南京林业大学学报(自然科学版) ›› 1983, Vol. 7 ›› Issue (01): 81-98.doi: 10.3969/j.jssn.1000-2006.1983.01.009

• 研究论文 • 上一篇    下一篇

定向刨花板物理力学性能的研究

周定国   

  1. 南京林产工业学院林工系;79级研究生
  • 出版日期:1983-03-18 发布日期:1983-02-18

A STUDY OF THE PHYSICAL AND MECHANICAL PROPERTIES OF ORIENTED STRANDBOARD

Zhou Dingguo   

  1. Department of Wood Science and Technology
  • Online:1983-03-18 Published:1983-02-18

摘要: <正>本文主要研究定向刨花板的物理力学性能,并且探讨施胶量和容积重与这些性能的关系。 性能测试包括九项指标:容积重,含水率,静曲强度,弹性模量,平面抗拉强度,握钉力,厚度膨胀率,热物理性能和吸声系数。文中把相同工艺条件下定向与非定向两种刨花板的物理力学性能进行对比,总结了定向刨花板在静曲强度和弹性模量方面的一些规律,譬如:改变三层定向板表芯层刨花重量的配比,可以人为调节板子平行和垂直两个方向静曲强度或弹性模量的比率,其数学模型为抛物线[(Y-K)~2=2aX];定向刨花板平行和垂直两个方向静曲强度或弹性模量的平均值与相同条件下非定向板的静曲强度或弹性模量近似相等。本文还讨论了如何评价刨花定向系数的问题,设想了一种用静曲强度增量表示定向系数的计算公式。

Abstract: In this paper, some physical and mechanical properties of oriented strandboard, the relationship between the resin content, the specific gravity, and the physical and mechanical properties are investigated.All experiments were made at a laboratory scale. Species of I-72 (Populus × euramericana cv. san Martino), a hybrid poplar, was used as the raw material. Strands were oriented through an experimental otienter which had been designed by the author. Nine basic pioperties of oriented strandboard were tested: specific gravity, moisture content, MOR, MOE, IB, nail and screw holding power, thickness swell, thermal physical properties and sound absorption. In this paper, physical and mechanical properties of oriented and random strandboard are compared. Some laws of MOR and MOE of oriented strandboard are also discussed. For example, the ratio between the MOR or MOE in the parallel and in the perpendicular direction of oriented strand-board can be adjusted by changing the weight ratio between the strands in the surface and in the core layer, the mathematical model being (Y-K)2 = 2ax, where their curves are parabolic; the average values of MOR or MOE of oriented starndboard in both parallel and perpendicular directions are about equal to that of random stiandboardetc.The question of how to evaluate the orientation efficien-cy of strands is also discussed and a formula expressing the orientation efficiency inthe increase of MOR is put forward, i. e.,