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首页> 外文期刊>Latin American Journal of Solids and Structures >Numerical Study on the Structural Performance of Steel Beams with Slant End-plate Connections
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Numerical Study on the Structural Performance of Steel Beams with Slant End-plate Connections

机译:斜端板连接的钢梁结构性能数值研究

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摘要

Abstract Thermal effects can be one of the most harmful conditions that any steel structure should expect throughout its service life. To counteract this effect, a new beam, with a capability to dissipate thermally induced axial force by slanting of end-plate connection at both ends, is proposed. The beam was examined in terms of its elastic mechanical behavior under symmetric transverse load in presence of an elevated temperature by means of direct stiffness finite element model. The performance of such connection is defined under two resisting mechanisms; by friction force dissipation between faces of slant connection and by small upward crawling on slant plane. The presented numerical method is relatively easy and useful to evaluate the behavior of the proposed beam of various dimensions at different temperatures. Its applicability is evident through satisfactory results verification with those from experimental, analytical and commercially available finite element software. Based on the good agreement between theoretical and experimental methods, a series of design curves were developed as a safe-practical range for the slant end-plate connections which are depend on the conditions of the connection.
机译:摘要热效应可能是任何钢结构在整个使用寿命中都应预期的最有害条件之一。为了抵消这种影响,提出了一种新的梁,该梁具有通过倾斜两端板连接而消除热感应轴向力的能力。通过直接刚度有限元模型,在高温下,在对称的横向载荷下,对梁的弹性力学性能进行了研究。这种连接的性能是在两种抵制机制下定义的。通过倾斜连接面之间的摩擦力耗散以及在倾斜平面上的小向上爬行。所提出的数值方法相对容易并且对评估所提出的不同尺寸的光束在不同温度下的行为是有用的。通过使用来自实验,分析和商用有限元软件的令人满意的结果验证,可以证明其适用性。基于理论和实验方法之间的良好一致性,开发了一系列设计曲线,作为取决于连接条件的斜端板连接的安全实用范围。

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