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Investigation of variation in offset values of different sections of machining elements along the central axial line

机译:沿中心轴线加工元件不同段偏移值的变化研究

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Eccentricity is defined as deviation from the circular path and it occurs due to clamping deviation or geometric imperfection when machining elements revolves around the line parallel to the machining clement axis, but not around the machining element axis. In this paper, the variation of offset values along the central axial line of different small sections of spindle, tool holder and milling cutter was explored. This work was undertaken by the observation that eccentricity implies adverse impact on the material properties, tooling properties, machining elements, machine system etc. The problem solution was found out by measuring the whole body of spindle, tool holder and milling cutter with Swiss Dial Gauge after dividing them into small sections along the z level axis. After measurement, analysis was done of the recorded data on software's by illustrating their actual profiles and variation along the Centre line of small divided sections at different orientations. After analysis, we might get the eccentricity of one part with different offsets in z level through offsets in x and y directions and profiles of elements exhibiting less offset values. This work can find its importance in various industries where milling machines are used for machining jet parts, automobile parts and many other etc.
机译:偏心率被定义为与圆形路径的偏差,并且由于当加工元件围绕平行于加工水压轴线的线围绕线而不是加工元件轴线时,由于夹紧偏差或几何缺陷而发生。在本文中,探讨了沿着主轴,工具架和铣刀不同小部分的中央轴线偏移值的变化。通过观察到偏心暗示对材料特性,工具性能,加工元件,机器系统等的不利影响进行了这项工作。通过测量主轴,工具架和铣刀与瑞士拨号仪的全身来发现问题解决方案将它们沿Z电平轴分成小部分后。测量后,通过说明它们的实际配置文件和沿着不同取向的小划分部分的中心线来完成对软件的记录数据进行分析。在分析之后,我们可能会通过X和Y方向的偏移,通过偏移来获得一个部分的偏心率,其中Z级别在Z级别和呈现较少偏移值的元素的配置文件。这项工作可以在各种行业中找到它的重要性,其中铣床用于加工喷射件,汽车零件等等等。

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