Analysis of the thermal stability of residual stresses induced in Ti-6Al-4 V by high density LSP treatments

Warzanskyj Prieto, Wsewolod ORCID: https://orcid.org/0000-0002-7121-2022, Angulo Ramonell, Ignacio, Cordovilla Baró, Francisco ORCID: https://orcid.org/0000-0001-7438-2804, Díaz Muñoz, Marcos ORCID: https://orcid.org/0000-0001-7751-4913, Porro González, Juan Antonio ORCID: https://orcid.org/0000-0001-5260-527X, García Beltrán, Ángel ORCID: https://orcid.org/0000-0003-1900-0222, Cabeza, Sandra ORCID: https://orcid.org/0000-0002-6567-1169 and Ocaña Moreno, José Luis ORCID: https://orcid.org/0000-0001-9263-8404 (2023). Analysis of the thermal stability of residual stresses induced in Ti-6Al-4 V by high density LSP treatments. "Journal of Alloys and Compounds", v. 931 ; p. 167530. ISSN 0925-8388. https://doi.org/10.1016/j.jallcom.2022.167530.

Descripción

Título: Analysis of the thermal stability of residual stresses induced in Ti-6Al-4 V by high density LSP treatments
Autor/es:
Tipo de Documento: Artículo
Título de Revista/Publicación: Journal of Alloys and Compounds
Fecha: 10 Enero 2023
ISSN: 0925-8388
Volumen: 931
Materias:
Palabras Clave Informales: behavior; DEFORMATION; Dislocation density; FRETTING FATIGUE; Laser; mechanical properties; Microhardness; microstructure; PROPERTIES ENHANCEMENT; residual stresses; roughness; strain; SURFACE MODIFICATIONS; Surface Properties; Ti-6Al-4 V; TITANIUM-ALLOY; Dislocation density; laser shock processing; Mechanical Properties; Mechanical-Properties; microhardness; Microstructure; Residual Stresses; ROUGHNESS; Surface Properties; Ti-6Al-4 V
Escuela: E.T.S.I. Industriales (UPM)
Departamento: Física Aplicada e Ingeniería de Materiales
Licencias Creative Commons: Reconocimiento - Sin obra derivada - No comercial

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Resumen

Laser Shock Processing (LSP) is increasingly applied as an effective technology for the improvement mechanical and surface properties of metallic materials for different types of components, mostly as a means of enhancement of their fatigue life behavior. As reported in previous contributions, a main effect resulting from the application of the LSP technique consists in the generation of relatively deep compression residual stresses fields allowing an improved mechanical behavior. In this paper, the special case of Ti-6Al-4 V alloy is considered with specific consideration of the microstructural changes and residual stresses fields justifying those macroscopic effects. In particular, the effect of the application of different typical LSP intensities on the microstructure and residual stresses fields introduced in this material and their possible correlation to the associated surface effects are analyzed. Emphasis is placed on the study of the thermal stability of these fields after an aging heat treatment at typical high temperature working conditions. The results show that, according to expectations, a certain level of residual stresses and dislocation density remains after in-work thermal aging. The combination of different material characterization techniques has made possible to obtain a correlated set of results highlighting the complementarity of different scale approaches from surface (X-ray) to bulk (neutrons) methods. A model based on the evolution of immobile dislocation density is proposed to rationalize the distribution of dislocation densities, pointing out that plastic deformation is retained. The results clearly show such material improvement stability under typical heavy-duty conditions, thus endorsing the use of the LSP for Ti-6Al-4 V as a suitable technology for industrial applications in relatively high temperature conditions.

Proyectos asociados

Tipo
Código
Acrónimo
Responsable
Título
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ILL-4/2019–1- 02–274
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MAT2012–37782
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ANALISIS INTEGRADO TEORICO-EXPERIMENTAL DE LA TECNICA LSP APLICADA A LA MEJORA DE PROPIEDADES MECANICAS Y SUPERFICIALES DE COMPONENTES METALICOS DE ALTA FIABILIDAD
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MAT2015–63974-C4–2-R
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TRATAMIENTO MEDIANTE LSP DE ALEACIONES DE MAGNESIO BIODEGRADABLES Y BIO-REABSORBIBLES COMO METODO DE MEJORA DE SUS PROPIEDADES MECANICAS
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PID2019–104351GB-C21
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DEVELOPMENT, THROUGH A NOVEL PROCESSING, OF INNOVATIVE BIODEGRADABLE AND BIOCOMPATIBLE COMPOSITE MATERIALS FORMED BY POLYMER/METAL AND METAL/METAL

Más información

ID de Registro: 87423
Identificador DC: https://oa.upm.es/87423/
Identificador OAI: oai:oa.upm.es:87423
URL Portal Científico: https://portalcientifico.upm.es/es/ipublic/item/9968839
Identificador DOI: 10.1016/j.jallcom.2022.167530
URL Oficial: https://www.sciencedirect.com/science/article/pii/...
Depositado por: iMarina Portal Científico
Depositado el: 30 Ene 2025 11:52
Ultima Modificación: 30 Ene 2025 11:52