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Titlebook: Advancements in Materials Processing Technology, Volume 2; Select Proceedings o Rina Sahu,Ram Krishna,Ranjit Prasad Conference proceedings

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Computational Analysis of Pin Fin to Study the Effect of Temperature and Fin Material, that better efficiency is obtained for the aluminum material and better efficiency for temperature 89  C. For this analysis in CFD, mesh size is also decided by doing study of grid independence. For this, we compute heat transfer coefficient (HTC) for grid sizes 3 mm, 4 mm, and 5 mm, in which we se
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Experimental Investigation on the Effect of Industrial Waste Iron Filler to Improve Thermo-mechanicvinyl ester composite samples. Moreover, the hardness of 5 wt% filler loaded samples is increased to 74 shore-D. The uniform dispersion of fillers was studied by field emission scanning electron microscopic (FESEM) images. This study concludes that the iron filler loaded polymer composites can be us
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Kinetics and Mechanisms of Reactions Involved in In-Situ Aluminum-Based Metal Matrix Composites Reiat elevated temperatures. Silicon affects the formation more significantly compared to copper. Additionally, both alloying elements promote the formation of AlB. compared to the pure aluminum melt. However, silicon favors the formation of AlB. particles more when compared to copper. Overall, this st
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Efficient Sr-TiO3 Nanoparticle-Based Resistive n-Butanol Sensor: Effects of Composite Materials,y a comparison with previously published TiO.-based nanocomposite sensors. Efficient butanol response of the present sensor was correlated with help of grain boundary mechanism at nanoparticles surfaces under air and gaseous medium.
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Optimizing Waste Heat Recovery in the Post-combustion Chamber of a Sponge Iron Plant,gy balance, mass transfer, and heat transfer calculations. These calculations are described in the present work along with the predicted values of air and water to be added to PCC. This study employs a simple genetic algorithm (SGA) to determine the appropriate air and water levels for PCC continuou
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2662-3161 uding their durability, workability, and carbon footprint. The book serves as a valuable platform for students, researchers, and professionals interested to delve deeper into recent advancements in Material Science and Engineering..978-981-97-6877-6978-981-97-6875-2Series ISSN 2662-3161 Series E-ISSN 2662-317X
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