先进加工技术的可持续性评估

L. Sterle, D. Grguraš, M. Kern, F. Pušavec
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引用次数: 5

摘要

航空航天、汽车、医疗和核工业的支柱是难以切割的材料,为了获得可持续的加工,需要有效的冷却和润滑技术。在液态二氧化碳(LCO2)的润滑下进行低温加工是一种可持续制造的新方法,无需使用有害的水基金属加工液(MWFs)。在高压下不可避免的使用MWFs时,例如难切削材料的车削精加工过程,MWFs的脉动高压输送延长了刀具寿命,可以控制切屑长度,防止高附加值零件的表面损伤。本文在综合考虑总成本和运行安全的前提下,对两种先进原理进行了可持续性评价。对难以切割的材料进行了实验测试,并与传统的泛流润滑进行了比较。对于这两种技术,与全流量润滑相比,工具寿命更长,生产更清洁,零件质量更高,从而降低了长期总体成本。这些先进的加工技术操作安全,证明是传统加工的可持续替代方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sustainability Assessment of Advanced Machining Technologies
Efficient cooling and lubrication techniques are required to obtain sustainable machining of difficult-to-cut materials, which are the pillars of aerospace, automotive, medical and nuclear industries. Cryogenic machining with the assistance of lubricated Liquid Carbon Dioxide (LCO2) is a novel approach for sustainable manufacturing without the use of harmful water-based metalworking fluids (MWFs). In case of unavoidable use of MWFs under high pressure, such as turning finishing processes of difficult-to-cut materials, the pulsating high pressure delivery of MWFs prolongs the tool life and enables the control over chip length to prevent surface damage of high value-added parts. In this paper, sustainability assessment of both advanced principles was carried out, considering overall costs and operational safety. Experimental tests were executed on difficult-to-cut materials in comparison to conventional flood lubrication. For both techniques, longer tool life compared to flood lubrication was observed additional cleaner production and higher part quality led to reduced long-term overall costs. These advanced machining technologies are also operation safe, proving to be a sustainable alternative to conventional machining.
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