Ablative cooling with ceramic shield
Combining ablation-driven heat dissipation and in-situ ceramic shielding, it stays cooler and resists recession under extreme heat flux, offering a new candidate for aerospace thermal protection.
Li, Liang · Hongxiang, Cai · Jiaxin, Yao · Peiqi, Yang · Su, Zhe · Luo, Yi · Liang, Xiubing · Wang, Xiaojing · Niu, Bo · Long, Donghui
Carbon 2026
Near-zero surface recession at 1630°C for 300 s
Maximum surface temperature reduction of 310°C