The combination of graphene (Gr) and graphene-like materials provides the possibility of using two-dimensional (2D) atomic layer building blocks to create unprecedented architectures.
Inflatable film truss structures have been widely employed in spaceship unfolding sections and supporting structures, and the membrane structure’s folding scheme has a substantial impact on the unfolding effect. In this research, a parametric model of a thin film structure is built using the collaborative fold design approach. The dynamic simulation study of the inflatable film structure was performed using the enhanced spring-particle system and the expansion kinetic behavior and parameters were determined. The results of the study reveal that the simulation process is robust and trustworthy, with no component collisions, evaluating the efficacy of the folding scheme design and providing technical support for such engineering applications..
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