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首页> 外文期刊>Journal of structural engineering >Static Modeling of Plywood-Polyurethane Structural Insulated Panels in Bending
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Static Modeling of Plywood-Polyurethane Structural Insulated Panels in Bending

机译:胶合板 - 聚氨酯结构绝缘板在弯曲中的静态建模

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摘要

Structural insulated panels (SIPs) are thermally efficient, prefabricated structural elements that expedite on-site construction with a minimal number of skilled workers. This research aimed to model the time-independent mechanical response of transversely loaded SIPs with plywood skins and a closed-cell rigid polyurethane foam core. The foam core was characterized in both shear and compression through experimental testing, and a trilinear strain-based constitutive model was found suitable for the shear, while a linear response was adequate for compression. Two models, one analytical the other numerical, were produced using the component behavior and validated by comparison to the results of full-scale SIPs experimentally tested in quarter-point bending at two spans, 2.40 and 3.65 m. The analytical model is based on thin-faced, antiplane-core sandwich beam theory, while the numerical model is a two-dimensional plane-strain finite-element model (FEM). Good agreement was found between the analytical model and full-scale bending tests. However, it was found that the experimentally observed polyurethane shear moduli had to be reduced to 77% of their original values to provide good agreement of the FEM with the full-scale bending tests. While both models accurately predicted the bending deflection of the panels, neither was able to satisfactorily predict ultimate strength. (C) 2020 American Society of Civil Engineers.
机译:结构绝缘板(SIPS)是具有最小数量的技术工人的现场结构的热效率,预制结构元件。该研究旨在模拟晶片皮肤的横向装载啜饮的时空机械响应和闭孔刚性聚氨酯泡沫芯。通过实验测试表征泡沫核心的剪切和压缩,并且发现基于三线菌株的本构模型适用于剪切,而线性反应足以进行压缩。使用组件行为产生两种模型,一个分析的其他数值,并通过与在两个跨度的四分之一点弯曲的全规模啜饮结果的比较和验证的结果进行验证,2.40和3.65米。分析模型基于薄面抗普利芯夹层光束理论,而数值模型是一种二维平面 - 应变有限元模型(FEM)。在分析模型和全尺寸弯曲测试之间发现了良好的一致性。然而,发现实验观察到的聚氨酯剪切模量必须减少到其原始值的77%,以提供具有全规模弯曲测试的有限元素的良好一致性。虽然两种模型准确地预测了面板的弯曲偏转,但也不能够令人满意地预测最终的强度。 (c)2020年美国土木工程师协会。

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  • 来源
    《Journal of structural engineering》 |2021年第2期|04020334.1-04020334.11|共11页
  • 作者单位

    PDC Engineers 2700 Gambell St Suite 500 Anchorage AK 99503 USA;

    Univ Alaska Anchorage Dept Civil Engn 3211 Providence Dr 301S Engn & Ind Bldg Anchorage AK 99508 USA;

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