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首页> 外文期刊>Journal of intelligent material systems and structures >A multi-layered variable stiffness device based on smart form closure actuators
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A multi-layered variable stiffness device based on smart form closure actuators

机译:基于智能模板闭合执行器的多层可变刚度装置

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This contribution describes the properties and limitations of multi-layered mechanical devices with variable flexural stiffness. Such structures are supposed to be components of new smart, self-sensing and self-controlling composite materials for lightweight constructions. To enable a proper stiffness control, reliable actuators with high actuation capabilities based on smart materials are used. Those actuators are either driven by electroactive polymers (EAPs) or shape memory alloy (SMA) wires. They control the area moment of inertia of the multi-layered bending structures. To change the area moment of inertia and, hence, the flexural stiffness of an multi-layered beam within a wide range, it is necessary to stack as many layers as possible over each other. The fundamental function of this approach is demonstrated with a three-layer stack consisting of three independent layers and four form closure actuators driven by SMAs. This experimental set-up was able to change its bending stiffness k by a factor of 14.6, with a minimum and maximum stiffness of k(min)=0.11Nmm(-1) and k(max)=1.73Nmm(-1), respectively. The usage of four independently controllable actuators yields nine independent flexural-stiffness states of the beam. Both analytical and numerical calculations have shown good agreement with the measured stiffness values.
机译:该贡献描述了具有可变弯曲刚度的多层机械装置的特性和局限性。这种结构被认为是用于轻型建筑的新型智能,自感应和自控制复合材料的组成部分。为了实现适当的刚度控制,使用了基于智能材料的具有高致动能力的可靠致动器。这些执行器由电活性聚合物(EAP)或形状记忆合金(SMA)线驱动。它们控制多层弯曲结构的区域惯性矩。为了在宽范围内改变区域惯性矩并因此改变多层梁的抗弯刚度,必须彼此尽可能多地堆叠。通过由三层独立的层和由SMA驱动的四种形式的闭合执行器组成的三层堆栈来演示此方法的基本功能。此实验装置能够将其弯曲刚度k改变14.6倍,最小和最大刚度k(min)= 0.11Nmm(-1)和k(max)= 1.73Nmm(-1),分别。四个独立可控致动器的使用产生了梁的九个独立抗弯刚度状态。分析和数值计算都显示出与测得的刚度值良好的一致性。

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