首页> 外文期刊>International Journal of Automotive Technology >EXPERIMENTAL INVESTIGATION OF ABRASIVE FLOW MACHINING EFFECTS ON INJECTOR NOZZLE GEOMETRIES, ENGINE PERFORMANCE, AND EMISSIONS IN A DI DIESEL ENGINE
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EXPERIMENTAL INVESTIGATION OF ABRASIVE FLOW MACHINING EFFECTS ON INJECTOR NOZZLE GEOMETRIES, ENGINE PERFORMANCE, AND EMISSIONS IN A DI DIESEL ENGINE

机译:DI柴油机磨料流机械加工对喷油嘴几何形状,发动机性能和排放的实验研究

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摘要

The effects of the Abrasive Flow Machining (AFM) process on a direct injection (DI) Diesel engine fuel injector nozzle are studied. Geometry characterization techniques were developed to measure the microscopic variations inside the nozzle before and after the process. This paper also provides empirically-based correlations of the nozzle geometry changes due to the AFM process. The resulting impact of the process on the engine performance and emissions are also assessed with a DI Diesel engine test setup. This study shows that properly AFM-processed injectors can enhance engine performance and improve emissions due to the improved quality of the nozzle characteristics. However, an extended process can also cause enlargement of the nozzle hole as a side effect, which can adversely affect emissions. Emission measurements show the trade-off for the minimum levels as the process proceeds. Since the enlargement of the hole during the AFM process is not avoidable and must be minimized, strict control over the process is required. This control can be enforced by either limiting the AFM processing period, or by properly preparing the initial hole diameter so as to accommodate the inevitable changes in the nozzle geometry.
机译:研究了磨料流加工(AFM)工艺对直接喷射(DI)柴油发动机喷油嘴的影响。开发了几何表征技术,以测量工艺前后喷嘴内部的微观变化。本文还提供了基于经验的AFM过程导致的喷嘴几何形状变化的相关性。该过程对发动机性能和排放的最终影响也可以通过DI柴油发动机测试装置进行评估。这项研究表明,经过适当AFM处理的喷油器可以改善喷嘴性能,从而提高发动机性能并减少排放。然而,延长的过程也可能导致喷嘴孔扩大,这是一个副作用,可能会对排放产生不利影响。排放量测量显示了在过程进行过程中最小排放量的权衡。由于在AFM过程中无法避免扩大孔,必须将其最小化,因此需要对过程进行严格控制。可以通过限制AFM处理时间或通过适当准备初始孔径来适应喷嘴几何形状的不可避免变化,来强制执行此控制。

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