Ultrasonic fatigue tests on maraging 300 steel: Under solution annealed, after aging heat treatment and under pre-corrosion attack

Ultrasonic fatigue tests were carried out under continuous cycling on the maraging 300 steel for the following conditions: (A) solution annealed (as received from supplier), (B) after aging heat treatment of 490 °C for 6 h, (C) after pre-corrosion attack, and (D) specimens loaded at 293 MPa at room...

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Main Authors: Julio A. Ruiz Vilchez, Gonzalo M. Domínguez Almaraz, Aymeric E. Domínguez
Format: Article
Language:English
Published: Elsevier 2024-02-01
Series:Forces in Mechanics
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2666359723000884
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author Julio A. Ruiz Vilchez
Gonzalo M. Domínguez Almaraz
Aymeric E. Domínguez
author_facet Julio A. Ruiz Vilchez
Gonzalo M. Domínguez Almaraz
Aymeric E. Domínguez
author_sort Julio A. Ruiz Vilchez
collection DOAJ
description Ultrasonic fatigue tests were carried out under continuous cycling on the maraging 300 steel for the following conditions: (A) solution annealed (as received from supplier), (B) after aging heat treatment of 490 °C for 6 h, (C) after pre-corrosion attack, and (D) specimens loaded at 293 MPa at room temperature without failure until 1.0E+10 cycles. The ultrasonic fatigue strength of the four modalities were compared and discussed in regard the crack initiation inclusion, the heat treatment and the testing conditions. Crack initiation and propagation under this fatigue testing modality was analyzed; revealing that ultrasonic fatigue strength is related to internal TiN-inclusions and its parameters of shape and orientation, in regard the uniaxial applied load. Numerical simulations were carried out to investigate the stress concentration of an ellipsoidal void of 150 mm (longer radius), and a TiN ellipsoidal inclusion of same dimensions. In addition, SEM (Scanning Electron Microscope) analysis was carried out on the fracture surfaces to determine the crack initiation and propagation zones.
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spelling doaj.art-b27bd5c2eaac4b75addc88fae5bffd142024-02-22T04:53:28ZengElsevierForces in Mechanics2666-35972024-02-0114100253Ultrasonic fatigue tests on maraging 300 steel: Under solution annealed, after aging heat treatment and under pre-corrosion attackJulio A. Ruiz Vilchez0Gonzalo M. Domínguez Almaraz1Aymeric E. Domínguez2Faculty of Mechanical Engineerng, University of Michoacan (UMSNH), Santiago Tapia No. 403, Col. Centro, Morelia, Michoacán 58000, MexicoFaculty of Mechanical Engineerng, University of Michoacan (UMSNH), Santiago Tapia No. 403, Col. Centro, Morelia, Michoacán 58000, Mexico; Corresponding author.Independent Engineer, FranceUltrasonic fatigue tests were carried out under continuous cycling on the maraging 300 steel for the following conditions: (A) solution annealed (as received from supplier), (B) after aging heat treatment of 490 °C for 6 h, (C) after pre-corrosion attack, and (D) specimens loaded at 293 MPa at room temperature without failure until 1.0E+10 cycles. The ultrasonic fatigue strength of the four modalities were compared and discussed in regard the crack initiation inclusion, the heat treatment and the testing conditions. Crack initiation and propagation under this fatigue testing modality was analyzed; revealing that ultrasonic fatigue strength is related to internal TiN-inclusions and its parameters of shape and orientation, in regard the uniaxial applied load. Numerical simulations were carried out to investigate the stress concentration of an ellipsoidal void of 150 mm (longer radius), and a TiN ellipsoidal inclusion of same dimensions. In addition, SEM (Scanning Electron Microscope) analysis was carried out on the fracture surfaces to determine the crack initiation and propagation zones.http://www.sciencedirect.com/science/article/pii/S2666359723000884Ultrasonic fatigueMaraging steel 300Aging heat treatmentFatigue strengthCrack initiation and propagation
spellingShingle Julio A. Ruiz Vilchez
Gonzalo M. Domínguez Almaraz
Aymeric E. Domínguez
Ultrasonic fatigue tests on maraging 300 steel: Under solution annealed, after aging heat treatment and under pre-corrosion attack
Forces in Mechanics
Ultrasonic fatigue
Maraging steel 300
Aging heat treatment
Fatigue strength
Crack initiation and propagation
title Ultrasonic fatigue tests on maraging 300 steel: Under solution annealed, after aging heat treatment and under pre-corrosion attack
title_full Ultrasonic fatigue tests on maraging 300 steel: Under solution annealed, after aging heat treatment and under pre-corrosion attack
title_fullStr Ultrasonic fatigue tests on maraging 300 steel: Under solution annealed, after aging heat treatment and under pre-corrosion attack
title_full_unstemmed Ultrasonic fatigue tests on maraging 300 steel: Under solution annealed, after aging heat treatment and under pre-corrosion attack
title_short Ultrasonic fatigue tests on maraging 300 steel: Under solution annealed, after aging heat treatment and under pre-corrosion attack
title_sort ultrasonic fatigue tests on maraging 300 steel under solution annealed after aging heat treatment and under pre corrosion attack
topic Ultrasonic fatigue
Maraging steel 300
Aging heat treatment
Fatigue strength
Crack initiation and propagation
url http://www.sciencedirect.com/science/article/pii/S2666359723000884
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