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METAL SURFACE MODIFICATION BY A NANOSECOND DIFFUSE DISCHARGE IN NITROGEN

机译:氮中纳秒弥散放电对金属表面的改性

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The study demonstrates the feasibility of surface modification by a runaway electron preionized diffuse discharge (REP DD) at atmospheric pressures on a nanosecond pulse generator. It is shown that REP DD treatment provides an up to twofold decrease in carbon concentrations in the surface layers of steel and aluminum. It is found that both materials subjected to REP DD are involved in surface oxidation with the result that the oxygen concentration in steel surface layers increases three times and the surface microhardness of the material is enhanced at different depths, whereas the oxygen concentration in aluminum surface layers remains almost unchanged, and the surface microhardness of the material decreases due to the formation of an amorphous oxide layer.
机译:这项研究证明了在大气压下通过纳秒脉冲发生器对失控的电子预离子化扩散放电(REP DD)进行表面改性的可行性。结果表明,REP DD处理可使钢和铝表面层的碳浓度降低多达两倍。结果发现,两种经过REP DD处理的材料都参与了表面氧化,其结果是钢表面层中的氧浓度增加了三倍,并且材料的表面显微硬度在不同的深度处得到了增强,而铝表面层中的氧浓度却有所增加。保持几乎不变,并且由于形成非晶氧化物层,材料的表面显微硬度降低。

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