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Improvement of surface characteristics for long life of metal molds by large-area EB irradiation

机译:通过大面积EB辐照改善表面特性以延长金属模具的使用寿命

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This paper describes the applicability of large-area EB irradiation method to a new surface modification for metal molds. The previous papers clarified that the surface roughness on wide area uniformly decreased to less than 1 μm Rz in a few minutes by the large-area EB irradiation. Therefore, the large-area EB irradiation method has high practicability as an efficient surface finishing process for metal molds, and then the EB irradiation equipment has already been introduced into the market for practical use. In this method called EB polishing, the surface material melts and a very thin resolidified layer is formed on the surface. In this paper, the surface structure of EB polished metal mold steel SKD11 was first observed by TEM, and also component analysis was carried out by EDX. Then it was found out that the crystal grain size became small and chromium carbide is uniformly rearranged in the layer. Next, using heat conduction analysis model considering the electron penetration on the surface, the temperature distribution was calculated. The results showed that the surface temperature rapidly raised over its melting point until the end of EB irradiation, and cooled down rapidly. As the important practical surface characteristics for long life of metal mold, resistance to corrosion, water repellency, and the releasability of molded resin from metal mold surface were evaluated. The corrosion resistance and the water repellency could be improved by EB polishing, since the surface structure changes and Cr content distributed uniformly on the surface. Also, the releasability of molded resin from the surface became better.
机译:本文介绍了大面积电子束辐照方法在金属模具新表面改性中的适用性。先前的论文阐明,通过大面积EB辐照,在几分钟内,大范围的表面粗糙度均匀地减小到小于1μmRz。因此,大面积EB照射方法作为用于金属模具的有效表面精加工工艺具有很高的实用性,并且随后EB照射设备已经被引入市场以实用。在这种称为EB抛光的方法中,表面材料熔化并且在表面上形成了非常薄的固化层。本文首先通过TEM观察了EB抛光金属模具钢SKD11的表面结构,然后通过EDX进行了成分分析。然后发现,晶粒尺寸变小并且碳化铬在层中均匀地重新排列。接下来,使用考虑到表面上的电子渗透的热传导分析模型,计算温度分布。结果表明,表面温度在其熔点以上迅速升高,直到EB辐射结束,然后迅速冷却。作为金属模具的长寿命的重要实用表面特性,评价了耐腐蚀性,防水性和成型树脂从金属模具表面的脱模性。由于表面结构的变化和表面上Cr含量的均匀分布,通过EB抛光可以提高耐蚀性和疏水性。而且,模制树脂从表面的脱模性变得更好。

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