首页> 外文会议>IFToMM World Congress on Mechanism and Machine Science >Design of a Folded Leaf Spring with high support stiffness at large displacements using the Inverse Finite Element Method
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Design of a Folded Leaf Spring with high support stiffness at large displacements using the Inverse Finite Element Method

机译:用逆有限元法在大型位移中具有高支撑刚度的折叠片弹簧的设计

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Compliant (flexure) elements provide highly precise motion guiding because they do not suffer from friction or backlash. However, their support stiffness drops dramatically when they are actuated from their home position. In this paper, we show that the existing Inverse Finite Element (IFE) method can be used to efficiently design flexure elements such that they have a high support stiffness in their actuated state. A folded leaf spring element was redesigned using an IFE code written in Matlab. The design was validated using the commercial Finite Element software package Ansys, showing the desired high support stiffness in the actuated state. The proposed method could aid in the design of more compact flexure mechanisms with a larger useful range of motion.
机译:兼容(弯曲)元件提供高精度的运动引导,因为它们不会遭受摩擦或间隙。然而,当它们被致动出原始位置时,它们的支撑刚度急剧下降。在本文中,我们表明,现有的逆有限元(IFE)方法可用于有效地设计挠性元件,使得它们在其致动状态下具有高支撑刚度。使用在Matlab中编写的IFE代码重新设计折叠的叶子弹簧元件。使用商业有限元件软件包ANSYS验证设计,示出了致动状态下所需的高支撑刚度。所提出的方法可以帮助设计更紧凑的弯曲机构,具有更大的有用运动范围。

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