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首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >Local energy analysis of high-cycle fatigue using digital image correlation and infrared thermography
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Local energy analysis of high-cycle fatigue using digital image correlation and infrared thermography

机译:利用数字图像相关和红外热像仪对高周疲劳进行局部能量分析

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摘要

This paper presents the first results provided by an experimental set-up developed to estimate locally the terms of the energy balance associated with the high-cycle fatigue (HCF) of DP 600 steel. The experimental approach involves two quantitative imaging techniques: digital image correlation and infrared thermography. First, a variational method is used to derive stress fields from the displacement fields. Patterns of deformation energy per cycle can then be determined on the basis of stress and strain data. Second, a local form of the heat equation is used to derive separately the thermoelastic and dissipative sources accompanying HCF. Energy balances show that around 50 per cent of the deformation energy associated with the mechanical hysteresis loop is dissipated while the rest corresponds to stored energy variations.
机译:本文介绍了一个实验装置提供的第一个结果,该实验装置是用来局部估算与DP 600钢的高周疲劳(HCF)相关的能量平衡的。实验方法涉及两种定量成像技术:数字图像关联和红外热成像。首先,使用变分方法从位移场导出应力场。然后可以基于应力和应变数据确定每个循环的变形能量模式。其次,热方程的局部形式用于分别推导伴随HCF的热弹性和耗散源。能量平衡表明,与机械滞后回线相关的变形能量中约有50%被消散,而其余部分则对应于所存储的能量变化。

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