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首页> 外文期刊>Aircraft Engineering and Aerospace Technology >Development of a new system for reducing the temperature increase during the positioning of spoilers using pneumatic artificial muscle (PAM)
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Development of a new system for reducing the temperature increase during the positioning of spoilers using pneumatic artificial muscle (PAM)

机译:使用气动人工肌肉(PAM)在扰流板定位期间降低温度增加的新系统的开发

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Purpose - The usage of pneumatic artificial muscles (PAMs) is becoming increasingly widespread across a variety of industries because of its advantages such as its lightness and its ability to generate a huge amount of force using the fewest components. The purpose of this paper is to develop a piece of hardware to minimize and equally distribute the thermal changes on the surface of a PAM when positioning using PAMs. A classic PAM and a PAM that contains the hardware suggested for tasks, such as the positioning of spoilers decelerating control surfaces for aircrafts, were compared experimentally. Design/methodology/approach - Rapid thermal changes were detected in the classic PAM, especially at the tip of the PAM. These thermal changes decrease the positioning sensitivity and reliability, thus shortening life span of the PAMs. A component was developed that could create a circulation of air around the tip of the PAM, preventing the temperature increase caused by still air. It is installed inside the PAM and makes it possible to control the pressurized air volume in crucial areas. Shaped as a perforated metal pipe, the component was embedded inside the PAM and effects of this component were investigated. Findings - The experiment results have shown that, thanks to the system that was developed, cool air that comes from outside is able to reach the tip of the PAM every time, thus keeping regional temperature increase to a minimum. The temperature increase in the pressurized air inlet was minimized by creating a circulation of air in the area. Originality/value - With this study, the distribution of heat in different areas on PAM was homogenized at a low cost using the component that was developed.
机译:目的 - 充气人工肌肉(PAMS)的用途在各种行业上变得越来越普遍,因为它的亮度和能力使用最少的组件产生大量的力量。本文的目的是开发一块硬件以最小化,并且在使用PAM时定位时,在定位时,同样地分布PAM表面的热变化。实验比较了一个经典的PAM和包含用于任务的硬件的PAM,例如对飞机减速控制表面的扰流板的定位。设计/方法/方法 - 在经典的PAM中检测到快速热变化,特别是在PAM的尖端。这些热变化降低了定位灵敏度和可靠性,从而缩短了PAM的寿命。开发了一种部件,其可以在帕姆尖端造成空气的循环,防止静止空气引起的温度增加。它安装在PAM内部,并使其可以控制关​​键区域中的加压空气量。成形为穿孔金属管,将组分嵌入局部内,并研究了该组分的效果。结果 - 实验结果表明,由于开发的系统,来自外部的凉爽空气能够每次到达PAM的尖端,从而将区域温度保持到最小。通过在该区域中产生空气的循环,最小化加压空气入口中的温度增加。原创性/值 - 通过该研究,使用开发的组分以低成本均质化PAM上的不同区域中的热量分布。

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