TY - JOUR
T1 - Thermal history and stress redistributions achieving reduced crack susceptibility in laser-directed energy-deposited Al2O3/GAP/ZrO2 eutectic ceramics by circular oscillation scanning
AU - Jiang, Hao
AU - Su, Haijun
AU - Yu, Shengyang
AU - Zhu, Peiyi
AU - Yu, Minghui
AU - Wang, Ruotong
AU - Zhang, Yun
AU - Li, Xiang
AU - Guo, Yinuo
N1 - Publisher Copyright:
© 2026
PY - 2027/3/10
Y1 - 2027/3/10
N2 - Crack control remains a major challenge in laser-directed energy deposition (LDED) of oxide eutectic ceramics because of their intrinsic brittleness and thermal-stress accumulation. In this work, emissivity-calibrated in-situ infrared thermometry and thermo-mechanical simulation were used to reveal how circular oscillation scanning (COS) reduces the crack susceptibility of LDED Al2O3/GAP/ZrO2 eutectic ceramics. Compared with linear reciprocating scanning, COS produced a wider high-temperature zone, stronger interlayer reheating, and milder recooling. At the representative mid-height location, the average cooling rate from peak temperature to melting point decreased from 330.91 to 173.82 °C/s, while the reheating-induced temperature rise increased from 167.38 to 1076.03 °C. Stress analysis showed that COS reduced crack susceptibility mainly by weakening the continuous bottom-centered tensile-stress band and localizing higher-stress regions near the side areas, rather than by simply lowering the local stress peak. This stress redistribution was consistent with the observed transition from bottom-initiated vertical cracking to side-localized, laterally limited cracking. The COS parameter study further revealed a trade-off between thermal coverage and tensile-stress concentration. These findings provide guidance for scan-path design and crack control in LDED of oxide eutectic ceramics.
AB - Crack control remains a major challenge in laser-directed energy deposition (LDED) of oxide eutectic ceramics because of their intrinsic brittleness and thermal-stress accumulation. In this work, emissivity-calibrated in-situ infrared thermometry and thermo-mechanical simulation were used to reveal how circular oscillation scanning (COS) reduces the crack susceptibility of LDED Al2O3/GAP/ZrO2 eutectic ceramics. Compared with linear reciprocating scanning, COS produced a wider high-temperature zone, stronger interlayer reheating, and milder recooling. At the representative mid-height location, the average cooling rate from peak temperature to melting point decreased from 330.91 to 173.82 °C/s, while the reheating-induced temperature rise increased from 167.38 to 1076.03 °C. Stress analysis showed that COS reduced crack susceptibility mainly by weakening the continuous bottom-centered tensile-stress band and localizing higher-stress regions near the side areas, rather than by simply lowering the local stress peak. This stress redistribution was consistent with the observed transition from bottom-initiated vertical cracking to side-localized, laterally limited cracking. The COS parameter study further revealed a trade-off between thermal coverage and tensile-stress concentration. These findings provide guidance for scan-path design and crack control in LDED of oxide eutectic ceramics.
KW - Circular oscillation scanning
KW - Crack susceptibility
KW - Laser-directed energy deposition
KW - Oxide eutectic ceramics
KW - Thermal history
UR - https://www.scopus.com/pages/publications/105045474695
U2 - 10.1016/j.jmst.2026.07.021
DO - 10.1016/j.jmst.2026.07.021
M3 - 文章
AN - SCOPUS:105045474695
SN - 1005-0302
VL - 283
SP - 46
EP - 58
JO - Journal of Materials Science and Technology
JF - Journal of Materials Science and Technology
ER -