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A study of cold metal transfer clads in nickel-base INCONEL 718 superalloy

机译:镍基INCONEL 718合金中冷金属熔覆层的研究

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摘要

A study of microstructural and geometrical characteristics of cold metal transfer (CMT) clads in nickel-base INCONEL 718 superalloy was carried out. The CMT process was demonstrated to be suitable for low-dilution cladding of INCONEL 718 superalloy, with the ability to produce defect-free clads, and has a great potential to be used as a repair method for the alloy. Microstructural study revealed that the clads were free from porosity and cracking, and complete bonding of the clads with the substrate was achieved in all weldments. Results from statistical analysis by using 3-level full factorial design showed the relationship between the selected welding parameters and the geometrical characteristics of the clads. Regression models were developed for predicting weld characteristics. Analysis of variance (ANOVA) was used to test the adequacy of the regression models, which showed that the models are useful for optimizing the welding parameters. Also, the wire feed speed appeared to be linearly related with heat input based on the parameters used during the synergic CMT welding, which consequently influenced the shape and size of the weld beads and the extent of dilution of the weld metal with the substrate when other parameters were kept constant. Additionally, the ease of adding successive weld passes for material build-up depends significantly on the contact angle between the weld bead and the substrate. The result showed that the closer the contact angle is to 90°, the more difficult it is to add successive passes to existing clads. A contact angle greater than 115° appears to be more convenient for adding successive passes. The outcome of this work showed that the relatively new CMT process, with the choice of suitable welding parameters, is useful for repair build-up of affected areas of worn-out and service-damaged components of gas turbines and other high-temperature equipment that are manufactured from nickel-base superalloys.
机译:进行了镍基INCONEL 718高温合金中冷金属转移(CMT)包层的微观结构和几何特性的研究。事实证明,CMT工艺适合于INCONEL 718合金的低稀释熔覆层,具有产生无缺陷熔覆层的能力,并且有很大的潜力用作合金的修复方法。显微组织研究表明,包层没有气孔和裂纹,并且在所有焊件中都实现了包层与基材的完全粘合。使用三级全因子设计进行的统计分析结果表明,所选焊接参数与包层的几何特性之间存在关系。开发了回归模型来预测焊接特性。方差分析(ANOVA)用于检验回归模型的充分性,这表明模型对于优化焊接参数很有用。同样,基于协同CMT焊接期间使用的参数,焊丝进给速度似乎与热量输入呈线性关系,因此影响焊缝的形状和尺寸以及焊缝金属在基材上的稀释程度。参数保持恒定。另外,增加连续焊道以增加材料堆积的难易程度很大程度上取决于焊道与基材之间的接触角。结果表明,接触角越接近90°,向现有包层添加连续焊道的难度就越大。接触角大于115°似乎更便于添加连续通过。这项工作的结果表明,通过选择合适的焊接参数,相对较新的CMT工艺可用于修复燃气轮机和其他高温设备的磨损和维修损坏部件的受影响区域的积聚。由镍基超级合金制成。

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  • 来源
    《Materials & design》 |2014年第5期|51-59|共9页
  • 作者

    O.T. Ola; F.E. Doern;

  • 作者单位

    School of Transportation, Aviation and Manufacturing, Red River College of Applied Arts, Science and Technology, 2055 Notre Dame Ave., Winnivez, MB R3H 0J9, Canada;

    School of Transportation, Aviation and Manufacturing, Red River College of Applied Arts, Science and Technology, 2055 Notre Dame Ave., Winnivez, MB R3H 0J9, Canada;

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

    Nickel-base superalloy; Cold metal transfer; Cladding; Dilution; Welding; Heat input;

    机译:镍基高温合金;冷金属转移;覆层稀释;焊接;热量输入;

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