Effect of severe shot peening and ultra-low temperature plasma nitriding on Ti-6Al-4V alloy

被引:82
|
作者
Unal, Okan [1 ]
Maleki, Erfan [2 ]
Varol, Remzi [3 ]
机构
[1] Karabuk Univ, Mech Engn Dept, TR-78050 Karabuk, Turkey
[2] Sharif Univ Technol, Mech Engn Dept, Int Campus, Kish Isl, Iran
[3] Suleyman Demirel Univ, Mech Engn Dept, TR-32200 Isparta, Turkey
关键词
Shot peening; Severe plastic deformation; Plasma nitriding; Fatigue; Ti-6Al-4V; SEVERE PLASTIC-DEFORMATION; MECHANICAL ATTRITION TREATMENT; FRETTING FATIGUE BEHAVIOR; FINITE-ELEMENT SIMULATION; HIGH-PRESSURE TORSION; LOW-CARBON STEEL; SURFACE-ROUGHNESS; GRAIN-REFINEMENT; STAINLESS-STEEL; MICROSTRUCTURE EVOLUTION;
D O I
10.1016/j.vacuum.2018.01.027
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this study, the fatigue behavior of Ti-6Al-4V alloy is tend to be improved by severe plastic deformation via shot peening and plasma nitriding. Shot peening with sub-branches: Conventional shot peening (A12-14), severe shot peening (A28-30 and A34-36) and repeening (N6-8) are exposed. Besides plasma nitriding is implemented at 500 degrees C, 550 degrees C and 600 degrees C with the durations of 4, 8 and 16 h. Due to utilization of shot peening as prior severe plastic deformation during diffusion of nitrogen, two methods are applied in sequence. Severe shot peening forms ultra-fine crystals and oriented grains by disintegrating of a and 13 phases just below the surface and increases surface roughness. Plasma nitriding temperature increase the compound layer thickness and the treatment leads to vanish of 13 particles through a certain line for diffusion layer. Prior severe plastic deformation by severe shot peening generally triggers the formation of thicker compound layer and emerges distinct diffusion depth with finer and oriented precipitation. The phase's intensity obtained from XRD peaks has been amplified by the application of prior shot peening. Each shot peening provides fatigue improvement on the other hand plasma nitriding application regardless of being pre or post treatments diminish the fatigue resistance. (C) 2018 Elsevier Ltd. All rights reserved.
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页码:69 / 78
页数:10
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