首页> 外文期刊>Journal of Civil Engineering and Management >ANALYSIS OF FAILURE CONDITIONS FOR A DYNAMICALLY LOADED COMPOSITE FLOOR SYSTEM OF AN INDUSTRIAL BUILDING
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ANALYSIS OF FAILURE CONDITIONS FOR A DYNAMICALLY LOADED COMPOSITE FLOOR SYSTEM OF AN INDUSTRIAL BUILDING

机译:工业建筑动力荷载复合地板系统的破坏条件分析

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摘要

Results of examination and analysis of cracks formation in a composite slab floor in an industrial warehouse hall is presented in the paper. During exploitation of the floor, on which lift trucks and presses worked, a lot of deep cracks occurred in the slab. In order to define characteristics of cracks and properties of concrete there were made different NDT examinations. Measurements of vibrations due to work of presses were also realized with aim to evaluate their possible influence on cracks formation. Static, dynamic and strength structural calculations were also made based on the model of continuous, multi-bay plate. They showed that applied slab reinforcement was sufficient and acting loads did not have to cause cracks. After 3D modelling of the building and taking into consideration the flexibility of main steel beams it was gained that in the RC floor slab over supports bending moments could occur nearly three times greater than calculated from the 2D model. Taking into consideration wrong structural model of the building led to over-loading of the floor slab, its cracking and caused a necessity of its strengthening.
机译:给出了工业仓库大厅复合板地板裂缝形成的检查和分析结果。在对起重卡车和压力机进行工作的地板进行开采的过程中,平板中出现了许多深层裂缝。为了确定裂缝的特性和混凝土的性能,进行了各种无损检测。为了评估压力机对裂纹形成的可能影响,还实现了压力机工作引起的振动测量。还基于连续多机架板的模型进行了静态,动态和强度结构计算。他们表明,所施加的平板钢筋已经足够,作用载荷不必引起裂缝。在对建筑物进行3D建模后,考虑到主钢梁的柔韧性,可以得出,在RC楼板支座上的弯曲力矩可能比从2D模型计算得出的弯曲力矩大将近三倍。考虑到建筑物的错误结构模型会导致楼板超载,开裂,并有必要对其进行加固。

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