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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Material removal mechanism of superalloy Inconel 718 based on electrochemical abrasive jet processing
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Material removal mechanism of superalloy Inconel 718 based on electrochemical abrasive jet processing

机译:基于电化学磨料喷射加工的超合金inconel718的材料去除机理

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摘要

This paper proposes a high-efficiency and high-precision processing method for Inconel 718 called electrochemical abrasive jet processing (ECAJP). A mixture of an electrolyte solution and abrasive particles was sprayed from the nozzle and impacted the surface of a material while a direct-current potential was applied. The removal mechanism of ECAJP for Inconel 718 was investigated by comparing and analysing the material removal efficiency and micromorphological features and by performing energy-dispersive X-ray spectroscopy (EDS) analyses of the processing area for different processing methods (including abrasive jet processing (AJP), electrochemical jet processing (ECJP), and ECAJP). The results indicated that under the experimental conditions, there was almost no material removal for AJP. The material removal rate for ECAJP was significantly higher than the sum of those for AJP and ECJP. Electrochemical corrosion was the main form of material removal, and abrasive erosion was auxiliary in ECAJP. The microscale morphologies in the processing area and EDS analyses indicated that the microstructures of Inconel 718 had significant effects on the material removal mechanism of ECAJP. The different electrode potentials between different regions led to anisotropic removal of material in Inconel 718 and significantly affected the surface quality. The surface elements reacted with O and formed passive films. However, the synergistic effect of abrasive erosion and electrochemical corrosion removed the passive films, increased the removal rate, and reduced the anisotropy.
机译:本文提出了一种用于电化学磨料喷射处理(ECAJP)的Inconel 718的高效率和高精度加工方法。从喷嘴喷射电解质溶液和磨料颗粒的混合物,并在施加直流电位时撞击材料的表面。通过比较和分析材料去除效率和微正式特征来研究ECAJP对于Inconel 718的去除机制,并通过对不同的加工方法进行处理区域的能量分散X射线光谱(EDS)分析(包括磨料喷射处理(AJP ),电化学喷射处理(ECJP)和ECAJP)。结果表明,在实验条件下,AJP几乎没有材料去除。 ECAJP的材料去除率明显高于AJP和ECJP的总和。电化学腐蚀是材料去除的主要形式,磨蚀侵蚀在ECAJP中是助剂。处理区域和EDS分析中的微观形态表明,Inconel 718的微观结构对ECAJP的材料去除机制具有显着影响。不同区域之间的不同电极电位导致了在第718型718中的各向异性去除材料,并显着影响了表面质量。表面元件与O和形成的无源膜反应。然而,磨蚀侵蚀和电化学腐蚀的协同效应除去无源膜,增加了去除率,并降低了各向异性。

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