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Study of the causes of uncertainty in thermoelasticity measurements of mechanical components

机译:机械部件热弹性测量不确定度原因研究

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摘要

Thermoelastic stress analysis (TSA) is a contactless technique for measuring stress distributions in mechanical components stressed by dynamic loads. The application of TSA was proposed since more than twenty years ago. In many papers available in literature thermoelasticity systems are used not to perform quantitative measure but only for non-destructive evaluation of structural integrity of components, joints etc. In the present paper a systematic experimental work is carried out in order to better understand what is possible to measure on simple specimen of mechanical components. This work describes the characteristics, analyses the main causes of uncertainty and illustrates a series of operative methods for reducing its effects. More specifically, the effects of the angle of view between the thermographic camera and the surface of the object are studied, along with those due to the heat transmission by conduction between the various parts of the thing being measured according to the stress frequencies. The analyses, both theoretical and experimental, are aimed at defining the operational limits and optimal measurement and test conditions in relation to the measurement uncertainty that is considered tolerable in the specific application.
机译:热弹性应力分析(TSA)是一种非接触技术,用于测量由动态载荷应力应力的机械部件中的应力分布。自二十年前提出了TSA的应用。在文献热弹性系统中可用的许多纸张中使用而不是进行定量测量,而只是为了不破坏性评估组件的结构完整性,关节等。在本文中进行了系统的实验工作,以便更好地理解什么是可能的测量机械部件简单标本。这项工作描述了该特性,分析了不确定性的主要原因,并说明了一系列可操作方法来降低其效果。更具体地,研究了热量摄像机与物体表面之间的视角的影响,以及由于通过根据应力频率测量的物质的各种部分之间的传导而导致的那些。理论和实验的分析旨在定义与在特定应用中认为可容忍的测量不确定性相关的操作限制和最佳测量和测试条件。

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