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核电接管安全端异种金属焊接研究现状与展望

Research status and future outlook of dissimilar metal welding for nuclear power nozzle-to-safe-end joints

  • 摘要: 核电设备接管安全端是核电站一回路中关键焊接结构件,通常由低合金高强钢与不锈钢异种金属通过镍基合金或不锈钢焊材焊接而成,由于其长期处于强烈的中子辐照与高温高压水腐蚀环境中,对其热稳定性、力学性能、界面连接可靠性以及整体服役寿命提出了更加苛刻的要求,目前如何实现接管安全端高质量焊接仍然是国内外研究的热点及难点.因此,文中结合国内外文献,围绕接管安全端异种金属焊接冶金问题、配套焊材、焊接方法和接头可靠性4个方面,系统综述了接管安全端异种金属焊接的研究现状,并对未来需进一步深入研究的方向进行了展望,以期为后续提高此类接头质量和可靠性的研究提供参考.

     

    Abstract: The nozzle-to-safe-end joint of nuclear power equipment is a key welded structure in the primary circuit of nuclear power plants. It is usually formed by welding dissimilar metals of low-alloy high-strength steel and stainless steel using nickel-based alloy or stainless steel welding materials. Due to its long-term exposure to intense neutron irradiation and high-temperature and high-pressure water corrosion environments, more stringent requirements are imposed on its thermal stability, mechanical properties, interfacial connection reliability, and overall service life. At present, how to achieve high-quality welding of nozzle-to-safe-end joints remains a research focus and difficulty in China and internationally. Therefore, based on Chinese and international literature, the research status of dissimilar metal welding for nozzle-to-safe-end joints was systematically reviewed from four aspects: metallurgical issues, compatible welding materials, welding methods, and joint reliability. Furthermore, future research directions requiring in-depth study were discussed to provide a reference for subsequent studies on improving the quality and reliability of such joints.

     

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