腐蚀
热重分析
材料科学
因科镍合金
共晶体系
扫描电子显微镜
冶金
重量变化
因科镍合金625
傅里叶变换红外光谱
化学工程
复合材料
微观结构
合金
工程类
内科学
肥胖
减肥
医学
作者
M. Prem Kumar,M. Manikandan
标识
DOI:10.1177/09544062221148886
摘要
The global impact on climate change switches to the use of renewable energy. Nowadays, the concentrated solar power (CSP) power plant received more attention in the researcher’s interest. The major problem associated with the CSP plant is the hot corrosion in the container materials exposed under phase change material (PCM). In the present study, Inconel 617 and 625 were used as container materials and Na 2 SO 4 (50 Wt.%) +Diatomite (50 Wt.%) as PCM. The PCM based environmental assisted hot corrosion studies were conducted on container materials at 900°C for 40, 80, and 120 h duration. Differential scanning calorimetry (DSC) results confirmed the selected PCM melting temperature. The thermogravimetric analysis (TGA) is performed to determine the mass loss of the PCM. Fourier transform infrared (FT-IR) analysis confirmed the chemical compatibility between Na 2 SO 4 and diatomite. After hot corrosion at 120 h for 900°C, the weight change values are 3.1 and 2.6 mg/cm 2 for Inconel 617 and Inconel 625. In addition, the X-Ray Diffraction (XRD) and Scanning electron microscopy/energy dispersive spectroscopy (SEM/EDS) analysis were carried out to evaluate the hot corrosion behavior. The result indicates that the formation of NiO, Cr 2 O 3 , and SiO 2 provides better resistance to corrosion in both container materials. Overall, Inconel 625 shows good corrosion resistance compared to Inconel 617 in a PCM environment.
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