Zobrazeno 1 - 10
of 28
pro vyhledávání: '"K.M. Bertsch"'
Autor:
K.M. Bertsch, T. Voisin, J.B. Forien, E. Tiferet, Y.I. Ganor, M. Chonin, Y.M. Wang, M.J. Matthews
Publikováno v:
Materials & Design, Vol 216, Iss , Pp 110533- (2022)
Effective optimization of the production of Ti-6Al-4 V using AM requires a fundamental understanding of the relative importance of different microstructural features to the deformation and failure mechanisms, particularly features that vary between p
Externí odkaz:
https://doaj.org/article/b25e777c80e7499ea91f0b14418b3ac1
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Publikováno v:
Acta Materialia. 199:19-33
In this experiment, the origin of dislocation structures in AM stainless steels was systematically investigated by controlling the effect of thermal stress through geometric constraints for the first time. Stainless steel 316L parts were produced in
Publikováno v:
Journal of Nuclear Materials. 523:291-298
Metal additive manufacturing offers potential advantages for producing structural materials, such as austenitic stainless steels, in nuclear power systems. However, the microstructure developed during metal additive processing is notably different fr
Hydrogen-induced compatibility constraints across grain boundaries drive intergranular failure of Ni
Publikováno v:
Materials Science and Engineering: A. 760:58-67
A multi-scale experimental approach was used to determine the fundamental mechanisms responsible for the hydrogen-induced transition in failure mode from ductile transgranular to intergranular in polycrystalline Ni during uniaxial loading. Hydrogen a
Autor:
Dan J. Thoma, Adrien Couet, Michael Niezgoda, Calvin Parkin, Kumar Sridharan, Michael Moorehead, K.M. Bertsch, Chuan Zhang, Mohamed Elbakhshwan
Publikováno v:
Materials & Design, Vol 187, Iss, Pp-(2020)
High-entropy alloys (HEAs) are a class of alloys that can exhibit promising properties including enhanced irradiation resistance, high-temperature strength, and corrosion resistance. However, they exist in a relatively unexplored region of quasi-limi
Publikováno v:
Acta Materialia. 157:218-227
The influence of hydrogen on the mechanical response of an FCC equi-molar solid-solution alloy, FeNiCoCr, was investigated. Hydrogen caused a reduction in ductility in terms of total elongation of only a few percent in the FeNiCoCr alloy, but the loc
Publikováno v:
Current Opinion in Solid State and Materials Science. 22:1-7
The influence of internal hydrogen on the tensile properties of an equi-molar FeNiCoCrMn alloy results in a significant reduction of ductility, which is accompanied by a change in the fracture mode from ductile microvoid coalescence to intergranular
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