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Synergistic inhibition to dissolution corrosion by de-twinning and precipitation in alumina-forming austenitic steel exposed to lead-bismuth eutectic with 10-8 wt.%oxygen at 600℃
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作者 Decang Zhang Xiaoxin Zhang +4 位作者 Jun Zhang Hao Ren Zhonghui Liao Xian Zeng Qingzhi Yan 《Journal of Materials Science & Technology》 2025年第19期55-67,共13页
This work investigated the original microstructure of cold-worked alumina-forming austenitic steel,along with its precipitation and dissolution corrosion behaviors in lead-bismuth eutectic with 10-8 wt.%oxygen at 600... This work investigated the original microstructure of cold-worked alumina-forming austenitic steel,along with its precipitation and dissolution corrosion behaviors in lead-bismuth eutectic with 10-8 wt.%oxygen at 600℃,using solution-annealed steel for comparison.Anomalously,cold-worked steel presented milder corrosion compared to solution-annealed steel,with average corrosion depths of 314.3 and 401.0μm after 1700 h exposure.Cold working-induced de-twinning transformed the annealing twin boundaries into normal high-angle grain boundaries(NGBs),increasing NGBs proportion from 36%to 89%.The increased NGBs provided more nucleation sites for intergranular barriers composed of alternate NiAl and M23C6 precipitates,thus better obstructing the dissolution attack. 展开更多
关键词 Alumina-forming austenitic steel Lead-bismuth eutectic dissolution corrosion De-twinning PRECIPITATION
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Microstructures and electrochemical behaviors of casting magnesium alloys with enhanced compression strengths and decomposition rates 被引量:1
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作者 Xuewu Li Qingyuan Yu +1 位作者 Xi Chen Qiaoxin Zhang 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2023年第4期1213-1223,共11页
New-type magnesium alloy with prominent solubility and mechanical property lays foundation for preparing fracturing part in petroleum extraction.Herein,Mg-xZn-Zr-SiC alloy is prepared with casting strategy.Electrochem... New-type magnesium alloy with prominent solubility and mechanical property lays foundation for preparing fracturing part in petroleum extraction.Herein,Mg-xZn-Zr-SiC alloy is prepared with casting strategy.Electrochemical and compression tests are conducted to assess the feasibility as decomposable material.Morphology,composition,phase and distribution are characterized to investigate decomposition mechanism.Results indicate that floccule,substrate component and reticulate secondary phase are formed on as-prepared surface.Sample also acts out enhanced compression strength to maintain pressure and guarantee stability in dissolution process.Furthermore,as decomposition time and zinc content increase,couple corrosion intensifies,resulting in gradually enhanced decomposition rate.Rapid sample decomposition is mainly due to basal anode dissolution,micro particle exfoliation and poor decomposition resistance of corroding product.Such work shows profound significance in preparing new-type accessible alloy to ensure rapid dissolution of fracturing part and guarantee stable compression strength in oil-gas reservoir exploitation. 展开更多
关键词 Magnesium alloy corrosion dissolution Compression strength Electrochemical test Decomposition mechanism
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Behavior of ZrO_2-C Refractories in Thin-strip Casting of Steel
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作者 Abhishek KUMAR Vivek THAPLIYAL Jeffrey D.SMITH 《China's Refractories》 CAS 2015年第1期1-6,共6页
Zirconia graphite refractory is used as a core-nozzle in the thin-strip casting of steel. Post-mortem analysis of used refractory was performed in an effort to establish the failure mechanism. Corrosion behavior was s... Zirconia graphite refractory is used as a core-nozzle in the thin-strip casting of steel. Post-mortem analysis of used refractory was performed in an effort to establish the failure mechanism. Corrosion behavior was studied against molten steel with Mn O- SiO 2based liquid inclusions. Corrosion of these materials involves dissolution and oxidation of graphite in the matrix followed by penetration of liquid slag leading to degradation of ZrO 2particles. Thermodynamic equilibrium calculations were performed to study this corrosion mechanism. 展开更多
关键词 zirconia-graphite corrosion dissolution thermodynamic-modeling
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