Model of Influence of the Machined Material Properties on Wear of the Polymeric-Abrasive Tool Filaments

N. Honchar, P. Tryshyn, D. Pavlenko, D. Stepanov, O. Khavkina
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Abstract

Abstract For polymer-abrasive brush tools (PABT) working on CNC machines it is necessary to correct their wear constantly, since it is much higher compared to the wear of metal tools. Based on the dependence of tool wear on machining parameters for various materials, it is necessary to study the influence of the physical and mechanical properties of the material machined. The purpose of the paper is to study the process of finishing the surfaces of parts made of materials of different types with PABT. The analysis of dimensional wear of disc PABTs during the polishing various materials with certain physical and mechanical properties is provided in the article. The polishing was carried out in rational modes that ensure high quality and productivity of surface treatment. The similarity theory and dimensional analysis were used to assess the influence of the properties of the material machined on the intensity of PABT filament wear. To calculate it, dimensionless complexes were established, which take into account the physical and mechanical properties of the machined materials and evaluate their resistance to the penetration of abrasive grains, the ability of the material to absorb mechanical energy in the process of deformation and destruction under the impact of PABT filaments. The developed model was created for the first time. It made it possible to solve the problem of predicting the degree of dimensional wear of the disc PABT when polishing various materials, including difficult-to-machine ones. Prediction of the intensity of PABT filaments wear allows timely correction of the tool position during machining on CNC machines to ensure a constant pressing of the PABT to the surface being machined. The obtained Км material coefficient takes into account the influence of the physical and mechanical properties of the machined material and then estimates the intensity of PABT filaments wear. The KМ material coefficient can also be used to assess the PABT life and calculate the economic efficiency of the parts finishing treatment at the stage of technology development and the selection of polishing tools.
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加工材料性能对聚合物-磨料工具长丝磨损影响的模型
对于在数控机床上工作的聚合物磨料刷刀具(PABT),由于其磨损比金属刀具要高得多,因此需要不断地对其磨损进行校正。基于刀具磨损对各种材料加工参数的依赖性,有必要研究被加工材料物理力学性能的影响。本文的目的是研究用PABT对不同类型材料制成的零件表面进行精加工的工艺过程。本文对具有一定物理力学性能的各种材料在抛光过程中的尺寸磨损进行了分析。在合理的抛光模式下进行抛光,保证了表面处理的高质量和生产率。采用相似理论和量纲分析方法评价了加工材料的性能对PABT长丝磨损强度的影响。为了计算它,建立了无量纲复合物,考虑了被加工材料的物理力学性能,并评估了材料在PABT长丝冲击下变形和破坏过程中对磨料颗粒渗透的抵抗能力、材料吸收机械能的能力。开发的模型是第一次创建的。解决了盘式PABT在抛光各种材料(包括难加工材料)时尺寸磨损程度的预测问题。预测PABT长丝磨损的强度,可以在数控机床加工过程中及时纠正刀具位置,以确保PABT对被加工表面的持续压制。得到的Км材料系数考虑了被加工材料的物理力学性能的影响,从而估计了PABT长丝的磨损强度。KМ材料系数也可用于评估PABT寿命,并在技术开发和抛光工具选择阶段计算零件精加工的经济效益。
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