Zhang Rui, Huang Weibo, Lyu Ping, Yan Shuai, Wang Xu, Ju Jiahui
School of Civil Engineering, Qingdao University of Technology, Qingdao 266520, China.
Qingdao Shamu Advanced Material Co., Ltd., Qingdao 266000, China.
Polymers (Basel). 2022 Jun 30;14(13):2670. doi: 10.3390/polym14132670.
Polyurea has attracted extensive attention from researchers and engineers in the field of blast and impact protection due to its excellent quasi-static mechanical properties and dynamic mechanical properties. Its mechanical properties and energy absorption capacity have been tuned by means of formulation optimization, molecular dynamics (MD) simulation and the addition of reinforcing materials. Owing to the special molecular structure of polyurea, the mechanism of polyurea protection against blasts and impacts is the simultaneous effect of multiple properties. For different substrates and structures, polyurea needs to provide different performance characteristics, including adhesion, hardness, breaking elongation, etc., depending on the characteristics of the load to which it is subjected. The current article reviews relevant publications in the field of polyurea blast and impact protection, including material optimization, protection mechanisms and applications in blast and impact protection.
由于聚脲具有优异的准静态力学性能和动态力学性能,它在爆炸与冲击防护领域引起了研究人员和工程师的广泛关注。其力学性能和能量吸收能力已通过配方优化、分子动力学(MD)模拟以及添加增强材料等方式进行了调整。由于聚脲特殊的分子结构,聚脲防护爆炸与冲击的机制是多种性能的协同作用。对于不同的基材和结构,聚脲需要根据其所承受载荷的特性提供不同的性能特点,包括附着力、硬度、断裂伸长率等。本文综述了聚脲爆炸与冲击防护领域的相关出版物,包括材料优化、防护机制以及在爆炸与冲击防护中的应用。