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Biomass boiler heat‑exchanger tubes suffer serious multi‑source high‑temperature corrosion from alkali salts, water vapor, sulfur‑chlorine species, resulting in tube burst accidents and limiting power‑generation efficiency. This work investigates multi‑source corrosion mechanisms and evaluates laser‑clad Stellite 6 Co‑based protective coatings for TP347H steel.
The dual effect of water vapor, fuel‑condition coupling effect, and competitive regulation of sulfur‑chlorine synergy were clarified. A service‑oriented failure model of Ni‑Al coatings was established, describing γ‑Al2O3 destruction by gaseous KCl, aluminate formation, AlCl3 volatilization and final coating degradation. Dense crack‑free Stellite 6 coatings were prepared by laser cladding. Under 600 ℃ mixed salt‑gas corrosion tests, the Co‑based coating produced compact CoO‑Cr2O3 oxide scales and showed superior corrosion resistance compared with bare TP347H. Combined with micro‑characterization and first‑principles calculation, a synergistic protection mechanism of surface oxide barrier and selective intergranular corrosion was proposed.
10月16日
2026
10月18日
2026
初稿截稿日期
2024年10月18日 中国 Dalian
第9届表面工程国际会议2021年12月03日 中国 Weihai
2021表面工程国际会议(第8届)2016年10月22日 中国 成都市
第七届表面工程国际会议2013年11月18日 韩国
2013年表面工程国际大会
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