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Characterisation of Physical and Mechanical Properties of Unthinned and Unpruned Plantation-Grown Eucalyptus nitens H.Deane Maiden Lumber

机译:非特征和未润肺种植桉树抗桉树的物理和力学性质的特征,Nitene H.deane&Maiden Lumber

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摘要

The use of fast-growing plantation eucalypt (i.e., pulpwood eucalypt) in the construction of high-value structural products has received special attention from the timber industry in Australia and worldwide. There is still, however, a significant lack of knowledge regarding the physical and mechanical properties of the lumber from such plantation resources as they are mainly being managed to produce woodchips. In this study, the physical and mechanical properties of lumber from a 16-year-old pulpwood Eucalyptus nitens H.Deane & Maiden resource from the northeast of Tasmania, Australia was evaluated. The tests were conducted on 318 small wood samples obtained from different logs harvested from the study site. The tested mechanical properties included bending modulus of elasticity (10,377.7 MPa) and modulus of rupture (53 MPa), shear strength parallel (5.5 MPa) and perpendicular to the grain (8.5 MPa), compressive strength parallel (42.8 MPa) and perpendicular to the grain (4.1 MPa), tensile strength perpendicular to the grain (3.4 MPa), impact bending (23.6 J/cm2), cleavage (1.6 kN) and Janka hardness (23.2 MPa). Simple linear regression models were developed using density and moisture content to predict the mechanical properties. The variations in the moisture content after conventional kiln drying within randomly selected samples in each test treatment were not high enough to significantly influence the mechanical properties. A relatively high variation in the density values was observed that showed significant correlations with the changes in the mechanical properties. The presence of knots increased the shear strength both parallel and perpendicular to the grain and significantly decreased the tensile strength of the lumber. The results of this study created a profile of material properties for the pulpwood E. nitens lumber that can be used for numerical modelling of any potential structural product from such a plantation resource.
机译:在高价值结构产品的建设中使用快速生长的种植园桉树(即Pulpwood桉树)已经在澳大利亚和全球的木材行业受到特别关注。然而,仍然存在关于来自这种种植园资源的木材物理和力学性质的显着缺乏了解,因为它们主要被设法生​​产木质芯片。在这项研究中,评估了来自澳大利亚东北部的16岁的Pulpwood Eucalyptus Nitens H.deane&Maiden资源的木材的物理和力学性质。在从研究部位收获的不同日志获得的318个小木样品上进行了测试。测试的机械性能包括弯曲弹性模量(10,377.7MPa)和破裂模量(53MPa),平行剪切强度(5.5MPa),垂直于晶粒(8.5MPa),抗压强度平行(42.8MPa)和垂直于谷物(4.1MPa),垂直于晶粒(3.4MPa)的拉伸强度,冲击弯曲(23.6J / cm2),切割(1.6 kN)和喇嘛硬度(23.2MPa)。使用密度和水分含量开发简单的线性回归模型以预测机械性能。在每个测试处理中随机选择的样品中常规窑干燥后的常规窑干燥的变化不足以显着影响机械性能。观察到密度值的相对高的变化,其显示出与机械性能的变化显着相关。结的存在增加了平行和垂直于晶粒的剪切强度,并且显着降低了木材的拉伸强度。该研究的结果为纸浆E.的材料性能的剖面性,其用于从这种种植园资源的任何潜在结构产品的数值建模。

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