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Measurement of Temperature Increment in Compressive Quasi-Static and Dynamic Tests Using Infrared Thermography

机译:使用红外热像仪在压缩准静态和动态测试中测量温度增量

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摘要

During the plastic deformation of metals, part of the mechanical energy is retained in the material as plastic deformations and the rest is converted to heat. A temperature increment is a measure of the heat energy generated in the tested specimen. This temperature can be detected by measuring the infrared (IR) radiation emitted by the specimen surface. This study describes an attempt to improve the experimental procedure using IR thermography to measure the temperature increment as a function of the plastic strain of the studied materials. Tests were carried out under quasi-static and dynamic load conditions (using a universal testing machine and a Split Hop-kinson pressure bar). The method is applied on an Al alloy (AI6082), a Mg alloy (ZC71) and the same Mg alloy reinforced with ceramic particles (SiC, 12 vol%). The emissivity measurement of the studied materials is detailed, as well as the method of synchronising the IR camera with the testing machines. Finally, the influence of test conditions on the measured temperature is analysed.
机译:在金属塑性变形期间,部分机械能会随着塑性变形而保留在材料中,而其余的则转化为热量。温度增量是测试样品中产生的热能的量度。可以通过测量样品表面发出的红外(IR)辐射来检测该温度。这项研究描述了一种尝试改进的程序,使用红外热像仪测量温度增量,该增量是所研究材料的塑性应变的函数。测试在准静态和动态负载条件下进行(使用通用测试机和Split Hop-kinson压力棒)。该方法适用于铝合金(AI6082),镁合金(ZC71)以及用陶瓷颗粒(SiC,12 vol%)增强的同一镁合金。详细介绍了所研究材料的发射率测量,以及将红外热像仪与测试机同步的方法。最后,分析了测试条件对测得温度的影响。

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