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The Influence of Wet-Steam Flow Electrization on the Surface Strength of Turbine Blade Materials

机译:湿蒸汽流动电流对涡轮叶片材料表面强度的影响

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Abstract— The phenomenon of droplet impingement erosion of a wet-steam turbine’s last-stage blades is conditionally considered in the aspect of two “opposing” processes: the force impact of droplets on metal and “resistance” of the metal to this impact. The article places its focus on “resistance” of the metal surface layer to the force impact under the influence of electrified steam and concomitant electrophysical phenomena on its mechanical properties. It has been established that the electrophysical phenomena accompanying wet-steam flow electrization facilitate saturation of the metal with hydrogen (6–10 times higher in comparison with a neutral flow) and have a significant effect on its microhardness (the changes toward its decreasing may be as much as 50%). These changes take place in a thin surface layer, and their extent and nature depend on the flow polarity and also on the frequency and polarity of the electric field induced on the turbine blade. The decrease of microhardness observed in the thin surface layer can be attributed to the phenomenon of local microplasticization, which occurs as a result of facilitating the incipience of microshears when hydrogen cations interact with the dislocation nuclei generated in introducing an indenter. Such plasticization at the microlevel facilitates the development of hydrogen brittleness at the macrolevel. It has been established that, as far as the maximal erosion-induced strength degradation of blade materials is concerned, a positively charged wet steam flow is the most dangerous factor, which most frequently takes place in the case of using water chemistry with pH > 9 (ammonia water chemistry). It is shown that it is possible to alter the development kinetics of destruction caused by droplet impingement erosion by changing the physicochemical properties of thin surface layers of metals.
机译:摘要 - 湿汽轮机的最后舞台叶片的滴撞击腐蚀现象是有条件地考虑的,在两个“相对的”过程中被条件考虑:液滴对金属对金属的“电阻”的力影响。该物品将重点放在金属表面层的“电阻”上,以电气化蒸汽的影响和伴随电神法现象对其机械性能的影响。已经确定,伴随湿蒸汽流动电流的电神法现象促进了金属的饱和度与氢气(与中性流量相比,比较高6-10倍),对其显微硬度具有显着影响(可能的变化可能是下降的多达50%)。这些变化发生在薄的表面层中,并且它们的程度和性质取决于流动极性,并且还取决于在涡轮叶片上引起的电场的频率和极性。在薄表面层中观察到的显微硬度降低可归因于局部微血塑化的现象,其出现的是,当氢阳离子与引入压痕中产生的位错核相互作用时,由于促进了微汗的浓度。在MicroLevel处的这种塑化有助于在MacRoLevel上发育氢脆性。已经确定,就叶片材料的最大腐蚀引起的强度降解而言,正电荷的湿蒸汽流动是最危险的因素,这在使用水化学用pH> 9的情况下最常进行(氨水化学)。结果表明,通过改变薄表面层的金属的物理化学性质,可以改变由液滴冲击侵蚀引起的破坏的显影动力学。

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