TY - JOUR
T1 - Transformation dynamics, pattern selection, and mechanical properties of B4C-TiB2 eutectic ceramics fabricated by optical floating zone melting
AU - Ren, Qun
AU - Su, Haijun
AU - Yang, Xirong
AU - Cui, Chunjuan
AU - Wang, Yenan
AU - Han, Yuyang
AU - Wan, Weihao
AU - Wang, Haizhou
N1 - Publisher Copyright:
© 2026 Elsevier Ltd.
PY - 2027/1
Y1 - 2027/1
N2 - Directionally solidified B4C-TiB2 eutectic ceramics are fabricated via optical floating zone (OFZ) method. Their microstructures and mechanical properties were analyzed by means of high-throughput characterization and image recognition analysis technology. The results show five different typical morphologies of eutectics. Quantitatively analysis based on high-throughput characterization results revealed that the width, length, length/width (L/W) ratio, area fraction of the TiB2 second phase were inhomogenously distributed along the specimen. Three-dimensional reconstruction visualized the spatial structure of eutectics, indicating a lamellar-rod transition that many be attributed to the amplified varicose instability of lamellar eutectic; rod-like eutectic is also observed adjacent to the coarse B4C phase within colony structure. Vickers hardness tested by indentation array exhibited a bimodal distribution with an average value of approximately 47.8 GPa. Indentation size was comparable to the eutectic phase, with higher hardness observed in B4C lamellae especially near the TiB2 lamellar tip and lower hardness in TiB2 lamellae.
AB - Directionally solidified B4C-TiB2 eutectic ceramics are fabricated via optical floating zone (OFZ) method. Their microstructures and mechanical properties were analyzed by means of high-throughput characterization and image recognition analysis technology. The results show five different typical morphologies of eutectics. Quantitatively analysis based on high-throughput characterization results revealed that the width, length, length/width (L/W) ratio, area fraction of the TiB2 second phase were inhomogenously distributed along the specimen. Three-dimensional reconstruction visualized the spatial structure of eutectics, indicating a lamellar-rod transition that many be attributed to the amplified varicose instability of lamellar eutectic; rod-like eutectic is also observed adjacent to the coarse B4C phase within colony structure. Vickers hardness tested by indentation array exhibited a bimodal distribution with an average value of approximately 47.8 GPa. Indentation size was comparable to the eutectic phase, with higher hardness observed in B4C lamellae especially near the TiB2 lamellar tip and lower hardness in TiB2 lamellae.
KW - BC-based eutectic ceramics
KW - High-throughput characterization
KW - Mechanical properties
KW - Microstructures
KW - Optical floating zone (OFZ)
UR - https://www.scopus.com/pages/publications/105047555086
U2 - 10.1016/j.jeurceramsoc.2026.118784
DO - 10.1016/j.jeurceramsoc.2026.118784
M3 - 文章
AN - SCOPUS:105047555086
SN - 0955-2219
VL - 47
JO - Journal of the European Ceramic Society
JF - Journal of the European Ceramic Society
IS - 1
M1 - 118784
ER -