首页> 外文期刊>Australian Forestry >Variation in bending strength properties in stem and branch woods as influenced by density and moisture levels in Entandrophragma cylindricum
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Variation in bending strength properties in stem and branch woods as influenced by density and moisture levels in Entandrophragma cylindricum

机译:密度和水分含量对En木和枝木抗弯强度特性的影响

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Branchwood is being exploited as a supplement to stemwood in wood products manufacturing, and the wood's bending strength properties are vital for structural and non-structural applications. Non-destructive methods are being adopted in determining wood properties, and wood density and moisture content are two variables that could be useful. This study assessed the influence of density and moisture content (MC) on the Modulus of Elasticity (MOE) and Modulus of Rupture (MOR) of branch and stem woods of Entandrophragma cylindricum (sapele) tested at two moisture levels (10 +/- 4% MC and 17 +/- 3% MC). Density was determined in accordance with ISO 3131. To determine bending strength properties, BS 373 was followed, using an INSTRON TCM Machine with a crosshead speed of 6.6mm per minute. Results indicated that branchwood has higher density than its stemwood counterparts. MOE and MOR of both wood types were significantly higher at 10 +/- 4% MC than their counterparts at 17 +/- 3% MC. Differences in MOE and MOR between the wood types were not significant, although the branchwood had 87% and 93% respectively of the MOE and MOR of stemwood. From the two-way ANOVA, MC had a significant effect (P0.05) but wood type and the interactions of wood type and MC did not have a significant effect on MOE and MOR of stem and branch woods. The predictive powers of MC and density as a combined predictor for estimating bending strength properties were higher for branchwood than stemwood. Although density of E. cylindricum branchwood was significantly higher than its stemwood counterpart that did not translate into significant differences between MOE and MOR of branchwood and stemwood.
机译:在木材产品制造中,分支木材被用作木料的补充,木材的弯曲强度特性对于结构和非结构应用至关重要。在确定木材特性时采用了非破坏性方法,木材密度和含水量是两个可能有用的变量。这项研究评估了密度和水分含量(MC)对在两种水分含量(10 +/- 4)下测试的圆柏(沙比利)枝和茎木的弹性模量(MOE)和断裂模量(MOR)的影响。 %MC和17 +/- 3%MC)。密度是根据ISO 3131确定的。为确定弯曲强度特性,使用INSTRON TCM机器以6.6mm /分钟的十字头速度遵循BS 373。结果表明,分支木材的密度高于其茎木的密度。两种木材的MOE和MOR在MC分别为10 +/- 4%和MC在17 +/- 3%时均显着更高。尽管支木分别占茎木的MOE和MOR的87%和93%,但两种类型的木料的MOE和MOR差异不显着。从双向方差分析来看,MC对茎木和分枝木的MOE和MOR没有显着影响(P <0.05),但木材类型以及木材与MC的相互作用没有显着影响。 MC和密度作为估计弯曲强度特性的组合预测因子的预测能力比分支木材高。尽管E. cylindricum分支木材的密度显着高于其相应的茎木,但并未转化为分支木材和茎木的MOE和MOR之间的显着差异。

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