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Surface modification of the carbon tool steel by continuous scanning electron beam process

机译:碳素工具钢的连续扫描电子束表面改性

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The mechanical properties of materials surface are always the key elements to evaluate the performance of materials, which means the surface performance of materials plays a key role especially in some occasion. In this study, the performance of T8, T10 and T12 steel were evaluated by using continuous scanning electron beam process (CSEBP) method for surface modification. The microstructure and properties of the modified layer were studied, and the influence of the electron beam process parameters on the modified layer was discussed. Surface modification of the materials was carried out by varying the beam current of the continuous electron-beam irradiation procedure. Comparing with the initial surface roughness of materials, the ultimate surface roughness was reduced significantly, and which the optimal surface roughness appeared at the beam current of 6 mA. These were all because of the surface shallow melting (SSM). Microstructure, microhardness and wear resistance of materials surface and cross-section after treatment with different processing parameters are investigated by using scanning electron microscope, microhardness meter and universal wear tester. Finally, the influence law of electron beam processing parameters on the modification layer is summarized.
机译:材料表面的机械性能始终是评估材料性能的关键要素,这意味着材料的表面性能尤其在某些情况下起着关键作用。在这项研究中,使用连续扫描电子束工艺(CSEBP)方法对T8,T10和T12钢的性能进行了评估。研究了改性层的微观结构和性能,讨论了电子束工艺参数对改性层的影响。通过改变连续电子束辐照程序的电子束电流对材料进行表面改性。与材料的初始表面粗糙度相比,最终表面粗糙度显着降低,并且最佳表面粗糙度出现在6 mA的束流下。这些都是因为表面浅熔(SSM)。采用扫描电子显微镜,显微硬度计和通用磨损测试仪,研究了不同工艺参数处理后材料表面和截面的组织,显微硬度和耐磨性。最后,总结了电子束加工参数对改性层的影响规律。

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