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Non-linear Analysis of Structural Steel Frames

机译:结构钢框架的非线性分析

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Material, geometrical and connection non-linearities could have a significant influence on the forces and moments in a steel structure, especially in sway frames at ultimate load levels. Some structural steel design codes (such as CAN3-S16.1-M89) require that a designer consider second-order moments (i.e. the geometric non-linearities). If the steel members are able to redistribute moments through plastic hinge formation, it makes economic sense to do a plastic design. Certain so-called 'hinge'-connections do in fact transfer significant moments. It would thus also make the structure more economical if one can take this moment transfer into account. All the above effects could be built into a steel frame analysis program. In this paper, ways of including geometrical, material and connection non-linearities into the matrix stiffness method in a relatively uncomplicated manner will be discussed. A computer program developed by the authors, for design-office use, where the matrix stiffness method has been adjusted to incorporate all these non-linearities is described. The use of the computer program is illustrated by means of an example.
机译:材料,几何形状和连接非线性可能会对钢结构中的力和力矩产生重大影响,尤其是在极限载荷水平下的摇摆框架中。某些钢结构设计规范(例如CAN3-S16.1-M89)要求设计人员考虑二阶矩(即几何非线性)。如果钢构件能够通过塑性铰链的形成重新分配力矩,那么进行塑性设计在经济上是有意义的。实际上,某些所谓的“铰链”连接确实会传递重要的时刻。因此,如果可以考虑这一时刻的转移,也将使该结构更加经济。所有上述效果都可以内置到钢框架分析程序中。在本文中,将讨论以相对简单的方式将几何,材料和连接非线性纳入矩阵刚度方法的方法。作者开发的计算机程序,供设计办公室使用,其中矩阵刚度方法已进行了调整,以纳入所有这些非线性。通过示例说明了计算机程序的使用。

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