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首页> 外文期刊>Critical Reviews in Solid State and Materials Sciences >Combined Infrared Thermal Imaging and Laser Heating for the Study of Materials Thermophysical and Processing Properties at High Temperatures
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Combined Infrared Thermal Imaging and Laser Heating for the Study of Materials Thermophysical and Processing Properties at High Temperatures

机译:红外热成像和激光加热相结合的研究材料在高温下的热物理和加工性能

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摘要

Focused laser irradiation can easily drive materials to extreme temperatures with very high precision and control. In combination with infrared imaging and material characterization techniques, the resulting thermal load can be assessed to derive meaningful thermophysical properties avoiding interferences that would normally occur with direct contact measurements of temperature. In this focused article we first address technical challenges with the experimental implementation involved in obtaining laser-induced temperature field data from infrared imaging. We then discuss suitable heat transport models for analysis of thermal data and, finally, describe specific examples of thermophysicalmaterial parameters derived fromcombined infrared imaging and laser heating. The aim is to illustrate general principles of this combined laser-based heating and IR thermal imaging approach that are useful for experimentation under extreme conditions, which often remain out of reach of conventional methods.
机译:聚焦激光辐照可以很容易地以非常高的精度和控制力将材料驱动到极限温度。结合红外成像和材料表征技术,可以评估所产生的热负荷,以得出有意义的热物理性质,从而避免了直接接触温度测量通常会发生的干扰。在这篇重点文章中,我们首先通过实验实施来解决技术难题,该实验实施涉及从红外成像获得激光诱导的温度场数据。然后,我们讨论用于分析热数据的合适的热传输模型,最后,描述从红外成像和激光加热相结合得出的热物理材料参数的特定示例。目的是说明这种基于激光的加热和红外热成像方法相结合的一般原理,这些原理可用于极端条件下的实验,而这些条件通常是常规方法无法实现的。

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