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往复荷载下混凝土翼板对钢框架应变影响研究
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作者 董玮 崔恩亮 韩娜 《工程建设》 2013年第2期20-23,共4页
利用ANSYS中的solid45建立了钢框架和组合梁-钢框架实体的有限元模型,分析了往复荷载下混凝土翼板厚度、强度及配筋率对梁截面应变分布及中和轴高度的影响,并与纯钢框架进行了对比。分析表明,钢梁与混凝土翼板的组合作用提高了钢梁截面... 利用ANSYS中的solid45建立了钢框架和组合梁-钢框架实体的有限元模型,分析了往复荷载下混凝土翼板厚度、强度及配筋率对梁截面应变分布及中和轴高度的影响,并与纯钢框架进行了对比。分析表明,钢梁与混凝土翼板的组合作用提高了钢梁截面中和轴,钢梁的上翼缘应力应变减小,下翼缘的应力应变增大,下翼缘比上翼缘更容易进入塑性,更容易发生断裂破坏。 展开更多
关键词 钢-混泥土组合梁 组合作用 应变 有限元分析
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Flexural behaviors of steel reinforced ECC/concrete composite beams 被引量:8
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作者 董洛廷 潘金龙 +1 位作者 袁方 梁坚凝 《Journal of Southeast University(English Edition)》 EI CAS 2012年第2期195-202,共8页
An engineered cementitious composite (ECC) is introduced to partially substitute concrete in the tension zone of a reinforced concrete beam to form an ECC/reinforced concrete (RC) composite beam, which can increas... An engineered cementitious composite (ECC) is introduced to partially substitute concrete in the tension zone of a reinforced concrete beam to form an ECC/reinforced concrete (RC) composite beam, which can increase the ductility and crack resisting ability of the beam. Based on the assumption of the plane remaining plane and the simplified constitutive models of materials, the stress and strain distributions along the depth of the composite beam in different loading stages are comprehensively investigated to obtain calculation methods of the load-carrying capacities for different stages. Also, a simplified formula for the ultimate load carrying capacity is proposed according to the Chinese code for the design of concrete structures. The relationship between the moment and curvature for the composite beam is also proposed together with a simplified calculation method for ductility of the ECC/RC composite beam. Finally, the calculation method is demonstrated with the test results of a composite beam. Comparison results show that the calculation results have good consistency with the test results, proving that the proposed calculation methods are reliable with a certain theoretical significance and reference value. 展开更多
关键词 engineered cementitious composites (ECC) reinforced concrete composite beam flexural properties load carrying capacity
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