李海斌,刘树龙,刘义,胡菁,汤中亮,张晓波.Ti-6Al-4V合金表面渗层制备及空蚀性能研究[J].表面技术,2020,49(4):324-331.
LI Hai-bin,LIU Shu-long,LIU Yi,HU Jing,TANG Zhong-liang,ZHANG Xiao-bo.Preparation and Cavitation Erosion of Surface Diffusion Coating on Ti-6Al-4V Alloy[J].Surface Technology,2020,49(4):324-331
Ti-6Al-4V合金表面渗层制备及空蚀性能研究
Preparation and Cavitation Erosion of Surface Diffusion Coating on Ti-6Al-4V Alloy
投稿时间:2019-05-17  修订日期:2020-04-20
DOI:10.16490/j.cnki.issn.1001-3660.2020.04.038
中文关键词:  化学热处理  表面渗层  渗铝  渗氮  Ti-6Al-4V合金  空蚀
英文关键词:chemical heat treatment  surface diffusion coating  aluminizing  nitriding  Ti-6Al-4V alloy  cavitation erosion
基金项目:安徽省自然科学基金青年项目(1708085QE119,1908085QE222);安徽省高等学校自然科学研究项目(KJ2017B009,KJ2017A393)
作者单位
李海斌 淮北师范大学 物理与电子信息学院,安徽 淮北 235000 
刘树龙 淮北师范大学 物理与电子信息学院,安徽 淮北 235000 
刘义 淮北师范大学 物理与电子信息学院,安徽 淮北 235000 
胡菁 淮北师范大学 物理与电子信息学院,安徽 淮北 235000 
汤中亮 淮北师范大学 物理与电子信息学院,安徽 淮北 235000 
张晓波 淮北师范大学 物理与电子信息学院,安徽 淮北 235000 
AuthorInstitution
LI Hai-bin School of Physics and Electronic Information, Huaibei Normal University, Huaibei 235000, China 
LIU Shu-long School of Physics and Electronic Information, Huaibei Normal University, Huaibei 235000, China 
LIU Yi School of Physics and Electronic Information, Huaibei Normal University, Huaibei 235000, China 
HU Jing School of Physics and Electronic Information, Huaibei Normal University, Huaibei 235000, China 
TANG Zhong-liang School of Physics and Electronic Information, Huaibei Normal University, Huaibei 235000, China 
ZHANG Xiao-bo School of Physics and Electronic Information, Huaibei Normal University, Huaibei 235000, China 
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中文摘要:
      目的 利用化学热处理对钛合金表面进行扩渗处理,制备硬质表面渗层,以提高钛合金抗空蚀能力。方法 采用氮气气氛下渗铝工艺对Ti-6Al-4V合金退火试样进行表面处理,获得硬质表面渗层。利用X射线衍射仪、扫描电子显微镜、能谱分析仪和显微硬度计表征分析表面渗层的物相组成、微观结构、元素分布及力学性能。利用超声波振动空蚀试验机,按照ASTM G32标准,测试表面渗层在去离子水中的空蚀性能,并结合空蚀后表面形貌和元素分布,研究分析其空蚀机理。结果 扩渗处理在Ti-6Al-4V合金表面生成了具有较高显微硬度的表面渗层,其由最外面的化合物层和内部的扩散层构成。在1023 K温度下处理1 h的试样,其表面渗层均匀、致密、无微裂纹,在去离子水中空蚀12 h的累积质量损失最小,为未处理试样的18%,抗空蚀性能最好。随着处理时间的延长和处理温度的升高,渗层表面变得不平整,且表面凸出的硬质陶瓷颗粒物增多。硬质陶瓷颗粒物虽显著增加试样的显微硬度,但易诱发空泡生成,使抗空蚀性能变差。结论 氮气下渗铝处理在Ti-6Al-4V合金表面获得的表面渗层可以改善合金的抗空蚀性能,而表面凸出的大小不均的硬质陶瓷颗粒物使表面渗层的抗空蚀性能减弱。
英文摘要:
      The work aims to prepare a surface diffusion coating on Ti-6Al-4V alloy by means of diffusion treatment on the titanium alloy surface through chemical heat treatment, and improve cavitation erosion resistance of the alloy. The surface of annealed Ti-6Al-4V alloy sample was treated by aluminizing in nitrogen atmosphere to obtain a hard surface infiltration layer. Phase constituents, microstructure, element distribution and mechanical properties of the diffusion coating were characterized by X-ray diffraction, scanning electron microscope, energy dispersive spectroscopy and Vickers microhardness tests. Subsequently, cavitation erosion tests were performed by an ultrasound vibration testing apparatus in accordance with ASTM G32 standard to explore the cavitation erosion resistance of the diffusion coating in combination with the surface morphology and element distribution after cavitation erosion. The results indicated that the diffusion treatment produced surface infiltration layer with higher microhardness on the surface of Ti-6Al-4V alloy. The coating consisted of the outermost compound layer and the inner diffusion layer. After 1 h of treatment at 1023 K, its surface infiltration layer was dense, uniform and microcrack-free. After 12 h of cavitation, the specimen treated at 1023 K for 1 h had the least cumulative volume loss was 18% of that of the untreated sample, so it had the best cavitation resistance. With the increase of treatment time and temperature, the surface of the diffusion coating with the hard ceramic particles became uneven and there were more and more hard ceramic particles protruding from the surface. The hard ceramic particles could significantly increase the surface microhardness of the treated specimen, but it was likely to induce the formation of cavitation and reduction of cavitation resistance. In summary, aluminizing treatment in nitrogen atmosphere can considerably improve the cavitation erosion behavior of Ti-6Al-4V alloy. The hard ceramic particles with uneven size protruding from the surface weaken the cavitation erosion resistance of the surface infiltration layer.
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