“呼吸效应”对飞机传动装置的影响及预防

The Impact and Prevention of Respiratory Effect on Aircraft Transmission Devices

  • 摘要: 该文以飞机传动装置中某旋转作动器为例,通过环境试验验证“呼吸效应”对飞机传动装置可靠性的影响。通过对旋转作动器进行水汽、锈蚀、低温等混合工况环境试验,得到旋转作动器的相应试验现象。结果表明:旋转作动器在不同温度、湿度、气压变化条件下,水汽容易进入未进行密封设计的产品内部,从而产生“呼吸效应”,尤其海洋飞行环境中。水汽中包含的腐蚀性元素会加速产品内部金属零部件的腐蚀,从而导致内部产品锈蚀并产生卡阻现象。通过试验和故障机理分析,验证了呼吸作用产生的原因并提出改进意见,从而提高产品设计的可靠性。

     

    Abstract: This paper uses a rotating actuator in an aircraft transmission system as an example to validate the impact of the "breathing effect" on the reliability of aircraft transmission systems through environmental testing. Based on mixed operating conditions such as water vapor, corrosion, and low temperature, the corresponding test phenomena of the rotary actuator were obtained. The results indicate that under different temperature, humidity, and pressure changes, water vapor is prone to enter the interior of unsealed products, resulting in a "breathing effect". Especially in marine flight environments, corrosive elements contained in water vapor can accelerate the corrosion of metal components inside the product, leading to internal product corrosion and the occurrence of jamming. Through experimental verification and fault mechanism analysis, the causes of respiratory action were verified and improvement suggestions were proposed to improve the reliability of product design.

     

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