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首页> 外文期刊>Journal of Constructional Steel Research >Rotational stiffness of continuous composite beams with sinusoidal-web profiles for lateral-torsional buckling
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Rotational stiffness of continuous composite beams with sinusoidal-web profiles for lateral-torsional buckling

机译:具有正弦腹板轮廓的连续组合梁的横向扭转屈曲刚度

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In the hogging bending moment region, continuous composite beams are subjected to the ultimate limit state of lateral-torsional buckling, which depends on web stiffness as well as concrete slab and shear connection stiffnesses. These three stiffnesses compose the rotational stiffness of composite beams. Eurocode 4 defines this stiffness in composite beams with plane webs, but there are no conclusive studies on the stiffness of composite beams with sinusoidal-web profiles. This paper presents a formulation to evaluate the rotational stiffness of composite beams with sinusoidal-web steel profiles presented based on (a) test results for four representative prototypes of the inverted U-frame model, (b) the development and calibration of a numerical model using the ANSYS commercial finite element software, and (c) the computational processing of sixty-eight numerical models. In these models, the researchers attempted to vary all the parameters that could influence the rotational stiffness, such as web height and thickness, slab size and type (concrete or composite), number of shear connectors in the cross-section and longitudinal spacing of connectors.
机译:在弯矩弯矩区域中,连续的组合梁处于横向扭转屈曲的极限状态,该极限状态取决于腹板刚度以及混凝土板和剪力连接的刚度。这三个刚度构成了复合梁的旋转刚度。欧洲规范4定义了带有平面腹板的复合梁的刚度,但是对于具有正弦腹板轮廓的复合梁的刚度尚无定论。本文基于(a)倒U形框架模型的四个代表性原型的测试结果,(b)数值模型的开发和校准,提出了一种评估具有正弦腹板钢型材的组合梁的旋转刚度的公式。使用ANSYS商业有限元软件,以及(c)68个数值模型的计算处理。在这些模型中,研究人员试图改变所有可能影响旋转刚度的参数,例如腹板高度和厚度,板坯尺寸和类型(混凝土或复合材料),横截面中的剪切连接器数量以及连接器的纵向间距。 。

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