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Feasibility Assessment Of Vision-based Surface Roughness Parameters Acquisition For Different Types Of Machined Specimens

机译:不同类型机加工样品基于视觉的表面粗糙度参数采集的可行性评估

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This paper presents a feasibility assessment of acquiring vision-based surface roughness parameters for specimens produced by different machining type processes. Twenty produced specimens using five of the most common machining operations were employed in the investigation. Stylus-based measurements of these specimens are performed and results are compared to vision-based measurements using amplitude, spacing and hybrid roughness parameters. The applied filtering technique was based on 0.8 mm cut-off value and was maintained identical for both stylus and vision data to enable comparable results. Two models of surface irradiance were employed in the interpretation of the vision data. A third model was also established by utilising an additional filtering operation on the vision data. This allows assessment of the impact of this case on acquired values of surface parameters. Ambient lighting was used to minimize the effects of specular type of reflection. Results showed that although there is a considerable change in the parameter values acquired from vision data compared to stylus data, it is possible to obtain roughness parameters using vision-based method to a certain limit of accuracy. However, some roughness evaluation parameters proved to be more reliable than others. The overall results of this paper would encourage further developments in this area to achieve robust 3D vision based roughness measurement systems for industrial use.
机译:本文提出了一种可行性评估,该可行性评估用于获取通过不同加工类型工艺生产的试样的基于视觉的表面粗糙度参数。在调查中使用了20种样品,其中使用了五个最常见的机加工操作。对这些样品进行基于触笔的测量,并使用幅度,间距和混合粗糙度参数将结果与基于视觉的测量进行比较。所应用的滤波技术基于0.8 mm的截止值,并且对于手写笔和视觉数据均保持相同,以实现可比的结果。视觉数据的解释采用了两种表面辐照度模型。通过对视觉数据进行额外的过滤操作,还建立了第三个模型。这样可以评估这种情况对表面参数获取值的影响。使用环境照明来最大程度地减少镜面反射类型的影响。结果表明,尽管与手写笔数据相比,从视觉数据获取的参数值有很大变化,但可以使用基于视觉的方法在一定精度范围内获得粗糙度参数。但是,一些粗糙度评估参数证明比其他参数更可靠。本文的总体结果将鼓励该领域的进一步发展,以实现基于鲁棒的基于3D视觉的工业粗糙度测量系统。

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