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首页> 外文期刊>The Aeronautical Journal >Peripheral milling-induced residual stress and its effect on tensile-tensile fatigue life of aeronautic titanium alloy Ti-6AI-4V
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Peripheral milling-induced residual stress and its effect on tensile-tensile fatigue life of aeronautic titanium alloy Ti-6AI-4V

机译:铣削引起的残余应力及其对航空钛合金Ti-6AI-4V的拉伸疲劳寿命的影响

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摘要

The special application environment puts forward the higher requirement of reliability of parts made from titanium alloy Ti-6Al-4V, which is closely related to the machining-induced residual stress. For the fact of the non-linear distribution of residual stress beneath the machined surface, distribution of peripheral milling-induced residual stress and its effect on fatigue performance of titanium alloy Ti-6Al-4V are still confusing. In the present study, residual stress profile induced by peripheral milling of Ti-6Al-4V is first studied. And then, energy criteria are proposed to characterise the whole state of the residual stress field. Finally, the effects of residual stress profile and surface energy on tensile-tensile fatigue performance of titanium alloy Ti-6Al-4V are discussed. The conclusions were drawn that the variation trend of surface residual stress (sigma(r, Sur)), maximum compressive residual stress (sigma(C,ax)), location (h(r0)) and response depth (h(ry)) of residual stress profile with cutting parameters showed a similar pattern for both measure directions those parallel (sigma(1)) and perpendicular (sigma(3)) to the cutting direction. Cutting speed and feed rate have a main effect on surface residual stress, and the depth of cut has little effect on all the four key factors of residual stress profile. With the increase of cutting speed and feed rate, machining-induced surface energy tends to become larger. But increasing the depth of cut caused the strain energy stored in unit time to decrease. Furthermore, the effect of depth of cut on surface energy was weakened when the value of cutting depth becomes larger. Both the surface compressive residual stress and the maximum compressive residual stress are beneficial for prolonging the fatigue life, while large value of machining-induced surface energy leads to a decrease of fatigue life. Analysis of variance result shows that maximum residual compressive stress has a greater impact on fatigue life than other residual stress factors.
机译:特殊的应用环境对钛合金Ti-6Al-4V零件的可靠性提出了更高的要求,这与加工引起的残余应力密切相关。由于加工表面下残余应力的非线性分布,外围铣削引起的残余应力的分布及其对钛合金Ti-6Al-4V疲劳性能的影响仍然令人困惑。在本研究中,首先研究了Ti-6Al-4V的外围铣削引起的残余应力分布。然后,提出了能量准则来表征残余应力场的整个状态。最后,讨论了残余应力分布和表面能对钛合金Ti-6Al-4V的拉伸疲劳性能的影响。得出的结论是表面残余应力(sigma(r,Sur)),最大压缩残余应力(sigma(C,ax)),位置(h(r0))和响应深度(h(ry))的变化趋势。带有切削参数的残余应力分布曲线在与切削方向平行(sigma(1))和垂直(sigma(3))的两个测量方向上均显示出相似的模式。切削速度和进给速度对表面残余应力有主要影响,而切削深度对残余应力分布的所有四个关键因素影响很小。随着切削速度和进给速度的增加,加工引起的表面能趋于变大。但是增加切割深度会导致单位时间内存储的应变能降低。此外,当切削深度的值变大时,切削深度对表面能的影响减弱。表面压缩残余应力和最大压缩残余应力都有利于延长疲劳寿命,而较大的加工引起的表面能则导致疲劳寿命的降低。方差分析表明,最大残余压应力比其他残余应力因素对疲劳寿命的影响更大。

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