Theoretical Modeling of a Beam with Variable Section and Finite Rigidity in A Fatigue Testing Machine to Verify the Bending Moment Produced in The Central Portion of The Smallest Diameter of The Beam Subjected to External Loads

Edison Gustavo Tapia Zurita, José Emilio Pérez Rosales
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Abstract

There is a bending fatigue machine where it is detected that when loads are applied, the theoretical model of the beam with which the machine was designed to obtain the bending moment does not coincide with the real measurements of the bending moment obtained experimentally and the specimen does not break, to determine the correct theoretical modeling applicable to this fatigue machine, the following static models are proposed, and the theoretical results are obtained through computer simulation.  The bending moment values ??produced by the applied loads are verified with measurements through the Hooke and Navier law using strain gages, the analysis of the different modeling is carried out and those that are closest to the real model obtained experimentally are analyzed
在疲劳试验机上对具有可变截面和有限刚度的横梁进行理论建模,以验证横梁最小直径中心部分在外部荷载作用下产生的弯矩
有一台弯曲疲劳机,当施加载荷时,发现设计这台机器以获得弯矩的梁的理论模型与实验获得的弯矩实际测量值不一致,试样没有断裂,为了确定适用于这台疲劳机的正确理论模型,提出了以下静态模型,并通过计算机模拟获得了理论结果。 通过使用应变计的胡克和纳维耶定律进行测量,对施加载荷产生的弯矩值进行验证,对不同模型进行分析,并对最接近实验所得真实模型的模型进行分析
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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