Topology Optimization Design of Continuum Dynamic Mechanisms
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In this research, we employ program code for topology optimization design of continuum dynamic mechanisms and further develop/optimize it based on the OC (Optimality Criteria) algorithm. The implementation utilizes sensitivity analysis and iterative update schemes to systematically redistribute material within the design domain. We leverage this program code to investigate optimal material structure designs, achieving enhanced performance and efficiency through density-based optimization methods. The algorithm incorporates constraints handling and convergence criteria to ensure physically meaningful solutions. Additionally, we explore potential applications of this algorithm in other engineering domains, and anticipate further research advancements in this field through extended functionality and multi-physics integration.
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