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Microstructure and Microhardness of a Laser Additive Forming Repaired Steam Turbine Blade

机译:激光添加剂形成修复汽轮机叶片的微观结构和显微硬度

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The laser additive forming repair (LAFR) of a damaged turbine blade with pre-fabricated defects was carried out. The parameters were as follows: the laser power 800 W, the laser beam diameter 3 mm, the laser beam moving speed 6 mm/s, the 17-4PH powder feeding speed 0.4 L/min. The microstructure and the microhardness were examined along the positions from the 2Cr13 matrix to the 17-4PH LAFRed zone top. The results showed that the pre-fabricated defects were repaired successfully. Three distinguished zones can be recognized, i.e., the column grain zone, the heat affected zone (HAZ), and the 2Cr13 martensite matrix. Optical microscopy and scanning electron microscopy analysis indicated that the LAFRed zone was free of pores and contained very fine martensite variants. The microhardness test results showed that the 2Cr13 matrix possessed the minimum microhardness of about 320 HV. The microhardness profile showed an oscillation feature with the peak value of 440 HV, which is believed to be the result of microstructure modification induced by the cyclic heat input during the LAFR processing. This study confirmed that 17-4PH is a promising material for the laser additive forming repairing of the damaged 2Cr13 steam turbine blade.
机译:进行具有预制造缺陷的损坏涡轮机叶片的激光添加剂形成修复(Lafr)。参数如下:激光功率800W,激光束直径3mm,激光束移动速度6mm / s,17-4ph粉末送速0.4L / min。沿着从2Cr13基质的位置检查微观结构和显微硬度至17-4PH的Lafred区顶部。结果表明,预先制造的缺陷成功修复。可以识别三个杰出的区域,即柱晶区,热影响区(HAZ)和2Cr13马氏体基质。光学显微镜和扫描电子显微镜分析表明,Lafred区没有毛孔,含有非常精细的马氏体变体。微硬度测试结果表明,2Cr13基质具有约320hv的最小微硬度。微硬度曲线显示了峰值的振荡特征,峰值为440HV,据信是由LAFR加工过程中的循环热输入引起的微观结构改性的结果。该研究证实,17-4PH是用于激光添加剂的有希望的材料,用于形成受损的2Cr13汽轮机叶片的修复。

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