Title of article :
Fracture response of externally flawed aluminum cylindrical shells under internal gaseous detonation loading
Author/Authors :
TONG WA CHAO and JOSEPH E. SHEPHERD، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
32
From page :
59
To page :
90
Abstract :
Experiments were performed to observe the fracture behavior of thin-wall and initiallyflawed aluminum tubes to internal gaseous detonation loading. The load can be characterized as a propagating pressure jump with speed of 2.4 km/s and magnitude ranging from 2MPa to 6MPa, followed by an expansion wave. Flaws were machined as external axial surface notches. Cracks ran both in the upstream and downstream directions as the hoop stress opened up the notch. Different kinds of crack propagation behavior were observed for various loading amplitudes and flaw sizes. For low-amplitude loading and short flaws, cracks tend to run in a helical fashion, whereas for highamplitude loading and long flaws, cracks tend to bifurcate in addition to running helically. Unless the cracks branched and traveled far enough to meet, resulting in a split tube, they were always arrested. Strain gages were used to monitor the hoop strains at several places on the tubes’ external surface. Far from the notch, tensile vibrations were measured with frequencies matching those predicted by the steady-state Tang (1965, Proceedings of the American Society of Civil Engineers 5, 97-122) and Simkins (1987, Technical Report ARCCB-TB-87008, US Army Armament Research, Development and Engineering Center, Watervliet, N.Y. 12189-4050) models. Near the notch, compressive strains were recorded as a result of the bulging at the notch. Features in the strain signals corresponding to different fracture events are analyzed.
Keywords :
tube fracture. , detonation , crack curving , crack branching
Journal title :
International Journal of Fracture
Serial Year :
2005
Journal title :
International Journal of Fracture
Record number :
828304
Link To Document :
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