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High Speed Milling of tool steel dies for aluminium extrusion: surface roughness, dimensional tolerance and chip removal mechanisms

机译:用于铝挤压的工具钢模具的高速铣削:表面粗糙度,尺寸公差和切屑去除机制

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摘要

Die finishing has a fundamental importance to ensure a good quality of Aluminium extruded parts and involves important economic effects due to the vastness of metalworking industry and the relatively short tool life in this field. Maximum machining efficiency is thus crucial. The research addresses optimization of finishing performances on tool steel extrusion dies. Milling tests are carried out on semi-manufactured parts to ensure adherence to standard industrial technological chain, varying cutting parameters towards the field of high speed machining. Dimensional tolerance is determined on die lands. Land surface roughness is measured through a multiscale approach and modelled as a function of cutting speed and feed. The above methodology enables a correlation between macroscopic process outcomes and chip removal mechanisms in the microscale.
机译:模具精加工对于确保铝挤压件的质量至关重要,并且由于金属加工行业的巨大规模和该领域相对较短的工具寿命,因此涉及重要的经济影响。因此,最大的加工效率至关重要。该研究致力于优化工具钢挤压模具的精加工性能。在半成品上进行铣削测试,以确保遵守标准工业技术链,并在高速加工领域改变切削参数。尺寸公差是在模具焊盘上确定的。土地表面粗糙度通过多尺度方法进行测量,并根据切削速度和进给量进行建模。上述方法使得宏观过程结果与微米级切屑清除机制之间具有相关性。

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