Free formaldehyde content of the coatings on cotton fabrics were determined according to Japanese Law 112. The microstructural properties of cotton fabrics were characterized using SEM and FTIR (ATR) analysis. Furthermore, the mineral content and mean particle size value of huntite–hydromagnesite were also determined with X-ray fluorescence spectrometer and particle size analyzer. The flame retardancy and antibacterial properties of the cotton fabrics were improved after coating with acrylate-based polymer paste containing huntite–hydromagnesite. Mechanical properties such as tear strength of the cotton fabric decreased after coating process however huntite–hydromagnesite addition into coating paste did not lead to further increase on the tear strength loss of cotton fabric. Despite this, the resultant maximum abrasion cycles significantly increased following coating process application. Furthermore, colorimetric properties such as whiteness and lightness of cotton fabric did not significantly change after applied coating processes. SEM and FTIR analyses confirmed the constancy of microstructure of cotton fibers after coating process.

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Literatur
Zurück zum Zitat Aksit A, Onar N, Kutlu B, Sergin E, Yakin I (2016) Synergistic effect of phosphorus, nitrogen and silicon on flame retardancy properties of cotton fabric treated by sol–gel process. Int J Cloth Sci Technol 28(3):319–327CrossRef Aksit A, Onar N, Kutlu B, Sergin E, Yakin I (2016) Synergistic effect of phosphorus, nitrogen and silicon on flame retardancy properties of cotton fabric treated by sol–gel process. Int J Cloth Sci Technol 28(3):319–327CrossRef
Zurück zum Zitat Alongi J, Cuttica F, Carosio F, Bourbigot S (2015) How much the fabric grammage may affect cotton combustion? Cellulose 22(5):3477–3489CrossRef Alongi J, Cuttica F, Carosio F, Bourbigot S (2015) How much the fabric grammage may affect cotton combustion? Cellulose 22(5):3477–3489CrossRef
Zurück zum Zitat Amarnath N, Appavoo D, Lochab B (2017) Eco-friendly halogen-free flame retardant cardanol polyphosphazene polybenzoxazine networks. ACS Sustain Chem Eng 6(1):389–402CrossRef Amarnath N, Appavoo D, Lochab B (2017) Eco-friendly halogen-free flame retardant cardanol polyphosphazene polybenzoxazine networks. ACS Sustain Chem Eng 6(1):389–402CrossRef
Zurück zum Zitat Atay HY (2017) Investigations of flame retardant properties of beneficiated huntite and hydromagnesite mineral reinforced polymer composites. Int J Mater Metall Eng 11(5):1–4 Atay HY (2017) Investigations of flame retardant properties of beneficiated huntite and hydromagnesite mineral reinforced polymer composites. Int J Mater Metall Eng 11(5):1–4
Zurück zum Zitat Atay HY, Celik E (2010) Use of Turkish huntite/hydromagnesite mineral in plastic materials as a flame retardant. Polym Compos 31(10):1692–1700CrossRef Atay HY, Celik E (2010) Use of Turkish huntite/hydromagnesite mineral in plastic materials as a flame retardant. Polym Compos 31(10):1692–1700CrossRef
Zurück zum Zitat Basak S, Ali SW (2018) Fire resistant behaviour of cellulosic textile functionalized with wastage plant bio-molecules: a comparative scientific report. Int J Biol Macromol 114:169–180CrossRef Basak S, Ali SW (2018) Fire resistant behaviour of cellulosic textile functionalized with wastage plant bio-molecules: a comparative scientific report. Int J Biol Macromol 114:169–180CrossRef
Zurück zum Zitat Basturk E, Madakbas S, Karadogan B, Kahraman MV (2016) Preparation and thermal properties of polyethylene terephthalate/huntite–hydromagnesite composites. Polym Compos 37(11):3275–3279CrossRef Basturk E, Madakbas S, Karadogan B, Kahraman MV (2016) Preparation and thermal properties of polyethylene terephthalate/huntite–hydromagnesite composites. Polym Compos 37(11):3275–3279CrossRef
Zurück zum Zitat Chapmann JS (2003) Biocide resistance mechanisms. Int Biodeterior Biodegrad 51:133–138CrossRef Chapmann JS (2003) Biocide resistance mechanisms. Int Biodeterior Biodegrad 51:133–138CrossRef
Zurück zum Zitat Cireli A, Onar N, Ebeoglugil MF, Kayatekin I, Kutlu B, Culha O, Celik E (2007) Development of flame retardancy properties of new halogen-free phosphorous doped SiO2 thin films on fabrics. J Appl Polym Sci 105(6):3748–3756CrossRef Cireli A, Onar N, Ebeoglugil MF, Kayatekin I, Kutlu B, Culha O, Celik E (2007) Development of flame retardancy properties of new halogen-free phosphorous doped SiO2 thin films on fabrics. J Appl Polym Sci 105(6):3748–3756CrossRef
Zurück zum Zitat Demirbag S, Aksoy SA (2016) Encapsulation of phase change materials by complex coacervation to improve thermal performances and flame retardant properties of the cotton fabrics. Fibers Polym 17(3):408–417CrossRef Demirbag S, Aksoy SA (2016) Encapsulation of phase change materials by complex coacervation to improve thermal performances and flame retardant properties of the cotton fabrics. Fibers Polym 17(3):408–417CrossRef
Zurück zum Zitat Devaux E, Rochery M, Bourbigot S (2002) Polyurethane/clay and polyurethane/POSS nanocomposites as flame retarded coating for polyester and cotton fabrics. Fire Mater 26(4–5):149–154CrossRef Devaux E, Rochery M, Bourbigot S (2002) Polyurethane/clay and polyurethane/POSS nanocomposites as flame retarded coating for polyester and cotton fabrics. Fire Mater 26(4–5):149–154CrossRef
Zurück zum Zitat Dike AS, Tayfun U, Dogan M (2017) Influence of zinc borate on flame retardant and thermal properties of polyurethane elastomer composites containing huntite–hydromagnesite mineral. Fire Mater 41(7):890–897CrossRef Dike AS, Tayfun U, Dogan M (2017) Influence of zinc borate on flame retardant and thermal properties of polyurethane elastomer composites containing huntite–hydromagnesite mineral. Fire Mater 41(7):890–897CrossRef
Zurück zum Zitat Dorman HJD, Deans SG (2000) Antimicrobial agents from plants: antibacterial activity of plant volatile oils. J Appl Microbiol 88:308–316CrossRef Dorman HJD, Deans SG (2000) Antimicrobial agents from plants: antibacterial activity of plant volatile oils. J Appl Microbiol 88:308–316CrossRef
Zurück zum Zitat Erdem N, Erdogan UH, Aksit AC, Onar N (2010) Structural and UV-protectivity properties of nano-TiO2 doped Polypropylene Filaments. J Appl Polym Sci 115(1):152–157CrossRef Erdem N, Erdogan UH, Aksit AC, Onar N (2010) Structural and UV-protectivity properties of nano-TiO2 doped Polypropylene Filaments. J Appl Polym Sci 115(1):152–157CrossRef
Zurück zum Zitat Ferrero F, Periolatto M, Udrescu C (2012) Water and oil-repellent coatings of perfluoro-polyacrylate resins on cotton fibers: UV curing in comparison with thermal polymerization. Fibers Polym 13(2):191–198CrossRef Ferrero F, Periolatto M, Udrescu C (2012) Water and oil-repellent coatings of perfluoro-polyacrylate resins on cotton fibers: UV curing in comparison with thermal polymerization. Fibers Polym 13(2):191–198CrossRef
Zurück zum Zitat Gao D, Li R, Lv B, Ma J, Tian F, Zhang J (2015) Flammability, thermal and physical-mechanical properties of cationic polymer/montmorillonite composite on cotton fabric. Compos B Eng 77:329–337CrossRef Gao D, Li R, Lv B, Ma J, Tian F, Zhang J (2015) Flammability, thermal and physical-mechanical properties of cationic polymer/montmorillonite composite on cotton fabric. Compos B Eng 77:329–337CrossRef
Zurück zum Zitat Haurie L, Fernández AI, Velasco JI, Chimenos JM, Cuesta JML, Espiell F (2007) Thermal stability and flame retardancy of LDPE/EVA blends filled with synthetic hydromagnesite/aluminium hydroxide/montmorillonite and magnesium hydroxide/aluminium hydroxide/montmorillonite mixtures. Polym Degrad Stab 92(6):1082–1087CrossRef Haurie L, Fernández AI, Velasco JI, Chimenos JM, Cuesta JML, Espiell F (2007) Thermal stability and flame retardancy of LDPE/EVA blends filled with synthetic hydromagnesite/aluminium hydroxide/montmorillonite and magnesium hydroxide/aluminium hydroxide/montmorillonite mixtures. Polym Degrad Stab 92(6):1082–1087CrossRef
Zurück zum Zitat Hollingbery LA, Hull TR (2010) The thermal decomposition of huntite and hydromagnesite—a review. Thermochim Acta 509(1):1–11CrossRef Hollingbery LA, Hull TR (2010) The thermal decomposition of huntite and hydromagnesite—a review. Thermochim Acta 509(1):1–11CrossRef
Zurück zum Zitat Hollingbery LA, Hull TR (2012a) The thermal decomposition of natural mixtures of huntite and hydromagnesite. Thermochim Acta 528:45–52CrossRef Hollingbery LA, Hull TR (2012a) The thermal decomposition of natural mixtures of huntite and hydromagnesite. Thermochim Acta 528:45–52CrossRef
Zurück zum Zitat Hollingbery LA, Hull TR (2012b) The fire retardant effects of huntite in natural mixtures with hydromagnesite. Polym Degrad Stab 97(4):504–512CrossRef Hollingbery LA, Hull TR (2012b) The fire retardant effects of huntite in natural mixtures with hydromagnesite. Polym Degrad Stab 97(4):504–512CrossRef
Zurück zum Zitat Isitman NA, Kaynak C (2010) Nanoclay and carbon nanotubes as potential synergists of an organophosphorus flame-retardant in poly (methyl methacrylate). Polym Degrad Stab 95(9):1523–1532CrossRef Isitman NA, Kaynak C (2010) Nanoclay and carbon nanotubes as potential synergists of an organophosphorus flame-retardant in poly (methyl methacrylate). Polym Degrad Stab 95(9):1523–1532CrossRef
Zurück zum Zitat Kangal O, Guney A (2006) A new industrial mineral: huntite and its recovery. Miner Eng 19(4):376–378CrossRef Kangal O, Guney A (2006) A new industrial mineral: huntite and its recovery. Miner Eng 19(4):376–378CrossRef
Zurück zum Zitat Katay G, Ott PG, Katay E, Magyar D, Tyihak E (2009) Potential role of formaldehyde in the mechanism of action of ascorbigens on the basis of BioArena studies. Biomed Chromatogr 23:412–418CrossRef Katay G, Ott PG, Katay E, Magyar D, Tyihak E (2009) Potential role of formaldehyde in the mechanism of action of ascorbigens on the basis of BioArena studies. Biomed Chromatogr 23:412–418CrossRef
Zurück zum Zitat Levchik SV, Weil ED (2006) A review of recent progress in phosphorus-based flame retardants. J Fire Sci 24(5):345–364CrossRef Levchik SV, Weil ED (2006) A review of recent progress in phosphorus-based flame retardants. J Fire Sci 24(5):345–364CrossRef
Zurück zum Zitat Li YC, Schulz J, Mannen S, Delhom C, Condon B, Chang S, Zammarano M, Grunlan JC (2010) Flame retardant behavior of polyelectrolyte–clay thin film assemblies on cotton fabric. ACS Nano 4(6):3325–3337CrossRef Li YC, Schulz J, Mannen S, Delhom C, Condon B, Chang S, Zammarano M, Grunlan JC (2010) Flame retardant behavior of polyelectrolyte–clay thin film assemblies on cotton fabric. ACS Nano 4(6):3325–3337CrossRef
Zurück zum Zitat Lu SY, Hamerton I (2002) Recent developments in the chemistry of halogen-free flame retardant polymers. Prog Polym Sci 27(8):1661–1712CrossRef Lu SY, Hamerton I (2002) Recent developments in the chemistry of halogen-free flame retardant polymers. Prog Polym Sci 27(8):1661–1712CrossRef
Zurück zum Zitat Madakbas S, Celik Z, Dumludag F, Kahraman MV (2014) Preparation, characterization and electrical properties of polyacrylonitrile/huntite composites. Polym Bull 71(6):1471–1481CrossRef Madakbas S, Celik Z, Dumludag F, Kahraman MV (2014) Preparation, characterization and electrical properties of polyacrylonitrile/huntite composites. Polym Bull 71(6):1471–1481CrossRef
Zurück zum Zitat Maryan AS, Montazer M, Rashidi A (2013) Introducing old-look, soft handle, flame retardant, and anti-bacterial properties to denim garments using nano clay. J Eng Fabr Fibers (JEFF) 8(4):68–77 Maryan AS, Montazer M, Rashidi A (2013) Introducing old-look, soft handle, flame retardant, and anti-bacterial properties to denim garments using nano clay. J Eng Fabr Fibers (JEFF) 8(4):68–77
Zurück zum Zitat Onar N, Ebeoglugil MF, Kayatekin I, Celik E (2007) Low-temperature, sol–gel-synthesized, silver-doped titanium oxide coatings to improve ultraviolet-blocking properties for cotton fabrics. J Appl Polym Sci 106(1):514–525CrossRef Onar N, Ebeoglugil MF, Kayatekin I, Celik E (2007) Low-temperature, sol–gel-synthesized, silver-doped titanium oxide coatings to improve ultraviolet-blocking properties for cotton fabrics. J Appl Polym Sci 106(1):514–525CrossRef
Zurück zum Zitat Pérez OP, CedeñoMattei Y (2017) Synthesis, characterization, and assessment of the antimicrobial activity of MgO–calcium alginate porous beads. Rev Cient Tec 26(2):7–12 Pérez OP, CedeñoMattei Y (2017) Synthesis, characterization, and assessment of the antimicrobial activity of MgO–calcium alginate porous beads. Rev Cient Tec 26(2):7–12
Zurück zum Zitat Rehan M, El-Naggar ME, Mashaly HM, Wilken R (2018) Nanocomposites based on chitosan/silver/clay for durable multi-functional properties of cotton fabrics. Carbohyd Polym 182:29–41CrossRef Rehan M, El-Naggar ME, Mashaly HM, Wilken R (2018) Nanocomposites based on chitosan/silver/clay for durable multi-functional properties of cotton fabrics. Carbohyd Polym 182:29–41CrossRef
Zurück zum Zitat Salmeia KA, Gaan S, Malucelli G (2016) Recent advances for flame retardancy of textiles based on phosphorus chemistry. Polymers 8(9):319CrossRef Salmeia KA, Gaan S, Malucelli G (2016) Recent advances for flame retardancy of textiles based on phosphorus chemistry. Polymers 8(9):319CrossRef
Zurück zum Zitat Seki Y, Sever K, Sarikanat M, Sakarya A, Elik E (2013) Effect of huntite mineral on mechanical, thermal and morphological properties of polyester matrix. Compos B Eng 45(1):1534–1540CrossRef Seki Y, Sever K, Sarikanat M, Sakarya A, Elik E (2013) Effect of huntite mineral on mechanical, thermal and morphological properties of polyester matrix. Compos B Eng 45(1):1534–1540CrossRef
Zurück zum Zitat Sen F, Madakbas S, Kahraman MV (2014) Preparation and characterization of polyaniline/Turkish huntite–hydromagnesite composites. Polym Compos 35(3):456–460CrossRef Sen F, Madakbas S, Kahraman MV (2014) Preparation and characterization of polyaniline/Turkish huntite–hydromagnesite composites. Polym Compos 35(3):456–460CrossRef
Zurück zum Zitat Shahidi S, Ghoranneviss M (2014) Effect of plasma pretreatment followed by nanoclay loading on flame retardant properties of cotton fabric. J Fusion Energy 33(1):88–95CrossRef Shahidi S, Ghoranneviss M (2014) Effect of plasma pretreatment followed by nanoclay loading on flame retardant properties of cotton fabric. J Fusion Energy 33(1):88–95CrossRef
Zurück zum Zitat Sim LH, Gan SN, Chan CH, Yahya R (2010) ATR–FTIR studies on ion interaction of lithium perchlorate in polyacrylate/poly(ethylene oxide) blends. Spectrochim Acta Part A 76:287–292CrossRef Sim LH, Gan SN, Chan CH, Yahya R (2010) ATR–FTIR studies on ion interaction of lithium perchlorate in polyacrylate/poly(ethylene oxide) blends. Spectrochim Acta Part A 76:287–292CrossRef
Zurück zum Zitat Tanaka T, Hagi H, Ebisu T (2011) U.S. Patent No. 8,003,555. U.S. Patent and Trademark Office, Washington, DC Tanaka T, Hagi H, Ebisu T (2011) U.S. Patent No. 8,003,555. U.S. Patent and Trademark Office, Washington, DC
Zurück zum Zitat Toure B, Cuesta JML, Gaudon P, Benhassaine A, Crespy A (1996) Fire resistance and mechanical properties of a huntite/hydromagnesite/antimony trioxide/decabromodiphenyl oxide filled PP–PE copolymer. Polym Degrad Stab 53(3):371–379CrossRef Toure B, Cuesta JML, Gaudon P, Benhassaine A, Crespy A (1996) Fire resistance and mechanical properties of a huntite/hydromagnesite/antimony trioxide/decabromodiphenyl oxide filled PP–PE copolymer. Polym Degrad Stab 53(3):371–379CrossRef
Zurück zum Zitat Tyihak E, Bocsi J, Timar F, Racz G, Szende B (2001) Formaldehyde promotes and inhibits the proliferation of cultured tumour and endothelial cells. Cell Prolif 34:135–141CrossRef Tyihak E, Bocsi J, Timar F, Racz G, Szende B (2001) Formaldehyde promotes and inhibits the proliferation of cultured tumour and endothelial cells. Cell Prolif 34:135–141CrossRef
Zurück zum Zitat Yamamoto O, Ohira T, Alvarez K, Fukuda M (2010) Antibacterial characteristics of CaCO3–MgO composites. Mater Sci Eng B 173(1–3):208–212CrossRef Yamamoto O, Ohira T, Alvarez K, Fukuda M (2010) Antibacterial characteristics of CaCO3–MgO composites. Mater Sci Eng B 173(1–3):208–212CrossRef
Zurück zum Zitat Yaras A, Er E, Celikkan H, Disli A, Alicilar A (2016) Cellulosic tent fabric coated with boron nitride nanosheets. J Ind Text 45(6):1689–1700CrossRef Yaras A, Er E, Celikkan H, Disli A, Alicilar A (2016) Cellulosic tent fabric coated with boron nitride nanosheets. J Ind Text 45(6):1689–1700CrossRef
Zurück zum Zitat Yurddaskal M, Celik E (2018) Effect of halogen-free nanoparticles on the mechanical, structural, thermal and flame retardant properties of polymer matrix composite. Compos Struct 183:381–388CrossRef Yurddaskal M, Celik E (2018) Effect of halogen-free nanoparticles on the mechanical, structural, thermal and flame retardant properties of polymer matrix composite. Compos Struct 183:381–388CrossRef
Zurück zum Zitat Yurddaskal M, Nil M, Ozturk Y, Celik E (2018) Synergetic effect of antimony trioxide on the flame retardant and mechanical properties of polymer composites for consumer electronics applications. J Mater Sci Mater Electron 29(6):4557–4563CrossRef Yurddaskal M, Nil M, Ozturk Y, Celik E (2018) Synergetic effect of antimony trioxide on the flame retardant and mechanical properties of polymer composites for consumer electronics applications. J Mater Sci Mater Electron 29(6):4557–4563CrossRef
Zurück zum Zitat Zhang T, Luo D, Wojtal P, Zhitomirsky I (2015) Electrophoretic deposition of flame retardant polymer–huntite coatings. Mater Lett 159:106–109CrossRef Zhang T, Luo D, Wojtal P, Zhitomirsky I (2015) Electrophoretic deposition of flame retardant polymer–huntite coatings. Mater Lett 159:106–109CrossRef
Zurück zum Zitat Zhao Q, Hu Y, Wang X (2016) Mechanical performance and flame retardancy of polypropylene composites containing zeolite and multiwalled carbon nanotubes. J Appl Polym Sci 133(3):42875CrossRef Zhao Q, Hu Y, Wang X (2016) Mechanical performance and flame retardancy of polypropylene composites containing zeolite and multiwalled carbon nanotubes. J Appl Polym Sci 133(3):42875CrossRef
Zurück zum Zitat Zhong-Hua C, Chong-Yi L (2011) Development and performance of waterbased extra-thin fire retardant coating for steel structure. Paint Coat Ind 41(4):26–30 Zhong-Hua C, Chong-Yi L (2011) Development and performance of waterbased extra-thin fire retardant coating for steel structure. Paint Coat Ind 41(4):26–30
Metadaten
Titel
The effects of huntite–hydromagnesite inclusion in acrylate-based polymer paste coating process on some textile functional performance properties of cotton fabric
verfasst von
Nurhan Onar Camlibel
Ozan Avinc
Buket Arik
Arzu Yavas
Ismail Yakin
Publikationsdatum
12.07.2018
Verlag
Springer Netherlands
Erschienen in
Cellulose / Ausgabe 2/2019
Print ISSN: 0969-0239
Elektronische ISSN: 1572-882X
DOI
https://doi.org/10.1007/s10570-018-1924-y

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