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首页> 外文期刊>Journal of Materials Science >EFFECT OF SHOT PEENING ON THE FATIGUE AND FRACTURE BEHAVIOUR OF TWO TITANIUM ALLOYS
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EFFECT OF SHOT PEENING ON THE FATIGUE AND FRACTURE BEHAVIOUR OF TWO TITANIUM ALLOYS

机译:针刺现象对两种钛合金疲劳和断裂行为的影响

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摘要

The fatigue and fracture behaviour of two titanium alloys, the near-alpha IMI-685 and alpha-beta IMI-318, were studied in the machined and polished (MP) as well as the machined, polished and shot (glass-bead) peened (MPS) conditions. Glass-bead peening reduced the room-temperature as well as the high-temperature (450 degrees C) fatigue life of alloy lMI-685 at high stress amplitudes, sigma(a), approaching the proof stress, sigma(ps), of the material (LCF region). When the applied stress amplitude (0-770 MPa, HCF region) was comparable to the peen-induced peak longitudinal residual stress, sigma(LP), i.e. (sigma(LP)/sigma(a))=0.92, an improvement in the room-temperature fatigue life of lMl-685 was observed. When the (sigma(LP)/sigma(a)) ratio was less than this value, decreases in the fatigue life were seen. The room-temperature fatigue behaviour of IMI-318 at high stress amplitudes was similar to that of IMI-685. The decrease in the fatigue life of this alloy, at a stress amplitude (770 MPa) where improvement was observed for IMI-685, could be attributed to the higher relaxation of peen-induced residual stresses in IMI-318 compared with IMI-685. Glass-bead peening improved the high-temperature (450 degrees C) fatigue life of IMI-685 at a low stress amplitude (465 MPa; (sigma(a)/sigma(PS))=0.87). The crack-initiation sites in the MP and the MPS conditions were at the surface for both the alloys. However, fracture in the surface layers of the alloys appeared more brittle in the peened (MPS) rather than in the unpeened (MP) condition. [References: 31]
机译:在机加工和抛光(MP)以及机加工,抛光和喷丸(玻璃珠)喷丸中研究了两种钛合金(近αIMI-685和α-βIMI-318)的疲劳和断裂行为(MPS)条件。玻璃珠喷丸处理降低了合金LMI-685在高应力振幅sigma(a)时的室温以及高温(450摄氏度)疲劳寿命,接近合金的屈服强度sigma(ps)。材料(LCF区域)。当施加的应力振幅(0-770 MPa,HCF区域)可与喷针产生的峰值纵向残余应力sigma(LP)相比较,即(sigma(LP)/ sigma(a))= 0.92时,观察到lM1-685的室温疲劳寿命。当(σ(LP)/σ(a))比小于该值时,疲劳寿命降低。 IMI-318在高应力振幅下的室温疲劳行为与IMI-685相似。在IMI-685观察到改善的应力振幅(770 MPa)下,该合金的疲劳寿命降低,可归因于与IMI-685相比,在IMI-318中针尖诱发的残余应力的松弛度更高。玻璃珠喷丸在低应力振幅(465 MPa;(sigma(a)/ sigma(PS))= 0.87)下改善了IMI-685的高温(450摄氏度)疲劳寿命。 MP和MPS条件下的裂纹萌生点均在两种合金的表面。但是,合金的表面层的断裂在喷丸(MPS)情况下比在未喷丸(MP)条件下更脆。 [参考:31]

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