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Christopher J. Hyde
Christopher J. Hyde
Verified email at nottingham.ac.uk
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Powder Bed Fusion of nickel-based superalloys: A review
S Sanchez, P Smith, Z Xu, G Gaspard, CJ Hyde, WW Wits, IA Ashcroft, ...
International Journal of Machine Tools and Manufacture 165, 103729, 2021
2712021
Determination of material properties in the Chaboche unified viscoplasticity model
YP Gong, CJ Hyde, W Sun, TH Hyde
Proceedings of the Institution of Mechanical Engineers, Part L: Journal of …, 2010
1012010
Cyclic thermo-mechanical material modelling and testing of 316 stainless steel
CJ Hyde, W Sun, SB Leen
International Journal of Pressure Vessels and Piping 87 (6), 365-372, 2010
952010
On the interpretation of results from small punch creep tests
TH Hyde, M Stoyanov, W Sun, CJ Hyde
The Journal of Strain Analysis for Engineering Design 45 (3), 141-164, 2010
852010
Damage mechanics based predictions of creep crack growth in 316 stainless steel
CJ Hyde, TH Hyde, W Sun, AA Becker
Engineering Fracture Mechanics 77 (12), 2385-2402, 2010
802010
Characterization of viscoplasticity behaviour of P91 and P92 power plant steels
AA Saad, TH Hyde, W Sun, CJ Hyde, DWJ Tanner
International Journal of Pressure Vessels and Piping 111, 246-252, 2013
752013
Creep behaviour of inconel 718 processed by laser powder bed fusion
Z Xu, CJ Hyde, C Tuck, AT Clare
Journal of Materials Processing Technology 256, 13-24, 2018
712018
Effect of post processing on the creep performance of laser powder bed fused Inconel 718
Z Xu, JW Murray, CJ Hyde, AT Clare
Additive Manufacturing 24, 486-497, 2018
622018
The influence of shot peening on the fatigue response of Ti-6Al-4V surfaces subject to different machining processes
Z Xu, J Dunleavey, M Antar, R Hood, SL Soo, G Kucukturk, CJ Hyde, ...
International Journal of Fatigue 111, 196-207, 2018
592018
The creep behaviour of nickel alloy 718 manufactured by laser powder bed fusion
S Sanchez, G Gaspard, CJ Hyde, IA Ashcroft, GA Ravi, AT Clare
Materials & Design 204, 109647, 2021
562021
Micromechanical finite element modelling of thermo-mechanical fatigue for P91 steels
DF Li, RA Barrett, PE O’Donoghue, CJ Hyde, NP O’Dowd, SB Leen
International Journal of Fatigue 87, 192-202, 2016
542016
Thermal-mechanical fatigue simulation of a P91 steel in a temperature range of 400–600 C
AA Saad, CJ Hyde, W Sun, TH Hyde
Materials at High Temperatures 28 (3), 212-218, 2011
492011
Applied creep mechanics
TH Hyde, W Sun, CJ Hyde
472014
A review of non-destructive testing techniques for the in-situ investigation of fretting fatigue cracks
Y Kong, CJ Bennett, CJ Hyde
Materials & Design 196, 109093, 2020
442020
Staged thermomechanical testing of nickel superalloys produced by selective laser melting
Z Xu, CJ Hyde, A Thompson, RK Leach, I Maskery, C Tuck, AT Clare
Materials & Design 133, 520-527, 2017
392017
Small ring testing of a creep resistant material
CJ Hyde, TH Hyde, W Sun, S Nardone, E De Bruycker
Materials Science and Engineering: A 586, 358-366, 2013
382013
A unified viscoplastic model for high temperature low cycle fatigue of service-aged P91 steel
RA Barrett, TP Farragher, CJ Hyde, NP O'Dowd, PE O'Donoghue, ...
Journal of Pressure Vessel Technology 136 (2), 021402, 2014
372014
High temperature, low cycle fatigue characterization of P91 weld and heat affected zone material
TP Farragher, S Scully, NP O'Dowd, CJ Hyde, SB Leen
Journal of Pressure Vessel Technology 136 (2), 021403, 2014
362014
Potential difference methods for measuring crack growth: A review
Y Si, JP Rouse, CJ Hyde
International Journal of Fatigue 136, 105624, 2020
342020
Theoretical basis and practical aspects of small specimen creep testing
TH Hyde, CJ Hyde, W Sun
The Journal of Strain Analysis for Engineering Design 48 (2), 112-125, 2013
272013
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Articles 1–20