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首页> 外文期刊>Journal of Manufacturing and Materials Processing >Electropolishing of Laser Powder Bed-Fused IN625 Components in an Ionic Electrolyte
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Electropolishing of Laser Powder Bed-Fused IN625 Components in an Ionic Electrolyte

机译:离子电解质中激光粉末床熔铸的IN625组分的电抛光

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This work presents the first practical application of ionic electrolytes for electropolishing of nickel-based superalloys. It contains the results of an experiment-driven optimization of the applied potential and electrolyte temperature during electropolishing of laser powder bed-fused IN625 components containing surfaces oriented to the building platform under angles varying from 0 to 135°. For comparative purposes, the roughness profilometry and confocal microscopy techniques were used to characterize the surface finish topographies and the material removal rates of IN625 components subjected to electropolishing in ionic and acidic (reference) electrolytes. After 4 h of electropolishing in both electrolytes, a roughness of Ra ≤ 6.3 μm (ISO N9 grade number of roughness) was obtained for all the build orientations. To elaborate, both electrolytes manifested identical roughness evolutions with time on the 45° (75% Ra reduction) and 90°-oriented (65% Ra reduction) surfaces. Although the roughness reduction on the 135°-oriented surface in the ionic electrolyte was 17% less than in the acidic electrolyte, the former provided a more uniform roughness profile on the 0°-oriented surface (30% Ra reduction) and 44% higher current efficiency than the acidic electrolyte. This work proves that ionic electrolytes constitute a greener alternative to industrial acidic mixtures for electropolishing of three-dimensional (3D)-printed parts from nickel-based superalloys.
机译:这项工作介绍了离子电解质在镍基高温合金电抛光中的首次实际应用。它包含实验驱动的结果的优化,该结果是在电抛光激光粉末床熔合的IN625组件过程中对施加的电势和电解质温度进行优化的,这些组件包含面向建筑平台的表面,其角度在0到135°之间变化。为了进行比较,使用粗糙度轮廓仪和共聚焦显微镜技术表征了在离子和酸性(参考)电解质中进行电抛光的IN625组件的表面粗糙度和材料去除率。在两种电解液中进行4小时的电抛光后,所有构造方向的粗糙度均达到Ra≤6.3μm(ISO N9等级粗糙度)。详细地说,两种电解质在45°(Ra降低75%)和90°取向(Ra降低65%)表面上均表现出相同的粗糙度随时间变化。尽管离子电解质在135°取向的表面上的粗糙度降低比酸性电解质少17%,但前者在0°取向的表面上提供了更均匀的粗糙度轮廓(Ra降低30%),并且高了44%电流效率比酸性电解液高。这项工作证明,对于从镍基高温合金进行三维(3D)打印部件的电抛光,离子电解质构成了工业酸性混合物的绿色替代品。

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