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首页> 外文期刊>CERAMICS INTERNATIONAL >Effect of process parameters on MRR, TWR and surface topography in ultrasonic machining of alumina-zirconia ceramic composite
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Effect of process parameters on MRR, TWR and surface topography in ultrasonic machining of alumina-zirconia ceramic composite

机译:工艺参数对氧化铝-氧化锆陶瓷复合材料超声加工中MRR,TWR和表面形貌的影响

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摘要

The paper reports experimental investigation and analysis of material removal rate, tool wear rate, and surface roughness in ultrasonic machining of alumina-zirconia ceramic composite (Al_2O_3+ZrO_2). The experiments were conducted using the full factorial DoE method with an L_8 (2~3) orthogonal array. The effects of amplitude, slurry concentration and slurry type on the above responses were investigated. Analysis of results indicates that the amplitude has a significant effect on the MRR and surface roughness. An increase in amplitude causes higher MRR and surface roughness. Pure SiC abrasives give better surface finish, whereas the mixed abrasives produce higher tool wear and MRR. The machined surface topography consists of the alterations such as microcavities, plastically deformed layers and fragments of zirconia spread on the surface.
机译:本文报道了对氧化铝-氧化锆陶瓷复合材料(Al_2O_3 + ZrO_2)进行超声加工时材料去除率,工具磨损率和表面粗糙度的实验研究和分析。实验是使用全因子DoE方法和L_8(2〜3)正交阵列进行的。研究了振幅,浆液浓度和浆液类型对上述响应的影响。结果分析表明,振幅对MRR和表面粗糙度有重大影响。幅度的增加会导致更高的MRR和表面粗糙度。纯SiC磨料可提供更好的表面光洁度,而混合磨料可产生更高的工具磨损和MRR。加工后的表面形貌由诸如微腔,塑性变形层和散布在表面的氧化锆碎片等变化组成。

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