Characterization of strain hardening behavior and residual stress induction used for crack arrest in a biocompatible material

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2 Citas (Scopus)

Resumen

For centuries, the manipulation of mechanical properties for the development of components has been extremely important. Its relevance is based on improving the service life in the components. The aim of some techniques that have been used is to introduce strain hardening (tensile) and a beneficial residual stress field. Nevertheless, the application of both methods is very common when the component is manufactured, but the lack of knowledge of the final physical state of the material could compromise the structural integrity of the final product. This work presents a numerical evaluation concerning the characterization of a stainless steel AISI 316L, having a homogeneous axial history and a residual stress field. The relevance of the work is focused in a new methodology that can be used to improve the mechanical resistance of the component and to arrest crack propagation. By altering the mechanical properties of the material, it could be possible to delay nucleation and interrupt the propagation of cracks. This study also shows that if the strain hardening behaviour and the introduction of the residual stress field is not done properly, it could result in a component susceptible to fail. In the same sense, bending tests are proposed to provide tensile and compressive stress profiles.

Idioma originalInglés
Título de la publicación alojadaMaterials Characterization
Páginas233-238
Número de páginas6
EstadoPublicada - 2010
Evento18th International Materials Research Congress 2009 - Cancun, México
Duración: 16 ago. 200921 ago. 2009

Serie de la publicación

NombreMaterials Research Society Symposium Proceedings
Volumen1242
ISSN (versión impresa)0272-9172

Conferencia

Conferencia18th International Materials Research Congress 2009
País/TerritorioMéxico
CiudadCancun
Período16/08/0921/08/09

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