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首页> 外文期刊>International Journal of Thermophysics >Subsecond Measuring Technique for In-plane Thermal Diffusivity at Local Area by the Forced Rayleigh Scattering Method
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Subsecond Measuring Technique for In-plane Thermal Diffusivity at Local Area by the Forced Rayleigh Scattering Method

机译:强迫瑞利散射法亚秒测量局部平面内热扩散率

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摘要

In the course of a chemical reaction or structural changes in a material, the thermal diffusivity of the material changes in response to its varying conditions. Real-time information in the form of successive data on the thermal diffusivity during the process is indispensable for an adaptive control system for material production or processing. In the present study, a measurement technique for in-plane thermal diffusivity in micro-scale and at a high repetition rate has been studied. In view of the application of this method for fast processes, the effects of property changes during a single measurement time on the measured value have been quantitatively evaluated. We have developed a measurement system of the in-plane thermal diffusivity by means of the forced Rayleigh scattering method, an optical technique with a measurement time less than 1 ms and at a micro-scale local observation area. In the present system, each thermal diffusivity measurement was conducted every 10 ms; i.e., the repetition rate was up to 100 data per second. The results of preliminary measurements of a polymethylmethacrylate plate with several repetition rates verify the reliability of this technique in tracing high-speed phenomena.
机译:在材料发生化学反应或结构变化的过程中,材料的热扩散率会根据其变化的条件而变化。有关过程中热扩散率的连续数据形式的实时信息对于用于材料生产或加工的自适应控制系统是必不可少的。在本研究中,已经研究了一种在微观尺度和高重复率下的面内热扩散率的测量技术。考虑到该方法在快速过程中的应用,已经定量评估了在单个测量时间内特性变化对测量值的影响。我们已经通过强制瑞利散射法开发了一种面内热扩散率的测量系统,这是一种光学技术,其测量时间小于1毫秒,并且在局部局部观察区域。在本系统中,每10 ms进行一次热扩散率测量。即重复率高达每秒100个数据。对具有多个重复率的聚甲基丙烯酸甲酯板的初步测量结果证明了该技术在追踪高速现象方面的可靠性。

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