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An experimental investigation into resonance dry grinding of hardened steel and nickel alloys with element of MQL

机译:MQL元素对淬硬钢和镍合金进行共振干磨的实验研究

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摘要

Current policies on environmental issues put extra pressures on manufacturing processes to be resource efficient and eco-friendly. However, in grinding processes, large amounts of cutting fluids are used. These fluids are not environmental friendly thus require proper management before disposal with associated cost. Hence, this work sets to explore low-frequency vibration in grinding in order to improve coolant application in conventional grinding at the first stage with the aim to introduce this into high efficiency deep grinding (HEDG) at latter stage. An attempt is made to grind nickel alloys with minimum quantity lubricant (MQL) as oppose to flood cooling. To achieve this with minimum alterations to the machine tool, a piezo-driven workpiece holder was developed for surface grinding. This simple innovative workpiece holder allowed oscillating during actual grinding process. However, this paper presents the results of low-frequency oscillatory grinding in dry and near-dry conditions. The response of the machine tool spindle unit is presented alongside with the workpiece holder response. In this investigation, hardened steels and nickel alloys were ground with vibration assistance. The grinding forces are illustrated together with the surface finish. The wheel performance is given in terms of grinding ratio.
机译:当前有关环境问题的政策给制造流程带来了额外的压力,要求其提高资源效率和生态友好性。但是,在研磨过程中,使用了大量的切削液。这些流体对环境不利,因此在处置前需要适当的管理,并伴有相关费用。因此,这项工作着眼于探索磨削中的低频振动,以改善第一步在常规磨削中的冷却剂应用,目的是在后期将其引入高效深磨(HEDG)中。试图用最小量的润滑剂(MQL)研磨镍合金,以防泛滥冷却。为了以最小的机床改动实现这一目标,开发了一种用于表面磨削的压电驱动工件支架。这种简单的创新型工件夹具可在实际磨削过程中振动。但是,本文介绍了在干和近干条件下进行低频振荡磨削的结果。机床主轴单元的响应与工件夹具响应一起显示。在这项研究中,在振动辅助下对淬硬钢和镍合金进行了研磨。图示了磨削力和表面光洁度。砂轮性能以磨削比表示。

著录项

  • 作者

    Batako, ADL; Tsiakoumis, V;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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