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The effect of surface indentations on gouging in railguns

机译:表面压痕对轨道炮气刨的影响

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摘要

Hypervelocity gouging occurs in high speed sliding systems such as rocket sled test tracks, light gas guns, and electromagnetic railguns. Gouging takes the form of teardrop-shaped craters on the rail surface, and occurs above a threshold speed which is dependent on the slider and rail materials. In this study, gouging of aluminum railgun armatures on flat and indented copper rails was performed to examine the effect of macroscopic surface defects on gouge onset velocity and morphology. Both galling and gouge craters were shown to initiate at existing macroscopic and microscopic defects. Macroscopically flat rail surfaces provide no practical advantage over indented surfaces insofar as gouge onset velocity is concerned. However, the shape of the resulting gouge craters can be significantly affected.
机译:超高速气刨发生在高速滑动系统中,例如火箭滑轨测试轨道,轻气枪和电磁轨道炮。刨削在轨道表面上采用泪珠状凹坑的形式,并在高于阈值速度时发生,该速度取决于滑块和轨道材料。在这项研究中,对扁平的和凹进的铜轨上的铝制轨道炮电枢进行气刨,以检查宏观表面缺陷对切屑开始速度和形态的影响。示出了擦伤坑和凿坑是从现有的宏观和微观缺陷开始的。就切屑开始速度而言,宏观上平坦的轨道表面没有提供比凹入表面更多的实际优势。但是,产生的凿坑的形状会受到很大影响。

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