焊接电弧等离子体热学特性测量方法的研究进展

Research progress on measurement methods of thermal properties of welding arc plasma

  • 摘要: 测量焊接电弧等离子体的温度、粒子密度等参数,有助于深入理解和研究焊接电弧等离子体的物理性质,从而为寻找提高焊接质量、改善焊接工艺的新途径提供了基础数据。文中介绍了几种常用的接触法和非接触法的使用原理和工作特点,比如Langmuir探针法、热电偶法、光学干涉法、光谱分析法等,着重介绍了焊接电弧等离子体的光谱理论原理和几种光谱测量方法,主要阐述和分析了计算焊接电弧温度场的三种方法的测量原理和优缺点,如标准温度法、谱线相对强度法(双线法、Boltzmann作图法)和谱线绝对强度法,这三种方法使用的条件和焊接环境各不相同。这些计算方法有助于测量焊接电弧等离子体的温度场分布,有助于在实际研究过程中选择合适的等离子体测量方法和计算手段。

     

    Abstract: Measuring parameters of welding arc plasma,such as temperature and particle density,contributes to deeply understanding and studying physical properties of welding arc plasma,which provides basic data for finding new ways to improve welding quality and welding process. Usage principles and working characteristics of several commonly used contact and non-contact methods were reviewed in this paper,such as Langmuir probe method,thermocouple method,optical interference method and spectral analysis method. The principle of spectral theory of welding arc plasma and several methods of spectral measurement were highlighted. The measurement principles,advantages and disadvantages of three methods,namely normal temperature method,relative intensities method of spectral lines( two-line intensity correlation method and the Boltzmann plot method) and absolute intensities method of spectral lines,for calculating the temperature field of welding arc are described and analyzed,while the three methods had different application conditions and welding environment between each other. These calculation methods help to measure the temperature field distribution of the welding arc plasma,and help to select appropriate plasma measurement methods and calculation methods in the actual research process.

     

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