Sammy Tin

Affiliations: 
Materials Science and Engineering University of Michigan, Ann Arbor, Ann Arbor, MI 
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"Sammy Tin"
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Publications

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Li L, Tin S. (2020) Effect of phosphorus content and grain size on the long-term phase stability of Ni-base superalloys Journal of Alloys and Compounds. 829: 154352
Ho I, Hsu T, Chang Y, et al. (2020) Effects of CoAl2O4 inoculants on microstructure and mechanical properties of IN718 processed by selective laser melting Additive Manufacturing. 35: 101328
Hardy MC, Detrois M, McDevitt ET, et al. (2020) Solving Recent Challenges for Wrought Ni-Base Superalloys Metallurgical and Materials Transactions a-Physical Metallurgy and Materials Science. 51: 2626-2650
Lilensten L, Antonov S, Raabe D, et al. (2019) Deformation of Borides in Nickel-based Superalloys: a Study of Segregation at Dislocations Microscopy and Microanalysis. 25: 2538-2539
Antonov S, Chen W, Lu S, et al. (2019) The effect of phosphorus on the formation of grain boundary laves phase in high-refractory content Ni-based superalloys Scripta Materialia. 161: 44-48
Antonov S, Isheim D, Seidman DN, et al. (2019) Phosphorous behavior and its effect on secondary phase formation in high refractory content powder-processed Ni-based superalloys Materialia. 7: 100423
McCarley J, Tin S. (2019) Understanding the effects of recrystallization and strain induced boundary migration on ∑3 twin boundary formation in Ni-base superalloys during iterative sub-solvus annealing Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing. 427-438
Detrois M, Antonov S, Tin S, et al. (2019) Hot deformation behavior and flow stress modeling of a Ni-based superalloy Materials Characterization. 157: 109915
Alabbad B, Tin S. (2019) Effect of grain boundary misorientation on η phase precipitation in Ni-base superalloy 718Plus Materials Characterization. 151: 53-63
Fu C, Chen Y, Yuan X, et al. (2019) A modified θ projection model for constant load creep curves-II. Application of creep life prediction Journal of Materials Science & Technology. 35: 687-694
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