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首页> 外文期刊>Frattura e Integrita Strutturale >Combined lock-in thermography and heat flow measurements for analysing heat dissipation during fatigue crack propagation
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Combined lock-in thermography and heat flow measurements for analysing heat dissipation during fatigue crack propagation

机译:结合了锁定热成像和热流测量功能,可分析疲劳裂纹扩展过程中的散热

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During fatigue crack propagation experiments with constant force as well as constant stress intensity lock in thermography and heat flow measurements with a new developed peltier sensor have been performed. With lock in thermography space resolved measurements are possible and the evaluation allows to distinguish between elastic and dissipated energies. The specimens have to be coated with black paint to enhance the emissivity. The thickness of the coating influences the results and therefore quantitative measurements are problematic. The heat flow measurements are easy to perform and provide quantitative results but only integral in an area given by the used peltier element. To get comparable results the values measured with thermography were summarized in an area equivalent to that of the peltier element. The experiments with constant force show a good agreement between the thermography and the heat flow measurements. In case of the experiments with a constant stress intensity some differences become visible. Whereas the thermography measurements show a linear decrease of the signal with rising crack length, the heat flow measurements show a clearly nonlinear dependency. Obviously the measured energies in thermography and peltier based heat flow measurement are not comparable.
机译:在疲劳裂纹扩展实验中,使用新开发的珀耳帖传感器进行了恒定力以及恒定应力强度锁定的热成像和热流测量。通过锁定热成像空间,可以进行分辨的测量,并且评估可以区分弹性能量和耗散能量。样品必须涂有黑色涂料以增强发射率。涂层的厚度影响结果,因此定量测量是有问题的。热流测量易于执行并提供定量结果,但仅在所用珀耳帖元件给定的区域内积分。为了获得可比的结果,将热像仪测量的值汇总在与珀耳帖元件相等的面积内。恒力实验显示热成像和热流测量之间的良好一致性。在具有恒定应力强度的实验情况下,可以看到一些差异。尽管热像仪测量结果表明信号随裂纹长度的增加而线性降低,但热流测量结果却显示出明显的非线性依赖性。显然,在热成像和珀耳帖热流测量中测得的能量是不可比的。

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