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Study on the machining characteristics of high-efficiency mixed gas atomized discharge ablation process of titanium alloy

机译:钛合金高效混合气体雾化放电消融烧蚀过程的加工特性研究

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摘要

Titanium alloy is widely used in aerospace and other industry fields because of its excellent physical and chemical properties. However, the fabrication process is still a challenge for the traditional machining processes due to the ultra hardness and chemical reactivity properties of titanium alloy. Electrical discharge machining (EDM) is a significant processing approach to machine titanium alloy regardless of hardness, while accompanied by disadvantages such as electrode wear and low machining efficiency. This paper proposed a novel mixed-gas atomization discharge ablation process (MA-DAP) method for high-efficiency machining titanium alloy with low tool wear. An atomized dielectric formed by a mixed gas, which mainly composed of oxygen and supplemented by nitrogen, and water medium was used in the machining process. The exothermic oxidation between the oxygen component in the atomized dielectric and high-temperature molten material activated by spark discharges could multiply accelerate material removal of workpiece. The explosive effect generated by the vaporization expansion of the water component in the dielectric would improve the machining quality and the processing capability of large depth-to-diameter ratio holes. To investigate the machining characteristics of the new approach, comparative experiments were conducted in terms of material removal rate, electrode relative wear rate, machining accuracy, surface morphology, and recast layer. The experimental results showed that, compared with traditional EDM, the material removal rate of MA-DAP was dramatically increased by more than an order of magnitude, and other technological indexes are greatly improved simultaneously. A deep-shaped blind hole with a depth-to-diameter ratio greater than 12 was obtained by the MA-DAP.
机译:钛合金因其优异的物理化学性能而广泛应用于航空航天等工业领域。然而,由于钛合金的超硬度和化学反应性,其制备工艺仍然是传统加工工艺的一个挑战。无论钛合金的硬度如何,电火花加工(EDM)都是一种重要的加工方法,但同时也存在电极磨损、加工效率低等缺点。本文提出了一种新型的混合气体雾化放电烧蚀工艺(MA-DAP),用于高效加工低刀具磨损的钛合金。在加工过程中,采用了以氧气为主、氮气为辅的混合气体和水介质形成的雾化介质。雾化介质中的氧组分与火花放电激活的高温熔融材料之间的放热氧化可成倍加速工件的材料去除。介质中水组分汽化膨胀产生的爆炸效应将提高大深径比孔的加工质量和加工能力。为了研究新方法的加工特性,从材料去除率、电极相对磨损率、加工精度、表面形貌和重铸层等方面进行了对比实验。实验结果表明,与传统电火花加工相比,MA-DAP的材料去除率显著提高了一个数量级以上,其他工艺指标也得到了显著提高。MA-DAP获得了深径比大于12的深形盲孔。

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