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Heat treatment effect on CNC turning of Incoloy 800H superalloy

机译:CNC转向incoloy 800h超合金的热处理效果

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摘要

Nuclear power plant components, high-temperature furnace, and most of the nuclear reactors are in need of high creep rupture which can be attained by Incoloy 800H superalloy. Based on this, the present research work is aimed to relate the microstructure, mechanical, and machinability of Incoloy 800H in various conditions, namely, solution treated, heat-treated with air cooling, and heat-treated with furnace cooling. The samples were initially heated till 975 degrees C after solution treated and then subjected to the aforesaid heat treatments. The optical microstructures revealed that the fine grains' structure was obtained in the air-cooled sample, whereas coarse grain structure was obtained in a furnace-cooled sample. The heat-treated samples were machined using CNC dry turning process and the machining parameter effects on the machinability aspects were studied, investigated, and reported. Experimental investigations explained clearly that the machinability aspects were significantly influenced by the cooling medium. Furnace-cooled sample had shown improvement in mechanical and machinability performances.
机译:核电站部件,高温炉和大部分核反应堆需要高蠕变破裂,该破裂可以通过Incoloy 800H超合金获得。基于此,目前的研究工作旨在在各种条件下鉴定800h的微观结构,机械和加工性,即溶液处理,用空气冷却热处理,并用炉冷热处理。在处理过的溶液后,最初将样品加热至975℃,然后进行上述热处理。光学微观结构表明,在空气冷却样品中获得了细颗粒结构,而在炉冷却的样品中得到粗晶粒结构。使用CNC干式转动过程加工热处理的样品,研究,研究,研究和报道了对可加工性方面的加工参数效应。实验研究清楚地解释说,可加工性方面受冷却介质的显着影响。炉冷却样品显示出改善机械和机械性能。

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