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Development Trend of NC Machining Accuracy Control Technology for Aeronautical Structural Parts

机译:航空结构件NC加工精度控制技术的发展趋势

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High-performance five-axis computer numerical control machine tools are widely used in the processing of Aeronautical Structural parts. With the increase of service life, the precision of CNC machine tools equipped by aeronautical manufacturing enterprises is declining day by day, while the new generation of aircraft structural parts are developing towards integration, large-scale, complexity, thin-walled and lightweight. It is very easy to produce dimension overshoot and surface quality defects due to unstable processing technology. The machining accuracy of aircraft structural parts is also affected by complex factors such as cutting load, cutting stability, tool error, workpiece deformation, fixture deformation, etc. Because of the complexity of structure and characteristics of Aeronautical Structural parts, the consistency and stability of cutting process are poor. It is easy to cause machining accuracy problems due to tool wear, breakage and cutting chatter. Relevant scholars have carried out a lot of basic research on NC machining accuracy control and achieved fruitful results, but the research on NC machining accuracy control of Aeronautical structural parts is still less. This paper elaborates from three aspects: error modeling method of NC machine tools, error compensation method, prediction and control of machining accuracy, and combines the characteristics of Aeronautical Structural parts, the development trend and demand of NC machining accuracy control technology are put forward.
机译:高性能五轴计算机数控机床广泛应用于航空结构部件的加工。随着使用寿命的增加,航空制造企业配备的数控机床的精度在一天白天下降,而新一代飞机结构部件正在朝着集成,大规模,复杂性,薄壁和轻质发展。由于不稳定的加工技术,生产尺寸过冲和表面质量缺陷非常容易。飞机结构部件的加工精度也受到切割负荷,切割稳定性,工具误差,工件变形,夹具变形等的复杂因素的影响,因为航空结构部件的结构和特性,稠度和稳定性的复杂性切割过程很差。由于工具磨损,破损和切割聊天,易于导致加工精度问题。相关学者对NC加工精度控制进行了大量基本研究,实现了富有成效的结果,但航空结构部件的NC加工精度控制的研究仍然较低。本文从三个方面详细说明了NC机床的错误建模方法,误差补偿方法,加工精度的预测和控制,并结合了航空结构部件的特点,提出了NC加工精度控制技术的发展趋势和需求。

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