放电技术加工圆形零件的效率研究

Ľ. Straka, P. Kuchta
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引用次数: 0

摘要

电火花加工技术由于具有较高的加工精度,在各行业高精度零件的生产中占有重要的地位。加工表面的高精度与加工圆形表面的能力相结合,除了几个优点外,还带来了一些缺点。这种加工技术最显著的缺点是相对较低的生产率和整体生产效率。后者受到许多伴随现象的影响。导致电火花加工整体经济效率下降的主要伴随现象是由于电火花加工过程的非均匀性而产生的微观几何误差。另一个伴随的负面现象是加工表面的几何精度误差,这是由于线切割工具电极的系统性破坏,其导向中的错误插补,以及最后但并非最不重要的是其振动的结果。因此,这些方面导致了对额外精加工切割的多重应用的要求,这大大降低了加工过程的整体经济效率。因此,实验研究旨在寻找能够有效帮助实现更高生产率,特别是加工过程整体经济效率的选项。
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Efficiency of the Machining Process of Circular Shapes by Electrical Discharge Technology
Due to its high machining precision, EDM technology is nowadays very important in the production of high-precision parts for various industries. The high precision of the machined surface in combination with the ability to machine circular surfaces brings, in addition to several advantages, some negatives. The most significant negative of this machining technology is the relatively low productivity as well as the overall production efficiency. The latter is affected by many accompanying phenomena. The main accompanying phenomenon that contributes to the decline in the overall economic efficiency of EDM is the microgeometry errors that occur due to the non-homogeneity of the EDM process. Another accompanying negative phenomenon is the geometric accuracy errors of the machined surface, as a consequence of systematic destruction of the wire tool electrode, faulty interpolation in its guidance, and, last but not least, its vibration. These aspects consequently lead to the requirement for multiple applications of additional finishing cuts, which significantly reduces the overall economic efficiency of the machining process. Therefore, the experimental research aimed to search for options that can effectively help to achieve higher productivity but especially the overall economic efficiency of the machining process.
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来源期刊
CiteScore
3.80
自引率
6.20%
发文量
57
审稿时长
20 weeks
期刊介绍: IJMEMS is a peer reviewed international journal aiming on both the theoretical and practical aspects of mathematical, engineering and management sciences. The original, not-previously published, research manuscripts on topics such as the following (but not limited to) will be considered for publication: *Mathematical Sciences- applied mathematics and allied fields, operations research, mathematical statistics. *Engineering Sciences- computer science engineering, mechanical engineering, information technology engineering, civil engineering, aeronautical engineering, industrial engineering, systems engineering, reliability engineering, production engineering. *Management Sciences- engineering management, risk management, business models, supply chain management.
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