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The Improvement of Performances in Automatic Dimensional Inspection for Bearing Production, an Important Way to Quality Assurance in Mechanical Engineering

机译:轴承生产自动尺寸检查性能的提高,机械工程质量保证的重要途径

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The dimensional inspection automatisation is one of the main requirements for the technological improvements of the manufacturing systems in all industrial fields. The bearing production has to undertake a continuous quality improvement due to its major economic involvement; the consequence consists in high performances in the quality ensuring. As an integrated field, the control automatic devices include the classic mechanic engineering, electronics and computer field in designing, control and evaluation for these systems. The bearing industry achieved in our country special results in the inspection automatic devices field. The currently used automatic drive systems are manufactured for concrete service and are equipped with elementary components. Through the modulating of the component subassemblies and the using of microelectronic systems with the worldwide highest performances for control and drive and based on a detailed analysis of the automate control systems, this paper emphasizes some important items with reference to the quality assurance in Bearing Industry. In this paper are being approached a few aspects concerning the dynamic behaviour of automatic systems for bearings inspection with the aim of achieving the best structures from the efficiency and quality assurance point of view. The paper attempts to present a few results obtained during the research work sustained by the author within the domain of quality and automatic control systems used in bearing industry. The results presented in here illustrate some possibilities of structural optimisation and functioning in case of quality increase in the bearing and bearing elements industry.
机译:尺寸检验自动化是所有工业领域制造系统技术改进的主要要求之一。由于其主要经济参与,轴承产量必须采取持续的质量改善;后果在质量确保的高度表现中组成。作为集成领域,控制自动设备包括设计,控制和评估这些系统的经典技工工程,电子和计算机领域。轴承行业在我国在检验自动装置领域的特殊结果。目前使用的自动驱动系统是用于混凝土服务,配有基本组件。通过调制组​​件子组件和使用微电子系统的使用,以全球最高的控制和驱动,并基于自动化控制系统的详细分析,参考轴承行业的质量保证,强调了一些重要的项目。本文正在接近关于轴承检测的自动系统动态行为的几个方面,以实现从效率和质量保证点的最佳结构。本文试图在作者在轴承行业中使用的质量和自动控制系统领域持续的研究工作中提出了一些结果。这里提出的结果说明了轴承和轴承元件行业质量增加的结构优化和功能的一些可能性。

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