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Decision support system for form verification of manufactured parts.

机译:决策支持系统,用于制造零件的形式验证。

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摘要

The form verification of manufactured parts is a process composed of a set of operations that are expensive and yet add no value to the product. Yet, the resources used to inspect the parts add a small but significant amount of noise that can affect the outcome of the process. For this reason, this research provides guidelines to effectively perform the inspection process by suggesting new mathematical models and approaches that can be used for the creation of a decision support system that can assist in the verification of the accuracy of machined parts.; The main goal of this research is to develop procedures that are simple to implement but at the same time are robust enough to provide reliable information that help the metrologist to make accurate decisions about the inspected parts. Form features such as spheres, cylinders, cones, frustums, and torus forms are commonly used to design complex parts. However, the procedures to verify most of these form features have not been developed yet by the national standards. Therefore, this research proposes new mathematical models that combine the concepts of analytic geometry and optimization to provide optimal solutions.; This research proposes two approaches to improve the robustness of the mathematical models from the noise induced by the inspection process. The Dynamic Angle Approach (DAA) and the Free Form Orientation approach (FFO) presented here focus on finding the parameters of the axes and origin of the form that counteract the inaccuracies of the inspection equipment.; The proposed approaches and mathematical models were verified using measurements from features that were perfectly aligned with the coordinate system of the inspection equipment and from features that were intentionally misaligned. The results showed that the models were accurate and robust enough to estimate the parameters and zone of error of the form features and they performed better than existing models.; In summary, this research suggests formalized methods for feature extraction, sampling, path planning, and form fitting, although the last mentioned received the most attention. It is believed that this comprehensive, integrated analysis will lead to the development of a decision support system.
机译:制造零件的形式验证是由一系列操作组成的过程,这些操作既昂贵又没有增加产品的价值。但是,用于检查零件的资源会增加少量但会影响过程结果的大量噪声。因此,本研究通过建议可用于创建决策支持系统的新数学模型和方法,从而提供了有效执行检验过程的指导方针,该决策支持系统可帮助验证加工零件的准确性。这项研究的主要目标是开发易于实施但同时又足够健壮以提供可靠信息的程序,以帮助气象学家对被检零件做出准确的决定。诸如球形,圆柱体,圆锥形,平截头体形和圆环形等形状特征通常用于设计复杂零件。但是,国家标准尚未开发出验证大多数这些表格特征的程序。因此,本研究提出了一种新的数学模型,该模型结合了解析几何和优化的概念来提供最优解。这项研究提出了两种方法来提高检测过程中产生的噪声对数学模型的鲁棒性。此处介绍的动态角度法(DAA)和自由形态定向法(FFO)着重于寻找抵消检测设备误差的轴参数和形状原点。所提出的方法和数学模型通过使用与检查设备的坐标系统完全对齐的特征以及有意未对齐的特征的测量值进行了验证。结果表明,该模型具有足够的准确性和鲁棒性,可以估计表单特征的参数和误差区域,并且其性能优于现有模型。总而言之,这项研究提出了特征提取,采样,路径规划和形状拟合的形式化方法,尽管最后提到的方法最为受关注。人们认为,这种全面,综合的分析将导致决策支持系统的发展。

著录项

  • 作者

    Aguirre Cruz, Juan Antonio.;

  • 作者单位

    The University of Oklahoma.$bSchool of Industrial Engineering.;

  • 授予单位 The University of Oklahoma.$bSchool of Industrial Engineering.;
  • 学科 Engineering Industrial.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 352 p.
  • 总页数 352
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 一般工业技术;
  • 关键词

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