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Mobile Automated Diagnostics of Stress State and Residual Life Prediction for a Component under Intensive Random Dynamic Loads

机译:在强随机动态载荷下部件的应力状态和剩余寿命预测的移动自动化诊断

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This article presents an approach developed for collecting and processing data about the actual stress state of a structural component of a technical product and to estimate its residual fatigue life in case random dynamic loadings. As input data sensor values are being used from which the operating loads acting on a component are calculated.For the realization of the experiments a suitable mobile measuring device has been developed. The device is designed to digitize sensor signals at certain positions identified by simulation results, to collect this data in an internal memory, to mathematically analyze this data in real time, to process this data in parallel for the purpose of identifying characteristic information, to restore the stress state of the component and to estimate the residual fatigue life.The created concept provides an opportunity to realize the "intellectualization" of structural components without radical changes in their construction and allows supplementing components with additional functions for collecting and analyzing data during the usage phase of the components life cycle, what is an integral part of an Industry 4.0 product.
机译:本文介绍了一种方法,该方法用于收集和处理有关技术产品结构组件的实际应力状态的数据,并估计在随机动态载荷情况下其残余疲劳寿命。随着输入数据传感器值的使用,从中计算作用在一个组件上的工作负载。为了实现实验,已经开发了一种合适的移动测量设备。该设备旨在对通过仿真结果确定的特定位置的传感器信号进行数字化,以将其收集到内部存储器中,以实时数学方式分析此数据,以并行方式处理此数据以识别特征信息,以恢复数据。创建的概念为实现结构组件的“智能化”提供了机会,而无需在结构上进行根本性的改变,并为组件提供了补充功能,以便在使用过程中收集和分析数据组件生命周期的阶段,这是工业4.0产品不可或缺的一部分。

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