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Combined Beam-Slab Collapse Mechanism in Isolated Reinforced Concrete Beam-Slabs-Strength Design and Load Testing

机译:隔离钢筋混凝土梁板 - 强度设计和负载测试中梁板塌陷机制

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In the conventional method of strength design of reinforced concrete (RC) beam-slab systems, it is assumed that if the beams are adequately stiff, the slab and beams can be analyzed and designed separately under factored gravity loads. This paper demonstrates, through yield line analysis and load testing of isolated beam-slab systems, that such a design, which tacitly assumes a 'slab alone failure' mechanism, is irrational and overconservative (failing at a load level much higher than expected). The actual collapse of the conventionally designed beam-slab system invariably involves a combined beam-slab failure mechanism. It is therefore more rational and economical to design explicitly for such a collapse mechanism, accounting for plastic hinge formation in the beams along with yield lines in the slab. The proposed method suggests provision of minimum slab steel (as prescribed by the design code), and then designing the beams aiming for a combined two-way beam-slab failure. Experimental load testing establishes that the collapse occurs as planned and that the proposed economical design has the desired code-specified safety margins.
机译:在钢筋混凝土(RC)梁板系统的强度设计的传统方法中,假设的是,如果光束是充分刚性的,板坯和梁可以被分析和因式分解重力载荷下分别设计。本文显示的,通过产线的分析和分离的梁板系统的负载测试,这样的设计,其默认假定“板坯单独失败”的机制,是不合理和overconservative(在负载电平远高于预期失败的)。常规设计的梁板系统的实际崩溃总是涉及组合梁板失效机理。因此,它是更合理和经济明确设计为这样的破坏机构,占塑性铰形成在与在板坯产量线沿着波束。所提出的方法提出提供最小板坯钢(由设计代码所规定),然后设计光束瞄准用于组合的双向梁板故障。实验负载测试规定,按计划和所提出的经济的设计具有所需的代码指定的安全余量发生崩溃。

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