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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Parameter optimization of laser cladding process and resulting microstructure for the repair of tenon on steam turbine blade
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Parameter optimization of laser cladding process and resulting microstructure for the repair of tenon on steam turbine blade

机译:激光熔覆工艺参数优化及显微组织修复汽轮机叶片榫

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摘要

Process parameters are crucial to the quality of laser cladding; however, these values are generally determined through trial and error, which brings with it tremendous costs in time and manpower. This study employed the Taguchi Method to determine the optimal parameters for tenon repair on a steam turbine blade using multi-layer laser cladding. In the following experiments, we focused on the quality characteristic of dilution rate (DR). We then performed experiments to verify the effectiveness of the Taguchi results. Analysis of the microstructure and hardness properties of the weldment revealed superior grain refinement in the fusion zone (FZ), compared to the base metal (BM) and specimens that had undergone tempering treatment (TT) at 700 degrees C for 2 h, resulting in enhanced hardness. Our results demonstrate the effectiveness of the proposed parameter settings in the repair of a damaged tenon, resulting in mechanical properties exceeding those in the BM. Prior to the application of these parameters in the field, mock-up trials were performed to ensure that the repaired tenon met minimum design standards with regard to tensile strength. (C) 2015 Elsevier Ltd. All rights reserved.
机译:工艺参数对于激光熔覆质量至关重要。但是,这些值通常是通过反复试验确定的,这将花费大量的时间和人力。这项研究采用了Taguchi方法来确定采用多层激光熔覆的汽轮机叶片榫修复的最佳参数。在以下实验中,我们集中于稀释率(DR)的质量特征。然后,我们进行了实验以验证田口结果的有效性。对焊件的显微组织和硬度特性的分析表明,与贱金属(BM)和在700摄氏度下进行回火处理(TT)的试样相比,在熔合区(FZ)的晶粒细化效果更好,增强硬度。我们的结果证明了所提出的参数设置在修复损坏的榫眼中的有效性,从而导致机械性能超过了BM中的机械性能。在将这些参数应用于现场之前,先进行了模型试验,以确保修复后的榫在拉伸强度方面达到最低设计标准。 (C)2015 Elsevier Ltd.保留所有权利。

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