Monotonic and cyclic behavior of the nitrogen ion-implanted commercially pure-titanium

This research aims to study the behavior of monotonic and cyclic plastic deformation on commercially pure titanium which has undergone surface treatment using the nitrogen ion implantation method. The doses of 2.0×1017 ions/cm2 and the energy of 100 keV were used to implant the nitrogen ions into th...

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Main Authors: N. Ali, M.S. Mustapa, T. Sujitno, T.E. Putra, Husaini
Format: Article
Language:English
Published: Universiti Malaysia Pahang Publishing 2021-03-01
Series:Journal of Mechanical Engineering and Sciences
Subjects:
Online Access:https://journal.ump.edu.my/jmes/article/view/4362
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author N. Ali
M.S. Mustapa
T. Sujitno
T.E. Putra
Husaini
author_facet N. Ali
M.S. Mustapa
T. Sujitno
T.E. Putra
Husaini
author_sort N. Ali
collection DOAJ
description This research aims to study the behavior of monotonic and cyclic plastic deformation on commercially pure titanium which has undergone surface treatment using the nitrogen ion implantation method. The doses of 2.0×1017 ions/cm2 and the energy of 100 keV were used to implant the nitrogen ions into the CpTi. Monotonic properties tests were performed in a laboratory air and at room temperature using ASTM E8 standard specimens. Fatigue and corrosion fatigue tests were conducted in a laboratory air and in artificial saline solutions, at room temperature using ASTM 1801-97 specimens. Tensile tests were carried out with constant displacement rate and fatigue tests were carried under fully-reversed with stress-controlled conditions with stress amplitudes 230, 240, 250, 260, 270 and 280 MPa. The results showed the material properties of monotonic behavior for CpTi and Nii-Ti; tensile strength (σu) of 497 and 539 MPa and for 0.2% offset yield strength (σy) of 385 and 440 MPa, respectively and of cyclic behavior; cyclic strength coefficient (k’) of 568.41 and 818.64 and cyclic strain hardening exponent (n’) of 0.176 and 0.215, respectively. This study has succeeded in producing useful new material properties that will contribute to the field of material science and engineering.
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spelling doaj.art-9d27e6d6325646d2a5e1fb2cffd566482023-09-03T14:11:53ZengUniversiti Malaysia Pahang PublishingJournal of Mechanical Engineering and Sciences2289-46592231-83802021-03-011517662767010.15282/jmes.15.1.2021.04.0604Monotonic and cyclic behavior of the nitrogen ion-implanted commercially pure-titaniumN. Ali0M.S. Mustapa1T. Sujitno2T.E. Putra 3Husaini4Department of Mechanical and Industrial Engineering, Faculty of Engineering, Universitas Syiah Kuala, Banda Aceh 23111, IndonesiaFaculty of Mechanical and Manufacturing Engineering, Universiti Tun Hussein Onn Malaysia, 86400 Batu Pahat, Johor, MalaysiaNational Nuclear Energy Agency of Indonesia, Jalan Babarsari PO Box 6101 Ykbb, Yogyakarta 55281, IndonesiaDepartment of Mechanical and Industrial Engineering, Faculty of Engineering, Universitas Syiah Kuala, Banda Aceh 23111, IndonesiaDepartment of Mechanical and Industrial Engineering, Faculty of Engineering, Universitas Syiah Kuala, Banda Aceh 23111, IndonesiaThis research aims to study the behavior of monotonic and cyclic plastic deformation on commercially pure titanium which has undergone surface treatment using the nitrogen ion implantation method. The doses of 2.0×1017 ions/cm2 and the energy of 100 keV were used to implant the nitrogen ions into the CpTi. Monotonic properties tests were performed in a laboratory air and at room temperature using ASTM E8 standard specimens. Fatigue and corrosion fatigue tests were conducted in a laboratory air and in artificial saline solutions, at room temperature using ASTM 1801-97 specimens. Tensile tests were carried out with constant displacement rate and fatigue tests were carried under fully-reversed with stress-controlled conditions with stress amplitudes 230, 240, 250, 260, 270 and 280 MPa. The results showed the material properties of monotonic behavior for CpTi and Nii-Ti; tensile strength (σu) of 497 and 539 MPa and for 0.2% offset yield strength (σy) of 385 and 440 MPa, respectively and of cyclic behavior; cyclic strength coefficient (k’) of 568.41 and 818.64 and cyclic strain hardening exponent (n’) of 0.176 and 0.215, respectively. This study has succeeded in producing useful new material properties that will contribute to the field of material science and engineering.https://journal.ump.edu.my/jmes/article/view/4362monotonic-cyclic behaviorion implantationcp-ti fatiguecorrosion- fatiguestress-cycle relationships
spellingShingle N. Ali
M.S. Mustapa
T. Sujitno
T.E. Putra
Husaini
Monotonic and cyclic behavior of the nitrogen ion-implanted commercially pure-titanium
Journal of Mechanical Engineering and Sciences
monotonic-cyclic behavior
ion implantation
cp-ti fatigue
corrosion- fatigue
stress-cycle relationships
title Monotonic and cyclic behavior of the nitrogen ion-implanted commercially pure-titanium
title_full Monotonic and cyclic behavior of the nitrogen ion-implanted commercially pure-titanium
title_fullStr Monotonic and cyclic behavior of the nitrogen ion-implanted commercially pure-titanium
title_full_unstemmed Monotonic and cyclic behavior of the nitrogen ion-implanted commercially pure-titanium
title_short Monotonic and cyclic behavior of the nitrogen ion-implanted commercially pure-titanium
title_sort monotonic and cyclic behavior of the nitrogen ion implanted commercially pure titanium
topic monotonic-cyclic behavior
ion implantation
cp-ti fatigue
corrosion- fatigue
stress-cycle relationships
url https://journal.ump.edu.my/jmes/article/view/4362
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AT msmustapa monotonicandcyclicbehaviorofthenitrogenionimplantedcommerciallypuretitanium
AT tsujitno monotonicandcyclicbehaviorofthenitrogenionimplantedcommerciallypuretitanium
AT teputra monotonicandcyclicbehaviorofthenitrogenionimplantedcommerciallypuretitanium
AT husaini monotonicandcyclicbehaviorofthenitrogenionimplantedcommerciallypuretitanium