DIAGNOSTICS OF THE PRESS POWER FRAME WITH THREADED CONNECTIONS OF LOAD-BEARING ELEMENTS BY STRAIN GAUGE METHOD

S. P. Shlyakhtenkov, A. Popkov, V. Vyplaven, M. A. Gulyev, A. L. Bobrov, S. A. Bekher
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Abstract

The distribution of tightening forces between several threaded connections of power elements of machines and mechanisms directly affects the strength and reliability of the entire structure. When operating heavily loaded mechanisms with threaded connections in excess of the deadlines set in the technical documentation, the likelihood of loosening the tightening increases. This negatively affects the distribution of stresses in the power frame and, under unfavorable conditions, can lead to an increase in the level of mechanical stresses to critical values. The purpose of the work is a strain gauge method for monitoring the power frame of a hydraulic stamping press with threaded connections to assess the operability of the structure and conclude on the feasibility of repairs. Using strain gauges and finite element modeling methods, the regularities of the distribution of deformations in the material of columns and press racks with a maximum workload of 10 thousand tons are established. It is shown that in the working cycle, deformations are determined by the force and moment of force associated with the eccentricity of the application of the working force. Criteria for assessing the quality of threaded connections based on the relative difference and simultaneity of changes in mechanical stresses in the material of columns and press racks have been developed. The immobility of the connections of the power frame of the press during operation with maximum effort is ensured by the uniformity of the stress distribution on the racks and columns, taking into account the error of the results of the strain gauge method of 5%. The influence of the sliding elements of the movable elements of the press on the experimentally established patterns of stress distribution is substantiated by the method of finite element modeling.
用应变仪法诊断承重元件螺纹连接的压力机动力框架
机器和机构的动力元件的多个螺纹连接之间的紧固力分布直接影响整个结构的强度和可靠性。当重载机构的螺纹连接操作超过技术文件规定的期限时,拧紧松动的可能性就会增加。这会对动力框架中的应力分布产生负面影响,在不利条件下,会导致机械应力水平上升到临界值。这项工作的目的是采用应变仪方法监测带螺纹连接的液压冲压机动力框架,以评估结构的可操作性并得出维修可行性的结论。利用应变片和有限元建模方法,确定了最大工作量为 1 万吨的立柱和压力机机架材料的变形分布规律。结果表明,在工作循环中,变形是由与施加工作力的偏心相关的力和力矩决定的。根据立柱和压力机机架材料中机械应力变化的相对差异和同时性,制定了评估螺纹连接质量的标准。考虑到应变计方法的结果误差为 5%,通过机架和立柱上应力分布的均匀性来确保压力机动力框架的连接在最大努力运行时的不动性。压力机活动部件的滑动元件对实验确定的应力分布模式的影响通过有限元建模方法得到证实。
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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