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Influence of Surface Treatment of CBN Grits on the Properties of B-Si-Na Vitrified Abrasive Tools

机译:CBN胶质表面处理对B-Si-Na玻璃化磨料工具性能的影响

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In this paper, by using scanning electron microscopy (SEM) and element dispersive spectrum (EDS) together with three-point bending test, the influence of different surface treatment of cubic nitride boron (cBN) on the bonding of cBN with B-Si-Na vitrified bond had been studied. The results showed that cBN coated with corundum could greatly improve the specimen's bending strength and grinding properties. SEM analysis showed that the interface between cBN grits and vitrified bond was a perfect indention combination. On the other hand, when uncoated cBN was used in abrasive tool, the specimen's bending strength dropped down seriously. The reason was that many cavities produced at the interface between cBN grits and vitrified bond, decreasing the actual area of load, due to the corrosion reaction between cBN grits and vitrified bond components during sintering. EDS analysis also showed that corundum-coated cBN could form components gradient change from cBN grits to vitrified bond during sintering and made the abrasives bond vitrified substrate compatibly.
机译:在本文中,通过使用扫描电子显微镜(SEM)和元素分散谱(EDS)以及三点弯曲试验,不同表面处理的立方氮化硼(CBN)对CBN与B-Si的键合的影响已经研究过玻璃债券。结果表明,涂​​有刚玉的CBN可以大大提高样品的弯曲强度和研磨性能。 SEM分析表明,CBN砂砾和玻璃化键之间的界面是完美的凝结组合。另一方面,当在研磨工具中使用未涂覆的CBN时,标本的弯曲强度严重下降。原因在于,由于CBN砂粒和燃烧过程中的烧结过程中的腐蚀反应,在CBN砂粒和玻璃粘接键之间的界面之间产生的许多空腔减小了载体之间的实际负载区域。 EDS分析还表明,核涂覆的CBN可以在烧结期间将组分梯度变化从CBN栅格形成玻璃化键,并将研磨剂兼容地制成玻璃化底物。

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