Yuanbo CaiHuawei ZouZhengguang HengYang ChenMei Liang
High-performance ablative composites demonstrate promising applications in the field of aerospace for thermal protection. In this study, the preparation of flexible thermal ablative composites with fast room-temperature self-healing properties was reported. First, a facile route to synthesize transparent and self-healing PDMS-polyurethane (PU) elastomers was proposed. Results showed that the room-temperature self-healing efficiency of PDMS-PU elastomers can reach as high as 92.9% for 3 h. Low-field NMR analysis indicated that the mobility of molecular chains plays a critical role in determining the self-healing efficiency of PDMS-PU elastomers. Afterward, polymeric thermal protection composites which can be self-healed at room temperature within 24 h were prepared. Results indicated that the self-healed composites can withstand flame erosion at nearly 1300 °C. This work provides insights into expanding the application of self-healing materials in the aerospace industry, where heat ablation and the intactness of thermal protection systems are both primary concerns.
Yuanbo Cai (9327656)Huawei Zou (567334)Shengtai Zhou (8148087)Yang Chen (9737)Mei Liang (709372)
Jessica J. CashTomohiro KuboAbhijeet P. BapatBrent S. Sumerlin
JessicaJ. Cash (1620580)Tomohiro Kubo (1506925)Abhijeet P. Bapat (1620577)Brent S. Sumerlin (1483285)
Shuo WangDaihua FuXiaorong WangWuli PuAlfonso MartoneXili LuMarino LavorgnaZhanhua WangEugenio AmendolaHesheng Xia
Yindong WangWenbo MaZhiwen JianXiaokang ZhangXi YangXili LuZhanhua WangHesheng Xia