Mikko Hietala

Mikko Hietala

Oulun yliopisto

H-index: 7

Europe-Finland

About Mikko Hietala

Mikko Hietala, With an exceptional h-index of 7 and a recent h-index of 7 (since 2020), a distinguished researcher at Oulun yliopisto, specializes in the field of WAAM, additive manufacturing, laser welding, fatigue, ultra-high strength steels.

His recent articles reflect a diverse array of research interests and contributions to the field:

Fatigue Performance and Impact Toughness of PBF-LB Manufactured AlSi 10Mg

Fatigue Resistance Assessment of WAAM Carbon Steel

Evaluation of Bending Fatigue Strength and Static Properties in Wire Arc Additive Manufactured Carbon Steel Bead-on-Plate Laser Weld

Microstructure and Fatigue Life of Surface Modified PBF-LB Manufactured Maraging Steel

The Effect of Laser Heat Treatment and Severe Shot Peening on Laser Powder Bed Fusion Manufactured AISI 316L Stainless Steel

Effect of Severe Shot Peening on Mechanical Properties and Fatigue Resistance of Wire Arc Additive Manufactured AISI 316L

High Temperature Heat Treatment and Severe Shot Peening of PBF-LB Manufactured 316L Stainless Steel

Micromechanical analysis and finite element modelling of laser-welded 5-mm-thick dissimilar joints between 316L stainless steel and low-alloyed ultra-high-strength steel

Mikko Hietala Information

University

Position

Project manager Future manufacturing technologies research group

Citations(all)

128

Citations(since 2020)

103

Cited By

46

hIndex(all)

7

hIndex(since 2020)

7

i10Index(all)

5

i10Index(since 2020)

4

Email

University Profile Page

Google Scholar

Mikko Hietala Skills & Research Interests

WAAM

additive manufacturing

laser welding

fatigue

ultra-high strength steels

Top articles of Mikko Hietala

Fatigue Performance and Impact Toughness of PBF-LB Manufactured AlSi 10Mg

2023/12/4

Fatigue Resistance Assessment of WAAM Carbon Steel

Key Engineering Materials

2024/3/15

Evaluation of Bending Fatigue Strength and Static Properties in Wire Arc Additive Manufactured Carbon Steel Bead-on-Plate Laser Weld

2024/2/16

Microstructure and Fatigue Life of Surface Modified PBF-LB Manufactured Maraging Steel

Materials Science Forum

2023/10/10

The Effect of Laser Heat Treatment and Severe Shot Peening on Laser Powder Bed Fusion Manufactured AISI 316L Stainless Steel

Materials Science Forum

2023/10/10

Effect of Severe Shot Peening on Mechanical Properties and Fatigue Resistance of Wire Arc Additive Manufactured AISI 316L

Solid State Phenomena

2023/10/6

High Temperature Heat Treatment and Severe Shot Peening of PBF-LB Manufactured 316L Stainless Steel

Solid State Phenomena

2023/8/28

Micromechanical analysis and finite element modelling of laser-welded 5-mm-thick dissimilar joints between 316L stainless steel and low-alloyed ultra-high-strength steel

Materials Science and Engineering: A

2023/8/24

The Influence of Layer Thickness on the Fatigue Life of Laser Powder Bed Fusion Manufactured AlSi10Mg Parts

2023/4/27

The Influence of Surface Quality on Fatigue Strength of Wire Arc Additive Manufactured 316L Stainless Steel

2023/4/27

Mechanical properties of the laser powder deposition and laser powder bed fusion printed 316L

IOP Conference Series: Materials Science and Engineering

2023/4/1

Mechanical Properties of Laser-Welded Ultra-high-strength Stainless Steel Epoxy Foam-Filled Simple Panel Structure

2021/11/19

Mikko Hietala
Mikko Hietala

H-Index: 3

Antti Järvenpää
Antti Järvenpää

H-Index: 12

Residual Stresses of the Laser Welded Abrasion Resistant Steel Butt Joints

Materials Science Forum

2023/11/23

Mikko Hietala
Mikko Hietala

H-Index: 3

Antti Järvenpää
Antti Järvenpää

H-Index: 12

Exploring the Impact of Surface Quality on the Bending Fatigue Strength of Wire Arc Additive Manufactured Carbon Steel

2023/11/10

Severe Shot Peening of PBF-LB Manufactured and Reference 316L–Fatigue Performance and Microstructure

2023/11/10

Comparison of Polishing Methods: The Effect on The Surface Roughness and Fatigue Performance of PBF-LB manufactured 316L Stainless Steel

2022/11/11

Static properties and fatigue strength of wire arc additive manufactured 316L

2022/11/11

Investigation of microstructure and mechanical properties of laser welded complex phase steel lap joints

Academic Perspective Procedia

2018/11/9

Fatigue life and surface quality of laser powder bed fusion manufactured 316L parts by laser heat treatment

2022/5/19

Static Properties of Laser Welded Ultra-High-Strength Stainless Steel Tube

2022/5/19

Mikko Hietala
Mikko Hietala

H-Index: 3

Antti Järvenpää
Antti Järvenpää

H-Index: 12

See List of Professors in Mikko Hietala University(Oulun yliopisto)