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New spherical magnetic abrasives with carried diamond particles for internal finishing of capillary tubes

机译:用于毛细管内部精加工的新型带载金刚石颗粒的球形磁性磨料

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Iron composite powder containing alumina is commercially used as magnetic abrasives for internal finishing of capillary tubes. However, as downsizing and lengthening of capillary tube progress along with sophistication of analytical and testing equipment, the magnetic composite powder with large particle size and irregular shape puts a limit on the finishing performance. In this paper, to break through the limitation and to further improve the finishing performance, spherical iron-based composite powder with carried diamond particles is developed by using a plasma spraying technique. Spherical carbonyl iron powder with 7.2 mu m in average and diamond particles with 0.3 mu m in average are mechanically mixed and then are plasma-sprayed at various plasma currents, and the spherical iron-based composite powders with carried diamond particles which have a particle size less than 10 mu m are obtained. The results of XRD and Raman analysis indicate that the optimal plasma current is 100 A from an oxidation point of iron powder and diamond particles. The abrasive experiment of SUS304 plate shows that the developed composite powder has potential performance as a new magnetic abrasive for internal finishing of capillary tubes.
机译:含有氧化铝的铁复合粉末在商业上用作用于毛细管内部精加工的磁性磨料。然而,随着毛细管的小型化和加长以及分析和测试设备的先进性的发展,具有大粒径和不规则形状的磁性复合粉末限制了精加工性能。为了克服这种局限性并进一步改善加工性能,采用等离子喷涂技术开发了带有金刚石颗粒的球形铁基复合粉末。机械混合平均为7.2μm的球形羰基铁粉和平均为0.3μm的金刚石颗粒,然后在各种等离子流下进行等离子喷涂,并且该球形铁基复合粉体的颗粒尺寸随携带的金刚石颗粒而变化。小于10μm。 XRD和拉曼分析的结果表明,从铁粉和金刚石颗粒的氧化点出发,最佳等离子体电流为100A。 SUS304板的磨料实验表明,所开发的复合粉末具有潜在的性能,可作为毛细管内部精加工的新型磁性磨料。

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