Full Text Available

Note: Clicking the button above will open the full text document at the original institutional repository in a new window.

On the relationship between crack initiation angle and loading equivalent angle for asymmetric Three-Point Bend Specimens under mixed-mode I/II loading based on GMPZR criterion

Saved in:
Bibliographic Details
Published in:Fracture and Structural Integrity
Format: Online Article RSS Article
Published: 2026
Subjects:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1868552840008433666
collection WordPress RSS
FRELIP Feed Integration
container_title Fracture and Structural Integrity
description
discipline_display Mechanical Engineering
discipline_facet Mechanical Engineering
format Online Article
RSS Article
genre Journal Article
id rss_article:62564
institution FRELIP
journal_source_facet Fracture and Structural Integrity
last_indexed 2026-06-20T21:27:21.959Z
publishDate 2026
publishDateSort 2026
record_format rss_article
spellingShingle On the relationship between crack initiation angle and loading equivalent angle for asymmetric Three-Point Bend Specimens under mixed-mode I/II loading based on GMPZR criterion
Mechanical Engineering
General
Mechanical Engineering
sub_discipline_display General
sub_discipline_facet General
subject_display Mechanical Engineering
General
Mechanical Engineering
subject_facet Mechanical Engineering
General
Mechanical Engineering
title On the relationship between crack initiation angle and loading equivalent angle for asymmetric Three-Point Bend Specimens under mixed-mode I/II loading based on GMPZR criterion
title_alt Sobre la relación entre el ángulo de iniciación de grieta y el ángulo equivalente de carga para probetas asimétricas de flexión en tres puntos bajo carga mixta modo I/II basada en el criterio GMPZR
Sur la relation entre l'angle d'initiation de fissure et l'angle équivalent de chargement pour les éprouvettes de flexion trois points asymétriques sous chargement mixte mode I/II basée sur le critère GMPZR
Sobre a Relação entre o Ângulo de Iniciação de Trinca e o Ângulo Equivalente de Carregamento para Corpos de Prova Assimétricos de Flexão em Três Pontos sob Carregamento Misto Modo I/II Baseado no Critério GMPZR
title_auth On the relationship between crack initiation angle and loading equivalent angle for asymmetric Three-Point Bend Specimens under mixed-mode I/II loading based on GMPZR criterion
title_es_txt Sobre la relación entre el ángulo de iniciación de grieta y el ángulo equivalente de carga para probetas asimétricas de flexión en tres puntos bajo carga mixta modo I/II basada en el criterio GMPZR
title_fr_txt Sur la relation entre l'angle d'initiation de fissure et l'angle équivalent de chargement pour les éprouvettes de flexion trois points asymétriques sous chargement mixte mode I/II basée sur le critère GMPZR
title_full On the relationship between crack initiation angle and loading equivalent angle for asymmetric Three-Point Bend Specimens under mixed-mode I/II loading based on GMPZR criterion
title_fullStr On the relationship between crack initiation angle and loading equivalent angle for asymmetric Three-Point Bend Specimens under mixed-mode I/II loading based on GMPZR criterion
title_full_unstemmed On the relationship between crack initiation angle and loading equivalent angle for asymmetric Three-Point Bend Specimens under mixed-mode I/II loading based on GMPZR criterion
title_pt_txt Sobre a Relação entre o Ângulo de Iniciação de Trinca e o Ângulo Equivalente de Carregamento para Corpos de Prova Assimétricos de Flexão em Três Pontos sob Carregamento Misto Modo I/II Baseado no Critério GMPZR
title_short On the relationship between crack initiation angle and loading equivalent angle for asymmetric Three-Point Bend Specimens under mixed-mode I/II loading based on GMPZR criterion
title_sort on the relationship between crack initiation angle and loading equivalent angle for asymmetric three-point bend specimens under mixed-mode i/ii loading based on gmpzr criterion
topic Mechanical Engineering
General
Mechanical Engineering
url https://www.fracturae.com/index.php/fis/article/view/5779