用三维重建技术对直齿齿轮齿厚测量进行数学模拟

H. Shalaby, A. Khalil, M. Damir
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引用次数: 0

摘要

进行尺寸测量以确保机械元件和工程部件具有足够的性能和功能。各种完善的和特殊用途的常规和接触式测量仪器被设计用于不同的尺寸测量。然而,传统的测量技术有一些局限性,如对环境条件的敏感性、不可获得性、成本、时间消耗和零件尺寸限制。在这项工作中,建议对不适用的常规测量技术进行数学模拟。这些模拟可以应用于感兴趣部分的三维重建模型。本文采用摄影测量法对直齿轮的三维模型进行了重建。建立了一个数学模型来模拟已建立的直齿齿轮在节线和常弦处的齿厚测量。提出的方法应用于不同的齿轮齿和截面。采用常规测量仪测量同一齿轮的齿厚。模拟和实际测量值与其相应的标称值进行了比较,结果都很吻合。所提出的方法提供了一种充分的非接触测量技术,非常适合于不同尺寸和复杂程度的零件尺寸的原位测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mathematically Simulated Conventional Measurement of Spur Gear Tooth Thickness using 3D Reconstruction
Dimensional measurements are performed to insure adequate performance and functionality of mechanical elements and engineering components. A large variety of well-established and special purpose conventional and contact measuring instruments are designed for different dimensional measurements. However, conventional measuring techniques have some limitations such as sensitivity to environmental conditions, unavailability, cost, time consumption, and part size limitations. In this work, it is suggested to mathematically simulate conventional measuring techniques when they are not applicable. These simulations can be applied on a 3D reconstructed model of the part of interest. In this work the 3D model of a spur gear was reconstructed using photogrammetry. A mathematical model was developed to simulate the well-established measurement of spur gear tooth thickness at both pitch line and constant chord. The proposed approach was applied on different gear teeth and sections. A conventional measuring instrument was used to measure the teeth thickness of the same gear. Simulated and actual measurements were compared to their corresponding nominal values and were all in good agreement. The proposed approach provides an adequate non-contact measurement technique well suited for in-situ measurements of part dimensions with diverse sizes and complexities.
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