1.Ayrilmis, N., Buyuksari, U., and Avci, E. 2009. Utilization of waste tire rubber in the
manufacturing of particleboard. Materials and Manufacturing Processes, 24: 688–692.
2.Doosthoseini, K. 2001. Wood composite materials manufacturing, applications. Tehran
University Press, 648p. (In Persian)
3.Febriano, F., and Yoshioka, M. 1999. Composites of wood and trans-1,4-isoperene rubber:
mechanical, physical and flow behavior. Journal of Wood Science, 45(1): 38-45.
4.Ghofrani, M., and Rabiei, A. 2008. Study of the physical and mechanical properties of
composites boards made of a mixture of poplar chips and recycled tires. Journal of
Environmental Sciences, 6(1): 123-129. (In Persian)
5.Kokabi, M. 2015. Plastic engineering. Tarbiat Modares University, 695p. (In Persian)
6.Sadre Momtazi, A., and Zarshin, R. 2011. Use of waste tire rubber particles and ash of rice
straw in cement composites. 5th National Congress on Waste Management, 8p. (In Persian)
7.Sharma, V., and Sharon, A. 1993. Optimal oriented of flakes in oriented strand board. Journal
of Experimental Mechanics, 33(2): 91-98.
8.Song, X.M. 1995. Wood fiber and recycled tire rubber hybrid composites. Ph.D. Thesis,
Michigan Technological University, USA, 120p.
9.Xu, M., and Li, J. 2012. Effect of adding rubber powder to poplar particles on composite
properties. Bioresource Technology, 118: 56-60.
10.Yang, H.S., Kim, D.J., Lee, Y.K., Kim, H.J., Jeon, J.Y., and Kang, C.W. 2004. Possibility of
using waste tire composites reinforced with rice straw as construction materials. Bioresource
Technology, 95: 61–65.
11.Zhao, J., Wang, X., Cheng, J., and Zheng, K. 2008. Optimization of processing variables in
wood-rubber composite board manufacturing technology. Bioresource Technology, 99(5):
2384-2391.