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Precise Positioning of Terfenol-D Actuator by Eliminating the Heat Generated by Coil

机译:通过消除线圈产生的热量精确定位Terfenol-D执行器

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Large displacement, large generated stress and easy fabrication process lead to the large industrial use of the magnetostrictive materials. However, the thermal expansion restricts their application in precise positioning, which is about 12 ?and too much to be neglected. In this research, the cooling system was exploited in order to eliminate the joule heat generated by coils under the direct current and solve inaccuracy problem. The investigation consists of two parts; first was design and fabricating the actuator of Terfenol-D with length of 30mm which offers 10 ?displacement under the DC current of 1A, and second was the cooling system consisting of the thermoelectric cooler, heat sink and control circuit to inhibit the Terfenol-D temperature to be increased. Without the cooling system, as the time was going on and the Terfenol-D was warming up, after about two hours the displacement reached to 68 ?which deteriorated the accuracy of positioning significantly. By applying the cooling system, the displacement was maintained in 10 ?with the tolerance of , which realized the precise positioning by the Terfenol-D actuator.
机译:大位移,大的产生应力和容易的制造工艺导致磁致伸缩材料在工业上的大量使用。但是,热膨胀限制了它们在精确定位中的应用,该定位大约为12,而且太多了,不能忽略。在本研究中,为了消除线圈在直流电下产生的焦耳热并解决不准确的问题,开发了冷却系统。调查包括两个部分:首先是设计和制造长度为30mm的Terfenol-D执行器,该执行器在1A的直流电流下可提供10Ω的位移,其次是由热电冷却器,散热器和控制电路组成的冷却系统,用于抑制Terfenol-D温度要升高。在没有冷却系统的情况下,随着时间的流逝以及Terfenol-D的升温,大约两个小时后,排量达到了68升,这大大降低了定位精度。通过使用冷却系统,将位移保持在10 µc的公差范围内,从而通过Terfenol-D执行器实现了精确定位。

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