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微波熔覆在304不锈钢上制备的Ni-Si-LaO涂层的微观结构与性能

The Microstructure and Properties of Ni-Si-LaO Coatings Deposited on 304 Stainless Steel by Microwave Cladding.

作者信息

Dwivedi Shashi Prakash, Sharma Shubham, Sharma Kanta Prasad, Kumar Abhinav, Agrawal Ashish, Singh Rajesh, Eldin Sayed M

机构信息

G.L. Bajaj Institute of Technology & Management, Greater Noida 201310, India.

Mechanical Engineering Department, University Centre for Research and Development, Chandigarh University, Mohali 140413, India.

出版信息

Materials (Basel). 2023 Mar 9;16(6):2209. doi: 10.3390/ma16062209.

Abstract

In this investigation, microwave radiation was used alongside a combination of Ni powder, Si powder, and LaO (Lanthanum oxide) powder to create surface cladding on SS-304 steel. To complete the microwave cladding process, 900 W at 2.45 GHz was used for 120 s. "Response surface methodology (RSM)" was utilized to attain the optimal combination of microwave cladding process parameters. The surface hardness of the cladding samples was taken as a response. The optimal combination of microwave cladding process parameters was found to be Si (wt.%) of 19.28, a skin depth of 4.57 µm, irradiation time of 118 s, and LaO (wt.%) of 11 to achieve a surface hardness of 287.25 HV. Experimental surface hardness at the corresponding microwave-cladding-process parameters was found to be 279 HV. The hardness of SS-304 was improved by about 32.85% at the optimum combination of microwave cladding process parameters. The SEM and optical microscopic images showed the presence of Si, Ni, and LaO particles. SEM images of the "cladding layer and surface" showed the "uniform cladding layer" with "fewer dark pixels" (yielding higher homogeneity). Higher homogeneity reduced the dimensional deviation in the developed cladding surface. XRD of the cladded surface showed the presence of FeNi, NiSi, FeNi, NiSi, NiC, NiC, and LaO phases. The "wear rate and coefficient of friction" of the developed cladded surface with 69.72% Ni, 19.28% Si, and 11% LaO particles were found to be 0.00367 mm/m and 0.312, respectively. "Few dark spots" were observed on the "corroded surface". These "dark spots" displayed "some corrosion (corrosion weight loss 0.49 mg)" in a "3.5 wt.% NaCl environment".

摘要

在本研究中,微波辐射与镍粉、硅粉和氧化镧粉相结合,用于在SS-304钢上形成表面熔覆层。为完成微波熔覆过程,使用2.45 GHz、900 W的功率,持续120秒。采用“响应面法(RSM)”来获得微波熔覆工艺参数的最佳组合。将熔覆样品的表面硬度作为响应指标。发现微波熔覆工艺参数的最佳组合为:硅(重量百分比)为19.28,趋肤深度为4.57 µm,辐照时间为118秒,氧化镧(重量百分比)为11,以实现287.25 HV的表面硬度。在相应微波熔覆工艺参数下的实验表面硬度为279 HV。在微波熔覆工艺参数的最佳组合下,SS-304的硬度提高了约32.85%。扫描电子显微镜(SEM)和光学显微镜图像显示存在硅、镍和氧化镧颗粒。“熔覆层和表面”的SEM图像显示“均匀的熔覆层”,“暗像素较少”(均匀性更高)。更高的均匀性降低了所形成熔覆表面的尺寸偏差。熔覆表面的X射线衍射(XRD)显示存在FeNi、NiSi、FeNi、NiSi、NiC、NiC和氧化镧相。发现含有69.72%镍、19.28%硅和11%氧化镧颗粒的所形成熔覆表面的“磨损率和摩擦系数”分别为0.00367 mm/m和0.312。在“腐蚀表面”观察到“少量黑点”。在“3.5重量百分比的氯化钠环境”中,这些“黑点”显示出“一定程度的腐蚀(腐蚀失重0.49毫克)”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b58/10052928/1fb594fd4310/materials-16-02209-g001.jpg

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