[1] Gfeller B, Zanetti M, Properzi M, et al. Wood bonding by vibrational welding [J].Journal of Adhesion Science and Technology, 2003,17(11): 1573-1589.
[2] Pizzi A, Leban J M, Kanazawa F, et al. Wood dowel bonding by high-speed rotation welding [J].Journal of Adhesion Science and Technology, 2004,18(11): 1263-1278.
[3] Tondi G, Andrews S, Pizzi A, et al. Comparative potential of alternative wood welding systems, ultrasonic and microfriction stir welding [J]. Journal of Adhesion Science and Technology,2007,21(16): 1633-1643.
[4] Leban J M, Pizzi A, Wieland S, et al. X-ray microdensitometry analysis of vibration-welded wood [J].Journal of Adhesion Science and Technology,2004,18(6): 673-685.
[5] Ganne-Chedeville C, Pizzi A, Thomas A, et al. Parameter interactions in two-block welding and the wood nail concept in wood dowel welding[J]. Journal of Adhesion Science and Technology, 2005,19(13-14): 1157-1174.
[6] Stamm B, Natterer J, Windeisen E, et al. Thermal behaviour of polysaccharides in wood during friction welding [J].European Journal of Wood and Wood Products, 2005,63(5): 388-389.
[7] Omrani P, Mansouri H R, Pizzi A, et al. Influence of grain direction and pre-heating on linear wood welding [J]. European Journal of Wood and Wood Products, 2010,68(1): 113-114.
[8] 张晓冬, 程秀才, 林龙生, 等. 化学处理对竹青, 竹黄胶合性能的影响[J]. 南京林业大学学报: 自然科学版, 2013, 37(4): 171-174.
Zhang X D, Cheng X C, Lin L S, et al. Effect of bonding performance of bamboo skin and bamboo pith through chemical processing [J].Journal of Nanjing Forestry University:Natural Sciences Edition, 2013, 37(4):171-174.
[9] 侯玲艳, 赵荣军, 任海青, 等. 不同竹龄毛竹材表面颜色, 润湿性及化学成分分析[J]. 南京林业大学学报: 自然科学版, 2012, 36(2): 159-162.
Hou L Y, Zhao R J, Ren H Q,et al. Analysis of surface color and wettability and chemical composition of different age phyllostachyspubescens[J].Journal of Nanjing Forestry University:Natural Sciences Edition, 2012, 36(2):159-162.
[10] Leban J M, Pizzi A, Properzi M, et al. Wood welding: A challenging alternative to conventional wood gluing[J]. Scandinavian Journal of Forest Research, 2005, 20:534-538.
[11] Liu J, Zhang H Y, Chrusciel L, et al. Study on a bamboo stressed flattening process [J]. European Journal of Wood and Wood Products, 2013,71(3):1-6.
[12] 于文吉,余养伦,江泽慧.竹材表面胶合性能[J]. 竹子研究汇刊,2006,25(1):30-36.
Yu W J, Yu Y L, Jiang Z H. Bonding properties of bamboo surfaces [J]. Journal of Bamboo Research, 2006, 25(1): 30-36.
[13] 黄河浪,卢晓宁,薛丽丹,等.用氧等离子体处理改善竹地板胶合性能[J]. 浙江林学院学报,2006,23(5):486-490.
Huang H L, Lu X N, Xue L D, et al. The improving of the bonding strength of bamboo floor by cold O2 plasma treatment [J]. Journal of Zhejiang Forestry College, 2006, 23(5):486-490.
[14] 黄河浪,薛丽丹,卢晓宁,等. 低温等离子体处理对竹材表面胶合性能的影响[J]. 南京林业大学学报:自然科学版, 2006, 30(6):23-26.
Huang H L, Xue L D, Lu X N, et al. Effects of low temperature plasma treating on bonding strength of bamboo strip surface[J]. Journal of Nanjing Forestry University:Natural Sciences Edition, 2006, 30(6):23-26.
[15] Xu G Q, Wang L H, Liu J L, et al. FTIR and XPS analysis of the changes in bamboo chemical structure decayed by white-rot and brown-rot fungi[J]. Applied Surface Science, 2013, 280(8):799-805. |