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Hinged beam elements for the topology design of compliant mechanisms using the ground structure approach

机译:铰接梁单元,用于采用地面结构方法的顺应性机构的拓扑设计

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The design obtained from a topology optimization problem can be sensitive to the type and details of the ground structure used. A new type of ground structure containing hinged beam elements is described that increases the types of elements in the ground structure available to the optimizer. In addition to the pin-ended truss and rigidly-connected beam elements that have traditionally been used, two new types of elements are introduced: (1) a beam with a hinge on one end and a solid connection on the other end, (2) a beam with hinges on both ends. These elements have different deflection characteristics than those of the typical truss or beam elements, and can be used in ground structure-based compliant mechanism design. Given a reduced ground structure, these new elements effectively increase the design space. Pin-ended members with lengths larger than those of the ground structure cell size are permitted to develop, reducing the sensitivity of solutions to the cell density of the reduced ground structure. Furthermore, because these longer members do not require intermediate lateral support to provide stability, as series connections of shorter pin-ended members do, fewer ancillary members are required. Two compliant mechanism problems are solved to demonstrate the effectiveness of these new elements.
机译:从拓扑优化问题获得的设计可能对所用地面结构的类型和细节敏感。描述了一种包含铰接梁单元的新型地面结构,该结构增加了优化器可用的地面结构中的单元类型。除了传统上使用的带销的桁架和刚性连接的梁单元之外,还引入了两种新类型的单元:(1)在一端具有铰链而在另一端具有坚固连接的梁,(2 )两端均带有铰链的梁。这些元素的挠曲特性与典型桁架或梁元素的挠曲特性不同,可用于基于地面结构的柔顺机构设计。如果减少了地面结构,这些新元素将有效地增加设计空间。可以开发出长度大于接地结构单元尺寸的针形端构件,从而降低了溶液对缩小后的接地结构的单元密度的敏感性。此外,因为这些较长的构件不需要中间的侧向支撑来提供稳定性,所以如较短的销端构件的串联连接那样,因此需要较少的辅助构件。解决了两个兼容的机制问题,以证明这些新元素的有效性。

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