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Cilt: 17 Sayı: 2 28 Eylül 2017
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Effects of Fire Retardants on the Fire, Thermal and Mechanical Properties of Wood Plastic Composites Using Recycled Fibers

Öz

Abstract

Aim of study: This study compared the effects of boron-based fire retardants and synergistic influential compounds used in medium-density fiberboard waste (MDFw) filled high-density polyethylene (HDPE) composites.

Area of study: To improve the use of boron based and fire retardant materials in wood plastic composite.

Material and Methods: Fiber waste, HDPE and  boron- based compounds were used to produce wood plastic composites. Mechanical thermal and fire properties of the produced composites were investigated.

Main results: When fire retardants were used in composites, the mechanical properties of composite with MAPE increased slightly, also the modulus of elasticity of composites increased considerably. Boron-based fire retardants and other synergistic influential compounds decreased the burning rate and limiting oxygen index (LOI) properties of the composites.

Research highlights: The use of the zinc borate in the MDFw-based wood plastic composite had the best results on the mechanical and fire-retardant properties.

Anahtar Kelimeler

Fire Retardant,Thermal properties,Zinc borate,synergic effect

Kaynakça

  1. 1. ASTM D618 (2013). “Standard practice for conditioning plastics for testing,” ASTM International, West Conshohocken, USA.
  2. 2. ASTM D256 (2007). “Standard test method for determining the Izod pendulum impact resistance of plastics,” ASTM International, West Conshohocken, USA.
  3. 3. ASTM D638. (2007). “Standard test method for tensile properties of plastics,” ASTM International, West Conshohocken, USA.
  4. 4. ASTM D790 (2007). “Standard test method for flexural properties of unreinforced and reinforced plastics and electrical insulating materials,” ASTM International, West Conshohocken, USA.
  5. 5. ASTM D2240 (2010). “Standard test method for rubber property – Durometer hardness,” ASTM International, West Conshohocken, USA.
  6. 6. ASTM D2863-10 (2000). “Standard test method for measuring the minimum oxygen concentration to support candle-like combustion of plastics (oxygen index),” ASTM International, West Conshohocken, USA.
  7. 7. ASTM D635 (2014). “Standard test method for rate of burning and/or extent and time of burning of plastics in a horizontal position,” ASTM International, West Conshohocken, USA.
  8. 8. Ayrilmis, N. 2013. Combined effects of boron and compatibilizer on dimensional stability and mechanical properties of wood/HDPE composites. Composites Part B-Engineering, 44(1): 745-749.
  9. 9. Ayrilmis, N., Akbulut, T., Dundar, T., White, R. H., Mengeloglu, F., Buyuksari, U., Candan, Z., and Avci, E. 2012. Effect of boron and phosphate compounds on physical, mechanical, and fire properties of wood-polypropylene composites. Construction and Building Materials, 33: 63-69.
  10. 10. Ayrilmis, N., Benthien, J. T., Thoemen, H., and White, R. H. 2011. Properties of Flat-Pressed Wood Plastic Composites Containing Fire Retardants. Journal of Applied Polymer Science, 122(5): 3201-3210.

Kaynak Göster

APA
Altuntaş, E., Karaoğul, E., & Alma, M. H. (2017). Effects of Fire Retardants on the Fire, Thermal and Mechanical Properties of Wood Plastic Composites Using Recycled Fibers. Kastamonu University Journal of Forestry Faculty, 17(2), 334-342. https://doi.org/10.17475/kastorman.329427
AMA
1.Altuntaş E, Karaoğul E, Alma MH. Effects of Fire Retardants on the Fire, Thermal and Mechanical Properties of Wood Plastic Composites Using Recycled Fibers. Kastamonu University Journal of Forestry Faculty. 2017;17(2):334-342. doi:10.17475/kastorman.329427
Chicago
Altuntaş, Ertuğrul, Eyyüp Karaoğul, ve Mehmet Hakkı Alma. 2017. “Effects of Fire Retardants on the Fire, Thermal and Mechanical Properties of Wood Plastic Composites Using Recycled Fibers”. Kastamonu University Journal of Forestry Faculty 17 (2): 334-42. https://doi.org/10.17475/kastorman.329427.
EndNote
Altuntaş E, Karaoğul E, Alma MH (01 Eylül 2017) Effects of Fire Retardants on the Fire, Thermal and Mechanical Properties of Wood Plastic Composites Using Recycled Fibers. Kastamonu University Journal of Forestry Faculty 17 2 334–342.
IEEE
[1]E. Altuntaş, E. Karaoğul, ve M. H. Alma, “Effects of Fire Retardants on the Fire, Thermal and Mechanical Properties of Wood Plastic Composites Using Recycled Fibers”, Kastamonu University Journal of Forestry Faculty, c. 17, sy 2, ss. 334–342, Eyl. 2017, doi: 10.17475/kastorman.329427.
ISNAD
Altuntaş, Ertuğrul - Karaoğul, Eyyüp - Alma, Mehmet Hakkı. “Effects of Fire Retardants on the Fire, Thermal and Mechanical Properties of Wood Plastic Composites Using Recycled Fibers”. Kastamonu University Journal of Forestry Faculty 17/2 (01 Eylül 2017): 334-342. https://doi.org/10.17475/kastorman.329427.
JAMA
1.Altuntaş E, Karaoğul E, Alma MH. Effects of Fire Retardants on the Fire, Thermal and Mechanical Properties of Wood Plastic Composites Using Recycled Fibers. Kastamonu University Journal of Forestry Faculty. 2017;17:334–342.
MLA
Altuntaş, Ertuğrul, vd. “Effects of Fire Retardants on the Fire, Thermal and Mechanical Properties of Wood Plastic Composites Using Recycled Fibers”. Kastamonu University Journal of Forestry Faculty, c. 17, sy 2, Eylül 2017, ss. 334-42, doi:10.17475/kastorman.329427.
Vancouver
1.Ertuğrul Altuntaş, Eyyüp Karaoğul, Mehmet Hakkı Alma. Effects of Fire Retardants on the Fire, Thermal and Mechanical Properties of Wood Plastic Composites Using Recycled Fibers. Kastamonu University Journal of Forestry Faculty. 01 Eylül 2017;17(2):334-42. doi:10.17475/kastorman.329427