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Processing and characterization of Inconel 625 Nickel base Superalloy

机译:Inconel 625镍基高温合金的加工与表征

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摘要

Nickel-based superalloy Inconel 625 is widely used in aeronautical, aerospace, chemical, petrochemical and marine applications due to its good mechanical properties, weldability and resistance to high temperature corrosion on prolonged exposure to aggressive environments. It is a solid solution strengthened medium strength superalloy, which contains chromium, molybdenum and niobium as alloying additions. Considering the chemistry and specification requirements of the alloy, it was processed through vacuum induction melting (VIM) process followed by electro slag remelting(ESR) route to obtain alloy with controlled gas and inclusion contents. Homogenisation cycle was selected and was carried out at 1170℃ temperature to obtain uniformity in chemistry and microstructure. Chemical homogeneity was confirmed through analysis of samples from top, middle and bottom of the secondary ESR ingot. Hot working range was decided considering the flowability of superalloy and the same was carried out under close monitoring of temperature and with specified amount of reduction per stroke. Intermediate reheating and reduction during forging was noted to be an important aspect so to avoid cracking during forging. Processing parameters were established to obtain forgings of different thicknesses with sound ultrasonic quality. Microstructure analysis revealed single phase austenitic grain structure with ASTM grain size no. 4-7, confirming that material has undergone sufficient amount of mechanical working. Mechanical testing was carried out and the mechanical properties were found to be meeting the requirement. Present paper provides details of melting process selection, thermomechanical processing and characterization of the superalloy to achieve the targeted mechanical properties.
机译:镍基超级合金Inconel 625由于其良好的机械性能,可焊性以及在长期暴露于侵蚀性环境下的耐高温腐蚀性能,因此广泛用于航空,航天,化学,石化和海洋应用。它是一种固溶强化的中强度高温合金,含有铬,钼和铌作为合金添加剂。考虑到合金的化学性质和规格要求,先采用真空感应熔炼(VIM)工艺,再进行电渣重熔(ESR)工艺,以控制气体和夹杂物的含量获得合金。选择均质化周期,并在1170℃的温度下进行,以获得化学和微观结构的均一性。通过分析次级ESR铸锭顶部,中部和底部的样品来确认化学均一性。确定高温工作范围时要考虑到高温合金的流动性,并且在严密监控温度和规定的每行程减量的情况下进行高温工作。注意到锻造期间的中间再加热和还原是重要的方面,以便避免在锻造期间开裂。建立加工参数以获得具有声音超声质量的不同厚度的锻件。显微组织分析表明,单相奥氏体晶粒结构的ASTM晶粒尺寸为。参见图4-7,确认材料已经进行了足够的机械加工。进行了机械测试,发现机械性能符合要求。本论文详细介绍了熔融合金的选择,热机械加工和超级合金的表征,以实现目标机械性能。

著录项

  • 来源
    《Materials science forum》 |2015年第2015期|38-40|共3页
  • 作者单位

    Materials and Mechanical Entity, Vikram Sarabhai Space Centre, Trivandrum-22;

    Materials and Mechanical Entity, Vikram Sarabhai Space Centre, Trivandrum-22;

    MishraDhatu Nigam Limited, Hyderabad;

    Materials and Mechanical Entity, Vikram Sarabhai Space Centre, Trivandrum-22;

    Materials and Mechanical Entity, Vikram Sarabhai Space Centre, Trivandrum-22;

    Materials and Mechanical Entity, Vikram Sarabhai Space Centre, Trivandrum-22;

    Materials and Mechanical Entity, Vikram Sarabhai Space Centre, Trivandrum-22;

    MishraDhatu Nigam Limited, Hyderabad;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Inconel 625; VIM; Ni based superalloy;

    机译:因科镍合金625;VIM;镍基高温合金;

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