机床精度、可持续性和安全性的最新进展

Q2 Engineering Journal of Machine Engineering Pub Date : 2023-08-29 DOI:10.36897/jme/169941
Uhlmann Eckart
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引用次数: 0

摘要

机床是工业生产中经济、环境和社会可持续性的主要驱动力。从大规模生产到高度个性化、小批量生产的持续转变要求机床在保持至少相同生产力水平的同时,更灵活地适应不断变化的需求。然而,灵活性和生产力与资源和能源效率的必要性不一致。与此同时,更复杂的工件规格正在突破机床精度和动力学的界限。在这样一个高性能的环境中,机器安全发挥着重要作用,并且由于移动部件的动能更高,因此变得越来越具有挑战性。本文考察了机床精度、可持续性和安全性方面的最新进展。提供了六个全面的案例研究,以说明这些改进如何有助于提高生产力。将介绍用于姿态控制机器人制造和热电回火高性能主轴的硬件和软件解决方案。基于积木的模块化机床框架和用于线性直接驱动的带热电发电机的自适应冷却系统证明了它们对资源和能源效率的主要影响。通过对潜在危险的分析以及改进的保护措施来解决机器安全问题。基于模型的预测准确地确定了导致细长工具扩展不平衡引起故障的关键工艺参数,而在保护方面,应用新的统计模型来更准确地评估保障措施的保护性能。本文介绍的机床尖端技术将有助于制造商应对当前和未来工业生产中的挑战。
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Recent Advances in Precision, Sustainability and Safety of Machine Tools
Machine tools are the main driver of economic, environmental and social sustainability in industrial production. The ongoing shift from mass production to highly individualized, small batch manufacturing requires machine tools to be more flexible to changing needs while maintaining at least the same level of productivity. However, flexibility and productivity are at odds with the necessity for resource and energy efficiency. At the same time, more sophisticated workpiece specifications are pushing the boundaries regarding precision and dynamics of machine tools. In such a high-performance context, machine safety plays a major role and is becoming increasingly challenging due to higher kinetic energies of moving components. This paper examines recent advances in machine tool precision, sustainability, and safety. Six comprehensive case studies are provided to illustrate how these improvements contribute to an increased productivity. Hardware and software solutions for pose-controlled robotic manufacturing and thermoelectrically tempered high-performance spindles will be presented. Modular machine tool frames based on building blocks and an adaptive cooling system with thermoelectric generators for linear direct drives demonstrate their major impact on resource and energy efficiency. Machine safety is addressed through an analysis of potential hazards as well as improved protective measures. Model-based predictions precisely identify critical process parameters that lead to unbalance-induced failure of slim tool extensions, while on the protection side, new statistical models are applied to assess the protective performance of safeguards much more accurately. The cutting-edge technologies for machine tools presented in this paper will help manufacturers to cope with current and future challenges in industrial production.
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来源期刊
Journal of Machine Engineering
Journal of Machine Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
2.70
自引率
0.00%
发文量
36
审稿时长
25 weeks
期刊介绍: ournal of Machine Engineering is a scientific journal devoted to current issues of design and manufacturing - aided by innovative computer techniques and state-of-the-art computer systems - of products which meet the demands of the current global market. It favours solutions harmonizing with the up-to-date manufacturing strategies, the quality requirements and the needs of design, planning, scheduling and production process management. The Journal'' s subject matter also covers the design and operation of high efficient, precision, process machines. The Journal is a continuator of Machine Engineering Publisher for five years. The Journal appears quarterly, with a circulation of 100 copies, with each issue devoted entirely to a different topic. The papers are carefully selected and reviewed by distinguished world famous scientists and practitioners. The authors of the publications are eminent specialists from all over the world and Poland. Journal of Machine Engineering provides the best assistance to factories and universities. It enables factories to solve their difficult problems and manufacture good products at a low cost and fast rate. It enables educators to update their teaching and scientists to deepen their knowledge and pursue their research in the right direction.
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