Effect of High Energy Density Microwave Pretreatment on Bendability of Radiata Pine(Pinus radiata) Wood
- Vol. 34, Issue 5, Pages: 1-6(2020)
DOI: 10.19455/j.mcgy.20200501
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1. Research Institute of Forestry New Technology,Chinese Academy of Forestry
2. Research Institute of Wood Industry
3. College of Materials and Engineering,Nanjing Forestry University
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[1]李善明,邢雪峰,林兰英,周永东,傅峰.高能微波预处理辐射松木材的弯曲性能研究[J].木材工业,2020,34(05):1-6.
LI Shan-ming, XING Xue-feng, LIN Lan-ying, et al. Effect of High Energy Density Microwave Pretreatment on Bendability of Radiata Pine(Pinus radiata) Wood. [J]. China Wood Industry 34(5):1-6(2020)
利用高能微波对辐射松木材进行预处理,分析其对木材弯曲性能的影响。随着微波能量密度增大,辐射松木材的弯曲系数呈先增加后减小的趋势,表明通过适当的高能微波预处理工艺,可改善辐射松木材的弯曲性能,但微波能量密度增加到一定值则木材结构被破坏,导致弯曲性能下降。辐射松木材弯曲性能最优预处理工艺为:微波功率100 kW、处理速度1.0 m/min,修正微波能量密度为31.56 kW·h/m3,该条件处理辐射松木材的弯曲系数(Kbend)最大值为0.032(弯曲系数变化率1/Kbend值为31.25),高于白蜡木和榆木等弯曲性能优良的木材。
Radiata pine(Pinus radiata) wood was treated under high energy density microwave conditions to improve its bending property. The results showed that the coefficient of Pinus radiata wood bendability increased at the beginning of the process, then decreased with the increasing of microwave energy density. Through a proper pretreating process, the excellent bending property of Pinus radiata wood could be obtained. When the microwave energy density increased to a certain value, microscopical cracks appeared in wood, and the bending properties decreased. The optimal microwave pretreatment process was 100 kW(microwave power), 1.0 m/min(processing speed); the corresponding energy density of microwave treatment was 31.56 kW·h/m3. For Pinus radiata wood treated under the optimal condition, the maximum coefficient of bendability Kbend was 0.032(corresponding to the coefficient derivative of bendability 1/Kbend value of 31.25), which was higher than that of the untreated beech, ash wood and elm wood.
辐射松微波预处理能量密度最小弯曲半径弯曲系数
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