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Influence of Electroplated CBN Wheel Wear on Grinding Surface Morphology of Powder Metallurgy Superalloy FGH96

机译:电镀CBN轮磨损对粉末冶金超合金FGH96磨削表面形态的影响

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The electroplated cubic boron nitride (CBN) wheel has perfect precision retention and high-temperature grinding performance, which is widely used in the field of grinding difficult-to-cut materials, such as nickel-based superalloy. However, the research on the influence law and mechanism of grinding surface morphology affected by the wear state of small-size grinding wheel is insufficient, which limits the further promotion and application of electroplated CBN wheel in the field of precision grinding of superalloy materials. Based on the in-depth analysis of the structure of FGH96 turbine disk, and combined with the actual processing requirements, the electroplated CBN wheel was designed, and the abrasive grains size selection experiments and CBN wheel wear experiments were then carried out for the powder metallurgy superalloy FGH96 in turn. The influence law of the abrasive grain size of CBN grinding wheel and the wear state of grinding wheel on the surface morphology was investigated, respectively. The obtained results showed that under the given processing parameters, the surface roughness R a using 400# and 600# electroplated CBN wheels are around 0.66 μm and 0.53 μm during the normal wear state of grinding wheels, respectively, which can meet the requirement of surface quality less than R a 0.8 μm in engineering application of turbine disk, and prove the feasibility of small-size CBN wheel grinding FGH96. In addition, the failure form of electroplated CBN wheel is mainly the accumulation and adhesion of abrasive debris, and the crushing and shedding of abrasive grain are hard to appear.
机译:电镀立方氮化硼(CBN)轮具有完善的精确保持和高温研磨性能,该性能广泛用于研磨难以切割的材料领域,例如镍基超合金。然而,对受小尺寸磨轮磨损状态影响的磨削表面形态的影响法和机理的研究不足,这限制了电镀CBN车轮在超合金材料的精密研磨领域的进一步推广和应用。基于FGH96涡轮机结构的深度分析,并结合实际加工要求,设计了电镀CBN轮,然后对粉末冶金进行磨粒尺寸选择实验和CBN轮磨损实验Ruperalloy FGH96又轮流。研究了CBN砂轮磨粒粒度的影响规律及砂轮磨损状态对表面形态的磨损状态。得到的结果表明,在给定的处理参数下,在磨削轮的正常磨损状态下,使用400#和600#电镀电镀CBN轮的表面粗糙度R a分别在磨削轮的正常磨损状态下约为0.66μm和0.53μm。这可以满足表面的要求质量小于涡轮盘的工程应用中的0.8μm,证明了小尺寸CBN磨削FGH96的可行性。此外,电镀CBN轮的故障形式主要是磨料碎片的积累和粘附,并且难以出现磨粒的破碎和脱落。

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