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Optimization of Cutter Geometry Features to Minimise Cutting Force on Machining Polyetheretherketone (PEEK) Engineering Plastic

机译:刀具几何特征优化,以最大限度地减少加工聚醚醚酮(PEEK)工程塑料的切削力

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Machining of thermoplastic material poses several challenges due to its low melting temperature and high thermal expansion which directly related to cutting force. Thus, controlling the cutting force and temperature is desirable for machining polyetheretherketone (PEEK). The cutting force is dependent on friction and shearing action produced by the tool. It is indicated the cutting force is significantly affected by tool cutter geometry. This paper aims to control the cutting force by optimizing the cutter geometries especially rake, clearance and helix angle on machining PEEK. The two –flutes of solid carbide ball nose end mills were used to conduct the experiments and the cutting force acquired was measured using piezoelectric dynamometer. Response Surface Methodology (RSM) approach was applied to design and analyse the optimal combination of tool geometry feature for machining PEEK. Based on obtained results, the best optimal values of tool geometry which contribute to minimum of cutting force were 17° rake angle, 26° of helix angle and 10° of clearance angle. The best control of tool geometry ultimately improves the cutting performance and reduces defect caused by high cutting forces.
机译:由于其与切割力直接相关的熔融温度和高热膨胀,热塑性材料的加工构成了几个挑战。因此,为了加工聚醚醚酮(PEEK),希望控制切割力和温度。切割力取决于工具产生的摩擦和剪切作用。它表示通过工具切割物几何形状显着影响切割力。本文旨在通过优化切割器几何形状来控制切割力,尤其是在加工窥视上的耙子,间隙和螺旋角度。使用两卷的固体碳化物球鼻末端铣刀进行实验,并使用压电测力计测量所获得的切割力。应用响应面方法(RSM)方法应用于设计和分析加工PEEK工具几何特征的最佳组合。基于获得的结果,刀具几何形状的最佳最佳值,其贡献到最小的切割力为17°锐角,螺旋角26°和10°的间隙角度。刀具几何的最佳控制最终提高了切割性能并降低了高切割力引起的缺陷。

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