Timo Rautio

Timo Rautio

Oulun yliopisto

H-index: 10

Europe-Finland

About Timo Rautio

Timo Rautio, With an exceptional h-index of 10 and a recent h-index of 8 (since 2020), a distinguished researcher at Oulun yliopisto, specializes in the field of Additive manufacturing.

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

Assessing the compressive and tensile properties of TPMS-Gyroid and stochastic Ti64 lattice structures: A study on laser powder bed fusion manufacturing for biomedical implants

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

Synergistic effects of heat treatments and severe shot peening on residual stresses and microstructure in 316L stainless steel produced by laser powder bed fusion

Surface Roughness Improvement of Pbf-Lb Manufactured 316l with Dry Electropolishing

Fatigue Life and Impact Toughness of PBF-LB Manufactured Ti6Al4V and the Effect of Heat Treatment

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

Timo Rautio Information

University

Position

Project Manager Kerttu Saalasti Institute/

Citations(all)

244

Citations(since 2020)

167

Cited By

92

hIndex(all)

10

hIndex(since 2020)

8

i10Index(all)

10

i10Index(since 2020)

6

Email

University Profile Page

Google Scholar

Timo Rautio Skills & Research Interests

Additive manufacturing

Top articles of Timo Rautio

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

2023/12/4

Timo Rautio
Timo Rautio

H-Index: 3

Antti Järvenpää
Antti Järvenpää

H-Index: 12

Fatigue Resistance Assessment of WAAM Carbon Steel

Key Engineering Materials

2024/3/15

Assessing the compressive and tensile properties of TPMS-Gyroid and stochastic Ti64 lattice structures: A study on laser powder bed fusion manufacturing for biomedical implants

Journal of Science: Advanced Materials and Devices

2024/3/1

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

2024/2/16

Synergistic effects of heat treatments and severe shot peening on residual stresses and microstructure in 316L stainless steel produced by laser powder bed fusion

Journal of Materials Processing Technology

2024/2/1

Timo Rautio
Timo Rautio

H-Index: 3

Antti Järvenpää
Antti Järvenpää

H-Index: 12

Surface Roughness Improvement of Pbf-Lb Manufactured 316l with Dry Electropolishing

Key Engineering Materials

2023/12/29

Timo Rautio
Timo Rautio

H-Index: 3

Antti Järvenpää
Antti Järvenpää

H-Index: 12

Fatigue Life and Impact Toughness of PBF-LB Manufactured Ti6Al4V and the Effect of Heat Treatment

Key Engineering Materials

2023/12/1

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

Fatigue strength and impact toughness dependence of powder bed fusion with laser beam-manufactured 316L stainless steel on orientation and layer thickness

Journal of Laser Applications

2023/11/1

Timo Rautio
Timo Rautio

H-Index: 3

Antti Järvenpää
Antti Järvenpää

H-Index: 12

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

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

Dry electropolishing of laser powder bed fusion manufactured cobalt-chrome

IOP Conference Series: Materials Science and Engineering

2023/4/1

Fatigue Properties of Laser-Welded Laser Powder Bed Fusion Manufactured 316L Parts

2021/11/19

Timo Rautio
Timo Rautio

H-Index: 3

Antti Järvenpää
Antti Järvenpää

H-Index: 12

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

2022/11/11

See List of Professors in Timo Rautio University(Oulun yliopisto)

Co-Authors

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