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Towards Lightweight Spindle of CNC Lathe Using Structural Optimization Design for Energy Saving*

机译:利用结构优化设计实现轻量化的数控车床主轴*

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The spindle system of computer numerical control (CNC) lathe is the principal energy consumer in the machine tool operating stage. Structural optimization design of spindle is regarded as an effective strategy for energy saving. Compared with previous optimization design methods for improving deformation, vibration and other traditional performance indicators of spindle, this paper proposes a method comprehensively considering energy consumption and traditional performance. Firstly, we bulid an energy consumption function of spindle. Structure parameters that have the great influence on the indicators are selected as decision variables. Then, a comprehensive performance objective is determined. Finally, a hybrid algorithm is developed to solve the optimization model. The results show that the optimized structure can decrease the energy consumption while ensuring the static and dynamic performance.
机译:计算机数控(CNC)车床的主轴系统是机床操作阶段的主要能源消耗者。主轴的结构优化设计被认为是一种有效的节能策略。与以往改善主轴变形,振动等传统性能指标的优化设计方法相比,本文提出了一种综合考虑能耗和传统性能的方法。首先,我们建立了主轴的能耗函数。选择对指标影响较大的结构参数作为决策变量。然后,确定综合性能目标。最后,开发了一种混合算法来求解优化模型。结果表明,优化的结构可以在保证静态和动态性能的同时降低能耗。

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