铝合金承力孔零部件挤压强化工艺及疲劳寿命研究

Cold expansion strengthening process and fatigue life of load-bearing holes aluminum alloy components

  • 摘要: 直升机扭力臂组件承受复杂交变载荷,易在紧固孔连接处产生疲劳裂纹。为此,研究铝合金7050-T7451承力孔挤压强化工艺过盈量对承力孔疲劳寿命影响规律。对铝合金承力孔耳片试件挤压进行有限元仿真,通过耳片试件级与零部件级挤压强化与疲劳寿命试验,研究铝合金承力孔挤压强化工艺。结果表明,挤压强化可以显著提升铝合金承力孔疲劳寿命,耳片试件优化挤压强化工艺疲劳寿命约是未强化的1.9倍。通过防扭支架组件疲劳试验验证了挤压强化有效性,防扭支架组件承力孔挤压大幅提升疲劳寿命。文章为直升机承力孔的抗疲劳制造提供指导和技术支持。

     

    Abstract: Helicopter torque arm assemblies are subjected to complex alternating loads, making them prone to fatigue crack initiation at fastener hole connections. To address this issue, the effect of the interference level during the cold expansion process on the fatigue life of load-bearing holes in 7050-T7451 aluminum alloy is investigated in this study. Finite element simulations of the cold expansion process for aluminum alloy lug components were conducted. Furthermore, the cold expansion strengthening process was systematically evaluated through both specimen-level and component-level expansion and fatigue life experiments. The results indicate that the fatigue life of load-bearing holes can be significantly enhanced by cold expansion. Under the optimized cold expansion process, the fatigue life of the lug specimens is increased to 1.9 times that of the unexpanded specimens. The effectiveness of the cold expansion is further validated through fatigue testing of anti-torsion bracket assemblies, in which the fatigue life of the load-bearing holes is substantially improved by the expansion process. This work provides guidance and technical support for the fatigue-resistant manufacturing of load-bearing holes in helicopters.

     

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