19 3 月, 2018

代写论文:张拉整体

代写论文:张拉整体

术语“张拉整体”是指张力和完整性,即张力和压缩成分(Bansod等,2014)。富勒研究员(1982)将张拉整体解释为只有当不连续的压缩部件和连续的拉伸部件集成在一个稳定的空间体积中时才建立起来的系统。在更广泛的结构中,整个宇宙可以被理解为张拉整体结构。在微观结构层面,行星系统甚至原子系统被安排,同时与引力张力相连。这构成了拉伸构件的力量。更重要的是,像斯内尔森(Snelson,1996)这样的研究人员将张拉整体描述为更多的封闭系统。 “对张拉整体结构的主动控制研究始于20世纪90年代中期。时间紧张对于可控和聪明的结构来说往往是有吸引力的解决方案;需要少量的能量来改变张拉整体结构的形状(Ali and Smith,2010,p.3)。

代写论文:张拉整体
一种封闭的结构系统,带有三根更细长的压缩支柱,存在于张紧钢筋网络中。这里的系统是由细长的压缩支柱组成,它们相互支撑,但不会相互接触。向外按压在顶点和张力网络中的节点形成更多的三角测量。因此,这是第一个在公司三角化设置中考虑均衡平衡概念的定义。斯内尔森(Snelson,1996)将张拉整体简称为不连续压缩和持续张力。它被定义为一个结构原理,系统在空间上被划定。即使生物系统被认为是张拉整体结构,例如,可以认为是张拉整体结构的生物系统如细胞,组织和器官系统。肌肉骨骼系统是一种张拉整体结构。在技术的背景下,张拉整体被理解为在建筑结构,结构等中广泛使用的方式,但应用和理解的形式将是相同的(Stamenovićand Ingber,2009) 。

代写论文:张拉整体

The term tensegrity was coined with the words tensional and integrity, meaning the tension and compression components (Bansod et al., 2014). Researcher Fuller (1982) explains tensegrity as a system established only when discontinuous compressive components and continuous tensile components integrate in a stable volume in space. In the broader structure even, the entire universe can be understood as a tensegrity structure. At a microstructural level, planetary systems or even atomic systems are arranged, while connected with the gravitational tensional force. This constitutes the tensile member forces. What’s more, researcher like Snelson (1996) describes tensegrity as more of a closed system. “Research into active control of tensegrity structure was initiated in the mid 1990s. Tensegrities are attractive solutions for controllable and smart structures as often; small amounts of energy are needed to change the shape of tensegrity structures (Ali and Smith, 2010, p. 3).

代写论文:张拉整体
A closed structural system with three and more slender compression struts as present within the network of tensioned tendons. Here the system is made of slender compressions struts that are mutually supportive and yet would not touch one another. The press outwardly in a nodal point at the vertex and in the tension network forms more of a triangulation. Hence this was the first definition to even consider the concept of equilibrated balance in the firm triangulated setup. Tensegrity in short was described by Snelson (1996) as something that is discontinuous compression and continuous tension. It was defined as a structural principle, where the system is delineated spatially. Even biological systems are considered as tensegrity structures, for instance, biological systems such as cells, tissues, and organ systems which can be considered as tensegrity structures. The muscular skeletal system is a tensegrity structure, In the context of technology, tensegrity is understood as the way that is used widely in building constructions, structures etc. but the form of application and understanding will be the same (Stamenović and Ingber, 2009).

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