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作 者:李娜 李超 LI Na;LI Chao(Nanyang Technical College,Nanyang 473000,China;Nanyang Normal University,Nanyang 473000,China)
机构地区:[1]南阳技师学院,河南南阳473000 [2]南阳师范学院,河南南阳473000
出 处:《电镀与环保》2020年第1期34-36,共3页Electroplating & Pollution Control
摘 要:在汽车用碳锰钢(16Mn钢)表面制备了化学镀Ni-Mo-P合金镀层,并研究了pH值对化学镀Ni-Mo-P合金镀层性能的影响。结果表明:升高pH值有利于增大化学镀Ni-Mo-P合金镀层的沉积速率及厚度。但当pH值大于10时,镀液容易发生水解。随着pH值的增大,化学镀Ni-Mo-P合金镀层中钿的质量分数逐渐提高,进一步提高了化学镀Ni-Mo-P合金镀层的显微硬度和耐蚀性。化学镀Ni-Mo-P合金镀层呈现出典型的颗粒结构,增大pH值有利于细化晶粒。当pH值为11时化学镀Ni-Mo-P合金镀层具有最高的显微硬度和最佳的耐蚀性。Electroless Ni-Mo-P alloy coating was prepared on the surface of carbon manganese steel(16Mn steel)for automobile,and the effect of pH value on the properties of electroless Ni-Mo-P alloy coating was studied.The results showed that increasing the pH value was beneficial to accelerate the deposition rate and increase the thickness of electroless Ni-Mo-P alloy coating.The bath was easy to hydrolyze when the pH value was higher than 10.With the increase of pH value,the mass fraction of molybdenum in electroless Ni-Mo-P alloy coating increased gradually resulting in a further improvement of the microhardness and corrosion resistance of electroless Ni-Mo-P alloy coating.Electroless Ni-Mo-P alloy coating exhibited a typical granular structure,and increasing the pH value was beneficial to refine the grains.The electroless Ni-Mo-P alloy coating prepared under the condition of pH=11 possessed the highest microhardness and best corrosion resistance.
关 键 词:化学镀Ni-Mo-P合金镀层 PH值 16MN钢 显微硬度 耐蚀性
分 类 号:TQ153[化学工程—电化学工业]
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