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Energy-based optimization of the material stock allowance for turning-grinding process sequence

机译:基于能量的车削研磨顺序的材料余量优化

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摘要

Intensive appeal for energy saving has driven the production industry towards more environmentally benign manufacturing. Diverse process settings in manufacturing can result in a high variance of energy consumption. Regarding process chains, the allocation of machining stock to each process is very crucial in terms of energy use. Optimization of material stock allowance and process parameters can effectively reduce the production energy. In this study, two cylindrical machining processes - turning and grinding - are compared at machine level with respect to energy intensity and surface roughness. A systematic energy-efficient approach, based on minimizing the production energy while complying with the required surface roughness, has been developed and validated to optimize the grinding stock for the turning-grinding process sequence. Compared to conventional stock allocation method, the developed approach results in more than 16% of energy reduction for the turning-grinding process.
机译:对节能的强烈呼吁推动了生产行业朝着更环保的方向发展。制造过程中的不同工艺设置可能导致能耗的高差异。关于过程链,就能源使用而言,将机加工物料分配给每个过程至关重要。优化材料余量和工艺参数可以有效降低生产能耗。在这项研究中,比较了两个圆柱加工过程-车削和磨削-在机器水平上的能量强度和表面粗糙度。已经开发了一种系统的节能方法,该方法基于在满足所需表面粗糙度的同时将生产能量降至最低的目的,并经过验证可以针对车削磨削过程序列优化磨削料。与传统的库存分配方法相比,该改进方法可将车削磨削过程的能耗降低16%以上。

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