Nacre-inspired boron nitride/sodium alginate composite with enhanced mechanical properties by prestress

摘要

Prestressing strategies are widely adopted in the formation of biological structures to modify their mechanical property. Inspired from the prestress generation during the formation of biominerals, a nacre-inspired boron nitride (BN) nanosheets strengthened by prestressed sodium alginate (SA) matrix is fabricated. The BN/SA (BS) films are formed by freeze-casting and pressing, then immerse in ethanol (BS-E) or CaCl2 solution (BS-Ca). Several megapascals contractile stress is generated in film that is attributed to the contraction and crosslink of SA chains. Subsequently, artificial bulk composites are fabricated by stacking of these prestressed films via hot-pressing. Benefit from the contractile stress, the orientations of BN nanosheets in BS-E and BS-Ca are improved, and the (002) interplanar spacing of BN nanosheets in BS-Ca bulk is slight expansion compared with BS. Finally, the flexural strength of BS-E bulk is enhanced from 145 MPa (BS) to 174 MPa when the loading direction is parallel to stacking.

出版物
Composites Part A: Applied Science and Manufacturing
平航
平航
研究员

武汉理工大学材料复合新技术全国重点实验室研究员、博士生导师,国家级高层次青年人才,主要研究方向是生物过程启示的限域制备新技术与陶瓷材料低温制备新技术。

邹朝勇
邹朝勇
研究员

武汉理工大学材料复合新技术国家重点实验室研究员,国家级高层次人才(青年项目),湖北省高层次人才,主要研究方向是生物过程启示的制备技术

王为民
王为民
首席教授、博士生导师

武汉理工大学首席教授,博士生导师。

傅正义
傅正义
中国工程院院士

中国工程院院士,武汉理工大学教授。