Impact of Aspen Log Storage with and without Protection on OSB PerformanceEinfluss der Lagerung von Aspenrundholz mit und ohne Schutzbehandlung auf die Eigenschaften von OSB

被引:0
作者
Xiang-Ming Wang
Hui Wan
Dian-Qing Yang
Jun Shen
机构
[1] Forintek Canada Corp.,College of Material Science and Engineering
[2] Northeast Forestry University,undefined
关键词
Internal Bond; Thickness Swell; Internal Bond Strength; Pile Setup; Gliocladium Roseum;
D O I
10.1007/s00107-006-0106-z
中图分类号
学科分类号
摘要
Outdoor log storage without protection can change the mechanical and chemical properties of wood due to infection by various fungi. To understand how outdoor log storage affects the wood and, subsequently, the strandboard quality, two piles of aspen logs were set up outside and stored for a period of four months (July to November). One of the piles was treated with a biological solution to prevent fungal growth. The other one was stored without treatment. Both piles contained non-debarked and partially debarked logs. Evaluation of sap stain development indicated that all logs had been colonized by staining fungi with average stain coverage of 9.37 to 57.18% and maximum stain penetration of 3.58 to 7.27 cm over the log cross section. The variation of fungal colonization depended on log treatment and bark condition. The most effective way to prevent stain growth was the combination of biological treatment and partial debarking. A series of strandboard was prepared from fresh and aged aspen logs. All boards made from stored logs were statistically comparable to or superior to the control boards made from fresh aspen logs. The boards made from treated/partially debarked and untreated/non-debarked logs were statistically comparable to each other except for wet MOR. In addition, these two board types were statistically stronger than other boards made from treated/non-debarked and untreated/partially debarked logs in terms of IB and water resistance. Some individual stained strands were observed on the finished board surface. Less staining was found in the boards prepared from biologically treated and partially debarked logs, compared with those made from other stored logs.
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页码:377 / 384
页数:7
相关论文
共 24 条
  • [1] Curling SF(2002)Relationships between mechanical properties, weight loss, and chemical composition of wood during incipient brown rot decay For Prod J 52 34-39
  • [2] Clausen CA(1995)How to achieve effective wet storage of pine logs ( For Prod J 45 36-42
  • [3] Winandy JE(2002)) with a minimum amount of water Holzforschung 56 225-228
  • [4] Elowsson T(1958)Weight loss and cell wall degradation in rubberwood caused by sapstain fungus For Prod J 8 308-314
  • [5] Liukko K(1987)Strength retention in wood decayed to small weight losses For Prod J 37 45-48
  • [6] Florence EJM(1992)Influence of air-seasoning on fungal colonization and strength properties of Douglas fir pole sections For Prod J 42 19-24
  • [7] Gnanaharan R(1995)Residual strength of Douglas fir sapwood and heartwood as affected by fungus colony size and number of colony forming units For Prod J 45 47-50
  • [8] Singh PA(1978)Effects of long-term storage of southern pine sawlogs under water sprinklers Wood Fiber Sci 9 252-257
  • [9] Sharma JK(2001)Review of literature on the effects of early stages of decay on wood strength For Prod J 51 73-76
  • [10] Kennedy RW(2001)Staining ability of various sap-staining fungi on jack pine short log sections Wood Fiber Sci 33 412-424