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Study on the Fast Extension Mechanism of Double-Cavity Shock Absorber with High-Pressure Piston

机译:高压活塞双腔减震器快速延伸机理研究

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摘要

Double-cavity shock absorber with high-pressure piston is the core component of the nose landing gear of the carrier-based aircraft, and its fast-extension performance seriously affects the safety of the catapult-assisted takeoff. The design of a carrier-based aircraft in our country is carried out based on the traditional method of fast-extension dynamics, and it is found that the fast-extension capability is larger than designed. This paper analyzes the working principle of the high-pressure piston shock absorber and explains that the high-pressure air cavity pushes the piston rod to extend rapidly, which will cause the cavitation phenomenon in the main oil chamber. Thus, the cavitation in the main oil chamber makes the traditional modeling method of oil-liquid resistance force no longer applicable. Then, the axial force modeling method of shock absorber considering the cavitation effect is proposed. Based on the carrier-based aircraft, the dynamic response of the shock absorber in the process of fast extension is calculated and then it is compared with the calculation results of the traditional dynamic method. It is found that due to the cavitation effect caused by the forced fast extension section of the high-pressure air plug shock absorber, the fast extension work increases by 67.6%, thus, revealing the fast extension mechanism of the double-chamber shock absorber with high-pressure piston and successfully explaining the phenomenon of the fast extension ability exceeding the expectation of the shock absorber.
机译:具有高压活塞的双腔减震器是载流子飞机的鼻落齿轮的芯部件,其快速延伸性能严重影响了喷射辅助起飞的安全性。基于传统的快速扩展动力学方法进行了我国的载流子飞机的设计,发现快速延伸能力大于设计。本文分析了高压活塞减震器的工作原理,解释说,高压空气腔将活塞杆推动快速延伸,这将导致主油室中的空化现象。因此,主油室中的空化使得传统的油液体阻力建模方法不再适用。然后,提出了考虑空化效果的减震器轴向力建模方法。基于基于载体的飞机,计算了快速延伸过程中减震器的动态响应,然后将其与传统动态方法的计算结果进行比较。结果发现,由于高压空气塞减震器的强制快速延伸部分引起的空化效果,快速延伸工作增加了67.6%,从而揭示了双室减震器的快速延伸机构高压活塞并成功地解释了超快延伸能力的现象超过了减震器期望的能力。

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