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SWARM optimization of force model parameters in micromilling

机译:微型力模型参数的群体优化

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Because of the improvement of machine-tool and tool performances in micro cutting field, the interest on these processes is increasing. Therefore, researchers involved in micro manufacturing processes focused their attention on these types of processes with the aim of improving the knowledge on the phenomena occurring during micro cutting operations. The objective of this work is to develop a modelling procedure for forecasting cutting forces in micromilling considering the tool run-out and the cutting tool geometry. The designed modelling procedure combines information coming from a force model, an optimization strategy and some experimental tests. The implemented force model is based on specific cutting pressure and actual instantaneous chip section. The tool run-out and the cutting tool geometry were considered in the analytical model. The adopted optimization strategy was based on the Particles Swarm strategy due to its suitability in solving analytical non-linear models. The experimental tests consisted in realizing micro slots on a sample made of Ti6Al4V. The comparison between experimental and analytical data demonstrates the good ability of the proposed procedure in correctly defining the model parameters.
机译:由于在微切割领域的机床和工具性能的改善,这些过程的兴趣正在增加。因此,参与微型制造工艺的研究人员将注意力集中在这些类型的过程中,目的是提高微切操作期间发生的现象的知识。这项工作的目的是开发考虑到刀具射流和切削刀具几何形状的微米中预测切割力的建模程序。设计的建模程序结合了来自力模型的信息,优化策略和一些实验测试。实施的力模型基于特定的切削压力和实际瞬时芯片部分。在分析模型中考虑了刀具的漏极和切削刀具几何形状。由于其适用于求解分析非线性模型,所采用的优化策略基于粒子策略。实验试验包括在由Ti6Al4V制成的样品上实现微槽。实验和分析数据之间的比较展示了正确定义了模型参数的所提出的程序的良好能力。

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