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Influence of Turning by Burnishing on Surface Integrity to Analyze Feasibility of Hybrid Process

机译:转弯对表面完整性的影响分析杂交过程的可行性

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Burnishing, an ultra-precision superficial plastic deformation process, is used increasingly as a surface enhancement finishing treatment after machining operations not only to give a mirror-like and work-hardened surface but also to impose favorable compressive residual stress in it. To analyze the feasibility of turning-burnishing hybrid process, the Taguchi's L27(3~(13)) orthogonal array method with the analysis of variance (ANOVA) were used to analyze the influence of the initial turning process on surface integrity of roller burnished AISI 1045 steel such as surface roughness, surface microhardness. three turning parameters, namely the cutting feed, cutting depth and cutting speed, three burnishing parameters, namely the burnishing feed, burnishing depth and burnishing speed were selected as the experimental factors in Taguchi's design of experiments to determine which one has the dominant influence and how it works on burnishing effects, namely the surface roughness and surface microhardness, the interactions between cutting feed, burnishing feed and burnishing depth were considered. The experimental results agreed well with the theoretical analysis and the conclusion is cutting feed has dominant influence on burnished surface integrity.
机译:抛光,超精密浅表塑性变形过程,在加工操作后越来越多地用作表面增强处理处理,不仅给出镜面和工作 - 硬化的表面,而且还施加有利的压缩残余应力。为了分析转动吹气混合过程的可行性,使用差异分析(ANOVA)的Taguchi的L27(3〜(13))正交阵列方法来分析初始转弯过程对滚轮亮起AISI的表面完整性的影响1045钢,如表面粗糙度,表面粗糙度。三个转动参数,即切割进给,切割深度和切割速度,三个抛光参数,即抛光饲料,抛光深度和抛光速度被选为Taguchi的实验设计中的实验因素,以确定哪一个具有主导影响和如何它适用于抛光效果,即表面粗糙度和表面微硬度,考虑了切割进料,抛光和抛光深度之间的相互作用。实验结果与理论分析相同一致,结论是切割饲料对抛光表面完整性有显性影响。

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