Methods of Surfaces Quality Comparison in Mechanical Engineering Applications

L. Solecki
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Abstract

The macro- and micro-geometric properties featuring the boundary surfaces of machine components are important for quality reasons. The comparison of surfaces is needed if the machined surface is to be matched to preset requirements or the same surface can be manufactured with different manufacturing processes or various measurement and surface testing methods are available, or the time variation of the surface is to be assessed. After the comparison, surface deviations must be numerically evaluated in relation to size, shape, position, and surface irregularity. Nowadays, surface irregularity tends to represent not only the unevenness of the surface but also the comparison of the real surface to a favourable microgeometric structure. Information on the actual surface is obtained through perception (optical or mechanical), and the nominal surface can be a mathematical model, a sample, or a previous condition of the surface in the form of any previous perception, or a previously made print of the surface (replica). During comparison, similarities and differences must be evaluated in terms of the key properties of the surface related to the operation of the given component. Comparison based on visual inspection is a suitable and acceptable method for a quick inspection, for identification of the parts of the component, and for detection of significant deviations. A technically more advanced method is image processing. Three dimensional properties of the surfaces can be evaluated with 3D geometric calculation methods and methods developed for surface roughness. The presentation introduces a method for comparing cylinder surfaces of an internal combustion engine and presents an example of the method currently used in automotive engineering applications.
表面质量比较方法在机械工程中的应用
机械零件边界表面的宏观和微观几何特性对质量至关重要。如果要使被加工的表面符合预定要求,或者可以用不同的制造工艺制造同一表面,或者有各种测量和表面试验方法,或者需要评估表面的时间变化,则需要对表面进行比较。在比较之后,必须对与尺寸、形状、位置和表面不规则性相关的表面偏差进行数值评估。如今,表面不规则不仅代表表面的不平整,而且还代表真实表面与有利的微观几何结构的比较。实际表面上的信息是通过感知(光学或机械)获得的,名义表面可以是一个数学模型,一个样本,也可以是以前任何感知形式的表面的先前状态,也可以是以前制作的表面印刷品(复制品)。在比较过程中,必须根据与给定组件的操作相关的表面的关键属性来评估相似性和差异性。基于目视检查的比较是一种适合和可接受的快速检查方法,用于识别部件的部件,并用于检测重大偏差。技术上更先进的方法是图像处理。利用三维几何计算方法和开发的表面粗糙度方法可以评估表面的三维特性。介绍了一种比较内燃机气缸表面的方法,并举例说明了该方法目前在汽车工程中的应用。
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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