首页> 外文会议>ASME international manufacturing science and engineering conference >EXPERIMENTAL STUDY OF MACHINING OF SHAPE MEMORY ALLOYS USING DRY MICRO ELECTRICAL DISCHARGE MACHINING PROCESS
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EXPERIMENTAL STUDY OF MACHINING OF SHAPE MEMORY ALLOYS USING DRY MICRO ELECTRICAL DISCHARGE MACHINING PROCESS

机译:干式微放电加工工艺加工形状记忆合金的实验研究

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Shape Memory Alloys are smart materials that tend to remember and return to its original shape when subjected to deformation. These materials find numerous applications in robotics, automotive and biomedical industries. Micromachining of SMAs is often a considerable challenge using conventional machining processes. Micro-Electrical Discharge Machining is a combination of thermal and electrical processes, which can machine any electrically conductive material at micron scale independent of its hardness. It employs dielectric medium such as hydrocarbon oils, deionized water, and kerosene. Using liquid dielectrics has adverse effects on the machined surface causing cracking, white layer deposition, and irregular surface finish. These limitations can be minimized by using a dry dielectric medium such as air or nitrogen gas. This research involves the experimental study of micromachining of Shape Memory Alloys using dry Micro-Electrical Discharge Machining process. The study considers the effect of critical process parameters including discharge voltage and discharge current on the material removal rate and the tool wear rate. A comparison study is performed between the Micro-Electrical Discharge Machining process with using the liquid as well as air as the dielectric medium. In this study, microcavities are successfully machined on shape memory alloys using dry Micro-Electrical Discharge Machining process. The study found that the dry Micro-Electrical Discharge Machining produces a comparatively better surface finish, has lower tool wear and lesser material removal rate compared to the process using the liquid as the dielectric medium. The results of this research could extend the industrial applications of Micro Electrical Discharge Machining processes.
机译:形状记忆合金是聪明的材料,易受变形影响而记忆并恢复其原始形状。这些材料在机器人技术,汽车和生物医学行业中找到了许多应用。使用常规机加工工艺对SMA进行微加工通常是一个相当大的挑战。微电子放电加工是热和电工艺的结合,可以以微米级机加工任何导电材料,而与它的硬度无关。它使用介电介质,例如烃油,去离子水和煤油。使用液体电介质会对加工表面产生不利影响,从而导致开裂,白层沉积和不规则的表面光洁度。这些限制可以通过使用干燥的介电介质(例如空气或氮气)来最小化。这项研究涉及使用干式微放电加工工艺对形状记忆合金进行微加工的实验研究。该研究考虑了关键工艺参数(包括放电电压和放电电流)对材料去除率和工具磨损率的影响。在使用液体以及空气作为电介质的微放电加工工艺之间进行了比较研究。在这项研究中,使用干式微放电加工工艺成功地在形状记忆合金上加工了微腔。研究发现,与使用液体作为电介质的工艺相比,干式微电火花加工可产生相对较好的表面光洁度,更低的工具磨损和更低的材料去除率。这项研究的结果可以扩展微放电加工工艺的工业应用。

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