Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"Using Cavitation Peening to Improve the Fatigue Life of Titanium Alloy Ti-6Al-4V Manufactured by Electron Beam Melting"
written by Mitsuru Sato, Osamu Takakuwa, Masaaki Nakai, Mitsuo Niinomi, Fumio Takeo, Hitoshi Soyama,
published by Materials Sciences and Applications, Vol.7 No.4, 2016
has been cited by the following article(s):
  • Google Scholar
  • CrossRef
[1] Hybrid thermal, mechanical and chemical surface post-treatments for improved fatigue behavior of laser powder bed fusion AlSi10Mg notched samples
Surface and Coatings …, 2022
[2] On the effects of laser shock peening on fatigue behavior of V-notched AlSi10Mg manufactured by laser powder bed fusion
International Journal of …, 2022
[3] Fatigue behaviour of notched laser powder bed fusion AlSi10Mg after thermal and mechanical surface post-processing
Materials Science and …, 2022
[4] Improving the corrosion and stress corrosion cracking resistance of 316 L stainless steel in high temperature water by water jet cavitation peening
Surface and Coatings Technology, 2022
[5] The effects of microstructural and chemical surface gradients on fatigue performance of laser powder bed fusion AlSi10Mg
Materials Science and …, 2022
[6] Mechanical Technologies: Ultrasound and Cavitation in Food Processing
Nonthermal Processing in …, 2022
[7] Surface Finishing Post-treatments for Additive Manufactured Metallic Components
Innovations in Additive Manufacturing, 2022
[8] Elektron Demeti Ile Ergitme Eklemeli Imalat Yöntemiyle Üretilen Farklı Geometrilerdeki Ti-6AL-4V Alaşım Malzemelerine Uygulanan Ikincil Işlemlerin Malzemenin …
2021
[9] Cavitation erosion resistance of the titanium alloy Ti–6Al–4V manufactured through additive manufacturing with various peening methods
2020
[10] Effect of Various Peening Methods on the Fatigue Properties of Titanium Alloy Ti6Al4V Manufactured by Direct Metal Laser Sintering and Electron Beam Melting
2020
[11] Surface post-treatments for metal additive manufacturing: progress, challenges, and opportunities
2020
[12] Microstructure of SLM Ti-6Al-4V parts subjected to electropulsing assisted ultrasonic impact treatment
2020
[13] 電子ビーム積層造形したチタン合金 Ti-6Al-4V の疲労寿命における機械的特性の影響
2019
[14] The Role of Advanced Materials in the Development of Innovative Manufacturing Processes
2019
[15] 直接レーザ焼結法で作製したチタン合金 Ti6Al4V の表面改質による疲労強度向上
2019
[16] Fatigue life and microstructure of additive manufactured Ti6Al4V after different finishing processes
2019
[17] Improvement of fatigue strength of additive manufactured metals by solid-liquid-gas interfacial phenomena induced by pulse laser
2019
[18] Use of an Abrasive Water Cavitating Jet and Peening Process to Improve the Fatigue Strength of Titanium Alloy 6Al-4V Manufactured by the Electron Beam …
2019
[19] Continuous Electron Beam Post-Treatment of EBF3-Fabricated Ti–6Al–4V Parts
2019
[20] Potential Studies of Waterjet Cavitation Peening on Surface Treatment, Fatigue and Residual Stress
2019
[21] Effect of Mechanical Properties on Fatigue Life Enhancement of Additive Manufactured Titanium Alloy Treated by Various Peening Methods
2019
[22] 電子ビーム積層造形したチタン合金 Ti6Al4V の疲労強度向上におけるピーニング法の影響
2018
[23] The use of various peening methods to improve the fatigue strength of titanium alloy Ti6Al4V manufactured by electron beam melting
2018
[24] The influence of the irregular interface geometry on fracture of EB-PVD yttria-stabilized zirconia coatings
2018
[25] Cavitation Erosion
2018
[26] Key factors and applications of cavitation peening
2017
[27] Removal of Oral Biofilm on an Implant Fixture by a Cavitating Jet
Implant Dentistry, 2017
[28] Cavitation and Electrochemical Characteristics in Seawater by Water Cavitation Peening of 5083-O Al Alloy for Ships
Surface Review and Letters, 2016
[29] The Effects of Microstructural and Chemical Surface Gradients on Fatigue Performance of Laser Powder Bed Fusion Alsi10mg Samples
Free SCIRP Newsletters
Copyright © 2006-2024 Scientific Research Publishing Inc. All Rights Reserved.
Top