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Experimental research of the effect of face milling strategy on the flatness deviations
Materials and Manufacturing Processes ( IF 4.8 ) Pub Date : 2020-09-11 , DOI: 10.1080/10426914.2020.1819548
Michal Dobrzynski 1 , Daniel Chuchala 1 , Kazimierz A. Orlowski 1 , Mateusz Kaczmarczyk 2
Affiliation  

ABSTRACT In this paper the dependencies between face milling strategy of EN AW6082-T6 aluminum alloy samples, with difference thicknesses (6, 8, and 12 mm) and two cold rolling directions, and flatness deviations were presented. Three strategies of milling included different proportions of material removed from both sides of the plates. This approach allowed to control the proportions of residual surface stresses on both sides of the specimens, which were created by the cold rolling process. The face milling strategy involving the symmetrical removal of material from both sides of the sample resulted in the best results of flatness deviations. This strategy was most effective for both rolling directions. It has been observed that the use of an appropriate face milling strategy is particularly important for thin sheets (6 mm thick). In the case of thicker plates (12 mm thick), the selected strategy has less impact on the final values of flatness deviations.

中文翻译:

面铣策略对平面度偏差影响的实验研究

摘要 本文介绍了 EN AW6082-T6 铝合金样品的面铣策略之间的相关性,具有不同的厚度(6、8 和 12 毫米)和两个冷轧方向,以及平面度偏差。三种铣削策略包括从板的两侧去除不同比例的材料。这种方法可以控制试样两侧的残余表面应力的比例,这是由冷轧过程产生的。涉及从样品两侧对称去除材料的面铣策略导致平面度偏差的最佳结果。这种策略对两个轧制方向最有效。据观察,使用适当的面铣策略对于薄板(6 毫米厚)尤为重要。
更新日期:2020-09-11
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