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Online Monitoring and Control of Thermo Chemical Heat Treatment Processes by Near Infrared Technology

机译:近红外技术在线监测和控制热化学热处理过程

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Online monitoring systems of thermo-chemical heat treatment processes as nitriding, nitocarburizing, carburizing, for increasing hardness, wear resistance, endurance strength and/or corrosion resistance... are up to now available as gas/atmosphere monitoring systems. This paper presents a new inspection system based on a CCD camera system for monitoring such processes by analyzing the surface condition of the batch. As an example a nitriding process with a typical treatment temperatures range of 350°C to 600°C is presented. A near infrared enhanced CCD camera system equipped with specifically chosen spectral filters is used to measure spectral emittances during the surface modification. In particular the spectral operating range of 950nm to 1150nm of the silicon CCD camera is utilized. The measurement system is based on the principles of ratio pyrometry (dual-band method) known from non-contact temperature measurements, in which two images of the same scene, each taken at slightly different spectral bands, are used to determine the spectral light characteristics. This results in an improved relative sensitivity for spectral changes (i.e. deviations from the gray-body hypothesis) during the surface modification. In conventional heat treatment processes at the beginning of a process all parameters are prescribed firmly such as temperature, pressure, gas, time etc. The system presented enables in situ measurements and a closed a loop control system for an efficient and high-quality heat treatment processes.
机译:在线监测系统的热化学热处理过程作为氮化,镍氢碳化,渗碳,用于提高硬度,耐磨性,耐力强度和/或耐腐蚀性......现在可用作气体/大气监测系统。本文介绍了一种基于CCD摄像机系统的新检测系统,用于通过分析批处理的表面状况来监测此类过程。作为示例,呈现典型处理温度范围为350℃至600℃的氮化过程。配备有专门选择的频谱滤波器的近红外增强CCD摄像头系统用于测量表面改性期间的光谱发射。特别地,利用硅CCD相机950nm至1150nm的光谱工作范围。测量系统基于非接触式温度测量中已知的比率(双频带法)的原理,其中,在其中拍摄的相同场景的两个图像,每次拍摄在稍微不同的光谱带中,用于确定光谱光特性。这导致在表面改性期间的光谱变化的相对敏感性改善(即,与灰度假设的偏差)。在过程开始时的传统热处理过程中,所有参数都牢固地规定,例如温度,压力,气体,时间等。所呈现的系统可以在原位测量和封闭的环路控制系统中实现高效和高质量的热处理。流程。

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