表面纹理分析中包络形态滤波方法与各种正则算法的比较

IF 1 4区 工程技术 Q4 INSTRUMENTS & INSTRUMENTATION Metrology and Measurement Systems Pub Date : 2023-07-20 DOI:10.24425/MMS.2020.132772
P. Podulka
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引用次数: 18

摘要

在本文中,提出了用于表征表面纹理的包络方法和形态学滤波器,并对其进行了应用和彻底检查。将获得的结果与应用常用算法后收到的结果进行比较。考虑了拟用程序对表面形貌参数(来自ISO 25178标准)的影响。评估了以下类型的表面纹理:两种工艺的平台珩磨缸套、带有额外抛光凹坑的平台珩磨缸体、车削活塞裙、研磨和/或各向同性拓扑。假设包络特征(包络过滤)可以为深部和/或宽部油藏的评估提供有用的结果,尤其是当它们位于边缘时。此外,当完成包络滤波时,表面纹理细节的一些近谷区域可以减少失真。研究还发现,关闭和/或打开包络过滤对于减少一些表面形貌测量误差是有价值的。
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Comparisons of envelope morphological filtering methods and various regular algorithms for surface texture analysis
In this paper both envelope approach and morphological filters for characterisation of surface textures were proposed, applied and thoroughly examined. Obtained results were compared with those received after appliance of commonly-used algorithms. The effect of appliance of proposed procedures on surface topography parameters (from ISO 25178 standard) was taken into consideration. The following types of surface textures were assessed: two-process plateau-honed cylinder liners, plateau-honed cylinder liners with additionally burnished dimples, turned piston skirts, grinded and/or isotropic topographies. It was assumed that envelope characteristics (envelope filtration) can provide results useful for assessments of deep and/or wide oil-reservoirs especially when they are edge located. Moreover, some near-valley areas of surface texture details can be less distorted when envelope filtering is accomplished. It was also found that closing and/or opening envelope filtration can be valuable for reduction of some surface topography measurement errors.
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来源期刊
Metrology and Measurement Systems
Metrology and Measurement Systems INSTRUMENTS & INSTRUMENTATION-
CiteScore
2.00
自引率
10.00%
发文量
0
审稿时长
6 months
期刊介绍: Contributions are invited on all aspects of the research, development and applications of the measurement science and technology. The list of topics covered includes: theory and general principles of measurement; measurement of physical, chemical and biological quantities; medical measurements; sensors and transducers; measurement data acquisition; measurement signal transmission; processing and data analysis; measurement systems and embedded systems; design, manufacture and evaluation of instruments. The average publication cycle is 6 months.
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