David Z. Zhang mainly investigates Supply chain, Composite material, Selective laser melting, Operations research and Agile manufacturing. His biological study focuses on Service management. His Porosity, Diamond and Elastic modulus study in the realm of Composite material interacts with subjects such as Cortical bone.
David Z. Zhang interconnects Surface roughness, Modulus and Metal matrix composite in the investigation of issues within Selective laser melting. His Operations research research integrates issues from Pareto principle, Ant colony, Metaheuristic and Meta heuristic. His work carried out in the field of Computer-integrated manufacturing brings together such families of science as Supply chain management and Multi-agent system.
His primary scientific interests are in Selective laser melting, Composite material, Supply chain, Manufacturing engineering and Scheduling. His Selective laser melting study integrates concerns from other disciplines, such as Surface roughness, Residual stress, Optical microscope and Laser power scaling. His Supply chain research incorporates themes from Production, Commerce, Operations management and Operations research.
His Operations research study combines topics from a wide range of disciplines, such as Lead time, Ant colony, Resource and Metaheuristic. His work on Process development execution system as part of general Manufacturing engineering research is frequently linked to Topology, thereby connecting diverse disciplines of science. His Scheduling research is multidisciplinary, relying on both Multi-agent system, Manufacturing, Production planning and Autonomous agent.
David Z. Zhang mainly investigates Composite material, Selective laser melting, Deformation, Microstructure and Scheduling. His research on Composite material frequently connects to adjacent areas such as Interconnectivity. As part of his studies on Selective laser melting, David Z. Zhang often connects relevant subjects like Scientific method.
His Deformation research includes elements of Compressive strength, Stress and Compression. His Microstructure research incorporates elements of Alloy, Thermal conductivity, Texture and Diffraction. The Elastic modulus study combines topics in areas such as Ductility, Biocompatibility, Diamond and Porosity.
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Additive manufacturing: A framework for implementation
Stephen Mellor;Liang Hao;David Zhang.
International Journal of Production Economics (2014)
Agent-based simulation of consumer purchase decision-making and the decoy effect
Tao Zhang;David Zhang.
Journal of Business Research (2007)
Towards theory building in agile manufacturing strategies—Case studies of an agility taxonomy
David Z. Zhang.
International Journal of Production Economics (2011)
Production planning in additive manufacturing and 3D printing
Qiang Li;Ibrahim Kucukkoc;David Z. Zhang.
Computers & Operations Research (2017)
Functionally graded porous scaffolds in multiple patterns: New design method, physical and mechanical properties
Fei Liu;Zhongfa Mao;Peng Zhang;David Z. Zhang;David Z. Zhang.
Materials & Design (2018)
An integrated agent-based approach for responsive control of manufacturing resources
M. K. Lim;D. Z. Zhang.
(2004)
Agent-based model for optimising supply-chain configurations
O.M. Akanle;D.Z. Zhang.
International Journal of Production Economics (2008)
Multi-objective ant colony optimisation: A meta-heuristic approach to supply chain design
Luis A. Moncayo-Martínez;David Z. Zhang;David Z. Zhang.
International Journal of Production Economics (2011)
Experimental investigation on selective laser melting behaviour and processing windows of in situ reacted Al/Fe2O3 powder mixture
S. Dadbakhsh;L. Hao;P.G.E. Jerrard;D.Z. Zhang;D.Z. Zhang.
Powder Technology (2012)
An agent-based approach for e-manufacturing and supply chain integration
David Zhengwen Zhang;Anthony Ikechukwu Anosike;Ming Kim Lim;Oluwaremilekun Mowanuola Akanle.
(2006)
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