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Lightweight Structure Design Under Force Location Uncertainty

机译:受力定位不确定性下的轻量化结构设计

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We introduce a lightweight structure optimization approach for problems in which there is uncertainty in the force locations. Such uncertainty may arise due to force contact locations that change during use or are simply unknown a priori. Given an input 3D model, regions on its boundary where arbitrary normal forces may make contact, and a total force-magnitude budget, our algorithm generates a minimum weight 3D structure that withstands any force configuration capped by the budget. Our approach works by repeatedly finding the most critical force configuration and altering the internal structure accordingly. A key issue, however, is that the critical force configuration changes as the structure evolves, resulting in a significant computational challenge. To address this, we propose an eu001ccient critical instant analysis approach. Combined with a reduced order formulation, our method provides a practical solution to the structural optimization problem. We demonstrate our method on a variety of models and validate it with mechanical tests.
机译:对于力位置不确定的问题,我们引入了轻型结构优化方法。这种不确定性可能是由于力接触位置在使用过程中发生变化或先验未知而引起的。给定一个输入3D模型,其边界上可以与任意法向力接触的区域以及总力大小预算,我们的算法会生成一个最小的权重3D结构,该结构可以承受受预算限制的任何力配置。我们的方法通过反复查找最关键的力配置并相应地更改内部结构而起作用。但是,一个关键问题是,临界力配置会随着结构的发展而变化,从而导致巨大的计算挑战。为了解决这个问题,我们提出了一种紧急的紧急分析方法。结合降阶公式,我们的方法为结构优化问题提供了实用的解决方案。我们在各种模型上演示我们的方法,并通过机械测试对其进行验证。

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