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首页> 外文期刊>Materials >Effects of Plasma ZrN Metallurgy and Shot Peening Duplex Treatment on Fretting Wear and Fretting Fatigue Behavior of Ti6Al4V Alloy
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Effects of Plasma ZrN Metallurgy and Shot Peening Duplex Treatment on Fretting Wear and Fretting Fatigue Behavior of Ti6Al4V Alloy

机译:等离子ZrN冶金和射击喷丸治疗对Ti6Al4V合金磨损磨损和疲劳行为的影响

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摘要

A metallurgical zirconium nitride (ZrN) layer was fabricated using glow metallurgy using nitriding with zirconiuming prior treatment of the Ti6Al4V alloy. The microstructure, composition and microhardness of the corresponding layer were studied. The influence of this treatment on fretting wear (FW) and fretting fatigue (FF) behavior of the Ti6Al4V alloy was studied. The composite layer consisted of an 8-μm-thick ZrN compound layer and a 50-μm-thick nitrogen-rich Zr–Ti solid solution layer. The surface microhardness of the composite layer is 1775 HK 0.1 . A gradient in cross-sectional microhardness distribution exists in the layer. The plasma ZrN metallurgical layer improves the FW resistance of the Ti6Al4V alloy, but reduces the base FF resistance. This occurs because the improvement in surface hardness results in lowering of the toughness and increasing in the notch sensitivity. Compared with shot peening treatment, plasma ZrN metallurgy and shot peening composite treatment improves the FW resistance and enhances the FF resistance of the Ti6Al4V alloy. This is attributed to the introduction of a compressive stress field. The combination of toughness, strength, FW resistance and fatigue resistance enhance the FF resistance for titanium alloy.
机译:使用氮化的锆用抗锆优先治疗Ti6Al4V合金的锆冶金制备冶金氧化锆(ZrN)层。研究了相应层的微观结构,组合物和微硬度。研究了这种处理对Ti6Al4V合金的磨损磨损(FW)和微动疲劳(FF)行为的影响。复合层由8μm厚的ZrN复合层和50μM厚的富含氮Zr-Ti固溶层组成。复合层的表面显微硬度为1775 HK 0.1。层中存在横截面微硬度分布中的梯度。等离子体ZrN冶金层提高了Ti6Al4V合金的FW电阻,但降低了基础FF电阻。出现这种情况,因为表面硬度的改善导致降低韧性和缺口敏感性的增加。与喷丸处理相比,血浆ZrN冶金和喷丸复合处理改善了FW电阻,增强了Ti6Al4V合金的FF电阻。这归因于引入压缩应力场。韧性,强度,FW电阻和疲劳性的组合提高了钛合金的FF电阻。

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