Skip to main content

Nanosecond shock wave-induced surface acoustic waves and dynamic fracture at fluid-solid boundaries.

Publication ,  Journal Article
Zhang, Y; Yang, C; Qiang, H; Zhong, P
Published in: Physical review research
November 2019

We investigate the generation and propagation characteristics of leaky Rayleigh waves (LRWs) caused by a spherical shock wave incident on a water-glass boundary both experimentally and numerically. The maximum tensile stress produced on the solid boundary is attributed to the dynamic interaction between the LRWs and an evanescent wave generated concomitantly along the boundary. The resultant tensile stress field drives the initiation of crack formation from pre-existing surface flaws and their subsequent extension along a circular trajectory, confirmative with the direction of the principal stress on the boundary. We further demonstrate that this unique ringlike fracture pattern, prevalent in damage produced by high-speed impact, can be best described by the Tuler-Butcher criterion for dynamic failure in brittle materials. The orientation of the ring fracture extension into the solid also follows closely with the trajectory of the local maximum tensile stress distribution.

Duke Scholars

Altmetric Attention Stats
Dimensions Citation Stats

Published In

Physical review research

DOI

EISSN

2643-1564

ISSN

2643-1564

Publication Date

November 2019

Volume

1

Issue

3

Start / End Page

033068

Related Subject Headings

  • 51 Physical sciences
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Zhang, Y., Yang, C., Qiang, H., & Zhong, P. (2019). Nanosecond shock wave-induced surface acoustic waves and dynamic fracture at fluid-solid boundaries. Physical Review Research, 1(3), 033068. https://doi.org/10.1103/physrevresearch.1.033068
Zhang, Ying, Chen Yang, Hao Qiang, and Pei Zhong. “Nanosecond shock wave-induced surface acoustic waves and dynamic fracture at fluid-solid boundaries.Physical Review Research 1, no. 3 (November 2019): 033068. https://doi.org/10.1103/physrevresearch.1.033068.
Zhang Y, Yang C, Qiang H, Zhong P. Nanosecond shock wave-induced surface acoustic waves and dynamic fracture at fluid-solid boundaries. Physical review research. 2019 Nov;1(3):033068.
Zhang, Ying, et al. “Nanosecond shock wave-induced surface acoustic waves and dynamic fracture at fluid-solid boundaries.Physical Review Research, vol. 1, no. 3, Nov. 2019, p. 033068. Epmc, doi:10.1103/physrevresearch.1.033068.
Zhang Y, Yang C, Qiang H, Zhong P. Nanosecond shock wave-induced surface acoustic waves and dynamic fracture at fluid-solid boundaries. Physical review research. 2019 Nov;1(3):033068.

Published In

Physical review research

DOI

EISSN

2643-1564

ISSN

2643-1564

Publication Date

November 2019

Volume

1

Issue

3

Start / End Page

033068

Related Subject Headings

  • 51 Physical sciences