A physical simulation study of the effect of thermal variations on the secondary dendrite arm spacing in a Ni-based superalloy
Author:
Publisher
Informa UK Limited
Subject
Condensed Matter Physics
Link
http://www.tandfonline.com/doi/pdf/10.1080/09500839.2013.870670
Reference20 articles.
1. Influence of solidification variables on the microstructure, macrosegregation, and porosity of directionally solidified Mar-M247
2. Numerical simulation and prediction of solidification structure and mechanical property of a superalloy turbine blade
3. MC carbide formation in directionally solidified MAR-M247 LC superalloy
4. Influence of solidification variables on the dendrite arm spacings of Ni-based superalloys
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1. Effect of wall thickness on micropores and stress-rupture properties of a single-crystal nickel-based superalloy;Materials Science and Engineering: A;2023-05
2. Effect of casting thickness on microstructure and mechanical properties of the high-W superalloy K416B;Materials Today Communications;2021-12
3. Dendrite growth in nickel-based superalloy with in-situ observation by high temperature confocal laser scanning microscopy and numerical simulation;Materials Letters;2021-03
4. Effect of cooling rate on macro- and microstructure of thin-walled nickel superalloy precision castings;Journal of Manufacturing Processes;2020-01
5. Influence of Process Parameters on Cooling Conditions in Nickel Base Superalloy Investment Casting;Key Engineering Materials;2015-04
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