张俊, 杜官本, 雷洪, 王洪艳. 空气介质阻挡放电等离子体对云南松单板表面的处理工艺[J]. 西南林业大学学报, 2012, 32(3): 88-91. DOI: 10.3969/j.issn.2095-1914.2012.03.019
引用本文: 张俊, 杜官本, 雷洪, 王洪艳. 空气介质阻挡放电等离子体对云南松单板表面的处理工艺[J]. 西南林业大学学报, 2012, 32(3): 88-91. DOI: 10.3969/j.issn.2095-1914.2012.03.019
ZHANG Jun, DU Guanben, LEI Hong, WANG Hongyan. Treatment Technology for Veneer Surface of Pinus yunnanensis by Air Dielectric Barrier Discharge Plasma[J]. Journal of Southwest Forestry University, 2012, 32(3): 88-91. DOI: 10.3969/j.issn.2095-1914.2012.03.019
Citation: ZHANG Jun, DU Guanben, LEI Hong, WANG Hongyan. Treatment Technology for Veneer Surface of Pinus yunnanensis by Air Dielectric Barrier Discharge Plasma[J]. Journal of Southwest Forestry University, 2012, 32(3): 88-91. DOI: 10.3969/j.issn.2095-1914.2012.03.019

空气介质阻挡放电等离子体对云南松单板表面的处理工艺

Treatment Technology for Veneer Surface of Pinus yunnanensis by Air Dielectric Barrier Discharge Plasma

  • 摘要: 采用空气介质阻挡放电等离子体处理云南松单板表面,对处理后的单板进行胶合性能及表面性能分析,探讨放电等离子体处理单板表面的最佳工艺。结果表明:在1000~4000W范围,随处理功率的增加,单板的胶合强度增大,水接触角减小,表面能增大;在处理功率5000W时,各指标变化趋势相反。当处理次数为1~7次时,随处理次数的增加,单板的胶合强度增大,水接触角减小,表面能增大;在处理9、11次时,各指标变化趋势相反。当放电等离子体处理功率为4000W,处理次数为7次时,木材表面改性效果最佳,其胶合强度、水接触角及表面能分别为21MPa、43°、567 MJ/m2。

     

    Abstract: The best technology for Pinus yunnanensis veneer surface treatment with air dielectric barrier discharge plasma (DBDP)was studied by analyzing the gluing property and surface performance of the veneer after the treatment. The results showed that with the increase of processing power, the bonding strength of the veneer increased, the water contact angle reduced and the surface energy increased within the 1000-4000W power range. Whereas the change tendency of each index became reverse when the treatment power reached 5000W. Within 1-7 times of treatment, when the treatment times increased, the bonding strength of veneer increased, but the water contact angle reduced and the surface energy increased. When the processing times were between 9-11, each index changed reversely. When the power was 4000W, and the veneer was treated for 7 times, the surface modification effect was the best, whose bonding strength, surface water contact angle and surface energy was individually 21 MPa, 43°and 567 MJ/m2.

     

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