[1]Wu Q, Millota M R. Effect of creep and mechanosorptive effect on stress development during drying[J]. Drying Technology, 1994, 12(8): 2057-2085. [2]Chen G, Keey R B, Walker C F.The drying stress and check development on hightemperature kiln seasoning of sapwood Pinus radiata boards: Ⅰ[J]. Holz als Rohund Workstoff, 1997, 55: 59-64. [3]Chen G, Keey R B, Walker C F. The drying stress and check development on hightemperature kiln seasoning of sapwood Pinus radiata boards: Ⅱ[J]. Holz als Rohund Workstoff, 1997, 55: 169-173. [4]Chen G, Keey R B, Walker C F. Stress relief for sapwood Pinus radiata boards by cooling and steamconditioning processes[J]. Holz als Rohund Workstoff, 1997, 55: 351-360. [5]Pang S. Modeling of stress development during drying and relief during steaming in Pinus radiata lumber[J]. Drying Technology, 2000, 18 (8): 1677-1696. [6]Pang S. Modeling of stress and deformation of radiata pine lumber during drying[R]. 7th International IUFRO Wood Drying Conference. Japan: Tsukuba, 2001. [7]Akerfelds I, Verdins G. Stresses and deformation in pine (Pinus sylvesris) sawn timber during the initial phase of drying[R]. 8th International IUFRO Wood Drying Conference. Rumania: Brasov, 2003. [8]Kang W, Park ByungDae, Chung W Y, et al. Analytical modeling of rheological postbuckling behavior of woodbased composite panels under cyclic hygroloading[J]. Wood and Fiber Science, 2003, 35(3): 409-420. [9]Keey R B, Langrish T A G, Walder J C F. KilnDrying of Lumber[M]. New York, Verlag, Berlin, Heidelberg: Springer, 2000. [10]Stamm A J, Nelson R M. Comparison between measured and theoretical drying diffusion coefficients for southern pine[J]. For Prod J, 1961, 11: 536-543. [11]Leicester R H A. Lateral deflections of timber beamcolumns during drying[J]. Wood Science & Technology, 1971, 5: 221-231. [12]涂登云.马尾松板材干燥应力模型及应变连续测量的研究[D]. 南京:南京林业大学,2005. |