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April 12, 2026Materials0 citationsOpen Access

Monitoring Hydrogen-Induced Cracking in Tensile Wires of Flexible Pipes by Acoustic Emission Technique

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KOKaique do Rosário OliveiraSASergio Luis Gonzalez Gonzalez AssiasMBMerlin C. E. Bandeira

Key Points

  • The research aims to monitor hydrogen-induced cracking in high-strength steel wires using acoustic emission techniques.
  • Used acoustic emission techniques for continuous monitoring of cracking in tensile wires.
  • Exposed armor wire samples to H2S-saturated aqueous environments for 24 and 96 hours.
  • Characterized damage using X-ray microtomography, optical microscopy, and scanning electron microscopy.
  • Acoustic emission techniques effectively monitored the evolution of hydrogen-induced cracking.
  • Distinct damage stages and cracking phenomena were identified through AE.
  • Findings support the use of AE as a complementary tool during hydrogen-induced cracking testing.

Abstract

This study explored the continuous monitoring of hydrogen-induced cracking (HIC) in high-strength steel tension wires used in metal-based flexible pipes, exposed to a H2S-saturated aqueous environment, using acoustic emission (AE) techniques. Armor wire samples were subjected to sour conditions under controlled environments for 24 and 96 h. To reinforce and validate the AE findings, a comprehensive characterization was performed, including X-ray microtomography, optical microscopy, and scanning electron microscopy. The experimental results demonstrated that AE techniques effectively monitored the evolution of HIC damage in the armor wire samples, enabling the identification of distinct damage stages and cracking phenomena. These findings confirm that AE can serve as a valuable complementary tool during HIC testing, optimizing test duration and providing insights into the kinetics of the cracking process.

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Cite This Study

Oliveira et al. (2026) studied this question.

synapsesocial.com/papers/69db37f94fe01fead37c60d4https://doi.org/10.3390/ma19081524
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