Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5015231 | International Journal of Fatigue | 2017 | 22 Pages |
Abstract
Investigation of fracture surfaces did not bring any evident signs of the effects of fracture surface morphology resulting in roughness induced closure or oxide induced closure under testing conditions used. This indicates that plasticity induced closure seems to be a dominant closure mechanism in both states of the investigated Ti grade 4.
Related Topics
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Engineering
Mechanical Engineering
Authors
S. Fintová, M. Arzaghi, I. KubÄna, L. Kunz, Ch. Sarrazin-Baudoux,