Laser-ultrasonic sensing of surface temperature distribution of a material being heated

I. Ihara, M. Takahashi, K. Katoh
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引用次数: 1

Abstract

A new non-contact method with a laser ultrasonic technique for measuring surface temperature distribution of a material being heated is presented. The principle of the surface temperature measurement is based on temperature dependence of the velocity of the surface acoustic wave (SAW) propagating on a material surface. An effective method consisting of a SAW velocity measurement and an inverse analysis coupled with a one-dimensional finite difference calculation has been developed to determine surface temperature distributions quantitatively. In order to demonstrate the practical feasibility of the method, surface temperature distributions of a steel and aluminium plates are examined. The SAW of each plate is measured during heating using a laser ultrasound interferometer based on photorefractive two-wave mixing. The surface temperature distributions determined by the ultrasonic method almost agree with those measured using an infrared camera.
被加热材料表面温度分布的激光超声传感
提出了一种利用激光超声技术测量被加热材料表面温度分布的非接触方法。表面温度测量的原理是基于表面声波(SAW)在材料表面传播的速度与温度的关系。提出了一种由声表面波速度测量和一维有限差分计算相结合的反分析方法来定量确定表面温度分布。为了证明该方法的实际可行性,对钢和铝板的表面温度分布进行了测试。利用基于光折变双波混频的激光超声干涉仪在加热过程中测量每块板的声表面波。超声法测得的表面温度分布与红外相机测得的表面温度分布基本一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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