主管单位:中华人民共和国工业和信息化部
主办单位:西北工业大学  中国航空学会
地       址:西北工业大学友谊校区航空楼
航空器高升力系统万向节磨损数值仿真研究
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作者单位:

1.航空工业庆安集团有限公司;2.西北工业大学 航空学院

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V224

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Numerical simulation study on wear of universal joints in aircraft high lift systems
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Affiliation:

AVIC Qing’an Group Co,Ltd,Xi’an

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    摘要:

    聚焦于航空器高升力系统襟缝翼传动中的核心部件——十字轴万向节,探讨其材料磨损特性对航空器功能和疲劳寿命的影响。通过液态金属摩擦磨损试验机,本文准确测定了十字轴万向节材料的磨损系数,并基于 Archard 磨损模型,构建了仿真模型进行磨损分析,该模型的预测与实验数据吻合程度高,证实了其有效性。基于 Archard 磨损模型,提升万向节接头耳片处的硬度有助于增加万向节抗磨损性能,结果显示,在 25 ℃下,耳片硬度增加可使全寿命磨损游隙角度相对降低 24.5%,而在 400 ℃下降低 20.6%,显著提高了万向节的抗磨损性能。本研究为万向节抗磨损设计提供了宝贵的理论依据和实际指导。

    Abstract:

    Universal joint torque tube assembly is used in flaperon transmission system of high lift system. As an important part of aircraft, its performance determines the main function and fatigue life of aircraft. Wear between components seriously affects the transmission accuracy of universal joint. This paper takes the cross-shaft universal joint as the research object, uses the liquid metal friction and wear testing machine to measure the wear coefficient of the cross-shaft universal joint material. A numerical simulation model for friction and wear was established based on the Archard wear model, and compared with friction and wear tests. Subsequently, a validated numerical simulation model was used to study the friction and wear problem of the cross shaft universal joint. A model for analyzing the wear clearance angle of the cross shaft universal joint was proposed. Based on the analysis results and Archard wear theory, optimization suggestions were proposed to increase the hardness of the universal joint ear piece, and a comparison was made with the original structure"s full life wear clearance angle. The research results indicate that the numerical simulation results based on the Archard wear model have good consistency with the experimental results, and the numerical simulation results can predict the wear results well, thereby significantly shortening the test cycle and increasing design efficiency. Increasing the hardness of the universal joint ear can effectively reduce the wear clearance angle of the cross shaft universal joint. At 25 ℃, the full life wear clearance angle is relatively reduced by 24.5%, and at 400 ℃, the full life wear clearance angle is relatively reduced by 20.6%. The research results provide certain guiding value for the anti-wear design of universal joints.

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历史
  • 收稿日期:2023-12-08
  • 最后修改日期:2024-03-08
  • 录用日期:2024-03-18
  • 在线发布日期: 2025-01-20
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