论文标题
一种用于设计优化机制的工业适用方法:冠状动脉案例研究
An Industrial Applicable Approach towards Design Optimization of a Mechanism: a Coronaventilator Case Study
论文作者
论文摘要
机制的设计优化是一个有前途的研究领域,因为它会导致更节能的机器而不会损害性能。但是,机器构建者实际上并未使用文献中描述的潜力,因为这些方法需要过多的理论分析。 本文通过使用CAD模型介绍了方便的优化工作流程,允许广泛采用工业。 3D多体软件用于执行运动模拟,从中可以从中提取目标值样本。这些运动模拟确定了设计参数的一定组合以实现运动的所需扭矩。专用软件可以依次执行多个运动模拟,并在不同模拟之间进行互换数据,从而自动检索目标价值样本的过程。因此,如果没有深入的分析设计分析,机器设计人员可以低成本评估多个设计。此外,通过实施优化算法,可以找到满足目标的最佳设计。在具有三个设计参数(DP)的冠状动脉机制的案例研究中,允许39个CAD运动模拟在42分钟内将机制的RMS扭矩降低57.2%。
Design optimization of mechanisms is a promising research area as it results in more energy-efficient machines without compromising performance. However, machine builders do not actually use the potential described in the literature as these methods require too much theoretical analysis. This paper introduces a convenient optimization workflow allowing wide industrial adoption, by using CAD models. The 3D multi-body software is used to perform motion simulations, from which the objective value samples can be extracted. These motion simulations determine the required torque for a certain combination of design parameters to fulfill the movement. Dedicated software can execute multiple motion simulations sequentially and interchange data between the different simulations, which automates the process of retrieving objective value samples. Therefore, without in-depth analytical design analysis, a machine designer can evaluate multiple designs at low cost. Moreover, by implementing an optimization algorithm, an optimal design can be found that meets the objective. In a case study of a coronaventilator mechanism with three design parameters (DP's), 39 CAD motion simulations allowed to reduce the RMS torque of the mechanism by 57.2% in 42 minutes.