Tensile properties and microstructural evolution of 17–4 PH stainless steel fabricated by laser hybrid additive manufacturing technology

Author:

Li Nan,Wang QiangORCID,Bermingham Michael,Niu Wenjuan,Han Peng,Guo Nan,Li Shenao

Funder

Key Science and Technology Program of Shaanxi Province

Shanxi Provincial Department of Science and Technology

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference67 articles.

1. Microstructures and mechanical properties of multi-layered materials composed of Ti-6Al-4V, vanadium, and 17–4PH stainless steel produced by directed energy deposition;Adomako;Addit. Manuf.,2022

2. Alloy design via additive manufacturing: Advantages, challenges, applications and perspectives;Bandyopadhyay;Mater. Today.,2022

3. Comparison of residual stress measurements conducted by x-ray stress analysis and incremental hole drilling method;Bobzin;J. Ther. Spray Technol.,2020

4. Dynamic compression deformation behavior of laser directed energy deposited α + β duplex titanium alloy with basket-weave morphology;Cheng;Addit. Manuf.,2023

5. Plastic-deformation-driven SiC nanoparticle implantation in an Al surface by laser shock wave: mechanical properties, microstructure characteristics, and synergistic strengthening mechanisms;Cui;Int. J. Plast.,2018

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