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首页> 外文期刊>Journal of Soft Computing in Civil Engineering >Profiled Composite Slab Strength Determination Method
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Profiled Composite Slab Strength Determination Method

机译:异型复合板强度确定方法

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Abstract: The purpose of this article is to develop a new numerical approach for determining the strength capacity of a profiled composite slab (PCS) devoid of the current challenges of expensive and complex laboratory procedure required for establishing its longitudinal shear capacity. The new Failure Test Load (FTL) methodology is from a reliability-based evaluation of PCS load capacity design with longitudinal shear estimation under slope-intercept (m-k) method. The limit-state capacity development is through consideration of the experimental FTL value as the maximum material strength, and design load equivalent estimation using the shear capacity computation. This facilitates the complex strength verification of PDCS in a more simplified form that is capable of predicting FTL value, which will aid in determining the longitudinal shear of profiled deck composite slab with ease. The developed strength determination effectively performs well in mimicking the probabilistic deck performance and composite slab strength determination. The strength test performance between the developed scheme and the experiment-based test results indicates high similarity, demonstrating the viability of the proposed strength determination methodology.
机译:摘要:本文的目的是开发一种新的数值方法,用于确定型材复合板(PCS)的强度能力,而不会面临建立纵向剪切能力所需的昂贵且复杂的实验室程序的当前挑战。新的失效测试载荷(FTL)方法是基于PCS载荷能力设计的基于可靠性的评估,并采用斜率截距(m-k)方法进行纵向剪切估计。极限状态能力的发展是通过考虑实验性FTL值作为最大材料强度,并使用剪切能力计算来设计等效载荷的估计。这有助于以更简化的形式进行PDCS的复杂强度验证,该形式能够预测FTL值,这将有助于轻松确定型材复合板的纵向剪力。拟定的强度确定在模仿概率甲板性能和复合板强度确定方面表现良好。所开发的方案与基于实验的测试结果之间的强度测试性能显示出高度的相似性,表明了所提出的强度确定方法的可行性。

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