An energy-efficient approach for 3D printing with a Linear Delta Robot equipped with optimal springs
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[1] Markus Dickerhof,et al. A modular flexible scalable and reconfigurable system for manufacturing of Microsystems based on additive manufacturing and e-printing , 2016 .
[2] Jack Howarth,et al. A design of experiments approach for the optimisation of energy and waste during the production of parts manufactured by 3D printing , 2016 .
[3] Alessandro Gasparetto,et al. A new path-constrained trajectory planning strategy for spray painting robots - rev.1 , 2018, The International Journal of Advanced Manufacturing Technology.
[4] Bengt Lennartson,et al. Productivity/energy optimisation of trajectories and coordination for cyclic multi-robot systems , 2018 .
[5] Hanz Richter,et al. Trajectory Optimization of Robots With Regenerative Drive Systems: Numerical and Experimental Results , 2018, IEEE Transactions on Robotics.
[6] Giovanni Carabin,et al. Advanced Automation for SMEs in the I4.0 Revolution: Engineering Education and Employees Training in the Smart Mini Factory Laboratory , 2018, 2018 IEEE International Conference on Industrial Engineering and Engineering Management (IEEM).
[7] Alberto J. Alvares,et al. Development of the Linear Delta Robot for Additive Manufacturing , 2018, 2018 5th International Conference on Control, Decision and Information Technologies (CoDIT).
[8] J. G. Ziegler,et al. Optimum Settings for Automatic Controllers , 1942, Journal of Fluids Engineering.
[9] Bram Vanderborght,et al. Overview of the Lucy Project: Dynamic Stabilization of a Biped Powered by Pneumatic Artificial Muscles , 2008, Adv. Robotics.
[10] Jinghua Xu,et al. Energy efficiency optimization for ecological 3D printing based on adaptive multi-layer customization , 2020 .
[11] Henriette Bier,et al. Materially Informed Design to Robotic Production: A Robotic 3D Printing System for Informed Material Deposition , 2016 .
[12] Alessandro Gasparetto,et al. Enhancing Energy Efficiency of a 4-DOF Parallel Robot Through Task-Related Analysis , 2020 .
[13] Burkhard Corves,et al. Matching the Free-Vibration Response of a Delta Robot with Pick-and-Place Tasks Using Multi-Body Simulation , 2018, 2018 IEEE 14th International Conference on Automation Science and Engineering (CASE).
[14] Khalid A. Al-Ghamdi,et al. Sustainable FDM additive manufacturing of ABS components with emphasis on energy minimized and time efficient lightweight construction , 2019 .
[15] Matthew O. T. Cole,et al. Analysis of a Gravity Compensated Four-Bar Linkage Mechanism With Linear Spring Suspension , 2008 .
[16] Marcello Pellicciari,et al. Optimization of the energy consumption of industrial robots for automatic code generation , 2019, Robotics and Computer-Integrated Manufacturing.
[17] Ibrahim Kucukkoc,et al. A dynamic order acceptance and scheduling approach for additive manufacturing on-demand production , 2019, The International Journal of Advanced Manufacturing Technology.
[18] Liviu Ciupitu,et al. Static balancing with elastic systems of DELTA parallel robots , 2015 .
[19] Cassandra Telenko,et al. Material and energy loss due to human and machine error in commercial FDM printers , 2017 .
[20] Efrain Rodriguez,et al. Conceptual design and dimensional optimization of the linear delta robot with single legs for additive manufacturing , 2019, J. Syst. Control. Eng..
[21] Murat Kucukvar,et al. Energy-climate-manufacturing nexus: New insights from the regional and global supply chains of manufacturing industries , 2016 .
[22] Hermes Giberti,et al. Mechatronic Design for an Extrusion-Based Additive Manufacturing Machine , 2017 .
[23] Burkhard Corves,et al. The Concept of Natural Motion for Pick and Place Operations , 2017 .
[24] Khamdi Mubarok,et al. Smart manufacturing systems for Industry 4.0: Conceptual framework, scenarios, and future perspectives , 2018, Frontiers of Mechanical Engineering.
[25] Paulo Jorge Da Silva bartolo,et al. Robot assisted additive manufacturing: A review , 2019, Robotics Comput. Integr. Manuf..
[26] Charlie C. L. Wang,et al. Delta DLP 3-D Printing of Large Models , 2018, IEEE Transactions on Automation Science and Engineering.
[27] Theeraphong Wongratanaphisan,et al. Gravity compensation of spatial two-DOF serial manipulators , 2002, J. Field Robotics.
[28] Richard S. Trask,et al. An experimental demonstration of effective Curved Layer Fused Filament Fabrication utilising a parallel deposition robot , 2015 .
[29] Giovanni Carabin,et al. Energy Expenditure Minimization for a Delta-2 Robot Through a Mixed Approach , 2019 .
[30] Clément Gosselin,et al. Large-scale 3D printing with a cable-suspended robot , 2015 .
[31] Martijn Wisse,et al. Unparameterized Optimization of the Spring Characteristic of Parallel Elastic Actuators , 2019, IEEE Robotics and Automation Letters.
[32] Alberto Trevisani,et al. Optimal robot positioning using task-dependent and direction-selective performance indexes: General definitions and application to a parallel robot , 2013 .
[33] Sébastien Campocasso,et al. Layer-by-layer generation of optimized joint trajectory for multi-axis robotized additive manufacturing of parts of revolution , 2020, Robotics Comput. Integr. Manuf..
[34] Zhongfei Wang,et al. A unified algorithm to determine the reachable and dexterous workspace of parallel manipulators , 2010 .
[35] Ridha Kelaiaia,et al. Multiobjective optimization of a linear Delta parallel robot , 2012 .
[36] Sébastien Briot,et al. A New Energy-free Gravity-compensation Adaptive System for Balancing of 4-DOF Robot Manipulators with Variable Payloads , 2015 .
[37] BerselliGiovanni,et al. Energy-optimal motions for Servo-Systems , 2016 .
[38] Giovanni Carabin,et al. A Review on Energy-Saving Optimization Methods for Robotic and Automatic Systems , 2017, Robotics.
[39] Paolo Gallina,et al. Evolution of a Dynamic Model for Flexible Multibody Systems , 2017 .
[40] Xiao Li,et al. Development of a Robotic Arm Based Hydrogel Additive Manufacturing System for In-Situ Printing , 2017 .
[41] Alessandro Gasparetto,et al. Natural Motion for Energy Saving in Robotic and Mechatronic Systems , 2019, Applied Sciences.
[42] Giovanni Carabin,et al. Energy Saving in Mechatronic Systems Through Optimal Point-to-Point Trajectory Generation via Standard Primitives , 2018, Mechanisms and Machine Science.
[43] Paolo Gallina,et al. Spring Design for Motor Torque Reduction in Articulated Mechanisms , 2017, RAAD.
[44] David W. Rosen,et al. Additive Manufacturing Technologies: Rapid Prototyping to Direct Digital Manufacturing , 2009 .
[45] S. J. Kline,et al. Describing Uncertainties in Single-Sample Experiments , 1953 .
[46] Haibin Yin,et al. Hybrid Structure Design of Lightweight Robotic Arms Based on Carbon Fiber Reinforced Plastic and Aluminum Alloy , 2019, IEEE Access.
[47] Marcello Pellicciari,et al. Energy-optimal motions for Servo-Systems , 2016 .