Obara Paulina, Tomasik Justyna
Faculty of Civil Engineering and Architecture, Kielce University of Technology, Al. Tysiąclecia Państwa Polskiego 7, 25-314 Kielce, Poland.
Materials (Basel). 2021 Dec 20;14(24):7888. doi: 10.3390/ma14247888.
The aim of this study is to prove that it is possible to control the static behavior of tensegrity plate-like structures. This possibility is very important, particularly in the case of deployable structures. Here, we analyze the impact the support conditions of the structure have on the existence of specific characteristics, such as self-stress states and infinitesimal mechanisms, and, consequently, on the active control. Plates built with Simplex modules are considered. Firstly, the presence of the specific characteristics is examined, and a classification is carried out. Next, the influence of the level of self-stress state on the behavior of structures is analyzed. A geometrically non-linear model, implemented in an original program, written in the Mathematica environment, is used. The results confirm the feasibility of the active control of stiffness of tensegrity plate-like structures characterized by the presence of infinitesimal mechanisms. In the case when mechanisms do not exist, structures are insensitive to the initial prestress level. It is possible to control the occurrence of mechanisms by changing the support conditions of the structure. Based on the obtained results, tensegrity is very promising structural concept, applicable in many areas, when conventional solutions are insufficient.
本研究的目的是证明可以控制张拉整体板状结构的静态行为。这种可能性非常重要,特别是在可展开结构的情况下。在这里,我们分析结构的支撑条件对特定特性(如自应力状态和无穷小机构)的存在以及因此对主动控制的影响。考虑用单纯形模块构建的板。首先,检查特定特性的存在并进行分类。接下来,分析自应力状态水平对结构行为的影响。使用在Mathematica环境中编写的原始程序实现的几何非线性模型。结果证实了对以存在无穷小机构为特征的张拉整体板状结构的刚度进行主动控制的可行性。在不存在机构的情况下,结构对初始预应力水平不敏感。通过改变结构的支撑条件可以控制机构的出现。基于所得结果,张拉整体是一种非常有前途的结构概念,当传统解决方案不足时可应用于许多领域。