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Tobias Rønneberg
Tobias Rønneberg
PhD Candidate in Additive Manufacturing, Imperial College London
在 imperial.ac.uk 的电子邮件经过验证
标题
引用次数
引用次数
年份
Revealing relationships between porosity, microstructure and mechanical properties of laser powder bed fusion 316L stainless steel through heat treatment
T Ronneberg, CM Davies, PA Hooper
Materials & Design 189, 108481, 2020
2382020
In situ thermography for laser powder bed fusion: Effects of layer temperature on porosity, microstructure and mechanical properties
RJ Williams, A Piglione, T Rønneberg, C Jones, MS Pham, CM Davies, ...
Additive Manufacturing 30, 100880, 2019
1092019
Fracture analysis of 316L steel samples manufactured by selective laser melting
CM Davies, O Withnell, T Ronnerberg, R Williams, PA Hooper
Procedia Structural Integrity 13, 1384-1389, 2018
102018
In situ thermography for laser powder bed fusion: Effects of layer temperature on porosity, microstructure and mechanical properties, Addit. Manuf. 30 (2019)
RJ Williams, A Piglione, T Rønneberg, C Jones, MS Pham, CM Davies, ...
72019
Fracture toughness behaviour of 316L stainless steel samples manufactured through selective laser melting
CM Davies, R Zhou, O Withnell, R Williams, T Ronneberg, PA Hooper
Pressure Vessels and Piping Conference 51678, V06AT06A006, 2018
62018
Residual stress measurements in a 316L uniaxial samples manufactured by laser powder bed fusion
CM Davies, P Sandmann, T Ronneberg, PA Hooper, S Kabra
Pressure Vessels and Piping Conference 83860, V006T06A005, 2020
32020
Ductile Damage Model Development and Validation of 316L Laser Powder Bed Fusion Steel Under Multiaxial Stress Conditions
T Hales, T Rønneberg, P Hooper, CM Davies
Pressure Vessels and Piping Conference 86175, V04AT06A012, 2022
2022
Characterization of Aluminium Components Produced by Additive Manufacturing
T Rønneberg
NTNU, 2016
2016
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