Hardness and residual stress modeling of powder injection laser cladding of P420 coating on AISI 1018 substrate

Author:

Nazemi NavidORCID,Urbanic Jill,Alam Mohammad

Funder

Ontario Centres of Excellence

Canadian Network for Research and Innovation in Machining Technology, Natural Sciences and Engineering Research Council of Canada

Mitacs

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Software,Control and Systems Engineering

Reference34 articles.

1. Alam MK, Urbanic J, Saqib SM, Edrisy A (2015) Effect of process parameters on the microstructural evolutions of laser cladded 420 martensitic stainless steel. Materials science and technology conference proceedings (MS&T15), October 4-8, Columbus, Ohio, USA, 35–54

2. Alam M, Edrisy A, Urbanic RJ, Pineault J (2016) Microhardness and stress analysis of laser cladded AISI 420 martensitic stainless steel. J Mater Eng Perform 26(3):1076–1084

3. Alam M, Nazemi N, Urbanic RJ, Saqib S, Edrisy A (2017) Predictive modeling and the effect of process parameters on the bead geometry and microhardness for a single bead laser cladding of AISI 420 stainless steel. SAE World Congress, Detroit

4. Alimardani M, Toyserkani E, Huissoon J (2007) A 3D dynamic numerical approach for temperature and thermal stress distributions in multilayer laser solid freeform fabrication process. Opt Lasers Eng 45:1115–1130

5. Chew Y, Pang JHL, Bi G, Song B (2015) Thermo-mechanical model for simulating laser cladding induced residual stresses with single and multiple clad beads. J Mater Process Technol 224:89–101

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