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Surface Quality Assessment after Milling AZ91D Magnesium Alloy Using PCD Tool

机译:使用PCD工具铣削AZ91D镁合金后的表面质量评估

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摘要

Surface roughness is among the key indicators describing the quality of machined surfaces. Although it is an aggregate of several factors, the condition of the surface is largely determined by the type of tool and the operational parameters of machining. This study sought to examine the effect that particular machining parameters have on the quality of the surface. The investigated operation was the high-speed dry milling of a magnesium alloy with a polycrystalline diamond (PCD) cutting tool dedicated for light metal applications. Magnesium alloys have low density, and thus are commonly used in the aerospace or automotive industries. The state of the Mg surfaces was assessed using the 2D surface roughness parameters, measured on the lateral and the end face of the specimens, and the end-face 3D area roughness parameters. The description of the surfaces was complemented with the surface topography maps and the Abbott–Firestone curves of the specimens. Most 2D roughness parameters were to a limited extent affected by the changes in the cutting speed and the axial depth of cut, therefore, the results from the measurements were subjected to statistical analysis. From the data comparison, it emerged that PCD-tipped tools are resilient to changes in the cutting parameters and produce a high-quality surface finish.
机译:表面粗糙度是描述加工表面质量的关键指标之一。尽管是多种因素的综合,但表面的状况在很大程度上取决于工具的类型和加工的操作参数。这项研究试图检验特定加工参数对表面质量的影响。研究的操作是使用专用于轻金属应用的多晶金刚石(PCD)切削工具对镁合金进行高速干磨。镁合金具有低密度,因此通常用于航空航天或汽车工业。使用2D表面粗糙度参数(在试样的侧面和端面上测量)和端面3D区域粗糙度参数评估Mg表面的状态。表面的描述与表面形貌图和标本的Abbott-Firestone曲线相辅相成。大多数2D粗糙度参数在一定程度上受切削速度和切削轴向深度的变化的影响,因此,将测量结果进行统计分析。从数据比较中可以看出,带PCD的刀具可适应切削参数的变化,并产生高质量的表面光洁度。

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