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April 3, 2026Journal of Materials Research and Technology1 citationsOpen Access

Transient Joule heating via highly dispersed carbon fibers to achieve superior bonding of SiCf/SiC composites joints with relieved residual stress

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YYYaotian YanYLYihong LiuPLPeixin Li

Key Points

  • The research aims to improve bonding in SiCf/SiC composites using Joule heating while minimizing residual stress.
  • Employ Joule heating for localized thermal shock to bond SiCf/SiC composites.
  • Utilize TiC/C interlayer with graphite particles for enhanced bonding strength.
  • Measure shear strength and residual stress reduction after treatment.
  • Shear strength of bonded joints reached 15.12 MPa, 1.39 times stronger than traditional methods.
  • Residual stress was reduced by 34.92% compared to conventional vacuum brazing.
  • TiC and graphite particles improved hardness by slowing down dislocation movement.

Abstract

SiC f /SiC composites suit high-temperature uses like aircraft engines for their thermal stability and strength. Metal joining challenges arise from thermal expansion mismatch, inducing interface stress. We propose Joule thermal shock for low-stress bonding through rapid localized heating. TiC/C interlayer's graphite particles enhance strength via superior TiC-graphite adsorption. • Localized surface heating selectively targets the interface, effectively limiting thermal expansion of the base metal. • Carbon fiber reinforcement increases shear strength to 15.12 MPa, 1.39 times higher than traditional joints. • Interfacial TiC layer and graphite particles synergistically enhance hardness by hindering dislocation propagation. • Joule heating mitigates stress mismatch, reducing joint residual stress by 34.92% compared to vacuum brazing.

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Cite This Study

Yan et al. (2026) studied this question.

synapsesocial.com/papers/69cf5dd55a333a821460bcb3https://doi.org/10.1016/j.jmrt.2026.03.230
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