首页> 外文会议>25th International Congress on High-Speed Photography and Photonics Sep 29-Oct 4, 2002 Beaune, France >High-Speed Color Imaging and Ratio Temperature Radiometer by Multi-Spectral Optics
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High-Speed Color Imaging and Ratio Temperature Radiometer by Multi-Spectral Optics

机译:多光谱光学的高速彩色成像和比率温度辐射计

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In order to analyze mechanism of melting and deformation of metal while it is being rapidly heating, or a combusion process, it is important not only to measure the time displacement of a sample and its acceleration, but to measure the change in the temperature distribution of the sample over time. For this puropose, we have developed a new Multi-Spectral Optics. By mounting combining a high-speed camera with our Multi-Spectral Optics system, we have succefully acquired a temperature distribution map and its color image simultaneously. In our system, a color image is composed with three spectrum images from wavelengths, 450 nm, 550 nm and 750 nm. A temperature distribution map can be created from two images in the near infra-red wavelengths, 750 nm and 850 nm, which were obtained by applying the ratio temperature pyrometry method. However, in order to observe and analyze rapid deformation of a sample, it is important to capture vivid images in color. This task requires additional external light. Since a high intensity of emited light will cause an error in temperature, it is very difficult correctly to measure temperature and deformation of the sample at the same time. Temperature measured with near infra-red lights is not be influenced by the external surrounding light. In particular, for taking photos of welding phenomena, it is possible to catpure clear images with excessive lighting without affecting temperature measurement. Moreover, in combusion phenomenon, it is possible to avoid the influence of chemiluminescence caused by radicals such as C_2 in flame.
机译:为了分析金属在快速加热或燃烧过程中的熔化和变形机理,不仅要测量样品的时间位移及其加速度,而且要测量金属的温度分布变化,这一点很重要。随着时间的推移样品。为此,我们开发了一种新的多光谱光学器件。通过将高速摄像机与我们的多光谱光学系统结合安装,我们成功地同时获取了温度分布图及其彩色图像。在我们的系统中,彩色图像由来自450 nm,550 nm和750 nm波长的三个光谱图像组成。可以通过使用比例温度高温法获得的近红外波长为750 nm和850 nm的两个图像创建温度分布图。但是,为了观察和分析样品的快速变形,捕获彩色的生动图像很重要。该任务需要额外的外部光。由于高强度的发射光会引起温度误差,因此很难同时正确地测量温度和样品变形。用近红外灯测得的温度不受周围环境光的影响。尤其是,为了拍摄焊接现象,可以在不影响温度测量的情况下用过多的光线拍摄清晰的图像。另外,在燃烧现象中,可以避免由火焰中的C_2等自由基引起的化学发光的影响。

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