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Methods and variables in Electrical discharge machining of titanium alloy – A review

机译:钛合金电气放电加工的方法和变量 - 评论

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摘要

Titanium alloys are difficult to machine using conventional methods, therefore, nonconventional processes are often chosen in many applications. Electrical discharge machining (EDM) is one of those nonconventional processes that is used frequently for shaping titanium alloys with their respective pros and cons. However, a good understanding of this process is very difficult to achieve as research results are not properly connected and presented. Therefore, this study investigates different types of EDM processes such as, wire EDM, die-sink EDM, EDM drill and hybrid EDM used to machine titanium alloys. Machining mechanism, tool electrode, dielectric, materials removal rate (MRR), and surface integrity of all these processes are critically analysed and correlated based on the evidence accessible in literature. Machining process suffer from lower material removal rate and high tool wear while applied on titanium alloys. Formation of recast layer, heat affected zone and tool wear is common in all types of EDM processes. Additional challenge in wire EDM of titanium alloys is wire breakage under severe machining conditions. The formation of TiC and TiO2 are noticed in recast layer depending on the type of dielectrics. Removal of debris from small holes during EDM drilling is a challenge. All these restricts the applications EDMed titanium alloys in high-tech applications such as, aerospace and biomedical areas. Most of these challenges come up due to extraordinary properties such as, low thermal conductivity, high melting point and high hardness, of titanium alloys. Though hybrid EDM has been introduced and there is some work on simulation of EDM process, further developments in EDM of this alloy is required for widening the application of this methods.
机译:钛合金难以使用常规方法机器,因此,通常在许多应用中选择非转化过程。电气放电加工(EDM)是用于将钛合金与其各自的优点和缺点塑造的通常使用的非转化方法之一。然而,由于研究结果未正确连接和呈现,很难实现对此过程的良好理解。因此,本研究研究了不同类型的EDM工艺,例如,用于机钛合金的电线EDM,管芯垫,EDM,EDM钻头和杂交EDM。所有这些过程的加工机构,刀具电极,电介质,材料去除率(MRR)以及所有这些过程的表面完整性都基于文献中可访问的证据来分析和相关。加工过程在钛合金上施加较低的材料去除率和高工具磨损。在所有类型的EDM工艺中,重塑层的形成,热影响区域和工具磨损是常见的。钛合金电线EDM中的额外挑战是在严重加工条件下的断线。 TiC和TiO 2的形成取决于电介质的类型是注意到,在重铸层。在EDM钻井期间从小孔中除去碎片是一项挑战。所有这些都限制了应用Edmed钛合金在高科技应用,如航空航天和生物医学领域。由于钛合金低导热性,高熔点和高硬度,因此,这些挑战的大多数挑战均上升。虽然已经介绍了混合EDM,但在模拟EDM过程中存在一些工作,但需要在这种合金中的EDM中的进一步发展来扩大该方法的应用。

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