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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Material removal during abrasive impregnated brush deburring of micromilled grooves in NiTi foils
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Material removal during abrasive impregnated brush deburring of micromilled grooves in NiTi foils

机译:NiTi箔中微研磨槽的磨料浸渍刷去毛刺过程中的材料去除

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摘要

While abrasive impregnated brushes have been used extensively for deburring of machined parts, understanding of the associated mechanics of material removal is lacking. This paper investigates the dependence of brush deburring rate, surface roughness and change in foil thickness on spindle speed and brush nominal penetration during brush deburring of 25 μm thick Nitinol (NiTi) foils. Analysis of the surface after brushing shows that both ploughing and chip formation occur in the process. It is also seen that at bristle tip velocities of about 7 m/s the penetration of abrasives into the foil is dominated by initial contact forces while at about 2 m/s it is dominated by bristle stiffness. Long, slender burrs are removed by fatigue fracture under cyclic loading of the bristles. Burr roots are removed in small chunks as cracks formed by abrasive indentation propagate under cyclic loading of the bristles. A model based on Hertzian contact mechanics is proposed to predict the rate of indentation during brushing and is validated using experiments. The surface roughness initially reduces but subsequently increases with further brushing. Change in foil thickness in all cases is ≤1 μm. A fracture mechanics model for predicting the deburring rate is also proposed and validated.
机译:尽管已将浸渍磨料的刷子广泛用于对机械零件进行去毛刺,但仍缺乏对相关材料去除机理的了解。本文研究了在25μm厚的镍钛诺(NiTi)箔的电刷去毛刺过程中,电刷去毛刺率,表面粗糙度和箔厚度的变化对主轴转速和电刷额定穿透力的依赖性。刷牙后的表面分析表明,在此过程中同时发生了刨花和切屑形成。还可以看出,在大约7 m / s的刷毛尖端速度下,磨料渗透到箔片中的作用主要由初始接触力决定,而在大约2 m / s的速度下,磨剂渗透性则由刷毛刚度决定。在刷毛的周期性载荷下,疲劳断裂会消除细长的毛刺。由于在硬毛的周期性载荷下,由磨料压痕形成的裂纹会蔓延开来,毛刺根部会一小部分被清除。提出了一种基于赫兹接触力学的模型来预测刷牙过程中的压痕率,并通过实验进行了验证。表面粗糙度最初减小,但随后随着进一步的刷毛而增加。在所有情况下,箔厚度的变化≤1μm。提出并验证了用于预测去毛刺率的断裂力学模型。

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