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首页> 外文期刊>Metrology and Measurement Systems: Metrologia i Systemy Pomiarowe >SURFACE TEXTURE ANALYSIS AFTER BALL END MILLING WITH VARIOUS SURFACE INCLINATION OF HARDENED STEEL
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SURFACE TEXTURE ANALYSIS AFTER BALL END MILLING WITH VARIOUS SURFACE INCLINATION OF HARDENED STEEL

机译:硬质合金各种表面倾斜后球头铣削后的表面纹理分析

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In this paper, an analysis of various factors affecting machined surface texture is presented. The investigation was focused on ball end mill inclination against the work piece (defined by surface inclination angle a. Surface roughness was investigated in a 3D array, and measurements were conducted parallel to the feed motion direction. The analysis of machined surface irregularities as a function of frequency (wavelength A), on the basis of the Power Density Spectrum - PDS was also carried out. This kind of analysis is aimed at valuation of primary factors influencing surface roughness generation as well as its randomness. Subsequently, a surface roughness model including cutter displacements was developed. It was found that plain cutting with ball end mill (surface inclination angle a= 0?°) is unfavorable from the point of view of surface roughness, because in cuttera€?s axis the cutting speed vc ~ 0 m/min. This means that a cutting process does not occur, whereas on the machined surface some characteristics marks can be found. These marks do not appear in case of a* 0?°, because the cutting speed vc * 0 on the fill I length of the active cutting edge and as a result, the machined surface texture is more homogenous. Surface roughness parameters determined on the basis of the model including cutter displacements are closer to experimental data for cases with inclination angles a* 0?°, in comparison with those determined for plain cutting (a= 0?°). It is probably caused by higher contribution in surface irregularities generation of plastic and elastic deformations cumulated near the cuttera€?s free end than kinematic and geometric parameters, as well as cutter displacements.
机译:本文对影响加工表面纹理的各种因素进行了分析。研究的重点是球头铣刀相对于工件的倾斜度(由表面倾斜角α定义。在3D阵列中研究了表面粗糙度,并平行于进给运动方向进行了测量。在功率密度谱-PDS的基础上进行了频率(波长A)的分析,这种分析的目的是评估影响表面粗糙度产生及其随机性的主要因素。从表面粗糙度的角度出发,发现用球头立铣刀(表面倾角α= 0°)进行平面切削是不利的,因为在切削轴上切削速度vc〜0 m / min。这意味着不会进行切割,而在加工表面上会发现一些特征标记,如果a * 0?°,则不会出现这些标记,因为在有效切削刃的填充长度I上使用切削速度vc * 0,因此,加工后的表面纹理更加均匀。与基于平角切削(a = 0°)确定的那些参数相比,基于模型确定的包括切刀位移的表面粗糙度参数更接近于实验数据,其中倾斜角为a * 0°°。这可能是由于在切削刃自由端附近累积的塑性和弹性变形而不是运动和几何参数,以及切削刃位移对表面不规则产生的更大贡献。

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