A simplified transformation approach to obtain structural calibration functions
Carregando...
Data
Data de publicação:
1997
Autores IPEN
Orientador
Título da Revista
ISSN da Revista
Título do Volume
É parte de
É parte de
É parte de
É parte de
29th NATIONAL SYMPOSIUM ON FATIGUE AND FRACTURE MECHANICS
Resumo
In a ductile fracture methodology developed by Landes et al., the result from a
laboratory test is used to predict the behavior of a strucunal component. Within the framework of
this methodology, a critical step consists in obtaining the calibration function for the structural
component. For those cases where the limit load solution for the structural component is known,
a transformation procedure has been used to get the calibration function for the structure directly
from that of a fracture toughness specimen. Although the transformation procedure does not
involve complex calculations, it does require the user to follow several steps where point to
point computations axe necessary. This makes the whole process laborious and time consuming.
It will be shown in this paper that, with an additional assumption and without loss of accuracy,
the transformation procedure can be greatly simplified. In the alternative procedure proposed here,
the coefficients of the calibration function for the structure are obtained by simply scaling their
counterparts for the fracture toughness specimen. This is accomplished with the use of two
factors: a load factor and a deformation factor. Some examples are presented to demonstrate the
convenience of this new procedure.
Como referenciar
CRUZ, JULIO R.B.; LANDES, J.D. A simplified transformation approach to obtain structural calibration functions. In: 29th NATIONAL SYMPOSIUM ON FATIGUE AND FRACTURE MECHANICS, June 24-26, 1997, Palo Alto, California, USA. Disponível em: http://repositorio.ipen.br/handle/123456789/13637. Acesso em: 22 Mar 2025.
Esta referência é gerada automaticamente de acordo com as normas do estilo IPEN/SP (ABNT NBR 6023) e recomenda-se uma verificação final e ajustes caso necessário.