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On the Mutual Interaction between Mechanical Stresses and Internal Corrosion during Isothermal and Cyclic Oxidation of Nickel-Base Superalloys

机译:镍基高温合金等温和循环氧化过程中机械应力与内部腐蚀之间的相互作用

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摘要

Thermal cycling has been observed to cause a transition from superficial alumina formation to internal oxidation and nitridation, an effect that was shown to depend on the specimen thickness and geometry, which can be described by a spalling-probability model. Once protection by a dense and adherent alumina scale got lost, the internal-corrosion rate is determined by the diffusivity and solubility of nitrogen and oxygen in the alloy. These parameters seem to depend not only on the temperature and the alloy composition but also on the applied mechanical stress. Internal nitridation under a superimposed creep loading was found to follow a higher rate constant than under just isothermal exposure. This effect can probably be attributed to dislocation-pipe diffusion, a mechanism which has been claimed also to be relevant for outward solvent diffusion during internal corrosion, a phenomenon, which was observed as a stress-relief mechanism during various internal-reaction processes.
机译:已经观察到热循环会导致从表面氧化铝的形成过渡到内部氧化和氮化,这种现象显示取决于样品的厚度和几何形状,这可以通过剥落概率模型来描述。一旦失去了致密和附着的氧化铝垢的保护作用,内部腐蚀速率就由氮和氧在合金中的扩散性和溶解度决定。这些参数似乎不仅取决于温度和合金成分,还取决于所施加的机械应力。发现在叠加蠕变载荷下的内部氮化比仅在等温暴露下具有更高的速率常数。这种作用可能归因于位错管扩散,这种机理据称也与内部腐蚀过程中的向外溶剂扩散有关,这种现象在各种内部反应过程中被认为是消除应力的机理。

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