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Study on Applicability of Large-area EB Irradiation to Micro-deburring

机译:大面积EB辐照对微博辐射的应用研究

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摘要

In a large-area electron beam (EB) irradiation method developed recently, high energy EB can be obtained without focusing the beam, and large-area EB with almost uniform energy density distribution of 60mm in diameter can be used for instantly melting and evaporating metal surface. Then, the surface smoothing and surface modification of metal molds made of steel, cemented carbide and ceramics can be performed efficiently. When the large-area EB is irradiated to a sharp edge, the material removal remarkably progresses at the edge due to the heat accumulation and EB concentration there, which leads to the edge rounding. Our previous study clarified that micro-deburring was also possible by using this phenomenon. Moreover, this method would be effective for removal of discontinuous micro burrs generated by thermal machining processes, such as EDM and laser cutting. In this study, the possibility to completely remove micro burrs generated in EDM was experimentally investigated. The difference in micro-deburring characteristics with the type of workpiece material was also investigated. As a result, the EDM micro burrs with a height of about up to 50μm could be completely removed by this method. Furthermore, it was made clear that the magnetic property of workpiece materials greatly influenced the deburring characteristics, and the thermal property such as melting point and thermal conductivity also did.
机译:在最近开发的大区域电子束(EB)照射方法中,可以在不聚焦光束的情况下获得高能EB,并且具有60mm直径几乎均匀的能量密度分布的大面积EB可用于瞬间熔化和蒸发金属表面。然后,可以有效地进行由钢,粘合的硬质合金和陶瓷制成的金属模具的表面平滑和表面改性。当大面积EB被照射到尖锐的边缘时,由于在那里的热量积聚和EB浓度,材料去除显着地在边缘上进行,这导致边缘圆角。我们以前的研究澄清了通过使用这种现象也可以进行微尿剂。此外,该方法可有效地去除由热加工过程产生的不连续微毛刺,例如EDM和激光切割。在这项研究中,实验研究了在EDM中完全去除微毛刺的可能性。还研究了具有工件材料类型的微量去毛刺特性的差异。结果,通过该方法可以完全除去高度为高达50μm的EDM微毛刺。此外,明确表示工件材料的磁性大大影响了去毛刺特性,以及熔点和导热率的热性也是如此。

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