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首页> 外文期刊>Journal of Soft Computing in Civil Engineering >Modeling of Compressive Strength Characteristics of Structural-sized Afara (Terminalia superba) and Babo (Isoberlinia doka) Timber Columns Using Constant Failure Rate (CFR) Model of Reliability
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Modeling of Compressive Strength Characteristics of Structural-sized Afara (Terminalia superba) and Babo (Isoberlinia doka) Timber Columns Using Constant Failure Rate (CFR) Model of Reliability

机译:使用恒定失效率(CFR)可靠性模型对结构尺寸Afara(Terminalia superba)和Babo(Isoberlinia doka)木材柱的抗压强度特性进行建模

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This paper investigated the reliability of the Structural-sized Afara and Babo timber species as column materials. The work centers on the compressive strength characteristics of Nigerian Afara (Terminalia superba) and Babo (Isoberlinia doka) timber column of nominal lengths 200, 400, 600 and 800 mm and a nominal width and thickness of 50 mm by 50 mm. The steps involved collection and conditioning of Afara and Babo timber species, preparation of test specimens, determination of physical properties such as moisture content and density, determination of compressive strengths using varying heights of 200, 400, 600 and 800 mm and derivation of continuous column design equations. Forty test samples were used in all the tests carried out. Afara and Babo have an average density of 509.80 and 849.67 kg/m3 respectively. Moisture content of both species less than the maximum recommended value of 20 % and the average strength at yield of Afara and Babo are 19.99 and 30.96 N/mm2. The derived continuous equations for design of Afara column and Babo column are σ=〖16.992e〗^(0.0039λ) and σ=〖32.031e〗^(-0.001λ) respectively. The results of the reliability analysis show that Afara and Babo timber species have reliability index of 0.63 and 0.64 respectively for a service life of 50 years, assuming other serviceability conditions are met. This design procedure is distinct and more effective than the usual procedure of classification of compression members as short, intermediate and long. The paper therefore recommends the adoption of these equations for the design of compression members from these timber species in Nigeria.
机译:本文研究了结构尺寸的Afara和Babo木材作为圆柱材料的可靠性。该工作的重点是标称长度为200、400、600和800毫米,标称宽度和厚度为50毫米乘50毫米的尼日利亚Afara(Terminalia superba)和Babo(Isoberlinia doka)木柱的抗压强度特性。这些步骤包括收集和整理Afara和Babo木材的种类,准备试样,确定物理特性(例如水分含量和密度),使用200、400、600和800 mm的不同高度确定抗压强度,以及推导连续柱设计方程式。在进行的所有测试中使用了40个测试样品。 Afara和Babo的平均密度分别为509.80和849.67 kg / m3。两种物种的水分含量均低于最大推荐值20%,Afara和Babo的平均屈服强度分别为19.99和30.96 N / mm2。推导的Afara柱和Babo柱设计连续方程分别为σ=〖16.992e〗^(0.0039λ)和σ=〖32.031e〗^(-0.001λ)。可靠性分析结果表明,假设满足其他使用条件,则Afara和Babo木材树种在50年使用寿命中的可靠性指数分别为0.63和0.64。该设计过程比通常的将压缩构件分类为短,中和长的过程更加独特和有效。因此,本文建议采用这些方程式来设计尼日利亚这些木材物种的压缩构件。

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