Investigation in optimisation of accuracy with non-contact systems by influencing variable processes

Ranveer Matharu, Wayne Sadler, B. Gashi, Trevor Toman
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引用次数: 0

Abstract

The use of 3D scanning systems is becoming increasingly popular and an essential tool for manufacturers for inspection and measurement. With such systems being utilised on the manufacturing shop floor due to their portability and ease of use, it is no doubt that such systems are designed to address a variety of users whom, with minimal training can operate the equipment. Due to continuing demands of high-quality products there is the need for manufacturers of 3D scanning systems to develop technologies that deliver fast and accurate information. However, one of the key challenges lies not in the training of people to use the equipment, but to develop engineers who can produce traceable, accurate and precise results with a declared statement of confidence quantifying the quality of the measurement. This statement of the quality of the output results relies on employing a set of workflow actions that involve planning, capture, processing and analysis, and finally output. This paper sets out to show how the results from a set of workflow actions from different categories of 3D scanning devices affects the quality of output.
影响变量过程的非接触系统精度优化研究
3D扫描系统的使用正变得越来越流行,成为制造商进行检查和测量的重要工具。由于这种系统的可移植性和易用性,因此在制造车间使用这种系统,毫无疑问,这种系统的设计是为了满足各种用户的需求,这些用户只需经过最少的培训就可以操作设备。由于对高质量产品的持续需求,3D扫描系统制造商需要开发能够提供快速准确信息的技术。然而,关键的挑战之一不在于培训人员使用设备,而在于培养能够产生可追溯、准确和精确的结果的工程师,并宣称有信心量化测量的质量。输出结果质量的声明依赖于采用一组工作流操作,这些操作包括计划、捕获、处理和分析,以及最后的输出。本文旨在展示来自不同类别3D扫描设备的一组工作流程操作的结果如何影响输出质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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