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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A prediction model for titanium alloy surface roughness when milling with micro-textured ball-end cutters at different workpiece inclination angles
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A prediction model for titanium alloy surface roughness when milling with micro-textured ball-end cutters at different workpiece inclination angles

机译:用不同工件倾斜角度铣削微纹理球末端切割机钛合金表面粗糙度的预测模型

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摘要

Studies have found that milling with an inclined plane when using ball-end milling cutters can reduce heating of the cutting tool. It has also been found that micro-textures on the rake face can play a role in the reduction of friction and wear. Taking these things together, milling titanium alloy with micro-textured ball-end milling cutters with workpieces at an inclined angle can have a significant influence on tool wear and the surface quality of machined workpieces. We have therefore looked at the factors affecting the quality of machined surfaces using an orthogonal test and, in particular, the effect of different micro-texture parameters and different workpiece inclination angles. Through means of an extreme difference analysis, the primary and secondary relationship between micro-texture parameters, workpiece inclination angles, and surface roughness is assessed. The analysis focuses in particular on the distance between micro-pits, micro-pit diameter, the workpiece inclination angle, the distance between the first row of micro-pits and the cutter edge, and the depth of the micro pits. On the basis of the analysis, a model that can predict surface roughness is established that provides a means of optimizing micro-textured cutter design and machining inclination angles when milling titanium alloy.
机译:研究发现,当使用球端铣刀时,用倾斜平面铣削可以减少切削工具的加热。还发现,耙子面上的微纹理可以在减少摩擦和磨损方面发挥作用。将这些东西携带在一起,用以倾斜角度的工件用工件铣削钛合金,可以对工具磨损和机加工工件的表面质量产生显着影响。因此,我们研究了使用正交试验影响机加工表面质量的因素,特别是不同微纹理参数和不同工件倾斜角的效果。通过极端差异分析,评估微纹理参数,工件倾斜角和表面粗糙度之间的初级和二次关系。该分析尤其侧重于微坑,微坑直径,工件倾斜角,第一排微坑和切割器边缘之间的距离以及微坑的深度之间的距离。在分析的基础上,建立了一种可以预测表面粗糙度的模型,该模型提供了一种在研磨钛合金时优化微纹理切割器设计和加工倾斜角度的方法。

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