1. 沈阳航空航天大学,沈阳,110136
2. 营口理工学院,营口,115100
纸质出版:2025
移动端阅览
屈力刚,赵子惠,李铭. 航空导管自增强工艺参数优化及疲劳性能测试[J]. 航空制造技术, 2025, 68(14): 99-106.
QU Ligang,ZHAO Zihui, LI Ming. Process Parameter Optimization and Fatigue Performance Test of Autofrettaged Aviation Pipeline[J]. Aeronautical Manufacturing Technology, 2025, 68(14): 99-106.
屈力刚,赵子惠,李铭. 航空导管自增强工艺参数优化及疲劳性能测试[J]. 航空制造技术, 2025, 68(14): 99-106. DOI: 10.16080/j.issn1671-833x.2025.14.099.
QU Ligang,ZHAO Zihui, LI Ming. Process Parameter Optimization and Fatigue Performance Test of Autofrettaged Aviation Pipeline[J]. Aeronautical Manufacturing Technology, 2025, 68(14): 99-106. DOI: 10.16080/j.issn1671-833x.2025.14.099.
作为航空发动机能量传输的重要通道,航空高压导管的疲劳强度与可靠性直接影响着飞机的飞行性能和服役寿命。基于三剪统一强度准则,采用能够考虑材料应变硬化和包辛格效应的双线性随动强化模型,建立了典型航空高压导管自增强处理的有限元仿真模型。分析不同材料导管自增强处理后残余应力的分布规律,对不锈钢导管的疲劳寿命进行仿真分析和试验验证,计算航空高压导管的内外径比和弯曲角度对自增强处理的力学响应结果。结果表明,与其他材料相比,经自增强处理后的钛合金导管获得了较好的残余压应力状态;得到了残余压应力随径比与弯曲角度的变化规律,确定了导管获得最佳自增强处理效果时的径比与弯曲角度的范围,以及导管上存在多个弯曲角度时自增强压力的确定方法,为自增强工艺在航空高压导管中的应用提供了理论基础。
As an important channel for energy transmission in aero-engines
the fatigue strength and reliability of aviation high-pressure pipeline system have a direct impact on the flight performance and service life of aircraft. Based on the three shear unified strength criterion
a bilinear dynamic strengthening model considering material strain hardening and Bauschinger effect was adopted to establish a finite element analysis model for the autofrettaging treatment of typical aviation high-pressure pipelines. Analyze the distribution pattern of residual compressive stress after autofrettaging treatment of stainless steel
aluminum alloy
and titanium alloy pipelines; Conduct simulation analysis and experimental verification on the fatigue life of stainless steel pipelines; Calculate the mechanical response results of the internal to external diameter ratio and bending angle of aviation high-pressure pipelines to autofrettaging treatment. The results show that compared with other materials
titanium alloy pipelines with autofrettaging treatment will achieve a better residual compressive stress state; At the same time
analyzed the residual compressive stress state after bending treatment and under working load
and based on the variation law of residual compressive stress with diameter ratio and bending angle
the range of diameter ratio and bending angle for obtaining the best self strengthening treatment effect of the pipeline was determined. The stress state of the bend under working state was analyzed
and the method of selecting autofrettaging pressure when there are multiple bending angles on the pipeline was analyzed
providing a theoretical basis for the application of autofrettage in aviation high-pressure pipelines.
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