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Comparison in surface integrity and fatigue performance for hardened steel ball-end milled with different milling speeds

机译:用不同铣削速度的硬化钢球铣削表面完整性和疲劳性能的比较

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This paper aims at comparing the surface integrity and fatigue performance of hardened AISI D2 steel ball-end milled with different milling speeds. Results show that the milling speed has a significant effect on surface topography, surface roughness, microhardness and residual stress. The fatigue life for samples with hard milled surface was raised at least 83% compared with that of polished samples. This is ascribed to the high surface residual compressive stress and the enhanced microhardness induced by the hard milling process. The maximum difference in fatigue life is about 12.2% for samples milled with spindle speed N ranging from 3000 r/min to 8000 r/min. Samples milled with a low or high spindle speed have a longer fatigue life than those samples milled with a middle spindle speed condition (N=6000 r/min). Moreover, excessive surface strain hardening will increase surface brittleness which is detrimental to fatigue resistance. The increase of spindle speed can decrease the degree of strain hardening to some extent. Based on this, selecting a relatively high spindle speed can obtain a satisfying combination of surface residual stress and microhardness during the ball-end milling process of hardened AISI D2 steel, which is feasible and prospective from high fatigue performance of ball-end milled surface and the machining efficiency point of view.
机译:本文旨在比较硬化AISI D2钢球铣削的表面完整性和疲劳性能,采用不同的铣削速度研磨。结果表明,铣削速度对表面形貌,表面粗糙度,微硬度和残留应力具有显着影响。与抛光样品相比,使用硬磨表面的样品的疲劳寿命至少为83%。这归因于高表面残留压缩应力和由硬磨过程诱导的增强的显微硬度。疲劳寿命的最大差异约为20.2%,对于用3000 r / min至8000 r / min的示例,样品铣削的样品约为12.2%。用低或高主轴速度研磨的样品具有比用中间主轴速度(n = 6000r / min)研磨的样品更长的疲劳寿命。此外,过量的表面应变硬化将增加表面脆性,这是对疲劳性有害的。主轴速度的增加可以在一定程度上降低硬化程度。在此基础上,选择一个相对高的主轴转速可以在硬化AISI D2钢,这是从球端铣削表面的高疲劳性能和可行的和潜在的球头研磨过程获得表面的残余应力和硬度的满足组合加工效率的观点。

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