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New Design of Copper–Inconel 601 Ground Electrode Spark Plug Based on a Thermo-Mechanical Model

机译:基于热机械模型的铜inconel601接地电极火花塞的新设计

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摘要

Inconel 601 is one material of choice for intermediate- to high-temperature protective coatings for spark plugs’ ground electrodes. Production of ground electrodes of spark plugs implies the following operations: the tamping of the copper core in an Inconel 601 cup, cold-forming of the assembly, annealing, welding, and bending of the final spark plug. On the production line, the use of Inconel 601 as a protective coating for ground electrodes leads to possible cracking in the welded area after bending. In the present paper, possible causes of cracking are analyzed. It is clearly shown that a combination of Copper –Inconel interface oxidation, Inconel yielding during the heat treatment, and micro-movements during bending lead to cracks in the welded area of the ground electrode. First, the detrimental effect of gaps, between Copper and Inconel 601, is shown experimentally. Second, a thermo-mechanical analysis combined with SEM (Scanning Electron Microscopy) observations identified the annealing treatment and interface oxidation as the main cause of gaps. Third, bending simulations show the relation between these gaps and cracking. Finally, a new ground electrode design, preventing cracks, is suggested.
机译:Inconel 601是用于火花塞接地电极的中间至高温保护涂层的一种首选材料。火花塞接地电极的生产意味着以下操作:铜芯在inconel601杯中的夯实,组装,退火,焊接和最终火花塞的弯曲。在生产线上,使用Inconel 601作为接地电极的保护涂层导致弯曲后的焊接区域中的可能开裂。在本文中,分析了可能的开裂原因。清楚地表明,铜 - 锌界面氧化的组合,在热处理期间产生的屈服,并且在弯曲引线期间的微动在接地电极的焊接区域中的裂缝。首先,实验显示铜和Inconel601之间间隙的不利影响。其次,与SEM(扫描电子显微镜)相结合的热机械分析确定退火处理和界面氧化作为间隙的主要原因。第三,弯曲模拟显示了这些间隙与开裂之间的关系。最后,提出了一种新的接地电极设计,防止裂缝。

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