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Transversal compression and strain behaviour of mature wood strands pressed at high temperatures and pressures

机译:在高温和高压下压制的成熟木条的横向压缩和应变行为

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摘要

The properties of a wood strand in a strandboard are dependent on the conditions surrounding it and these, in turn, change throughout the hot pressing cycle and are therefore dependent on the location of the strand within the mattress. The behaviour of a mattress and its subsequent behaviour as a final product is an average of the strands that make up the product. Models to predict the distribution of strands in a mattress and its compression behaviour have been developed. What is needed is a methodto observe the Theological behaviour of individual strands during the compression phase of hot pressing cycle in order to improve understanding of the hot pressing stage. Such a method is presented in this paper. Results for strain incurred by strands, 0-9 mm thick, subjected to a constant stress of 5 MPa at 12% moisture content and temperatures of 180, 150 and 105°C, to mimic mattress surface, intermediate and core layers respectively, showed the inclination of wet low density (300-340 kg m~(-3)) radial strands (i.e. compressed in the radial direction) pressed above 105°C towards the formation of an M shaped density profile, while high density (460-500 kg m~(-3)) strands tended to promote a flat density profile. Despite the density profile for strands compressed in the same direction not forming the expected density profile, average strains incurred by low density radial and high density tangential strands (i.e. compressed in the tangential direction) pressed at simulated mattress surface, intermediate and core layer conditions produced the expected M shaped density profile, This work demonstrated the possibility for the development of a mattress consolidation model which combines deformation of a mattress and strands during hot pressing.
机译:刨花板中木绞线的性能取决于其周围的条件,而这些条件又会在整个热压过程中发生变化,因此取决于刨花板在床垫中的位置。床垫的行为及其随后作为最终产品的行为是构成产品的股线的平均值。已经开发了预测线束在床垫中的分布及其压缩行为的模型。需要一种在热压循环的压缩阶段期间观察各个股的流变行为的方法,以增进对热压阶段的理解。本文介绍了这种方法。由0-9毫米厚的绞线所产生的应变结果分别在12%的水分含量和180、150和105°C的温度下承受5 MPa的恒定应力,分别模拟了床垫表面,中间层和核心层。湿低密度(300-340 kg m〜(-3))径向股线(即沿径向压缩)的倾斜度在105°C以上压向M形密度分布,而高密度(460-500 kg m〜(-3))股倾向于促进平坦的密度分布。尽管沿相同方向压缩的股线的密度分布未形成预期的密度分布,但在模拟床垫表面,中间层和芯层条件下,低密度径向和高密度切向股线(即沿切向压缩)产生的平均应变预期的M形密度分布图。这项工作证明了开发床垫固结模型的可能性,该模型将热压过程中床垫和股线的变形结合在一起。

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