On the relationship of natural oscillation frequencies and critical loads in assessing the rigidity of load-bearing elements of carriage structures

P. Grigor’ev
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Abstract

The regulatory and technical documentation clearly defines the requirements for assessing the bearing capacity of rolling stock units, for example, to check the design being developed for loss of stability under the influence of compressive loads. This involves performing verification by calculation methods. The article considers the possibility of determining the critical level of external overpressure on the shell of the tank cauldron on the basis of experimental data on the minimum frequency and shape of natural oscillations. In order to solve this problem, the differential equation of flat cylindrical shells is used. The equation used was proposed by Donnell and has proven itself well in calculation of cylindrical shells, in particular cauldrons of tank cars. The peculiarity of the proposed solution lies in a certain analogy of the mathematical description of the processes of loss of stability and natural oscillations. As a result of transformations of the differential equations under consideration, an expression is obtained that connects the critical level of external overpressure and the natural oscillation frequencies of the objects under consideration. Numerical values of the studied parameters are given, the reliability of which is confirmed by similarity with the data given in previously published sources. Recommendations are given on application of the proposed approach in engineering verification of carriage structure elements stability. The necessity of taking into account the forms of oscillations and loss of stability when determining the level of critical pressure by the obtained expression is shown.
车架结构承载单元刚度评估中固有振动频率与临界载荷的关系
法规和技术文件明确规定了评估机车车辆单元承载能力的要求,例如,检查正在开发的设计在压缩载荷的影响下是否失去稳定性。这包括通过计算方法进行验证。本文考虑了根据自然振荡的最小频率和形状的实验数据确定罐体釜壳外部超压临界水平的可能性。为了解决这一问题,采用了扁圆柱壳的微分方程。所使用的方程是由Donnell提出的,并且在计算圆柱壳,特别是油罐车的大锅时证明了它的有效性。所提解的独特之处在于对失稳过程和自然振荡过程的数学描述有一定的类比。通过对所考虑的微分方程进行变换,得到了外超压临界水平与所考虑对象固有振动频率之间的关系式。文中给出了所研究参数的数值,并通过与前人资料的相似性证实了数值的可靠性。对该方法在车厢结构单元稳定性工程验证中的应用提出了建议。在用所得到的表达式确定临界压力水平时,必须考虑振荡形式和稳定性损失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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