白螺旋藻木材选择力学性能的评价

Olayanu Clement Mobolaji, Segun M. Adeyemo, A. R. Majekobaje, Areo O. Olusola, A. O. Omole, A. T. Oyelere, Olanrewaju R. Alagbada, J. Oluborode
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Therefore, investigating the mechanical properties of the timber species for better acceptability in the timber market becomes necessary.\nThree standing trees of Blighia sapida were purposively felled in the University of Ibadan community, Ibadan, Nigeria. 500 mm billets were gotten from wood dics at the top, middle, and base of the tree and each partitioned into three, the outerrwood, middlewood and the innerwood, in line with specified standard for each selected mechanical property test (Modulus of Elasticity, Modulus of Rupture, Impact bending strength, and Compressive strength parallel to grain) were all evaluated.\nModulus of rupture with mean value 118.47 ± 1.96 N/mm2, ranged from 103.67 ± 3.42 to 144.26 ± 3.68 N/mm2. Modulus of Elasticity with mean value 10649.99 ± 167.51 N/mm2, ranged from 9237.14 ± 399.22 to 12877.35 ± 284.61 N/mm2. Compressive strength parallel to grain with the average value 52.86 ± 0.81 N/mm2, ranged from 42.88 ± 1.32 to 62.62 ± 1.65 N/mm2. 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引用次数: 2

摘要

由于对经济树种的高需求,森林中的过度开发使得伐木工人将注意力转移到较少使用的树种,如尼日利亚的布利贾(Blighia sapida),作为木材的替代来源。对木材质量的了解将在很大程度上提高木材的利用率。但是,关于这种木材的机械特性的资料很少,大多数木材使用者普遍认为,这种木材不是一种好的木材,不能用于任何需要强度的木基产品。因此,为了更好地在木材市场上被接受,研究木材品种的机械性能是必要的。在尼日利亚伊巴丹市伊巴丹大学社区,有目的地砍伐了三棵布利塔(Blighia sapida)立木,从树的顶部、中部和底部的木盘上取下500毫米的坯料,并将其分成外木、中木和内木三个部分,按照规定的标准对所选的各项力学性能测试(弹性模量、断裂模量、冲击弯曲强度和平行于颗粒的抗压强度)进行评估。断裂模量平均值为118.47±1.96 N/mm2,范围为103.67±3.42 ~ 144.26±3.68 N/mm2。弹性模量平均值为10649.99±167.51 N/mm2,范围为9237.14±399.22 ~ 12877.35±284.61 N/mm2。抗压强度与晶粒平行,平均值为52.86±0.81 N/mm2,范围为42.88±1.32 ~ 62.62±1.65 N/mm2。平均冲击弯曲强度为28.05±0.58 N/mm2,范围为24.56±0.86 ~ 35.09±1.71 N/mm2。平均断裂模量和弹性模量表明,该木材属于中等建筑强度木材。皂荚木的最大抗压强度值表明,与其他广泛用于各种结构应用的经济树种相比,皂荚木具有较好的抗压强度值。因此,木材使用者普遍认为它不是一种好的木材品种,不能用于任何需要强度的木基产品,这与事实相去甚远。因此可以得出结论,该木材可用于一些建筑结构,板材和衬里,家具,木工,贴面木生产,橱柜工作等。
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Evaluation of Selected Mechanical Properties of Blighia sapida K. Koenig Wood
Over exploitation of economic tree species in the forest due to their high demand has made wood loggers shift their attention to Lesser Used Species such as Blighia sapida as alternative source of wood in Nigeria. The knowledge on the quality of the wood would to a long extent enhance the utilization of the wood. However, little information is provided on the mechanical properties of the wood species and the general belief among most wood users is that it is not a good timber species and that it cannot be utilized for any wood-based products that require strength. Therefore, investigating the mechanical properties of the timber species for better acceptability in the timber market becomes necessary. Three standing trees of Blighia sapida were purposively felled in the University of Ibadan community, Ibadan, Nigeria. 500 mm billets were gotten from wood dics at the top, middle, and base of the tree and each partitioned into three, the outerrwood, middlewood and the innerwood, in line with specified standard for each selected mechanical property test (Modulus of Elasticity, Modulus of Rupture, Impact bending strength, and Compressive strength parallel to grain) were all evaluated. Modulus of rupture with mean value 118.47 ± 1.96 N/mm2, ranged from 103.67 ± 3.42 to 144.26 ± 3.68 N/mm2. Modulus of Elasticity with mean value 10649.99 ± 167.51 N/mm2, ranged from 9237.14 ± 399.22 to 12877.35 ± 284.61 N/mm2. Compressive strength parallel to grain with the average value 52.86 ± 0.81 N/mm2, ranged from 42.88 ± 1.32 to 62.62 ± 1.65 N/mm2. Mean impact bending strength was 28.05 ± 0.58 N/mm2, ranged from 24.56 ± 0.86 to 35.09 ± 1.71 N/mm2. The average Modulus of Rupture and Modulus of Elasticity of Blighia sapida wood indicated that the wood falls within the category of medium construction strength timbers. The maximum compressive strength value for Blighia sapida wood revealed that it compared well with other economic tree species that are widely known for various structural applications. Therefore, the general belief among wood users that it is not a good timber species and that it cannot be utilized for any wood-based product that requires strength is far from the truth. It can therefore be concluded that the timber can be used for some building constructions, sheeting and lining, furniture, carpentry, veneer wood production, cabinet work, and so on.
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