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Mechanical and corrosion behavior of amorphous and crystalline electroless Ni–W–P coatings

机译:无定形和结晶化学镀镍–钨–磷涂层的机械和腐蚀行为

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摘要

Two types of electroless Ni–W–P coatings: nanocrystalline with low P and amorphous with higher P content are investigated. Scanning probe microscopy is applied to study their morphology. Textured nanocrystalline coatings consist of coarse pyramids built of nanometer thick lamellas. The surface morphology of amorphous coatings is much finer and uniform. Nanohardness of all coatings depends on W content. Microhardness is increasing during the heat treatment up to 350 °C due to nickel phosphide precipitation affected by tungsten also. The wear resistance of nanocrystalline Ni–W–P coatings is much higher than that of amorphous in spite of the similar tungsten content in both. Lower corrosion resistance of amorphous Ni–W–P coatings is found by weight loss method during long-term immersion in 5 % NaCl. Electrochemical tests by potentiodynamic polarization curves in two model corrosion media—solutions of 0.5MH_2SO_4 and 5 % NaCl—are performed. The corrosion of bi-layered Ni–W–P/Ni–P and Ni–W–P/Ni–Cu–P deposits on mild steel is also investigated. The results prove that an electroless Ni–W–P coating on mild steel extremely improves its mechanical and corrosion behavior. It is demonstrated that in addition to deposit’s structure and composition, the distribution and chemical state of alloy ingredients are also responsible for its properties.
机译:研究了两种化学镀Ni–W–P涂层:低P的纳米晶和高P的非晶态。扫描探针显微镜用于研究其形态。织构化的纳米晶体涂层包括由纳米厚的薄片构成的粗金字塔。无定形涂层的表面形态要细得多且均匀。所有涂层的纳米硬度取决于W含量。在高达350°C的热处理过程中,由于磷化镍沉淀也受到钨的影响,因此显微硬度在不断提高。尽管两者中钨含量相似,但纳米晶Ni–W–P涂层的耐磨性仍远高于非晶态。在长期浸泡在5%NaCl中的过程中,通过失重法发现非晶态Ni–W–P涂层的耐腐蚀性较低。通过电位动力学极化曲线在两种模型腐蚀介质(0.5MH_2SO_4和5%NaCl的溶液)中进行了电化学测试。还研究了双层Ni–W–P / Ni–P和Ni–W–P / Ni–Cu–P沉积物在低碳钢上的腐蚀。结果证明,在低碳钢上进行化学镀Ni–W–P涂层可以极大地改善其机械性能和腐蚀性能。事实证明,除了沉积物的结构和组成外,合金成分的分布和化学状态也对其性能有影响。

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