1. 吉林大学汽车仿真与控制国家重点实验室
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张如灏, 崔岸, 陈宠, 等. 亚麻-玄武岩纤维层合板低速冲击性能及应用研究[J]. 机械强度, 2022,(6):1350-1356.
ZHANG RuHao, CUI An, CHEN Chong, et al. LOW SPEED IMPACT PERFORMANCE AND APPLICATION OF FLAX-BASALT FIBER COMPOSITES (MT)[J]. Journal of Mechanical Strength , 2022,(6):1350-1356.
张如灏, 崔岸, 陈宠, 等. 亚麻-玄武岩纤维层合板低速冲击性能及应用研究[J]. 机械强度, 2022,(6):1350-1356. DOI: 10.16579/j.issn.1001.9669.2022.06.012.
ZHANG RuHao, CUI An, CHEN Chong, et al. LOW SPEED IMPACT PERFORMANCE AND APPLICATION OF FLAX-BASALT FIBER COMPOSITES (MT)[J]. Journal of Mechanical Strength , 2022,(6):1350-1356. DOI: 10.16579/j.issn.1001.9669.2022.06.012.
针对汽车轻量化和碰撞安全性需求,制备亚麻-玄武岩纤维复合材料层合板,通过试验及仿真分析,探讨了复合结构的拉伸、剪切和抗冲击特性。采用应变形式的三维Hashin失效准则和基于断裂韧性的刚度线性退化方案,编写了自定义材料模型Vumat子程序,建立低速冲击有限元模型,研究铺层结构和铺层角度对层合板抗低速冲击性能的影响,并将亚麻-玄武岩纤维层合板结构应用于发动机罩内外板,进行静态工况和儿童头部碰撞仿真分析。结果表明,该结构发动机罩静态刚度、减重效果均优于原钢制发动机罩,儿童头部保护性能满足要求,内板采用复合结构时性能提升更加明显。
In order to meet the requirements of vehicle lightweight and crash safety, flax-basalt fiber composite laminates were made. The tensile, shear and impact resistance properties of the composite structure were discussed through test and simulation analysis. Using the three-dimensional Hashin failure criterion of strain form and the stiffness linear degradation scheme based on fracture toughness, the Vumat subroutine was compiled to establish a low-speed impact finite element model. The effects of ply structure and ply angle on the low-speed impact resistance of laminates were studied. The flax-basalt fiber laminate structure was applied to the inner and outer panels of engine hood under static conditions and children’s head impact simulation analysis. The results show that the static stiffness and weight reduction effect of the structure are better than steel engine cover, the child head protection performance meets the requirements, and the performance improvement is more obvious when the inner plate adopts the composite structure.
亚麻纤维玄武岩纤维低速冲击儿童头部碰撞仿真
Flax fiberBasalt fiberLow speed impactChild-pedestrian head impact simulation
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