The nickel super alloy 625 is commonly used in structures on solid solution state but has its applicability widespread in aeronautic, aerospace, marine, chemical and petrochemical industries when improvement on mechanical resistance increased by age-hardening treatments are performed. In this study the grain growth, precipitation and phase transformation was evaluated in a commercial superalloy 625. Grain growth at 980 °C, 1038 °C, 1100°C and 1150 °C and the correspondent phase transformation was evaluated during the solubilization times of 0, 30, 60, 180 and 360 minutes. A comparison between single aging at 621 °C, 732 °C and 855 °C and the double aging heat treatments combination at 621 °C and 732 °C was investigated by SEM, hardness test and tensile tests. As a consequence of heat treatment in nickel alloys the high temperature can influences negatively reducing the corrosion resistance, an important characteristic for this group of alloy that was evaluated according the ASTM G28 method A.
La superlega di nichel 625 è comunemente utilizzata in strutture allo stato solido, ma ha un'ampia applicabilità nell'industria aeronautica, aerospaziale, navale, chimica e petrolchimica, quando vengono effettuati trattamenti di invecchiamento per migliorare la resistenza meccanica. In questo studio sono stati valutati l'accrescimento dei grani, la precipitazione e la trasformazione di fase in una superlega IN 625 commerciale. La crescita dei grani a 980 °C, 1038 °C, 1100 °C e 1150 °C e la corrispondente trasformazione di fase sono state valutate durante i tempi di solubilizzazione di 0, 30, 60, 180 e 360 minuti. Un confronto tra l'invecchiamento singolo a 621 °C, 732 °C e 855 °C e la combinazione di trattamenti termici a doppio invecchiamento a 621 °C e 732 °C è stato analizzato mediante SEM, prove di durezza e prove di trazione. Come conseguenza del trattamento termico nelle leghe di nichel, l'alta temperatura può influire negativamente sulla resistenza alla corrosione, una caratteristica importante per questo gruppo di leghe, che è stata valutata secondo il metodo ASTM G28 A.
Influence of heat treatment on metallurgical characteristics of IN 625
LUÍS HENRIQUE, PIZETTA ZORDÃO
2023
Abstract
The nickel super alloy 625 is commonly used in structures on solid solution state but has its applicability widespread in aeronautic, aerospace, marine, chemical and petrochemical industries when improvement on mechanical resistance increased by age-hardening treatments are performed. In this study the grain growth, precipitation and phase transformation was evaluated in a commercial superalloy 625. Grain growth at 980 °C, 1038 °C, 1100°C and 1150 °C and the correspondent phase transformation was evaluated during the solubilization times of 0, 30, 60, 180 and 360 minutes. A comparison between single aging at 621 °C, 732 °C and 855 °C and the double aging heat treatments combination at 621 °C and 732 °C was investigated by SEM, hardness test and tensile tests. As a consequence of heat treatment in nickel alloys the high temperature can influences negatively reducing the corrosion resistance, an important characteristic for this group of alloy that was evaluated according the ASTM G28 method A.| File | Dimensione | Formato | |
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https://hdl.handle.net/20.500.14242/204760
URN:NBN:IT:POLIMI-204760