基于双参数d分区的多操作机器处理模式优化

O. Krol, V. Sokolov
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引用次数: 0

摘要

在多操作机器上稳定、无振动地加工各种类型的产品,表明在机器动力学及其主要成形单元领域的研究取得了进步。在CAD-KOMPAS-3D环境下,建立了多工种钻铣镗床成形单元的三维模型。提出了一种以二阶微分方程组形式建立的双质量系统模型为基础的机械弹性零件动态质量分析算法。得到了扰动力的传递函数,给出了机床工艺综合体的结构图。提出了一种在MAPLE数学环境中实验确定第二标准尺寸铣床的静态公式和频率公式的方法。获得的形式允许您控制成形过程中使用广泛的工具。提出了一种基于双参数d划分法的多操作机器抗振性评估算法。在此基础上,以抗振动为准则,确定了机床稳定工作的区域和边界,确定了最优加工方式。所获得的结果使得在多操作机器的最大能力边界上控制其动态质量的切割过程成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Processing Modes on Multioperational Machines Using Two-parameter D-Partitions
Stability, vibration-free processing of various products types on multioperational machines indicates an improvement in research in the field of machine dynamics and their main forming units. Three-dimensional models of the forming units for multioperational drilling-milling-boring machine in the CAD-KOMPAS-3D environment have been developed. An algorithm for analyzing the dynamic quality of machines elastic parts based on the constructed model of a two-mass system in the form of a second-order differential equations set is proposed. The transfer function of the disturbing force is obtained and the structural diagram of the machines technological complex is presented. A procedure for the experimental determination of the static and frequency formulars in the MAPLE mathematical environment is proposed for a milling machine of the second standard size. The obtained forms allow you to control the process of forming using a wide range of tooling. An algorithm for assessing the vibration resistance of a multioperational machine based on the two-parameter D-partitions method is presented. The region and the boundary of the machine stable functioning were found and, based on this, the optimal processing modes were identified by the criterion of vibration resistance. The results obtained make it possible to control the cutting process at the boundary of the maximum capabilities of a multioperational machine in terms of its dynamic quality.
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