首页|期刊导航|高压物理学报|聚氨酯胶体含量对预浸PBO纤维复合板弹道性能的影响

聚氨酯胶体含量对预浸PBO纤维复合板弹道性能的影响OA

Effect of Polyurethane Colloid Content on the Ballistic Performance of Prepreg PBO Fiber Composite Laminates

中文摘要英文摘要

针对聚对苯撑苯并二噁唑(poly-p-phenylene ben-zobisthiazole,PBO)纤维表面化学惰性导致的复合材料界面结合弱、弹道性能不足的问题,采用水性聚氨酯预浸与热压工艺,制备了不同胶体质量分数(18.40%和 20.45%)和纤维层数(10、20、30)的 PBO 复合板,通过准静态拉伸、弹道实验和 X 射线计算机断层扫描技术,研究了复合材料的拉伸性能、弹道极限、失效模式及能量吸收机制.结果表明:该工艺可有效改善 PBO 纤维复合板的成形与防护性能;与胶体质量分数为 20.45%的试样相比,胶体质量分数为 18.40%的 30 层试样的抗拉强度提升了 14.86%,弹性模量提升 28.33%;弹道极限随胶体质量分数的增加而提高,10、20 层试样中20.45%胶体质量分数试样的弹道极限分别提升了 9.9%、5.3%,但随着层数增加的幅度逐渐减弱,30 层时二者差值不足 1%;复合板的主要失效模式包括纤维剪切断裂、基体破裂分层及纤维拉伸断裂;能量吸收通过纤维压缩变形、剪切与拉伸断裂协同实现,吸能效率随冲击速度提高呈下降趋势,随层数增加而增强,而胶体质量分数的影响在高层数时减弱.研究结果可为 PBO 纤维复合材料的弹道防护设计提供参考.

To address the issue of weak interfacial bonding and insufficient ballistic performance in poly-p-phenylene ben-zobisoxazole(PBO)fiber composites caused by the chemically inert fiber surface,the waterborne polyurethane impregnation followed by a hot-pressing process was employed to fabricate PBO composite laminates with varying resin mass fractions(18.40%and 20.45%)and numbers of fiber layers(10,20,and 30 layers).The tensile properties,ballistic limit,failure modes,and energy absorption mechanisms of the composites were investigated through quasi-static tensile testing,ballistic experiments,and X-ray computed tomography(CT).The results indicate that this process can effectively improve the formability and protective performance of the PBO fiber composite laminates.In comparison with the specimen exhibiting a resin mass fraction of 20.45%,the 30-layer specimen with a resin mass fraction of 18.40%demonstrated a 14.86%increase in tensile strength and a 28.33%increase in elastic modulus.The ballistic limit increases with resin content.The ballistic limit of the 10-layer and 20-layer specimens with a resin mass fraction of 20.45%increases by 9.9%and 5.3%,respectively.However,the increasing effect diminishes with a greater number of layers.For the 30-layer specimens,the difference in resin mass fraction between the two resins was less than 1%.The primary failure modes of the composite laminates include fiber shear fracture,matrix cracking and delamination,and fiber tensile fracture.Energy absorption is achieved through the synergistic mechanisms of fiber compressive deformation,shear,and tensile fracture.Efficiency of the energy absorption decreases with increasing impact velocity,while it increases with the number of layers under the same impact velocity.The effect of colloid content diminishes significantly for numerous layers.The study can provide a reference for the design of ballistic protection using PBO fiber composites.

苏子涵;李翔宇;梁民族;王洁;林玉亮;张玉武

国防科技大学理学院,湖南 长沙 410073国防科技大学理学院,湖南 长沙 410073国防科技大学理学院,湖南 长沙 410073||军事科学院国防工程研究院目标易损性评估全国重点实验室,北京 471000国防科技大学理学院,湖南 长沙 410073国防科技大学理学院,湖南 长沙 410073国防科技大学理学院,湖南 长沙 410073

数理科学

PBO纤维聚氨酯胶体弹道极限失效模式能量吸收

poly-p-phenylene ben-zobisoxazole fiberpolyurethane colloidballistic limitfailure modeenergy absorption

《高压物理学报》 2026 (7)

86-98,13

国家自然科学基金(12522215,12272410)湖南省重点研发计划(2025JK2084)目标易损性评估全国重点实验室开放基金(YSX2024KFXY009)

10.11858/gywlxb.20261034

评论