表面间隙火花塞放电的实验鉴定

F. Szwajca, K. Wisłocki
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引用次数: 0

摘要

研究的主要目的是评估火花塞电极几何形状对电弧结构的影响。这个问题在使用稀薄分层空气-气体混合物的现代燃气发动机中变得越来越重要。为了解释电极几何形状对所选火花放电指标的影响,进行了光学测试,并记录和分析了测试历史的参数以及放电过程的电影。在试验台上对常规火花塞和平地电极火花塞两种类型的火花塞进行了对比试验。人们已经发现,使用扁平插头电极允许电弧覆盖更大的火花区域,而不会失去辐射强度。此外,与传统火花塞相比,使用非常规火花塞可以缩短放电时间,而传统火花塞的几何结构可以保持稳定的电弧,并将爬行的趋势降到最低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental identification of the electrical discharge on a surface gap spark plug
The main objective of the research is to assess the influence of the spark plug electrodes geometry on the structure of the electric arc. This issue is increasingly important in modern gas-fueled engines with lean and stratified air-gas mixtures. To explain the influence of electrode geometry on selected spark discharge indicators, optical tests were conducted, and the parameters of the test history, together with the movies of the discharging process, were recorded and analyzed. The tests were carried out comparatively for two types of spark plugs on the test stand: conventional spark plug and spark plug with a flat ground electrode. It has been found that using flat plug electrodes allows a larger spark area covered by the electric arc without losing the intensity of radiation. More, using an unconventional spark plug results in a shorter discharge time relative to the conventional spark plug, while the geometry of the conventional spark plug allows for maintaining a stable electric arc with a minimum tendency for creeping.
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
30
审稿时长
6 weeks
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