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Influence of the ferritic-pearlitic steel microstructure on surface roughness in broaching of automotive steels

机译:铁素体 - 珠光体钢微观结构对汽车钢拉划线表面粗糙度的影响

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The aim of this work is to characterize the effect of microstructural parameters on surface roughness in dry broaching with a special emphasis on the ferrite-pearlite (FP) ratio. An experimental approach combining cutting and tribological tests has been developed on three grades 27MnCr5, C45, C60 covering a wide range of FP ratio. Fundamental broaching tests have been performed with a single tooth to analyse the resulting surface quality with uncoated M35 HSS tools. A specially designed open tribometer has been used to characterize the friction coefficient at the tool-chip-workpiece interface under appropriate conditions. Specific phenomena have been observed depending on the FP ratio and an interesting correlation with the tribological tests has been found. This clearly shows that friction has an important contribution in broaching and that phase distribution has to be highly considered when cutting a FP steel at a microscopic scale. This work also provides quantitative data of the friction coefficient depending on the sliding velocity and FP content which can be implemented in any analytical or numerical model of a broaching operation.
机译:这项工作的目的是表征微观结构参数对干燥拉伸表面粗糙度的影响,特别强调铁氧体 - 珠光体(FP)比例。组合切割和摩擦学检测的实验方法已经开发出三级27mncr5,C45,C60,涵盖广泛的FP比率。用单齿进行了基本拉伸试验,用未涂覆的M35 HSS工具分析所得表面质量。专门设计的开放式摩擦计已被用于在适当的条件下在工具芯片工件界面处的摩擦系数。根据FP比率观察到特定现象,并发现了与摩擦学检验的有趣相关性。这清楚地表明,摩擦在拉削方面具有重要贡献,并且在微观尺度切割FP钢时必须高度考虑相相分布。该工作还根据滑动速度和FP含量提供摩擦系数的定量数据,其可以在拉削操作的任何分析或数值模型中实现。

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