Sifat Fisika dan Mekanika Kayu Acacia aulacocarpa dari KHDTK Wanagama

Nur Indah Lumban Gaol, Fanny Hidayati, Widyanto Dwi Nugroho, Harry Praptoyo, Oka Karyanto, Sri Nugroho Marsoem
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Abstract

This study aims to determinethe physical properties and mechanical properties at axial (base, middle, and top) and radial (near the pith, middle, and near the bark) positions, as well as the relationship between the specific gravity and mechanical properties of Acacia aulacocarpa wood. Three 27-year-old trees planted at KHDTK Wanagama wereused. Wood physical and mechanical propertieswere tested per British Standard 373:1957. The statistical analysis used was a two-way ANOVA and a follow-up test of Tukey HSD. The results showed that the average moisture content was 98.95%; the green and air-dry sepesific gravity were 0.58 and 0.61. Radial, tangential, and longitudinal shrinkage from green to oven-dry conditions (total shrinkage) were 2.02%, 5.09%, and 0.33%. The tangential/radial (T/R) ratio was 2.80%. The static bending strength of stress at proportion limit, MoE, and MoR were 498.13 kg/cm2, 116.16x1000 kg/cm2, and 1043.68 kg/cm2, respectively. The compressive strength parallel to the grain and perpendicular to the grain were 596.05 kg/cm2 and 227.25 kg/cm2, respectively. The results of the variance analysis showed that the radial position factor has a significant effect on green moisture content, green and air-dry specificgravity, total radial shrinkage, T/R ratio, static bending strength at stress of proportion limit, MoE, MoR, compressive strength parallel to the grain, and compressive strength perpendicular to the grain. However, the axial position factor did not show any significant differences in the physical and mechanical properties of the wood. Furthermore, air-dry specific gravity has a significant moderate to high positive correlation with all mechanical properties. Keywords: Acacia aulacocarpa, physical properties, mechanical properties, axial position, radial position
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KHDTK Wanagama的Acacia aulacocarpa的物理和力学性质
本研究旨在确定金合欢木材在轴向(基部、中部和顶部)和径向(近髓、中部和近树皮)位置的物理性能和力学性能,以及其比重与力学性能的关系。在Wanagama KHDTK种植的三棵27岁的树被使用。木材的物理和机械性能按照英国标准373:1957进行了测试。统计分析采用双因素方差分析和Tukey HSD的随访检验。结果表明:平均含水率为98.95%;绿沉率为0.58,干沉率为0.61。径向、切向和纵向收缩率(总收缩率)分别为2.02%、5.09%和0.33%。切向/径向(T/R)比值为2.80%。比例极限应力静态抗弯强度、MoE和MoR分别为498.13 kg/cm2、116.16x1000 kg/cm2和1043.68 kg/cm2。平行于晶粒和垂直于晶粒的抗压强度分别为596.05 kg/cm2和227.25 kg/cm2。方差分析结果表明,径向位置因子对生坯含水率、生坯和风干比重、总径向收缩率、T/R比、比例极限应力下静态抗弯强度、MoE、MoR、平行于粒的抗压强度、垂直于粒的抗压强度均有显著影响。然而,轴向位置因子在木材的物理和机械性能方面没有表现出任何显着差异。此外,风干比重与各力学性能呈显著的中至高度正相关。 关键词:金合欢,物理性能,力学性能,轴向位置,径向位置
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77
审稿时长
20 weeks
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