An overview of factors affecting high-cycle fatigue of additive manufacturing metals
Autor: | Özler Karakaş, Feride Buket Kardeş, Pietro Foti, Filippo Berto |
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Jazyk: | angličtina |
Rok vydání: | 2023 |
Předmět: |
Ternary alloys
fatigue life Additive manufacturing technology Postmanufacturing surface treatment Mechanical-Properties Powder Bed Fusion Titanium alloys Complex shapes General Materials Science postmanufacturing surface treatments Vanadium alloys Silicon alloys Engineering materials Manufacturing methods Titanium-Alloy fatigue strength Residual-Stress Fracture-Behavior Mechanical Engineering Failure Mechanisms Additives Conventional manufacturing Property 3D printing Low-cycle fatigue Aluminum alloys high-cycle fatigue Slm Alsi10mg Specimens Mechanics of Materials Magnesium alloys Surface-Roughness Crack Growth-Behavior Fatigue behaviour High cycle fatigue additive manufacturing Process Parameters |
Popis: | Recently, additive manufacturing technologies have become very important in the industry as they increase the freedom of design and provide the opportunity to realize very complex shapes in one step. Sİnce the use of additive manufacturing has increased in addition to conventional manufacturing methods, the fatigue behavior of engineering materials such as AlSi10Mg, 316L, Ti6Al4V, and Ti64 produced by different additive manufacturing methods is reviewed. In this article, a detailed literature review is preŞented by evaluating recent studies on the high-cycle and very high-cycle fatigue behavior of engineering components produced with additive manufacturing technologies. In addition to the positive properties of additive manufacturing metals, fatigue performance is adversely affected due to negative properties such as high porosity, poor surface quality, and tensile residual stresses. In this article, factors affecting fatigue strength and postproduction processes required for the production of fatigue-resistant additive manufacturing parts are explained. © 2023 John Wiley & Sons Ltd. |
Databáze: | OpenAIRE |
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