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Surface roughness of thin wood veneers sliced from laminated green wood lumber

机译:从层压绿色原木板材切成的薄木贴面的表面粗糙度

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Freshly-felled Chinese fir (Cunninghamia lanceolate), Masson Pine (Pinus massoniana) and Camphor Tree (Cinnamomum camphora) logs were reconstituted to form laminated lumber with moisture content above fiber saturation point by slicing, finger-jointing, gluing, and cold-pressing processes. The laminated lumber was then sliced into wood veneers, which were air-dried to about 15% moisture content. The surface roughness of the veneer was tested in comparison with two commercial engineered wood veneers using a stylus tracing method. The influence of the wood surface roughness was relatively small for the wood species chosen due to their similar densities. All roughness parameter values were consistently larger along the transverse direction compared with these along longitudinal direction. The values of surface roughness at the finger-joint region were higher than these that at the non-finger-joint region along both longitudinal direction and transverse direction. The two engineered wood veneers had surface roughness values noticeably smaller in the longitudinal direction, but their values in transverse direction were comparable and even larger compared with these of the prepared wood veneers including both non-finger-joint and finger-joint regions. Overall, the process of laminating finger-jointed green wood planks and subsequently slicing can be used to yield acceptable wood veneers with sufficient surface quality.
机译:通过切片,指接,粘合和冷压,将新鲜砍伐的杉木(杉木杉木,马尾松(Pinus massoniana)和樟树(Cinnamomum camphora))原木重构为水分含量高于纤维饱和点的层压木材。流程。然后将层压木材切成木单板,将其风干至约15%的水分含量。与两个商业化的工程木饰面相比,使用手写笔描迹法测试了饰面的表面粗糙度。木材表面粗糙度的影响相对较小,因为它们的密度相似。与沿纵向方向的粗糙度参数值相比,沿横向方向的所有粗糙度参数值始终较大。沿着纵向和横向,在手指接合区域处的表面粗糙度的值均高于在非手指接合区域处的表面粗糙度的值。与包括非指关节和指关节区域的制备的木单板相比,两个工程木单板的纵向表面粗糙度值在纵向上明显较小,但在横向方向上的值可比甚至更大。总的来说,层压指接的绿色木板并随后切片的过程可用于生产具有足够表面质量的可接受的木质贴面。

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