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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Variation propagation modeling in multistage machining processes considering form errors and N-2-1 fixture layouts
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Variation propagation modeling in multistage machining processes considering form errors and N-2-1 fixture layouts

机译:考虑形状误差和 N-2-1 夹具布局的多级加工过程中的变化传播建模

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摘要

Variation propagation modeling of multistage machining processes enables variation reduction by making an accurate prediction on the quality of a part. Part quality prediction through variation propagation models, such as stream of variation and Jacobian-Torsor models, often focus on a 3-2-1 fixture layout and do not consider form errors. This paper derives a mathematical model based on dual quaternion for part quality prediction given parts with form errors and fixtures with N-2-1 (N>3) layout. The method uses techniques of Skin Model Shapes and dual quaternions for a virtual assembling of a part on a fixture, as well as conducting machining and measurement. To validate the method, a part with form errors produced in a two-stationed machining process with a 12-2-1 fixture layout was considered. The prediction made following the proposed method was within 0.4 of the prediction made using a CAD/CAM simulation when form errors were not considered. These results validate the method when form errors are neglected and partially validated when considered.
机译:多级加工过程的变化传播建模通过准确预测零件的质量来减少变化。通过变化传播模型(如变化流和 Jacobian-Torsor 模型)预测零件质量通常侧重于 3-2-1 夹具布局,而不考虑形状误差。本文推导了一种基于对偶四元数的数学模型,用于对具有形状误差的零件和具有 N-2-1 (N>3) 布局的夹具进行零件质量预测。该方法使用蒙皮模型形状和双四元数技术在夹具上虚拟组装零件,以及进行加工和测量。为了验证该方法,考虑了在具有 12-2-1 夹具布局的双工位加工过程中产生的具有形状误差的零件。在不考虑形状误差的情况下,按照所提出的方法做出的预测在使用 CAD/CAM 模拟做出的预测的 0.4% 以内。当形状错误被忽略时,这些结果验证了该方法,并在考虑时部分验证了该方法。

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