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首页> 外文期刊>Tribology International >Wear Performance of incoloy 800HT and inconel 617 in various surface conditions for high-temperature gas-cooled reactor components
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Wear Performance of incoloy 800HT and inconel 617 in various surface conditions for high-temperature gas-cooled reactor components

机译:incoloy 800ht和Inconel 617的磨损性能在各种表面条件下进行高温气体冷却反应器组分

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摘要

Incoloy (TM) 800HT and Inconel (TM) 617 are primary candidate structural materials for high-temperature gas-cooled reactors (HTGRs). Impurities (e.g., H2O, CH4) in the coolant induce corrosion reactions that affect tribological behavior. We investigate the high-temperature tribological performance of the alloys under surface conditions including: conditioned in H2O-containing helium at elevated temperatures, hardened via the carbon-diffusion Kolsterising (R) treatment, and conditioned after hardening. Initial friction coefficients and volume removed serve as metrics for wear performance. We find that wear mechanisms including scuffing, glaze-oxide formation, and oxide-layer wear and break-through are governed by surface hardness, chemistry, and applied load. The formation of a glaze-oxide layer is achieved with an oxide of sufficient mechanical integrity if the oxide-substrate interface is strong and the load is low.
机译:Incoloy(TM)800HT和Inconel(TM)617是高温气冷堆(HTGR)的主要候选结构材料。冷却剂中的杂质(如H2O、CH4)会诱发腐蚀反应,从而影响摩擦学性能。我们研究了合金在表面条件下的高温摩擦学性能,包括:高温下在含氦的H2O中处理,通过碳扩散Kolsterising(R)处理硬化,以及硬化后处理。初始摩擦系数和去除的体积作为磨损性能的指标。我们发现,磨损机制,包括擦伤、釉面氧化物形成、氧化层磨损和穿透,受表面硬度、化学和施加载荷的影响。如果氧化物-衬底界面牢固且负载较低,则通过具有足够机械完整性的氧化物来实现釉面氧化物层的形成。

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