Fatigue Limit of Custom 465 with Surface Strengthening Treatment
In order to study the effect of nitriding or shot peening on the surface modification and fatigue properties of martensitic stainless-steel Custom 465, the residual stress and micro-hardness of the strengthened layer are determined by X-ray and micro-hardness tester, respectively. The up-and-down me...
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doaj-a601a97833ab438c91402507eb3d7a712020-11-25T01:12:56ZengMDPI AGMaterials1996-19442020-01-0113123810.3390/ma13010238ma13010238Fatigue Limit of Custom 465 with Surface Strengthening TreatmentGang An0Ren-jing Liu1Guang-qiang Yin2School of Management, Xi’an Jiaotong University, Xi’an 710049, ChinaSchool of Management, Xi’an Jiaotong University, Xi’an 710049, ChinaQing’an Group Corporation Limited, Xi’an 710077, ChinaIn order to study the effect of nitriding or shot peening on the surface modification and fatigue properties of martensitic stainless-steel Custom 465, the residual stress and micro-hardness of the strengthened layer are determined by X-ray and micro-hardness tester, respectively. The up-and-down method is used to measure the rotational bending fatigue strength at 1 × 10<sup>7</sup> cycles, and the fatigue fracture characteristic is observed by scanning electron microscopy. The relationship between surface residual stress and internal fatigue limit of surface strengthening treatment is discussed. Results show that nitriding or shot peening surface strengthening layer forms a certain depth of compressive residual stress, where in the surface compressive residual stress of the nitrided specimens is greater than the shot peened specimens. The micro-hardness of the nitrided or shot peened surface strengthening layer is significantly improved, where in the surface micro-hardness of nitriding specimens are higher than shot peening specimens. The nitriding or shot peening surface strengthening can significantly improve the fatigue limit of Custom 465, wherein the fatigue limits of nitrided and shot peened surface strengthened specimens are 50.09% and 50.66% higher than that of the un-surface strengthened specimens, respectively. That is, the effect of the two strengthening methods on fatigue limit is not very different. The fracture characteristics show that the fatigue crack of the un-surface strengthened specimens originates from the surface, while the fatigue crack of surface strengthened specimens originates from the subsurface layer under the strengthened layer. The relationship between the internal fatigue limit and the surface residual stress of the surface strengthened specimen can be used as a method for predicting the fatigue limit of the surface strengthened specimens.https://www.mdpi.com/1996-1944/13/1/238nitridingshot peeningfatigue performanceresidual stresshardness |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Gang An Ren-jing Liu Guang-qiang Yin |
spellingShingle |
Gang An Ren-jing Liu Guang-qiang Yin Fatigue Limit of Custom 465 with Surface Strengthening Treatment Materials nitriding shot peening fatigue performance residual stress hardness |
author_facet |
Gang An Ren-jing Liu Guang-qiang Yin |
author_sort |
Gang An |
title |
Fatigue Limit of Custom 465 with Surface Strengthening Treatment |
title_short |
Fatigue Limit of Custom 465 with Surface Strengthening Treatment |
title_full |
Fatigue Limit of Custom 465 with Surface Strengthening Treatment |
title_fullStr |
Fatigue Limit of Custom 465 with Surface Strengthening Treatment |
title_full_unstemmed |
Fatigue Limit of Custom 465 with Surface Strengthening Treatment |
title_sort |
fatigue limit of custom 465 with surface strengthening treatment |
publisher |
MDPI AG |
series |
Materials |
issn |
1996-1944 |
publishDate |
2020-01-01 |
description |
In order to study the effect of nitriding or shot peening on the surface modification and fatigue properties of martensitic stainless-steel Custom 465, the residual stress and micro-hardness of the strengthened layer are determined by X-ray and micro-hardness tester, respectively. The up-and-down method is used to measure the rotational bending fatigue strength at 1 × 10<sup>7</sup> cycles, and the fatigue fracture characteristic is observed by scanning electron microscopy. The relationship between surface residual stress and internal fatigue limit of surface strengthening treatment is discussed. Results show that nitriding or shot peening surface strengthening layer forms a certain depth of compressive residual stress, where in the surface compressive residual stress of the nitrided specimens is greater than the shot peened specimens. The micro-hardness of the nitrided or shot peened surface strengthening layer is significantly improved, where in the surface micro-hardness of nitriding specimens are higher than shot peening specimens. The nitriding or shot peening surface strengthening can significantly improve the fatigue limit of Custom 465, wherein the fatigue limits of nitrided and shot peened surface strengthened specimens are 50.09% and 50.66% higher than that of the un-surface strengthened specimens, respectively. That is, the effect of the two strengthening methods on fatigue limit is not very different. The fracture characteristics show that the fatigue crack of the un-surface strengthened specimens originates from the surface, while the fatigue crack of surface strengthened specimens originates from the subsurface layer under the strengthened layer. The relationship between the internal fatigue limit and the surface residual stress of the surface strengthened specimen can be used as a method for predicting the fatigue limit of the surface strengthened specimens. |
topic |
nitriding shot peening fatigue performance residual stress hardness |
url |
https://www.mdpi.com/1996-1944/13/1/238 |
work_keys_str_mv |
AT gangan fatiguelimitofcustom465withsurfacestrengtheningtreatment AT renjingliu fatiguelimitofcustom465withsurfacestrengtheningtreatment AT guangqiangyin fatiguelimitofcustom465withsurfacestrengtheningtreatment |
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