Wang Rong, Shang Jianzhong, Li Xin, Luo Zirong, Wu Wei
College of Mechatronics and Automation, National University of Defense Technology, Changsha, Hunan, 410073, China.
State Key Laboratory of Pulsed Power Laser Technology, Electronic Engineering Institute, Hefei, 230037, China.
Sci Rep. 2018 Jun 25;8(1):9604. doi: 10.1038/s41598-018-27963-4.
Constrained layer dampers (CLD) are in widespread use for passive vibration damping, in applications including aerospace structures. However, the introducing of the damping layer can reduce the stiffness of the sandwich structures. A viscoelastic material filling (VMF) is chosen to balance structural and vibrational performance of lattice truss in this work. The recently brought forward 3D Kagome truss with face sheet was manufactured by selective laser sintering technology and the thermosetting polyurethane was chosen as the viscoelastic filling material. A novel complex modal analysis finite element method for Hybrid composite lattice truss sandwich is introduced in this paper. Dynamic analysis experiment results show that the VMF method is found to be effective in reducing the vibration amplitude and it has the potential for band-gap design. The VMF method can provide high stiffness at low mass and considerable vibrational performance at low cost and it can be considered as a general vibration design method in lattice truss manufacture.
约束层阻尼器(CLD)广泛应用于被动减振,包括航空航天结构等应用领域。然而,引入阻尼层会降低夹层结构的刚度。在这项工作中,选择了一种粘弹性材料填充物(VMF)来平衡晶格桁架的结构和振动性能。最近提出的带面板三维 Kagome 桁架是通过选择性激光烧结技术制造的,并选择热固性聚氨酯作为粘弹性填充材料。本文介绍了一种用于混合复合晶格桁架夹层的新型复模态分析有限元方法。动态分析实验结果表明,VMF 方法在降低振动幅度方面是有效的,并且具有带隙设计的潜力。VMF 方法可以在低质量下提供高刚度,并以低成本提供可观的振动性能,它可被视为晶格桁架制造中的一种通用振动设计方法。