Determination of optimum design parameters of glow plug and experimental verification

Muciz Özcan, M. F. Ünlerşen, M. Şen
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Abstract

In Diesel Engines, the heat energy obtained from the glow plug increases the engine's ability to start up in cold climatic conditions and significantly reduces emissions of harmful gases leaving the exhaust. In cold climatic conditions, before the start off of diesel vehicles it is necessary to wait for about 10 s the cylinder block heating. This period negatively affects driving comfort. In this study, the mathematical results of the processes to optimize the time required for the glow plug to reach the required temperature have been experimentally proven. A test apparatus was developed to confirm experimentally the theoretical results. Thanks to these improvements concerning the manufacture of the glow plug, the time period to reach 850 ° C has been reduced by approximately 5 s. The proposed design is in accordance with the glow plug present in the market. Currently the whole glow plug must be changed at the end of lifetime, with our improvement only the inner tube resistance can be easily changed involving a cost reduction by about 60%.
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辉光塞最佳设计参数的确定及实验验证
在柴油发动机中,从发光塞获得的热能增加了发动机在寒冷气候条件下启动的能力,并大大减少了废气中有害气体的排放。在寒冷的气候条件下,柴油车在启动前有必要等待10 s左右的缸体加热。这段时间会对驾驶舒适性产生负面影响。在本研究中,优化辉光塞达到所需温度所需时间的过程的数学结果已得到实验证明。研制了实验装置,对理论结果进行了实验验证。由于这些关于发光塞制造的改进,达到850°C的时间缩短了大约5秒。建议的设计与目前市场上的发光插头一致。目前,整个辉光插头必须在使用寿命结束时更换,通过我们的改进,只有内管电阻可以很容易地改变,成本降低了约60%。
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