METHODOLOGICAL FOUNDATIONS OF DIAGNOSTICS OF METALWORKING TECHNOLOGICAL SYSTEMS ACCORDING TO PARAMETRIC RELIABILITY OF ENSURING A GIVEN QUALITY OF THE TREATED SURFACES

V. Fedorov, M. Nagorkin, L. Vayner
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引用次数: 1

Abstract

The paper presents the results of research justifying the need for diagnostics of metalworking technological systems on the reliability of ensuring the quality parameters of the surfaces of machine parts during machining. The fundamentals of the methodology of its implementation have been developed. Theoretical models of forming the quality parameters of parts surfaces during machining are considered and refined. This characterizes the scientific novelty of the results obtained. Circuitries for the construction of experimental control systems when conducting bench tests of machined surfaces of parts in conditions close to operational are of practical value. Circuitries are developed and computerized systems based on them for measuring the quality parameters of machined parts surfaces, including the working area of the technological system, are implemented. Recommendations on the rational choice of technological systems and the use of simulation methods in the study of parametric reliability of technological systems are presented. Mathematical and software analysis and processing of experimental results are developed and tested. These results will serve as a foundation for further development of research in the field of parametric reliability of technological systems, improving the quality of domestic engineering products and increasing their competitiveness at the world market.
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金属加工技术系统诊断的方法学基础,根据参数可靠性确保处理表面的给定质量
本文介绍了研究结果,证明了金属加工工艺系统诊断在保证机械零件加工过程中表面质量参数可靠性方面的必要性。其执行方法的基本原则已经形成。考虑并完善了加工过程中零件表面质量参数形成的理论模型。这就是所获得的结果具有科学新颖性的特点。在接近操作条件下对零件加工表面进行台架试验时,用于实验控制系统建设的电路具有实用价值。在此基础上开发了测量加工零件表面质量参数(包括工艺系统的工作区域)的电路和计算机化系统。提出了合理选择工艺系统和采用仿真方法研究工艺系统参数可靠性的建议。数学和软件分析和处理实验结果开发和测试。这些结果将作为进一步发展技术系统参数可靠性研究领域的基础,提高国内工程产品的质量,提高其在国际市场上的竞争力。
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