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Using microwave Doppler radar in automated manufacturing applications.

机译:在自动化制造应用中使用微波多普勒雷达。

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Since the beginning of the Industrial Revolution, manufacturers worldwide have used automation to improve productivity, gain market share, and meet growing or changing consumer demand for manufactured products. To stimulate further industrial productivity, manufacturers need more advanced automation technologies: "smart" part handling systems, automated assembly machines, CNC machine tools, and industrial robots that use new sensor technologies, advanced control systems, and intelligent decision-making algorithms to "see," "hear," "feel," and "think" at the levels needed to handle complex manufacturing tasks without human intervention.; The investigator's dissertation offers three methods that could help make "smart" CNC machine tools and industrial robots possible: (1) A method for detecting acoustic emission using a microwave Doppler radar detector, (2) A method for detecting tool wear on a CNC lathe using a Doppler radar detector, and (3) An online non-contact method for detecting industrial robot position errors using a microwave Doppler radar motion detector.; The dissertation studies indicate that microwave Doppler radar could be quite useful in automated manufacturing applications. In particular, the methods developed may help solve two difficult problems that hinder further progress in automating manufacturing processes: (1) Automating metal-cutting operations on CNC machine tools by providing a reliable non-contact method for detecting tool wear, and (2) Fully automating robotic manufacturing tasks by providing a reliable low-cost non-contact method for detecting on-line position errors. In addition, the studies offer a general non-contact method for detecting acoustic emission that may be useful in many other manufacturing and non-manufacturing areas, as well (e.g., monitoring and nondestructively testing structures, materials, manufacturing processes, and devices).; By advancing the state of the art in manufacturing automation, the studies may help stimulate future growth in industrial productivity, which also promises to fuel economic growth and promote economic stability. The study also benefits the Department of Industrial Technology at Iowa State University and the field of Industrial Technology by contributing to the ongoing "smart" machine research program within the Department of Industrial Technology and by stimulating research into new sensor technologies within the University and within the field of Industrial Technology.
机译:自工业革命开始以来,全世界的制造商都在使用自动化来提高生产率,获得市场份额以及满足不断增长或变化的消费者对制成品的需求。为了提高工业生产率,制造商需要更先进的自动化技术:“智能”零件处理系统,自动化装配机,CNC机床和使用新传感器技术,先进控制系统和智能决策算法的工业机器人,以“查看”,“听觉”,“感觉”和“思考”,无需人工干预即可完成复杂的制造任务。研究人员的论文提供了三种方法,可以帮助使“智能”数控机床和工业机器人成为可能:(1)一种使用微波多普勒雷达探测器检测声发射的方法,(2)一种在CNC车床上检测刀具磨损的方法(3)使用微波多普勒雷达运动检测器检测工业机器人位置误差的在线非接触式在线方法。论文研究表明,微波多普勒雷达在自动化制造中可能非常有用。特别是,开发的方法可以帮助解决两个困难的问题,这些问题阻碍了自动化制造过程的进一步发展:(1)通过提供可靠的非接触式检测工具磨损的方法来自动化CNC机床的金属切削操作,以及(2)通过提供可靠的低成本非接触式方法来检测在线位置错误,从而使机器人制造任务完全自动化。此外,研究提供了一种通用的非接触式检测声发射的方法,该方法也可能在许多其他制造和非制造领域(例如,监视和非破坏性地测试结构,材料,制造过程和设备)有用。 ;通过提高制造自动化的最新水平,这些研究可能有助于刺激工业生产率的未来增长,这也有望推动经济增长并促进经济稳定。这项研究还为爱荷华州立大学工业技术系和工业技术领域带来了好处,它为工业技术系内正在进行的“智能”机器研究计划做出了贡献,并激发了大学内部和内部对新型传感器技术的研究。工业技术领域。

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