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Characterization of the Velocity Skin Effect in the Surface Layer of a Railgun Sliding Contact

机译:轨道枪滑动触点表面层中速度趋肤效应的表征

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We present a characterization of contact velocity skin effect (VSEC), which is a major velocity- and efficiency-limiting effect at a railgun''s sliding contact. Despite enormous contact forces, the armature remains separated from the rail by a thin layer, 4 to 12 ${rmAA}$ thick. Evidence suggests VSEC is also the primary mechanism responsible for the contact voltage drop. VSEC effects are seen in both electromagnetic launcher (EML) efficiency and breech voltage. We compare theoretical predictions of system efficiency and breech voltage to experimental measurements for both a conventional and an augmented railgun. The characterization of VSEC extends our previous theoretical work in this area and provides new insights into the physics of EML operation, especially with regards to the armature and sliding contact. VSEC is a significant energy loss mechanism and heat source, possibly contributing to contact erosion and transition. We propose a similar VSEC mechanism to explain velocity saturation and efficiency roll-off in plasma and hybrid armature railguns, as well as arc restrike.
机译:我们介绍了接触速度趋肤效应(VSEC)的表征,这是在轨道炮的滑动接触中主要的速度和效率限制效应。尽管有巨大的接触力,电枢仍与铁轨之间形成一层薄薄的隔离层,厚度为4至12 $ rmAA} $。有证据表明,VSEC也是造成接触电压下降的主要机制。在电磁发射器(EML)效率和后膛电压中都可以看到VSEC效应。我们将系统效率和后膛电压的理论预测与常规和增强型轨道炮的实验测量结果进行了比较。 VSEC的特性扩展了我们先前在该领域的理论工作,并为EML操作的物理学提供了新的见解,特别是在电枢和滑动接触方面。 VSEC是重要的能量损失机制和热源,可能导致接触腐蚀和过渡。我们提出了一种类似的VSEC机制来解释等离子和混合式电枢轨道炮的速度饱和度和效率下降,以及反电弧。

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