在传感、设计和制造中进行公差分析的统一框架

T. Sobh, T. Henderson, F. Zana
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引用次数: 2

摘要

在这项工作中,我们解决了使用感测数据、CAD设计和制造的工业检测领域的公差表示和分析问题。代替在CAD模型中使用几何原语来定义和表示公差,我们建议使用完全基于被检查对象的制造知识的更强大的方法。我们根据要检查的零件的制造工艺计划指导我们的传感策略,并根据沿着被测零件的不同刀具路径的传感数据中的不确定性定义,计算和分析零件的公差。我们相信,我们的新方法是统一传感、CAD和CAM之间的公差的最佳方法,因为它捕获了要检查的部件的制造知识,而不仅仅是CAD几何表示。
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A unifying framework for tolerance analysis in sensing, design, and manufacturing
In this work we address the problem of tolerance representation and analysis across the domains of industrial inspection using sensed data, CAD design, and manufacturing. Instead of using geometric primitives in CAD models to define and represent tolerances, we propose the use of stronger methods that are completely based on the manufacturing knowledge for the objects to be inspected. We guide our sensing strategies based on the manufacturing process plans for the parts that are to be inspected and define, compute, and analyze the tolerances of the parts based on the uncertainty in the sensed data along the different toolpaths of the sensed part. We believe that our new approach is the best way to unify tolerances across sensing, CAD, and CAM, as it captures the manufacturing knowledge of the parts to be inspected, as opposed to just CAD geometric representations.
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