高精度增材制造控制算法的研究进展OA
Research Progress of High Precision Additive Manufacturing Control Algorithms
为了提高增材制造在三维离散堆砌过程中的位置精度,越来越多的高精度增材制造控制算法被国内外工业界应用和研究.增材制造的路径规划需通过多种高精度控制算法来解决台阶效应、空走路径以及运动位置偏差等问题,同时提高制造效率和成品质量.文中梳理和回顾了造成增材制造精度误差的主要问题,讨论了现行的主要填充算法并分析了填充算法的优缺点和适用条件.文中还总结了应对空走路径的常见遗传算法、蚁群算法原理以及增材制造中自适应控制系统的研究进展,提出了增材制造未大规模应用和未来需重点解决的问题.
To enhance the positional accuracy of additive manufacturing in the three-dimensional discrete stac-king process,an increasing number of high-precision additive manufacturing control algorithms have been applied and studied by the domestic and international industrial sectors.Path planning in additive manufacturing requires the use of multiple high-precision control algorithms to address issues such as step effects,idle paths,and motion position deviations,while enhancing manufacturing efficiency and product quality.This study sorts out and reviews the main problems causing accuracy errors in additive manufacturing,discusses the current main filling algorithms and analyzes the advantages,disadvantages and applicable conditions of the filling algorithms,and summarizes the common genetic algorithms and ant colony algorithm principles for dealing with idle paths,as well as the research progress of adaptive control systems in additive manufacturing.The problems that additive manufacturing has not been widely applied on a large scale and the key issues that need to be addressed in the future have been proposed..
杨云辉
云南开放大学 机电工程学院,云南 昆明 650500
信息技术与安全科学
增材制造路径规划切片算法蚁群算法自适应控制伺服系统机器人位置精度
additive manufacturingtoolpath planingslicing algorithmant colony algorithmadaptive controlservo systemrobotposition accuracy
《电子科技》 2026 (7)
76-80,5
云南省教育厅科学研究基金(2024J1974) Scientific Research Fund of Yunnan Provincial Department of Education(2024J1974)
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