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首页> 外文期刊>Computer-Aided Design >A virtual fixture using a FE-based transformation model embedded into a constrained optimization for the dimensional inspection of nonrigid parts
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A virtual fixture using a FE-based transformation model embedded into a constrained optimization for the dimensional inspection of nonrigid parts

机译:使用嵌入有限约束优化中基于FE的转换模型的虚拟夹具,用于非刚性零件的尺寸检查

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摘要

Virtually mounting nonrigid parts onto their fixture is proposed by researchers to remove the need for the use of complex physical inspection fixtures during the measurement process. Current approaches necessitate the pre-processing of the free-state nonrigid part's point cloud into a suitable finite element (FE) mesh and are limited by the use of the boundary conditions setting methods available in FE software. In addition to these limits, these approaches do not take into account the forces used to restrain the part during the inspection, as commonly mandated for aerospace panels. To address these shortcomings, this paper presents a virtual fixture method that predicts the fixed shape of the part without the aforementioned drawbacks of current approaches. This is achieved by embedding information retrieved from a FE analysis of the nominal CAD model into a boundary displacement constrained optimization. To evaluate the proposed method, two case studies on physical parts are performed using the proposed virtual fixture method to evaluate the profile and assembly force specifications of each part. (C) 2014 Elsevier Ltd. All rights reserved.
机译:研究人员提议将非刚性零件虚拟安装到其固定装置上,以消除在测量过程中使用复杂的物理检查固定装置的需要。当前的方法需要将自由状态非刚性零件的点云预处理为合适的有限元(FE)网格,并且受到使用FE软件中可用的边界条件设置方法的限制。除了这些限制之外,这些方法未考虑到通常在航空航天板上要求的用于在检查过程中约束零件的力。为了解决这些缺点,本文提出了一种虚拟夹具方法,该方法可以预测零件的固定形状,而不会出现当前方法的上述缺点。这是通过将从名义CAD模型的有限元分析中检索到的信息嵌入边界位移约束的优化中来实现的。为了评估所提出的方法,使用所提出的虚拟夹具方法对物理零件进行了两个案例研究,以评估每个零件的轮廓和装配力规格。 (C)2014 Elsevier Ltd.保留所有权利。

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