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Structural Characterization and Mechanical Properties of As-plated and Heat Treated Electroless Ni-B-P Alloy Coatings

机译:电镀和热处理的化学镀Ni-B-P合金涂层的结构表征和力学性能

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The Ni-B-P alloy coatings were made autocatalytically (electroless) using an alkaline plating bath with nickel chloride hexahydrate (NiCl2.6H2O) as the source of nickel ions, sodium borohydride (NaBH4) and sodium hypophosphite (NaH2PO2) as reducing agents and source of boron and phosphorous ions, respectively. The effects of bath concentrations on the plating rate, composition of coating, surface morphology, structural features and microhardness have been studied by varying NaBH4 concentration in the plating bath from 0.2 to 0.8 g/l while keeping NaH2PO2 concentration constant (12 g/l). The plating rate and boron content of the electroless Ni-B-P ternary alloy coatings increased with increasing NaBH4 concentration in the plating bath. The scanning electron microscopic images revealed that the morphology of the coating changed from corn cob structure to coarse cauliflower structure with increasing borohydride concentration in the plating bath. Broadening of X-ray diffraction peak is observed, as the borohydride concentration is increased in the plating bath, which is attributed to the large reduction in the crystallite size of the Ni-B-P alloy coatings. The microhardness values of the coating increased with increasing borohydride concentration in the plating bath. The as-plated Ni-B-P alloy coating containing higher boron content (3.2 wt%) shows higher hardness of 700 HV compared to other Ni-B-P alloy coatings. The XRD patterns of heat treated Ni-B-P alloy coatings (500 ?C) show Ni3B intermetallic peaks along with Ni peaks. The presence of Ni3B intermetallic compound significantly increases the microhardness values of the heat treated Ni-B-P alloy coatings.
机译:使用碱性电镀液以六水合氯化镍(NiCl2.6H2O)作为镍离子源,硼氢化钠(NaBH4)和次磷酸钠(NaH2PO2)作为还原剂和金属的来源对Ni-BP合金涂层进行自动催化(化学处理)。硼和磷离子。在保持NaH2PO2浓度恒定(12 g / l)的条件下,通过将电镀液中的NaBH4浓度从0.2更改为0.8 g / l,研究了镀液浓度对镀覆速率,镀层组成,表面形态,结构特征和显微硬度的影响。 。化学镀Ni-B-P三元合金镀层的镀覆速率和硼含量随镀浴中NaBH4浓度的增加而增加。扫描电子显微镜图像显示,随着镀液中硼氢化物浓度的增加,涂层的形态从玉米芯结构变为粗花椰菜结构。随着镀液中硼氢化物浓度的增加,观察到X射线衍射峰变宽,这归因于Ni-B-P合金涂层的微晶尺寸大大减小。涂层的显微硬度值随电镀液中硼氢化物浓度的增加而增加。与其他Ni-B-P合金涂层相比,含硼量更高(3.2重量%)的Ni-B-P合金涂层的硬度更高,为700 HV。热处理过的Ni-B-P合金涂层(500°C)的XRD图谱显示Ni3B金属间化合物峰和Ni峰。 Ni3B金属间化合物的存在显着提高了热处理过的Ni-B-P合金涂层的显微硬度值。

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