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使用金刚石刀具铣削铝/碳纤维增强塑料叠层后的表面粗糙度

Surface Roughness after Milling of the Al/CFRP Stacks with a Diamond Tool.

作者信息

Doluk Elżbieta, Rudawska Anna, Kuczmaszewski Józef, Miturska-Barańska Izabela

机构信息

Department of Mechanical Engineering, Lublin University of Technology, 20-388 Lublin, Poland.

出版信息

Materials (Basel). 2021 Nov 12;14(22):6835. doi: 10.3390/ma14226835.

Abstract

This study presents the results of research on the surface quality of hybrid sandwich structures after milling with a diamond blade tool. It identifies the effects of feed and machining strategy on the roughness and topography of the surface. It provides an analysis of Ra and Rz surface roughness parameters as well as Sp, Sz, and Sv surface topography parameters. The processed object was a two-layer sandwich structure consisting of aluminium alloy 2024 and CFRP (carbon fibre-reinforced polymer) composite. The minimum values of the Ra and Rz surface roughness parameters were obtained on the aluminium alloy surface, whereas the maximum values were obtained on the CFRP surface. The same was true for the 3D surface roughness parameters-the lowest values of Sp, Sz, and Sv parameters were obtained on the surface of the metal layer, while the highest values were obtained on the surface of the composite layer (the maximum value of the Sp parameter was an exception). A surface topography analysis has revealed a targeted and periodic pattern of micro-irregularities for the vast majority of the samples considered. The statistical analysis shows that the surface roughness of the aluminium alloy was only affected by the feed rate. For the CFRP, the feed rate and the interaction of milling strategy and feed rate (S × f) had a statistically significant effect. The obtained results provide a basis for designing such sandwich element processing technology, for which differences in roughness and topography parameters for the component materials are lowest.

摘要

本研究展示了使用金刚石刀片工具铣削后混合夹层结构表面质量的研究结果。它确定了进给量和加工策略对表面粗糙度和形貌的影响。它对Ra和Rz表面粗糙度参数以及Sp、Sz和Sv表面形貌参数进行了分析。加工对象是由铝合金2024和CFRP(碳纤维增强聚合物)复合材料组成的两层夹层结构。Ra和Rz表面粗糙度参数的最小值在铝合金表面获得,而最大值在CFRP表面获得。三维表面粗糙度参数也是如此——Sp、Sz和Sv参数的最低值在金属层表面获得,而最高值在复合层表面获得(Sp参数的最大值除外)。表面形貌分析表明,在所考虑的绝大多数样品中,存在有针对性的周期性微观不规则图案。统计分析表明,铝合金的表面粗糙度仅受进给速度的影响。对于CFRP,进给速度以及铣削策略与进给速度的相互作用(S×f)具有统计学上的显著影响。所得结果为设计此类夹层元件加工工艺提供了依据,在此类工艺中,组成材料的粗糙度和形貌参数差异最小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74c3/8623777/770b47d8794d/materials-14-06835-g001.jpg

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