Qiu Yan, Wu Liang, Liu Sijun, Yu Wei
Advanced Rheology Institute, Department of Polymer Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, P. R. China.
ACS Appl Mater Interfaces. 2023 Feb 22;15(7):10053-10063. doi: 10.1021/acsami.2c22993. Epub 2023 Feb 12.
Soft body armor greatly improves the comfort and security of the wearers. Although laminates based on high-performance fabrics have been adopted, it remains an enormous challenge to develop fabric laminates having flexibility, low bulge deformation, and ballistic protection capability simultaneously. Herein, we report a bullet-proof bicontinuous hydrogel (BH)/ultrahigh-molecular weight polyethylene fabric (UPF) composite. The presence of the BH significantly improves the impact resistance performance of the UPF, without compromising its flexibility. In specific, the multiscale energy dissipation structures composed of hydrogen bond associations in the chain scale, bicontinuous phase structures in the nanoscale, and fibers in the microscale are broken to dissipate energy. As a result, the impact energy of the bullet is greatly absorbed and the bulge height of the composites is significantly reduced in contrast to the neat UPF laminates. This study indicates that the flexible BH-UPF composites with multiscale energy dissipation structures have a promising application in soft body armor.
柔软的防弹衣极大地提高了穿戴者的舒适度和安全性。尽管基于高性能织物的层压板已被采用,但同时开发具有柔韧性、低鼓包变形和防弹能力的织物层压板仍然是一个巨大的挑战。在此,我们报道了一种防弹双连续水凝胶(BH)/超高分子量聚乙烯织物(UPF)复合材料。BH的存在显著提高了UPF的抗冲击性能,同时不影响其柔韧性。具体而言,由链尺度上的氢键缔合、纳米尺度上的双连续相结构和微米尺度上的纤维组成的多尺度能量耗散结构被破坏以耗散能量。结果,与纯UPF层压板相比,子弹的冲击能量被大大吸收,复合材料的鼓包高度显著降低。这项研究表明,具有多尺度能量耗散结构的柔性BH-UPF复合材料在柔软防弹衣方面具有广阔的应用前景。