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An integrated model for predicting the specific energy consumption of manufacturing processes

机译:用于预测制造过程的特定能耗的集成模型

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摘要

Due to the soar of the energy price and the environmental problems are becoming more and more serious, the energy consumption and efficiency of processes are becoming the focus of academia and industry gradually. Some significant researches on the energy consumption of machine tools have been performed. In most previous studies, material removal rate is treated as a comprehensive variable. However, it cannot offer the energy footprint for a machining process and provide the support for process planning which needs the information of cutting speeds, feed rates, and depth of cut. This paper presents an integrated model for predicting the specific energy consumption (SEC) of manufacturing processes. The dynamic characteristics of material-cutting power and influence of the machine tools, material of workpiece, and cutting parameters on the material-cutting energy are both taken into account in the model. The case study indicates that the model can be used to predict the SEC of machine tools conveniently under various machining conditions. At last, the validation is carried out in different machining processes; the accuracy and feasibility of the model was verified by the experimental results.
机译:由于能源价格的飞涨和环境问题变得越来越严重,过程的能源消耗和效率正在逐渐成为学术界和工业界关注的焦点。已经对机床的能耗进行了一些重要的研究。在大多数以前的研究中,材料去除率被视为一个综合变量。但是,它不能为加工过程提供能量足迹,也不能为需要切削速度,进给速度和切削深度信息的过程计划提供支持。本文提出了一种用于预测制造过程的单位能耗(SEC)的集成模型。模型中考虑了切削力的动态特性以及机床,工件材料以及切削参数对切削能量的影响。案例研究表明,该模型可用于在各种加工条件下方便地预测机床的SEC。最后,验证是在不同的加工过程中进行的;实验结果验证了该模型的准确性和可行性。

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