Algorithm of Evaluation of 3D Parameters of a Digital Surface Model

Q3 Engineering Russian Engineering Research Pub Date : 2024-07-29 DOI:10.3103/s1068798x24701053
A. N. Popov, P. A. Mel’nikov, I. N. Bobrovskii
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Abstract

The article presents an algorithm for calculating the parameters of a digital model of a 3D surface in accordance with GOST-25178-2–2014.3267 “Geometrical Product Specifications (GPS)” on the example of a surface treated with an abrasive tool. Microgeometry of working surfaces of machine parts is an important factor in determining their durability, reliability, and efficiency in operation. The developed models enable control over the parameters of the treatment process at the stage of design of the technological process with the aim to ensure required geometric parameters of the machined surface. he problem is a relevant issue because surface microrelief characteristics determine the area of real contact, the coefficient of friction, the ability to hold lubricant, and the ability of the working surface to withstand wear under load. Optimization of microgeometry can result in reduced wear, improved efficiency, and increased reliability of mechanisms.

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数字表面模型三维参数评估算法
摘 要 本文以使用研磨工具处理的表面为例,介绍了根据 GOST-25178-2-2014.3267 "产品几何规格 (GPS) "计算三维表面数字模型参数的算法。机械零件工作表面的微观几何是决定其耐用性、可靠性和运行效率的重要因素。所开发的模型可以在技术工艺设计阶段控制处理工艺的参数,以确保加工表面所需的几何参数。这个问题很有意义,因为表面微凸特征决定了实际接触面积、摩擦系数、保持润滑剂的能力以及工作表面承受负载磨损的能力。优化微几何形状可以减少磨损,提高效率,增加机械装置的可靠性。
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来源期刊
Russian Engineering Research
Russian Engineering Research Engineering-Industrial and Manufacturing Engineering
CiteScore
1.20
自引率
0.00%
发文量
226
期刊介绍: Russian Engineering Research is a journal that publishes articles on mechanical and production engineering. The journal covers the development of different branches of mechanical engineering, new technologies, and tools for machine and materials design. Emphasis is on operations research and production-line layout, industrial robots and manipulators, quality control and process engineering, kinematic analysis of machine assemblies, and computerized integrated manufacturing systems.
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