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Relative influences of cracking and connection yield on transverse distributions of moments and reactions in timber-concrete composites

机译:裂缝和连接产量对木材 - 混凝土复合材料横向分布的相对影响

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This paper uses tests backed up by nonlinear FE analysis for parametric study of transverse load sharing in largescale timber-concrete composite (TCC) specimens, each comprising multiple hardwood LVL joists fastened to a single concrete slab via bonded-in, ductile steel mesh connectors. The study for the first time compares midspan moment sharing with support reaction sharing across the full range of behaviour up to failure for two distinct connection layouts, and it highlights the relative influences of connector yield and concrete cracking on the nonlinear load sharing characteristics. For the specific examples of this study, the results show that while cracking had little effect on transverse distribution of midspan moments, it did change the transverse distribution of support reactions by a factor of up to 1.60. Conversely, connection yield had little effect on transverse support reaction distribution, but it changed the transverse distribution of midspan moments by a factor of up to 1.62. Further, the test-verified FE analyses revealed that an inadvertent 20% drop in concrete tensile strength observed in the tests exacerbated support reaction sharing by up to 12.5%. These numbers approach or exceed the safety factors used in design. Wider studies are needed to determine practical bounds for these load sharing effects and to develop user-friendly means of allowing for these effects in design.
机译:本文使用非线性FE分析来支持的测试,用于参数研究横向负荷分析在大型木材混凝土复合材料(TCC)样本中,每个都包括多个硬木LVL托梁通过粘合的韧性钢网连接器固定在单个混凝土板上。第一次研究比较了中间班时刻与支持反应共享,在全方位的行为中共享到两个不同的连接布局,它突出了连接器产量和混凝土裂缝对非线性负荷共享特性的相对影响。对于本研究的具体实例,结果表明,虽然裂缝对中坡矩的横向分布几乎没有影响,但它确实将支持反应的横向分布变为高达1.60。相反,连接产率对横向支持反应分布几乎没有影响,但它改变了中沸矩的横向分布倍数高达1.62。此外,测试验证的Fe分析显示,在试验中观察到的混凝土拉伸强度下降的无意中20%升级至12.5%的支持反应。这些数字方法或超过设计中使用的安全因子。需要更广泛的研究来确定这些负载共享效果的实际范围,并开发用户友好的手段,允许在设计中实现这些效果。

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