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An original method of direct calculation for the identification of the last hinge and the definition of the deformative state at collapse

机译:直接计算的最后一种铰链识别方法和塌陷变形状态定义的原始方法

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The subject matter of these notes refers to the Ultimate Strength Design of 2-D steel framed structures and in particular to the analysis of the deformation state at collapse. The idea is based on the consideration that, if the structure at its collapse condition is subjected to an articulated movement, similar and concordant to the crisis motion, this will not change the stress state of the system. This motion is known once a single parameter is fixed, namely the displacement of a point or the rotation of a beam. When the collapse mechanism of the structure is already determined through any instrument of the Limit Analysis, a subsequent (k+1) plastic hinge can be arbitrarily fixed and assumed as the last developed one. It is therefore possible to solve the modified scheme through the rotation method and make a comparison in the verses between the known plastic moments and the rotations at the corresponding hinges. If the comparison is successful, in the sense that the checked verses are concordant, the selected hinge is actually the one formed as the last. On the contrary, the rotations resulting from an imprinted motion in the verse of collapse movement are algebraically added. If, for each hinge, the product between the plastic moment and the correspondent algebraic sum is made, this product has to be surely positive, due to the verses concordance. This can be translated in k+1 inequalities, with each one furnishing a lower limit for the parameter from which the articulated motion depends. Among these, the highest value is that one which makes all the inequalities to be simultaneously verified. The substitution of this value into the expressions for rotations permits to arrive to the simultaneous identifying of the last hinge and of the complete picture of deformations.
机译:这些注释的主题涉及二维钢框架结构的极限强度设计,尤其涉及坍塌变形状态的分析。该想法基于以下考虑:如果结构在其坍缩状态下经受与危机运动相似且一致的铰接运动,则不会改变系统的应力状态。一旦确定了单个参数,即点的位移或光束的旋转,就知道了该运动。如果已经通过极限分析的任何一种手段确定了结构的倒塌机理,则可以任意固定随后的(k + 1)个塑料铰链,并假定为最后开发的塑料铰链。因此,可以通过旋转方法来解决修改的方案,并且可以在已知塑性力矩与相应铰链处的旋转之间的经文之间进行比较。如果比较成功(就选中的经文而言是一致的意义而言),则所选的铰链实际上是最后形成的铰链。相反,在倒塌运动的过程中,由压印运动引起的旋转被代数相加。如果对于每个铰链,求出塑性矩与相应代数和之间的乘积,则由于经文的一致性,该乘积必须肯定为正。这可以转换为k + 1个不等式,每个不等式为关节运动所依赖的参数提供一个下限。其中,最高的值是可以同时验证所有不平等的值。将该值代入旋转表达式中,可以同时识别最后一个铰链和完整的变形图。

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