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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Characterization of erosion and failure processes of spark plugs after field service in natural gas engines
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Characterization of erosion and failure processes of spark plugs after field service in natural gas engines

机译:天然气发动机现场维修后火花塞的腐蚀和失效过程的表征

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摘要

Microstructural and optical spectroscopic analyses were carried out on as-received and used spark plugs after field service in natural gas (NG) reciprocating engines. The objective of this work was to examine the corrosion and erosion mechanisms of natural gas engine spark plug as well as identify the primary life limiting processes during field operation. The optical emission spectroscopic analysis showed a strong Ca signal in the exposed spark plugs and scanning electron microscopy showed substantial formation of Ca-enriched glassy oxide phase(s) on the electrode surfaces. In addition, intergranular cracking was observed in the subsurface region of both iridium (Ir) and platinum-tungsten (Pt-W) alloy electrode insert tips. The coalescence and subsequent growth of these cracks would accelerate the wear of the electrodes and shorten the lifetime of the spark plugs. Also, extensive internal oxidation and subsequent crack generation occurred along the interface between Ni-base alloy electrode and Pt-W alloy tip insert during field service, which would result in substantial degradation in the ignitability and performance of the electrodes, and thus spark plug failure.
机译:在天然气(NG)往复式发动机中进行现场维修后,对接收和使用过的火花塞进行了显微结构和光谱分析。这项工作的目的是检查天然气发动机火花塞的腐蚀和腐蚀机理,并确定现场运行过程中的主要寿命限制过程。发射光谱分析表明在暴露的火花塞中有很强的Ca信号,而扫描电子显微镜显示在电极表面上大量形成了富含Ca的玻璃态氧化物相。此外,在铱(Ir)和铂钨(Pt-W)合金电极刀片尖端的亚表面区域均观察到晶间裂纹。这些裂纹的聚结和随后的增长将加速电极的磨损并缩短火花塞的寿命。而且,在现场维修期间,沿着镍基合金电极和Pt-W合金烙铁头插入物之间的界面发生了广泛的内部氧化和随后的裂纹生成,这将导致电极的可燃性和性能大幅下降,从而导致火花塞故障。

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