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Fretting Fatigue Behavior of Cavitation Shotless Peened Ti-6Al-4V

机译:空化喷丸Ti-6Al-4V微动疲劳行为

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摘要

Fretting fatigue behavior of cavitation shotless peened (CSP) titanium alloy, Ti-6Al-4V was investigated. Constant amplitude fretting fatigue tests were conducted at several maximum stress levels, σ_(max), ranging from 400 to 555 MPa with a stress ratio of 0.1. Test results showed that the fretting fatigue life was enhanced by CSP treatment as compared to the unpeened specimen, but the enhancement was not as large as that from the shot-peening treatment. Residual stress measurements by X-ray diffraction method before and after fretting test showed that residual compressive stress was relaxed during fretting fatigue. Before fretting, CSP specimen had higher compressive residual stress on the surface than the shot-peened specimen. However, greater residual stress relaxation occurred in CSP specimen such that the relaxed compressive residual stress profile near the contact surface of CSP specimen was lower than that of shot-peened specimen. This lower compressive residual stress from fretting fatigue was the reason for shorter fretting fatigue life of CSP specimen as compared to shot-peened specimen at the applied stress level.
机译:研究了空化喷丸钛合金Ti-6Al-4V的微动疲劳行为。在几个最大应力水平σ_(max)范围从400到555 MPa,应力比为0.1的情况下,进行了恒定振幅微动疲劳试验。测试结果表明,与未喷丸处理的试样相比,CSP处理可提高微动疲劳寿命,但这种改善幅度不如喷丸处理。微动试验前后通过X射线衍射法测得的残余应力表明,在微动疲劳过程中,残余压应力得到了缓解。在微动之前,CSP试样的表面残余压缩应力比喷丸试样高。但是,CSP试样中出现更大的残余应力松弛,因此CSP试样接触表面附近的松弛压缩残余应力分布低于喷丸处理的试样。与在施加应力水平下喷丸处理的试样相比,微动疲劳的较低压缩残余应力是CSP试样的微动疲劳寿命较短的原因。

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