Effect of Different Wood Flake & Chip Species On The Characteristic Features of Cement-Bonded Particle Boards
Yıl 2018,
Cilt:6 Sayı:3 (2018) (Özel Sayı: UMAS 2017), 686 - 695, 10.04.2018
Lütfullah Gündüz
,
Şevket onur Kalkan
,
A. münir İsker
Sibel Hacıoğlu
Özge Altınyollar
Öz
Bu çalışmada farklı
ağaç türleri ile üretilen çimento bağlayıcılı yonga levhaların teknik
özellikleri sunulmaktadır. Çimento bağlayıcılı yonga levhalar (CBPB), bağlayıcı
ajan ve ahşap parçacıklarının karışımı ile preslenerek üretilen kompozit bir
üründür. Bu bağlamda, farklı ağaç türlerinden elde edilen yonga bileşenleri ile
üretilen çimento bağlayıcılı yonga levhaların teknik özelliklerini analiz etmek
için kapsamlı bir deneysel araştırma çalışması yürütülmüştür. Bu araştırmada,
fiziksel boyutlar, malzemelerde çimeto matris yapıları, yonga çimento
uyumluluğu, mekanik dayanım ve stabilite özellikleri gibi bazı teknik
parametreler incelenmiştir. Bazı araştırma bulguları burada sunulmuştur ve bu
parametrelerin ürünün kullanımı üzerindeki etkileri de tartışılmıştır.
Kaynakça
-
[1] A.A. Moslemi, “Emerging technologies in mineral-bonded wood and fiber composites”, Adv. Perform. Mater. 1999, 6, 161-179.
-
[2] S. Iwakiri , Paineis de Maderia Reconstituida; FUPEF:Curitiba, 2005.
-
[3] A.O. Olurunnisola, “Effects of Husk Particle Size Clacium Chloride on Streght an Sorption Properties of Cocounut Husk – Cement Composites”, Ind. Crops. Prod. 2009, 29, 593-598, Available from http://dx.doi.org/10.1016/j.indcrop.2008.09.009.
-
[4] H.S. Tunior, J. Fiorelli and S.F.D.Santes, “Sustainable and Nonconventional Consruction Materials Using Imnorganic Bonded Fiber Composites”, WP Woodhead Publishing Series in Civil and Structural Engineering, 2017, 494 pp, Brazil.
-
[5] H. Kalaycıoğlu, H. Yel ve A.D. Çavdar, “Çimentolu Odun Yünü Kompozitleri ve Kullanım Alanları”, Kastamonu Üniversitesi Orman Fakültesi Dergisi, c. 12, s. 1, ss. 122-133, 2012.
-
[6] T.E. Mohamed, A.Y. Abdelgadir, M.M. Megahed and R. Nasser, “Effect of Mixing Three Lignocellulosic Materials with Different Cement Ratios on the Properties of Cement Bonded Particleboard”, Journal of Science and Technology, vol. 12, no. 3, 12, pp. 44-54, 2011.
-
[7] H. Kalaycıoğlu, “Sahil Çamı (Pinus pinaster) Odunlarının Yonga levha Üretiminde Kullanılması İmkanları”, Doktora Tezi, KTÜ FBE, Trabzon, Turkey, 1991.
-
[8] M.H. Simatubang, A. Geimer, L. Robert, “Inorganic Binder for Wood Composites: Feasibility and Limitation, Wood Adhesives”, Forest Product Societies, Madison, Wisconsin, pp. 167-176, 1990.
-
[9] M. Aro, “Wood Strand Cement Board”, 11th Int. Inorganic-Bonded Fiber Composites Conference (IIBCC2008), November 5-7, 2008, Madrid, Spain.
-
[10] A., Lee, Z. Hong, “Compressive Strenght of Cylindirical Samples as an Indicator of Wood-Cement Compatibility”, Forest Products J., vol. 36, no. 11, pp. 59-62, 1994.
-
[11] S.R. Karade, L.K. Aggarwal, “Cement-bonded lignocellulosic composites for building apications”, Metals Materials and Processes, vol. 117, no. 2, pp. 129-140, 2005.
-
[12] B. Na, Z. Wang, H. Wang, X. Lu, “Wood -cement compatibility review”, Wood Research, vol. 59, no. 5, pp. 813-826, 2014.
-
[13] R.C. Weatherwax, H. Tarkow, H., “Effect of wood on the setting of Portland cement”, Forest Products Journal , vol. 14, no. 12, pp. 567-570, 1964.
Effect Of Different Wood Flake & Chip Species On The Characteristic Features Of Cement-Bonded Particle Boards
Yıl 2018,
Cilt:6 Sayı:3 (2018) (Özel Sayı: UMAS 2017), 686 - 695, 10.04.2018
Lütfullah Gündüz
,
Şevket onur Kalkan
,
A. münir İsker
Sibel Hacıoğlu
Özge Altınyollar
Öz
This
paper presents technical properties of the cement-bonded particle boards
produced with different types of woods. Cement-bonded particle board (CBPB) is
a composite product that is produced by pressing a mixture of wooden particles (chips/flakes)
and Portland cement as the binding agent and hydration additives. A
comprehensive experimental research work was carried out to analyse the
technical properties of the cement-bonded particle boards produced with the
chip and flake components obtained from different types of woods. In this
research, some technical parameters such as physical sizes, material matrix
structures, wood-cement compatibility, mechanical strength and stability
properties were examined. Some research findings are presented here and the
effects of these parameters on the use of the product were also discussed.
Kaynakça
-
[1] A.A. Moslemi, “Emerging technologies in mineral-bonded wood and fiber composites”, Adv. Perform. Mater. 1999, 6, 161-179.
-
[2] S. Iwakiri , Paineis de Maderia Reconstituida; FUPEF:Curitiba, 2005.
-
[3] A.O. Olurunnisola, “Effects of Husk Particle Size Clacium Chloride on Streght an Sorption Properties of Cocounut Husk – Cement Composites”, Ind. Crops. Prod. 2009, 29, 593-598, Available from http://dx.doi.org/10.1016/j.indcrop.2008.09.009.
-
[4] H.S. Tunior, J. Fiorelli and S.F.D.Santes, “Sustainable and Nonconventional Consruction Materials Using Imnorganic Bonded Fiber Composites”, WP Woodhead Publishing Series in Civil and Structural Engineering, 2017, 494 pp, Brazil.
-
[5] H. Kalaycıoğlu, H. Yel ve A.D. Çavdar, “Çimentolu Odun Yünü Kompozitleri ve Kullanım Alanları”, Kastamonu Üniversitesi Orman Fakültesi Dergisi, c. 12, s. 1, ss. 122-133, 2012.
-
[6] T.E. Mohamed, A.Y. Abdelgadir, M.M. Megahed and R. Nasser, “Effect of Mixing Three Lignocellulosic Materials with Different Cement Ratios on the Properties of Cement Bonded Particleboard”, Journal of Science and Technology, vol. 12, no. 3, 12, pp. 44-54, 2011.
-
[7] H. Kalaycıoğlu, “Sahil Çamı (Pinus pinaster) Odunlarının Yonga levha Üretiminde Kullanılması İmkanları”, Doktora Tezi, KTÜ FBE, Trabzon, Turkey, 1991.
-
[8] M.H. Simatubang, A. Geimer, L. Robert, “Inorganic Binder for Wood Composites: Feasibility and Limitation, Wood Adhesives”, Forest Product Societies, Madison, Wisconsin, pp. 167-176, 1990.
-
[9] M. Aro, “Wood Strand Cement Board”, 11th Int. Inorganic-Bonded Fiber Composites Conference (IIBCC2008), November 5-7, 2008, Madrid, Spain.
-
[10] A., Lee, Z. Hong, “Compressive Strenght of Cylindirical Samples as an Indicator of Wood-Cement Compatibility”, Forest Products J., vol. 36, no. 11, pp. 59-62, 1994.
-
[11] S.R. Karade, L.K. Aggarwal, “Cement-bonded lignocellulosic composites for building apications”, Metals Materials and Processes, vol. 117, no. 2, pp. 129-140, 2005.
-
[12] B. Na, Z. Wang, H. Wang, X. Lu, “Wood -cement compatibility review”, Wood Research, vol. 59, no. 5, pp. 813-826, 2014.
-
[13] R.C. Weatherwax, H. Tarkow, H., “Effect of wood on the setting of Portland cement”, Forest Products Journal , vol. 14, no. 12, pp. 567-570, 1964.