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首页> 外文期刊>Journal of intelligent material systems and structures >Elastic compensation of linear shape memory alloy actuators using compliant mechanisms
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Elastic compensation of linear shape memory alloy actuators using compliant mechanisms

机译:使用柔顺机构对线性形状记忆合金执行器进行弹性补偿

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摘要

This article presents a modular architecture for shape memory alloy actuators elastically compensated by thin beams loaded axially beyond their buckling limit. Starting from the exact equations for the elastic curve of the beams, an approximate procedure is developed for the engineering design of the entire compensating system. The theory of the compensator is validated successfully against a finite element model and experimental results. The experimental characterization of a complete prototype actuator shows that the forces generated by the compensated actuator are constant for both instroke and outstroke over the full range of displacements. The actuator concept proposed lends itself to modular assembly to multiply either the stroke covered (series combination) or the force generated (parallel combination).
机译:本文提出了一种用于形状记忆合金致动器的模块化架构,该致动器由轴向加载超过其屈曲极限的细梁进行弹性补偿。从梁的弹性曲线的精确方程式出发,为整个补偿系统的工程设计制定了近似程序。针对有限元模型和实验结果,成功验证了补偿器的理论。完整的原型执行器的实验特性表明,在整个位移范围内,补偿执行器产生的力对于行程和行程都是恒定的。提出的执行器概念使其适用于模块化组装,以增加行程范围(串联组合)或产生的力(并联组合)。

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