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Design parametric study based fabrication and evaluation of in-pipe moving mechanism using shape memory alloy actuators

机译:基于设计参数研究的使用形状记忆合金执行器的管内移动机构的制造和评估

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摘要

An in-pipe moving mechanism based on design parametric study of dynamic characteristics of clamping or moving module comprising shape memory alloy (SMA) spring actuators has been fabricated and evaluated under in-pipe condition. Conventional in-pipe moving mechanisms for pipe inspection, driven by electromagnetic motors, have large volume and mass. The SMA actuator can be an alternative for a small-sized in-pipe moving mechanism due to its great power-to-weight ratio and simple structure. Therefore, spring type SMA actuators are selected to fabricate an inchworm-like moving mechanism that consists of clamping and moving modules. For selection of proper operating type (a bias type or a differential type) for clamping module and moving module, displacements and dynamic characteristics of each operating type have been investigated. Based on experimental results, we decide some design parameters such as wire diameters, spring diameters and the numbers of turns of SMA spring actuators and fabricate the in-pipe moving mechanism according to the designed results. A moving speed of 34 mm/min and traction force of 0.4 N have been obtained from the driving experiment in a pipe with the diameter of 39 mm.
机译:在管内条件下,制造并评估了基于包括形状记忆合金(SMA)弹簧执行器的夹紧或移动模块动态特性的设计参数研究的管内移动机构。由电磁马达驱动的用于管道检查的常规管道内移动机构具有大体积和质量。 SMA执行器由于具有很大的功率重量比和简单的结构,因此可以替代小型管道内移动机构。因此,选择弹簧型SMA执行器来制造由夹持和移动模块组成的类蠕虫状移动机构。为了为夹紧模块和移动模块选择合适的操作类型(偏置类型或差动类型),已经研究了每种操作类型的位移和动态特性。根据实验结果,我们确定一些设计参数,例如线径,弹簧直径和SMA弹簧执行器的转数,并根据设计结果制造出管道内移动机构。在直径为39 mm的管道中,通过驱动实验已获得34 mm / min的移动速度和0.4 N的牵引力。

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