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Research on the Design of Mechanical Systems for Automated Production Lines and the Optimization of Their Operation

Qifu Liang

Abstract


Driven by the intelligent manufacturing strategy, automated production lines have become the core vehicle for enhancing quality
and efficiency in the manufacturing sector. As the hardware foundation, the mechanical systems 'design rationality and operational stability
directly determine production efficiency, product quality, and overall costs. Currently, China's automated production line mechanical systems
face challenges such as design homogenization, structural redundancy, high energy consumption, and substantial maintenance costs, making
them inadequate for meeting the demands of multi-product and flexible production. Based on mechanical design theory and industrial engineering principles, this paper analyzes the core components and design requirements of mechanical systems, examines design and operational
challenges through industry practices, and proposes optimization strategies in four areas: modular design, lightweight optimization, dynamic
simulation, and intelligent operation and maintenance. It also establishes a full lifecycle assurance mechanism, providing theoretical references and technical support for production line upgrades.

Keywords


Automated production line; Mechanical system design; Operational optimization; Modular design; Intelligent operation and maintenance

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References


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DOI: http://dx.doi.org/10.70711/frim.v4i6.9701

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