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Effect of heat treatments on various important physical and mechanical properties such as weight loss, density, flexural strength (modulus of rupture-MOR), stiffness (modulus of elasticity-MOE), compressive strengths and surface hardness as well as decay resistance were evaluated and compared with untreated wood. The weight loss due to heat treatments was found to be in the range of 1.0-14.6%. Density and flexural MOR were found to decrease with increasing temperature (up to 210 degrees C), while flexural MOE, compressive strengths and hardness were not much affected. Higher treatment temperatures (210-240 degrees C) were observed to have deleterious effect on the mechanical strength of wood. Heat treated rubberwood showed excellent durability against brown rot (Polyporus meliae) and white rot (Coriolus versicolor) fungi as evidenced by lower amount of weight loss of exposed samples. The decay resistance was found to increase with severity of treatments. Based on improved durability and moderate variations in mechanical properties due to relatively mild heat treatments (180-210 degrees C), thermally modified rubberwood is found to be suitable for certain nonstructural applications. 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