INFLUENCE OF GEOMETRIC DEVIATIONS ON THE STRESS-STRAIN STATE OF OVERBRIDGE AT TAILINGS THICKENER

А. B. Bondarev, А. Yugov
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Abstract

Introduction. The article presents the results of testing a developed methodology for assessing the effect of geometric deviations on the stress-strain state of the metal structures of an overbridge at the facility of «Tailings Thickener 1», located at the Natalka Mining Processing Plant. A brief review of previously performed studies for recording deviations of metal structures is provided, along with confirming the relevance of the problems solved in the article and the study in general. It was substantiated that it is necessary to adjust the previously developed project on the overbridge of a thickener (OT); the applicability of the developed methodology was demonstrated.Aim. In the article, the methodology for determining the stress-strain state of frame metal structures was tested in the light of deviations, using the example of an OT.Materials and methods. The following materials and methods were used:– the finite element method implemented in SCAD 11.5 was applied in the numerical study of the state of the (OT) having deviations;– the theory of dimensional chains and the method of geometric modeling implemented in the authoring software entitled the «Dimensional analysis of rod structures» Computational Complex were used to determine the values of geometric deviations.Results. The results presented in the article allowed for timely substantiation of the amendments of the documentation and an increase in the reliability and economic efficiency of the OT, as well as the entire facility. During research:– possible geometric deviations of the OT were forecasted, along with plotting the limiting values of possible geometric deviations of nodes in three directions (X, Y, Z);– effect of possible geometric deviations on the stress-strain state of the OT metal structures was included in its verification calculations, which substantiated the necessity of adjusting the project and optimizing previously made decisions;– values of permanent and temporary loads were reduced, which allowed the possible emergency situations at the facility to be avoided.Conclusions. The developed methodology for determining the stress-strain state of frame metal structures was validated on the example of an overbridge of a thickener, taking into account the accumulation of geometric deviations during its manufacture and installation.
几何偏差对尾矿浓密机桥面应力-应变状态的影响
介绍。本文介绍了一种开发方法的测试结果,该方法用于评估几何偏差对位于Natalka采矿加工厂的“尾矿浓缩机1”设施的天桥金属结构的应力-应变状态的影响。简要回顾了先前进行的记录金属结构偏差的研究,并确认了本文所解决的问题与一般研究的相关性。结果表明,有必要对先前开发的增稠机(OT)过桥工程进行调整;论证了所开发方法的适用性。在文章中,确定框架金属结构的应力-应变状态的方法进行了测试,在偏差的光,使用OT的例子。材料和方法。采用了以下材料和方法:-在SCAD 11.5中实现的有限元方法用于(OT)有偏差状态的数值研究;-在名为“杆结构的尺寸分析”的创作软件中实现的尺寸链理论和几何建模方法用于确定几何偏差值。文章中提出的结果可以及时证实对文件的修正,并提高OT以及整个设施的可靠性和经济效率。在研究过程中,预测了OT的可能几何偏差,绘制了三个方向(X、Y、Z)节点可能几何偏差的极限值;验证计算中包含了可能几何偏差对OT金属结构应力-应变状态的影响,证明了调整方案和优化先前决策的必要性;减小了永久和临时荷载的值。从而避免了该设施可能出现的紧急情况。在考虑了加厚机在制造和安装过程中几何偏差积累的情况下,对确定框架金属结构应力-应变状态的方法进行了验证。
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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