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March 3, 2026Ceramics International0 citationsOpen Access

Bending strength increase of silicon carbide by density gradient structure design by direct ink writing

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HKHiroki KuritaZWZhenjin WangTKTeppei Kudo

Key Points

  • A 48% increase in bending strength was observed with the density-gradient structure.
  • Crack initiation consistently started on the bottom surface where tensile stress is highest.
  • Observational analysis utilized high-speed camera imaging to track crack propagation during tests.
  • This design approach may enable better structural integrity in silicon carbide applications.

Abstract

In this study, density-gradient silicon carbide (SiC) was fabricated using direct ink writing with alumina and yttria as sintering additives. The structure in which a high-density layer is sandwiched between low-density layers exhibited a 48% increase in bending strength compared to a monolithic high-density structure. High-speed camera imaging revealed that cracks in all bending tests consistently initiated on the bottom surface of the specimen, where tensile stress is applied. In the structure in which a high-density layer is sandwiched between low-density layers, the compressive stress in the low-density layer suppressed crack initiation, and the residual stress was highest at the interface between high- and low-density layers. This design concept suggests that using a relatively low-density structure on the SiC surface, where cracks are likely to initiate, and minimizing the distance from the SiC surface to the interface between high- and low-density layers can enhance crack initiation suppression and improve bending strength.

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Cite This Study

Kurita et al. (2026) studied this question.

synapsesocial.com/papers/69a7683ebadf0bb9e87e41afhttps://doi.org/10.1016/j.ceramint.2026.02.018
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