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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >An empirical model for predicting energy consumption of manufacturing processes: a case of turning process
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An empirical model for predicting energy consumption of manufacturing processes: a case of turning process

机译:预测制造过程能耗的经验模型:车削过程

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Optimizing the energy efficiency of processes has become a priority in the manufacturing sector; driven by soaring energy costs and the environmental impact caused by high energy consumption levels. The energy consumed by a machine tool performing a turning process consists of not only the energy required by the tool tip for material removal but also the energy used for auxiliary functions. Traditionally, the energy required for the cutting process is estimated based on cutting force prediction equations. However, this estimation is limited to the energy consumption of the tool tip. Thus, the aim of this paper is to develop a reliable method to predict the total energy consumption of a selected machine tool performing a turning operation. In order to compare the energy consumption under different cutting conditions, the specific energy consumption is defined as a functional unit: the energy consumed to remove 1 cm~3 of material. An empirical model is obtained based on power measurements under various cutting conditions, and it is able to provide a reliable prediction of energy consumption for given process parameters. Additional investigations are conducted in order to understand and explain each coefficient in the energy consumption model.
机译:优化过程的能源效率已成为制造业的头等大事;由高昂的能源成本和高能耗水平造成的环境影响驱动。机床执行车削过程所消耗的能量不仅包括刀尖去除材料所需的能量,还包括辅助功能所用的能量。传统上,切割过程所需的能量是根据切割力预测方程估算的。但是,该估计仅限于刀头的能耗。因此,本文的目的是开发一种可靠的方法来预测执行车削操作的所选机床的总能耗。为了比较不同切削条件下的能耗,将单位能耗定义为功能单位:去除1 cm〜3物料所消耗的能耗。基于在各种切削条件下的功率测量获得的经验模型,并且能够为给定的工艺参数提供可靠的能耗预测。为了理解和解释能耗模型中的每个系数,还进行了其他调查。

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