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Hall-Effect Thruster Channel Surface Properties Investigation

机译:霍尔效应推进器通道表面特性研究

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Surface properties of Hall-effect thruster channel walls play an important role in the performance and lifetime of the device. Physical models of near-wall effects are beginning to be incorporated into thruster simulations, and these models must account for the evolution of channel surface properties due to thruster operation. Results from this study show differences in boron nitride channel surface properties from beginning-of-life and after hundreds of hours of operation. Two worn thruster channels of different boron nitride grades are compared with their corresponding pristine and shadow-shielded samples. Pristine HP-grade boron nitride surface roughness is 9000 ± 700 A, whereas the worn sample is 110,900 ± 8900 A at the exit plane. Pristine M26-grade boron nitride surface roughness is 18400 ± 1400 A, whereas the worn sample is 52300 ± 4200 A at the exit plane. Comparison of pristine and worn channel surfaces also shows surface properties are dependent on the axial position within the channel. For example, surface roughness increases by as much as a factor of 5.4, and the surface atom fraction of carbon and metallic atoms decreases by a factor of 2.9 from anode to the exit plane. Macroscopic striations at the exit plane angled 10-30° from the axial are found to be related to the electron gyroradius and give rise to anisotropic surface roughness. Smoothing of ceramic grains at the microscopic level is also found.
机译:霍尔效应推进器通道壁的表面特性在设备的性能和使用寿命中起着重要作用。近壁效应的物理模型已开始纳入推进器模拟,这些模型必须考虑推进器运行导致的通道表面特性的演变。这项研究的结果表明,氮化硼通道表面性能从使用寿命开始和运行数百小时后均存在差异。比较了不同氮化硼等级的两个磨损的推进器通道及其相应的原始和阴影屏蔽样品。原始的HP级氮化硼表面粗糙度为9000±700 A,而在出口平面处磨损的样品为110,900±8900A。原始的M26级氮化硼表面粗糙度为18400±1400 A,而在出口平面处磨损的样品为52300±4200A。原始和磨损通道表面的比较还表明,表面性能取决于通道内的轴向位置。例如,从阳极到出口平面,表面粗糙度增加了5.4倍,碳和金属原子的表面原子分数降低了2.9倍。发现出射平面上与轴向成10-30°的宏观条纹与电子回旋半径有关,并引起各向异性的表面粗糙度。还发现了陶瓷颗粒在微观水平上的平滑。

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