Experimental Determination of the Bearing Capacity of a Reinforced Concrete Floor Slab

A. Masalov, Yu. B. Filatov
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Abstract

Purpose of research. Experimental determination and analysis of the bearing capacity, deformability and crack resistance of a reinforced concrete floor slab supported on three sidesMethods. Testing a specimen of a reinforced concrete floor slab supported on three sides (loggia floor) by a controlled load simulating the operational one. Measurement of deflections. Analysis and justification of test resultsResults. The slab was loaded to a level of 325 kN or 20.1 kPa. This load exceeded the control load by a factor of 1.64 with a safety factor of 1.6, exceeded the design load by a factor of 2.64, and exceeded the standard load by a factor of 3.08. The maximum recorded deflection at maximum load was 3.01 mm in or in span fractions of 0.0009, which is 7.41 times less than the allowable deflection from the standard load - 0.00667 of the span length. The testing has been terminated for safety reasons.Conclusion. The points that could allow the developing of more economical building structures are: refinement of the design scheme for the operation of structures, the optimal choice of a finite element in the calculation, as well as the gradual inclusion in the sets of rules of methods for calculating building structures based on the theory of structural systems with distributed parameters at critical energy levels.
钢筋混凝土楼板承重能力的实验测定
研究目的。通过实验确定和分析三面支撑钢筋混凝土楼板的承载能力、变形能力和抗裂能力。用模拟实际操作的可控荷载对三面支撑的钢筋混凝土楼板(露台楼板)试样进行测试。测量挠度。对测试结果进行分析和论证。楼板的荷载为 325 kN 或 20.1 kPa。该荷载超出控制荷载 1.64 倍,安全系数为 1.6,超出设计荷载 2.64 倍,超出标准荷载 3.08 倍。在最大荷载下记录到的最大挠度为 3.01 毫米(或跨度分数 0.0009),是标准荷载允许挠度(跨度长度的 0.00667)的 7.41 倍。出于安全考虑,测试已经终止。可以开发更经济的建筑结构的要点是:完善结构运行的设计方案,在计算中优化有限元的选择,以及逐步将基于临界能量水平分布参数结构系统理论的建筑结构计算方法纳入规则集。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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