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Thermal Spray and Weld Repair Alloys for the Repair of Cavitation Damage in Turbines and Pumps: A Technical Note

机译:用于修复汽轮机和泵中汽蚀损伤的热喷涂和焊接修复合金:技术说明

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摘要

The cavitation and erosion resistance of 21 thermal spray coatings and four weld repair materials were investigated in the laboratory using cavitation jet and slurry erosion testing. Of the thermal spray coatings, Stellite 6 deposited by the high velocity oxyfuel (HVOF) process had the lowest cavitation rate (11.7 mg/h). This was higher than the corresponding cavitation rate (3.2mg/h) of 308 stainless steel weld metal currently used as a reference. In the slurry erosion testing, the volume loss of Stellite 6 applied by the HVOF process was 5.33 cubic mm/h, much lower than the corresponding loss (11.17 cubic mm/h) in the currently used stainless steel 304 reference. Furthermore, the electrochemical potential difference between the carbon steel and HVOF sprayed Stellite 6 coating was 0.25 volts, half the potential difference between the 304 stainless steel carbon steel substrate, and will result in reduced galvanic corrosion of the substrate near the contact areas. Stellite 6 deposited by the HVOF process was recommended for repair of damage resulting from erosion and subsequent cavitation by caused by surface roughening.
机译:在实验室中使用气蚀射流和浆液腐蚀试验研究了21种热喷涂涂层和四种焊接修复材料的抗气蚀性和抗腐蚀能力。在热喷涂涂层中,通过高速含氧燃料(HVOF)工艺沉积的Stellite 6的空化率最低(11.7 mg / h)。这高于当前用作参考的308不锈钢焊接金属的相应空化率(3.2mg / h)。在泥浆侵蚀测试中,通过HVOF工艺施加的Stellite 6的体积损失为5.33立方毫米/小时,远低于当前使用的304不锈钢参考中的相应损失(11.17立方毫米/小时)。此外,碳钢和HVOF喷涂的Stellite 6涂层之间的电化学电势差为0.25伏,是304不锈钢碳钢基底之间的电势差的一半,并且将减少接触区域附近基底的电化腐蚀。建议使用HVOF工艺沉积的Stellite 6来修复由于腐蚀和表面粗糙引起的空化而造成的损坏。

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