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Friction and wear behaviors of TiCN coating based on electrical discharge coating
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作者 曾招余波 肖厚群 +1 位作者 揭晓华 张艳梅 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第11期3716-3722,共7页
Titanium carbonitride (TiCN) coating was prepared on 45# carbon steel by electrical discharge coating (EDC), and the compositions, morphology and microstructure of the coating were studied. In addition, its friction a... Titanium carbonitride (TiCN) coating was prepared on 45# carbon steel by electrical discharge coating (EDC), and the compositions, morphology and microstructure of the coating were studied. In addition, its friction and wear behaviors relative to the physical vapor deposition (PVD) TiN coating were investigated. The results show that the TiCN coating features a thickness of 15μm with a primary phase of TiC 0.3 N 0.7 . The wear rates of the two coatings have no clear distinction at low applied loads. However, severe abrasive wear appears in the PVD TiN coating when the applied load exceeds 30 N, while the TiCN coating features better wear resistance. The abrasive wear with coating peelings is found to be the predominant wear mechanism at high applied loads. 展开更多
关键词 electrical discharge coating titanium carbonitride mechanical properties friction and wear
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Surface modification and functionalization by electrical discharge coating:a comprehensive review 被引量:2
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作者 Pay Jun Liew Ching Yee Yap +2 位作者 Jingsi Wang Tianfeng Zhou Jiwang Yan 《International Journal of Extreme Manufacturing》 2020年第1期68-99,共32页
Hard coatings are extensively required in industry for protecting mechanical/structural parts that withstand extremely high temperature,stress,chemical corrosion,and other hostile environments.Electrical discharge coa... Hard coatings are extensively required in industry for protecting mechanical/structural parts that withstand extremely high temperature,stress,chemical corrosion,and other hostile environments.Electrical discharge coating(EDC)is an emerging surface modification technology to produce such hard coatings by using electrical discharges to coat a layer of material on workpiece surface to modify and enhance the surface characteristics or create new surface functions.This paper presents a comprehensive overview of EDC technologies for various materials,and summarises the types and key parameters of EDC processes as well as the characteristics of resulting coatings.It provides a systematic summary of the fundamentals and key features of the EDC processes,as well as its applications and future trends. 展开更多
关键词 electrical discharge coating(EDC) surface modification material characteristics mechanical properties extreme conditions
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Surface Modification Process by Electrical Discharge Machining with Ti Powder Green Compact Electrode 被引量:4
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作者 WANG Zhen-long 1, FANG Yu 1, WU Pei-nian 1, ZHAO Wan-sheng 1, CHENG Kai 2 (1. Dept. of Mechanical Engineering, Harbin Institute of Technology, Harbin 150001, China 2. School of Engineering, Leeds Metropolitan University, UK) 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期6-,共1页
This paper describes a new method of surface modification by Electrical Discharge Machining (EDM). By using ordinary EDM machine tool and kerosene fluid, a hard ceramic layer can be created on the workpiece surface wi... This paper describes a new method of surface modification by Electrical Discharge Machining (EDM). By using ordinary EDM machine tool and kerosene fluid, a hard ceramic layer can be created on the workpiece surface with Ti or other compressed powder electrode in a certain condition. This new revolutionary method is called Electrical Discharge Coating (EDC). The process of EDC begins with electrode wear during EDM,then a kind of hard carbide is created through the thermal and chemical reaction between the worn electrode material and the carbon particle decomposed from kerosene fluid under high temperature. The carbide is piled up on a workpiece quickly and becomes a hard layer of ceramic about 20 μm in several minutes. This paper studies the principle and process of EDC systemically by using Ti powder green compact electrode. In order to obtain a layer of compact ceramic film, it is very important to select proper electric pulse parameters, such as pulse width, pulse interval, peak current. Meantime, the electrode materials and its forming mode will effect the machining surface quality greatly. This paper presents a series of experiment results to study the EDC process by adopt different technology parameters. Experiments and analyses show that a compact TiC ceramic layer can be created on the surface of metal workpiece. The hardness of ceramic layer is more 3 times higher than the base body, and the hardness changes gradiently from surface to base body. The method will have a great future because many materials can be easily added to the electrode and then be coated on the workpiece surface. Gearing the parameters ceramic can be created with different thickness. The switch between deposition and removal process is carried out easily by changing the polarity, thus the gear to the thickness and shape of the composite ceramic layer is carried out easily. This kind of composite ceramic layer will be used to deal with the surface of the cutting tools or molds possibly, in order to lengthen their life. It also can be found wide application in the fields of surface repairing and strengthening of the ship or aircraft. 展开更多
关键词 electrical Discharge Machining(EDM) electrical Discharge coating(EDC) Ti powder green compact electrode surface modification
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EFFECTS OF ELECTRODE INSULATION THICKNESS ON ELECTROCHEMICAL DRILLING STABILITY AND ACCURACY 被引量:3
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作者 王维 朱荻 +2 位作者 曲宁松 黄绍服 房晓龙 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2009年第3期163-169,共7页
Effect of electrode insulation on the electric field and the flow field of the machining gap during electrochemical drilling(ECD) is numerically studied. Electric field simulation shows that the current density alon... Effect of electrode insulation on the electric field and the flow field of the machining gap during electrochemical drilling(ECD) is numerically studied. Electric field simulation shows that the current density along the side gap decreases with increasing the thickness of electrode insulation. And the analysis of the electrolyte flow in the frontal gap shows that the insulation thickness has a remarkable influence on the pressure distributions. Ex- periments investigate the influence of the insulation thickness on the main characteristics of the machined hole, i.e. , radial overcut, entrance conicity, and current stability. The poor hole is observed and identified as most likely to occur with a combination of the low tool feed rate and the low insulation thickness. The appropriate thickness of the insulating layer leads to an improvement on hole accuracy and machining stability. 展开更多
关键词 electrochemical cutting electric insulating coatings STABILITY electrochemical drilling(ECD)
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Analytic estimation and numerical modeling of actively cooled thermal protection systems with nickel alloys 被引量:5
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作者 Wang Xinzhi He Yurong +2 位作者 Zheng Yan Ma Junjun H. Inaki Schlaberg 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2014年第6期1401-1412,共12页
Actively cooled thermal protection system has great influence on the engine of a hypersonic vehicle, and it is significant to obtain the thermal and stress distribution in the system. So an analytic estimation and num... Actively cooled thermal protection system has great influence on the engine of a hypersonic vehicle, and it is significant to obtain the thermal and stress distribution in the system. So an analytic estimation and numerical modeling are performed in this paper to investigate the behavior of an actively cooled thermal protection system. The analytic estimation is based on the electric analogy method and finite element analysis(FEA) is applied to the numerical simulation. Temperature and stress distributions are obtained for the actively cooled channel walls with three kinds of nickel alloys with or with no thermal barrier coating(TBC). The temperature of the channel wall with coating has no obvious difference from the one with no coating, but the stress with coating on the channel wall is much smaller than that with no coating. Inconel X-750 has the best characteristics among the three Ni-based materials due to its higher thermal conductivity, lower elasticity module and greater allowable stress. Analytic estimation and numerical modeling results are compared with each other and a reasonable agreement is obtained. 展开更多
关键词 Active cooling Electric analogy method Nickel alloys Thermal barrier coatings Thermal protection systems
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