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Modern Technologies for Micro-drilling of the Fuel Injector Nozzle used in Motor Vehicles - A Review of the Literature

机译:用于机动车辆中使用的燃料喷射器喷嘴的现代技术 - 文献综述

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To cope with the pollution norms and an improvement of the combustion of the internal combustion engines, high-quality holes with diameters smaller than 145 μm are needed for the manufacture of fuel injection nozzles. The current practice of using drilling by electro-discharge machining of fuel injection nozzles is limited in terms of the size of the hole it can efficiently produce and the time required for drilling. In addition, the cost of the tool is high. This paper presents an investigation into a sequential laser and electro-discharge micro-drilling technique for the manufacture of fuel injection nozzles. A pilot hole drilled with a laser is removed by electrodischarge. It was found that this hybrid process eliminated the problems of reformed and heat-affected areas usually associated with the laser drilling process. The new process has allowed a reduction in total drilling time compared to standard electro-discharge machining drilling, as less material is removed from the electro-discharge machining. The quality of the holes is as good as direct electro-discharge machining drilling. This technique has allowed valuable cost savings and increased production capacity for the manufacture of the fuel injector nozzle.
机译:为了应对内燃机的污染准则和改进内燃机的燃烧,需要直径小于145μm的高质量孔来制造燃料喷嘴。通过燃料喷嘴的电放电加工使用钻孔的目前的实施实践在孔的尺寸方面受到限制,它可以有效地生产和钻孔所需的时间。此外,工具的成本很高。本文提出了一种对燃料喷嘴制造的顺序激光和电放电微钻技术的研究。用电力放电除去用激光钻出的先导孔。发现这种混合过程消除了通常与激光钻井过程相关的改革和热影响区域的问题。与标准电放电加工钻井相比,新工艺允许减少总钻井时间,因为从电放电加工中除去了更少的材料。孔的质量与直接电放电加工钻井一样好。该技术允许有价值的成本节约和增加燃料喷射器喷嘴的生产能力。

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