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| 1 | Training for smart manufacturing using a mobile robot-based production line显示文摘Practice experimentation that integrates the manufacturing processes and cutting-edge technologies of smart manufacturing (SM) is essential for future academic and applied engineering personnel. The broadening efficacy of hands-on experience in SM engineering education has been manifested. In this regard, a reference practical system is proposed in this study for hands-on training in SM crucial advancements. The system constructs a mobile robot-based production line (MRPL) to increase participants’ interest in theoretical learning and professional skills. The MRPL-based reference system includes the comprehensive principles and processes involved in modern SM factories from warehousing to logistics, processing, and testing. With key features of modularity, integrability, customizability, and open architecture, this system has a threefold objective. First, it is an interdisciplinary subject that enables students to translate classroom learning into authentic practices, thus facilitating knowledge synthesis and training involvements. Second, it offers effective support to cultivate the attributions and behavioral competencies of SM talents, such as perseverance, adaptability, and cooperation. Third, it promotes students’ capacities for critical thinking and problem solving so that they can deal with the difficulties that physical systems have and motivates them to pursue careers with new syllabi, functions, and process techno-logies. The received positive evaluations and assessments confirm that this MRPL-based reference system is beneficial for modern SM talent training in higher engineering education. | Shuting WANG Liquan JIANG Jie MENG Yuanlong XIE Han DING | 2021 | Frontiers of Mechanical Engineering2021,16,2: | 4 |
| 2 | 考虑多辊修磨关系的轧辊主动再制造设计方法显示文摘对轧辊主动再制造时机的研究是解决其再制造不确定性问题的有效途径。针对轧钢生产线上各轧辊间面向主动再制造的修磨时机差异性较大、应用时需频繁停机等问题,提出了一种耦合损伤情况下考虑多辊间修磨关系的轧辊主动再制造设计方法。该方法通过工艺参数优化对各轧辊修磨时机进行调控和匹配,以达到在轧机线修磨时机点统一修磨的目的,解决了修磨和再制造时间不确定、频繁停机等问题。以某轧钢生产线的F5精轧机工作辊为对象,结合其工况及损伤特征,利用损伤理论、有限元仿真分析以及回归分析等方法,验证了所提主动再制造设计方法的可行性。 | 宋守许 郁炯 蔚辰 张志旭 | 2022 | 机械工程学报2022,58,13: | 0 |
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