会议论文详细信息
18th Chemnitz Seminar on Materials Engineering – 18. Werkstofftechnisches Kolloquium
Jet Electrochemical Machining of Particle Reinforced Aluminum Matrix Composites with Different Neutral Electrolytes
Hackert-Oschätzchen, M.^1 ; Lehnert, N.^1 ; Martin, A.^1 ; Schubert, A.^1
Technische Universität Chemnitz, Prof. Micromanufacturing Technology, Chemnitz, Germany^1
关键词: Conventional machining;    Electrochemical machining;    Electrochemical removal;    Hard ceramic particles;    Material structure;    Mechanical machining;    Neutral electrolytes;    Particle-reinforced Aluminum matrix composites;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/118/1/012036/pdf
DOI  :  10.1088/1757-899X/118/1/012036
来源: IOP
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【 摘 要 】

Conventional mechanical machining of particle reinforced aluminum matrix composites (AMCs) is challenging because the hard ceramic particles in the soft aluminum matrix lead to an increased tool wear. Furthermore, the mechanical and thermal impact during conventional machining affects the microstructure of the AMCs. Electrochemical machining (ECM) is an alternative method to machine AMCs. Based on anodic dissolution, ECM has a slight influence on the work piece material structure and is independent of material strength and hardness. So the microstructure of the work piece remains unaffected. One method of ECM is electrochemical machining with continuous electrolytic free jet (Jet-ECM). Hereby the electrochemical removal is localized by the geometry of the electrolyte jet. By moving the electrolyte jet micro-structures and microgeometries can be generated quickly and flexibly in metallic parts [1]. Another advantage of Jet-ECM is the low consumption of electrolyte which allows an easy and inexpensive change of electrolyte for investigations with different types of electrolyte. In this study AMCs reinforced with different amounts of SiC-particles are machined with two pH-neutral electrolytes using Jet-ECM. The results provide information about the suitability of the selected electrolytes for the machining of AMCs. In addition, the influence of the particle content on the electrochemical removal result will be evaluated.

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