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Optimization Parameters for Energy Efficiency in End milling

机译:立铣刀中能效的优化参数

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One way to manage the modern challenges of global resource depletion and climate change is to reduce energy consumption. The use stage of machines in manufacturing operations consumes the majority of energy and brings serious emissions over a machine's life cycle. With this in mind, a multi-objective cutting parameter optimization model is proposed, focusing on minimizing the process time and energy consumption per unit of removed material. Constraint conditions, such as the processing capacity of the machine tool, the tool life, the surface roughness of the part, and wasted ploughing energy are considered. A genetic algorithm is used to solve the optimization model and the effects of the parameters on the energy consumption of the machine are discussed.?To verify the proposed method, experiments were designed for an end milling operation, using Taguchi design principles.
机译:解决全球资源枯竭和气候变化的现代挑战的一种方法是减少能源消耗。在制造过程中,机器的使用阶段会消耗大部分能量,并在机器的整个生命周期内带来严重的排放。考虑到这一点,提出了一个多目标切削参数优化模型,该模型着重于最小化处理时间和单位去除材料的能量消耗。考虑了约束条件,例如机床的加工能力,刀具寿命,零件的表面粗糙度以及浪费的犁刀能量。采用遗传算法求解优化模型,讨论了参数对机床能耗的影响。为了验证该方法的有效性,采用田口设计原则对立铣刀进行了实验设计。

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