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Surface integrity generated by oblique machining of steel and iron parts

机译:钢和铁零件的斜加工产生的表面完整性

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In this study the surface integrity produced by oblique turning of a range of iron-based materials including C45 carbon, 41Cr4 low-alloy hardened, X6CrNiTi18-10 stainless steels and EN-GJS-500-7 spheroidal iron was quantified by means of 2D and 3D surface roughness parameters, strain-hardening effects and associated residual stresses. Surfaces were produced by a special straight-edged cutting tool with large inclination angle of 55° equipped with carbide and mixed Al_2O_3-TiC ceramic cutting tool inserts. It was documented that oblique machining performed with relatively higher feed rate allows obtaining lower surface roughness and, in general, better bearing characteristics. Moreover, compressive stresses with the maximum value located close to the machined surface and parabolic profile can be induced into the surface layer. The magnitude of stresses depends on the strain-hardening rate of the surface layer.
机译:在这项研究中,通过倾斜车削一系列铁基材料(包括C45碳,41Cr4低合金硬化,X6CrNiTi18-10不锈钢和EN-GJS-500-7球墨铸铁)产生的表面完整性通过2D和3D表面粗糙度参数,应变硬化效果和相关的残余应力。表面由特殊的直边切削刀具制成,该切削刃具有55°的大倾角,配有硬质合金和混合的Al_2O_3-TiC陶瓷切削刀具刀片。据证明,以相对较高的进给速度进行的斜加工可以得到较低的表面粗糙度,并且通常可以获得更好的轴承特性。此外,具有最大值的压缩应力可以靠近机加工表面和抛物线轮廓被引入表层。应力的大小取决于表面层的应变硬化率。

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