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等离子渗氮对Ti-6Al-4V合金疲劳行为的影响

The Effect of Plasma Nitriding on the Fatigue Behavior of the Ti-6Al-4V Alloy.

作者信息

de Castro Michele C B, Couto Antônio A, Almeida Gisele F C, Massi Marcos, de Lima Nelson B, da Silva Sobrinho Argemiro, Castagnet Mariano, Xavier Gleicy L, Oliveira Rene R

机构信息

Center for Materials Science and Technology, Instituto de Pesquisas Energéticas e Nucleares, São Paulo 05508-000, Brazil.

Department of Materials Engineering and Nanotechnology, Universidade Presbiteriana Mackenzie, São Paulo 01302-907, Brazil.

出版信息

Materials (Basel). 2019 Feb 9;12(3):520. doi: 10.3390/ma12030520.

Abstract

The Ti-6Al-4V alloy is widely used in the manufacture of components that must have low density and high corrosion resistance and fatigue strength. The fatigue strength can be improved by surface modification. The aim of this study was to determine the influence of plasma nitriding on the fatigue behavior of a Ti-6Al-4V alloy with a lamellar microstructure (Widmanstätten type). Nitriding was executed at 720 °C for 4 h in an atmosphere with N₂, Ar, and H₂. Microstructure characterization of the samples was carried out by X-ray diffraction analysis, optical microscopy, and scanning electron microscopy. The average roughness of the specimens was determined, and fatigue tests were executed in a bending⁻rotating machine with reverse tension cycles (R = -1). X-ray diffraction analysis of the nitrided alloy revealed the following matrix phases: α, β, ε-Ti₂N, and δ-TiN. A nitrogen diffusion layer was formed between the substrate and the titanium nitrides. Plasma nitriding resulted in an increase in low-cycle fatigue strength, whereas at high cycles of 200 MPa, both conditions exhibited similar behaviors. The fracture surface of the fatigue-tested specimens clearly revealed the lamellar microstructure. The fracture mechanism in the non-nitrided specimens appears to be due to cracking at the interface of the α and β phases of the lamellar microstructure.

摘要

Ti-6Al-4V合金广泛用于制造必须具有低密度、高耐腐蚀性和疲劳强度的部件。疲劳强度可通过表面改性来提高。本研究的目的是确定等离子体氮化对具有片状微观结构(魏德曼组织类型)的Ti-6Al-4V合金疲劳行为的影响。氮化在720℃下于含有N₂、Ar和H₂的气氛中进行4小时。通过X射线衍射分析、光学显微镜和扫描电子显微镜对样品进行微观结构表征。测定了试样的平均粗糙度,并在具有反向拉伸循环(R = -1)的弯曲旋转试验机上进行了疲劳试验。对氮化合金的X射线衍射分析揭示了以下基体相:α、β、ε-Ti₂N和δ-TiN。在基体与氮化钛之间形成了一个氮扩散层。等离子体氮化导致低周疲劳强度增加,而在200 MPa的高循环次数下,两种情况表现出相似的行为。疲劳试验试样的断口清楚地显示出片状微观结构。未氮化试样的断裂机制似乎是由于片状微观结构的α相和β相界面处的开裂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f34/6384831/26d7d222429a/materials-12-00520-g001.jpg

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