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Evaluation of diaphragm conditions in AAC floor structureswith RC beams

机译:AAC底板结构的膜片状况评价rc梁

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摘要

Diaphragm action in floor structures is an important aspect that affects both local behaviors of individual members and consequently, the global response of a structure. The diaphragm action of a built structure, therefore needs to be compatible with the assumed diaphragm condition in the design phase to prevent unpredicted overloading of load bearing members in a seismic action. Autoclaved aerated concrete (AAC) is a cost-effective, lightweight and energy efficient material, and its usage as a construction material has rapidly increased in recent decades. However, there is a limited experience regarding the in-plane behavior of the floor structures made of AAC panels in terms of diaphragm action. In this paper, the in-plane response of AAC floors is experimentally investigated and the floor performance of a typical building is analytically investigated according to ASCE 7-16 (ASCE/SEI in Minimum design loads for buildings and other structures, The American Society of Civil Engineers, Reston, 2016). Full-scale experiments carried out through loading AAC floors in lateral directions to the panels, either parallel or perpendicular, provided important information about the damage progress and overall performance of such floors. A number of finite element modeling techniques that are generally used for modeling of AAC floors were examined and then validated through comparisons with test results. Finally, the diaphragm condition of a three-story building made of AAC walls and floor panels was assessed. The results indicated that the AAC floors in the examined building can be idealized as rigid diaphragms according to ASCE 7-16.
机译:隔膜在地板结构中的动作是影响个别成员的局部行为的一个重要方面,从而影响结构的全局响应。因此,构建结构的隔膜作用需要与设计阶段中的假定隔膜条件兼容,以防止在地震作用中的负载轴承构件的未预载过载。高压灭菌的加气混凝土(AAC)是一种成本效益,轻质和节能的材料,其作为近几十年来的建筑材料的用法迅速增加。然而,在隔膜动作方面,关于由AAC面板制成的地板结构的面内行为存在有限的经验。在本文中,通过ASCE 7-16(最小设计负载最低的建筑物和其他结构,美国社会,典型建筑物的典型建筑物的地板性能进行了实验研究,典型建筑物的地板性能进行了分析研究土木工程师,旧生,2016年)。通过将AAC地板加载到面板的AAC地板来进行的全尺寸实验,无论是平行的还是垂直,都提供了关于这种楼层的损坏进展和整体性能的重要信息。检查了许多通常用于建模AAC地板的有限元建模技术,然后通过与测试结果的比较进行验证。最后,评估了由AAC墙壁和地板面板制成的三层建筑物的隔膜条件。结果表明,根据ASCE 7-16,所检查建筑物中的AAC地板可以理想化为刚性隔膜。

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