Influence of Heat Treatment on Chemical and Mechanical Properties of Toona ciliata M. Roem. Wood

V. Sharma, Rajneesh Kumar, B. Dutt, Varun Attri
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Abstract

Thermal modification or heat treatment was performed on the samples of Toonaciliataat various temperatures (80°C, 120°C, 160°C, 200°C) and durations (2h, 4h, and 6h) which revealed that chemical and mechanical properties of the wood improved at particular temperature with certain time duration. These results suggest that thermal treatment considerably improves wood properties like dimensional stability and durability. Vacuumoven was used to assess the process of thermal modification and different procedures were used to study the chemicaland mechanical properties of Toona wood. In chemical properties the maximum value of holocellulose content (71.73%) and lignin content (27.52%), were observed at 200°C. While, the minimum value of holocellulose content (61.29%) and lignin content (24.42%), were found to be at 200°C and at control, respectively. In mechanical properties the maximum value of tensile strength (0.072), bending strength 0.022), compression parallel to the grain (0.052) and compression perpendicular (0.039) to the grain was observed at 120°C. Whereas, the minimum tensile strength (0.039), bending strength (0.008), compression parallel (0,041) the grain and perpendicular (0.027) to the grain was found at 200°C.All the chemical and mechanical properties of Toona wood improved after heat treatment at particular temperature and duration.
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热处理对香椿化学力学性能的影响。木
在不同温度(80°C, 120°C, 160°C, 200°C)和时间(2h, 4h和6h)下对桐木样品进行热改性或热处理,结果表明,在特定温度下,在一定时间内,木材的化学和机械性能得到改善。这些结果表明,热处理大大提高了木材的性能,如尺寸稳定性和耐久性。采用真空实验对香椿木的热改性工艺进行了评价,并采用不同的工艺对香椿木的化学性能和力学性能进行了研究。在化学性质方面,在200℃时,纤维素含量达到最大值(71.73%),木质素含量达到最大值(27.52%)。而在200℃和常温下,总纤维素含量最低(61.29%),木质素含量最低(24.42%)。力学性能方面,在120℃时,抗拉强度(0.072)、抗折强度(0.022)、平行于晶粒的抗压强度(0.052)和垂直于晶粒的抗压强度(0.039)均达到最大值。而在200°C时,最小抗拉强度(0.039)、抗折强度(0.008)、平行于晶粒的抗压强度(0.041)和垂直于晶粒的抗压强度(0.027)均达到最小。香椿木经过特定温度和时间的热处理后,其化学和机械性能得到改善。
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