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Methodology for optimization of pouring variables using bottom pour for low masses of SS304 (<300 kg) in investment casting process (case study)
Authors:Nilesh P Vanikar  Shantipal S Ohol  Saeede Goldar
Affiliation:1. Department of Mechanical Engineering, College of Engineering, Pune, India;2. Electrical Engineering, Amirkabir University of Technology, Tehran, Iran
Abstract:Bottom pour ladles with stopper rod systems are commonly used in the metal casting industry. However, stopper rod bottom-pouring systems have not yet been developed for the lower thermal masses of alloys typically used in the investment casting industry. Large thermal masses used with bottom pour systems are typically limited for ladles larger than 700 kg and to certain alloys with higher fluidity and longer solidification time like cast iron, aluminum alloys etc. In this study, bottom pour ladle designs and low thermal mass refractory systems have been developed and evaluated in production investment foundry trials with 300 kg pouring ladle. The ladles system and pouring practices used will be described along with the results from the pouring trials for SS304 that represents typical alloys used in Investment casting industries. Optimization of the variables used in an experimentation using Genetic algorithm is also explained.
Keywords:Bottom pour  stopper rod  preheat temperature  heat loss  gas preheat  continuous heat  safety  investment casting
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