Li Peng, Ning Hongyang, Yan Jiayong, Xu Bo, Li Hongjian
Mechanical Engineering College, Yanshan University, Qinhuangdao 066004, China.
Hebei Innovation Center for Equipment Lightweight Design and Manufacturing, Qinhuangdao 066004, China.
Materials (Basel). 2022 Sep 1;15(17):6025. doi: 10.3390/ma15176025.
In this paper, large space structures are essential components of significant equipment in orbits, such as megawatt-class solar power plants and long baseline interferometry. However, to realize the in-space fabrication of such megastructures, the primary consideration is the continuous fabrication of the structure. In this paper, we propose and design a structural form that differs from the minimum constituent unit shape of conventional truss structures by using an efficient winding and weaving method to construct truss structures. The continuously buildable one-dimensional truss's structural design and mechanical properties are investigated. The parameters affecting the fundamental frequency of the truss structure are analyzed through modeling, simulation and experimental verification of the continuously buildable 1D truss. It is concluded that this configuration truss can be built continuously in space. The most influential factors on the fundamental truss frequency are the truss section spacing, the total truss length and the truss-specific stiffness. The simulated and theoretical values of the truss's static stiffness and vibration frequency have minor errors, which provide a basis for the configuration design for the continuous manufacturing of large truss structures in space.
在本文中,大型空间结构是轨道上重要设备的关键组成部分,例如兆瓦级太阳能发电厂和长基线干涉测量仪。然而,要实现此类巨型结构的太空制造,首要考虑的是结构的连续制造。在本文中,我们提出并设计了一种结构形式,它不同于传统桁架结构的最小组成单元形状,通过使用高效的缠绕和编织方法来构建桁架结构。对可连续建造的一维桁架的结构设计和力学性能进行了研究。通过对可连续建造的一维桁架进行建模、仿真和实验验证,分析了影响桁架结构基频的参数。得出结论,这种构型的桁架能够在太空中连续建造。对桁架基频影响最大的因素是桁架截面间距、桁架总长度和桁架比刚度。桁架的静态刚度和振动频率的模拟值与理论值误差较小,为太空大型桁架结构连续制造的构型设计提供了依据。