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一种3D打印风场流速测量系统的研制

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传统的流速传感器体型较大,既不适合3D打印风场内部安装,又会干扰到进口流场分布,影响加工产品的质量.针对目前3D打印现场风场内风速无法实时、准确测量的问题,提出一种基于边云协同的3D打印风场流速测量技术.该技术通过设计芯片流速传感器、流速采集终端、云服务器流速测量系统,实现了在不干扰风场的条件下,远程、实时、精确地测量3D打印风场进口流速.研制的流速测量系统具有精度高、体积小、易安装、不影响3D打印风场的特点,该系统可以进行现场实时监测测量,也可以使用远程终端计算机通过互联网进行远程流速监测测量.
Development of a 3D printing wind field flow velocity measurement system
The traditional flow rate sensor is large,which is not suitable for the internal installation of 3D printing wind farms,and will interfere with the distribution of imported flow fields and affect the quality of processed products.In order to solve the problem that the wind speed in the wind field at the 3D printing site cannot be measured in real time and accurately,a 3D printing wind field flow velocity measurement technology based on edge-cloud collaboration was proposed.Through the design of chip flow rate sensor,flow rate acquisition terminal and cloud server flow rate measurement system,this technology realizes the remote,real-time and accurate measurement of the inlet flow rate of 3 D printed wind farm without distur-bing the wind field.The developed flow velocity measurement system has the characteristics of high preci-sion,small size,easy installation,and does not affect the 3D printing wind field,and the system can carry out on-site real-time monitoring and measurement,and can also use a remote terminal computer to carry out remote flow rate monitoring and measurement through the Internet.

edge-cloud collaboration3D printingflow rate measurementcloud measurements

张博、韩亚凡、鲁宁、周家帅、田盎

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北京控制与电子技术研究所,北京 102300

北京星航机电装备有限公司,北京 100074

北京振兴计量测试研究所,北京 100074

边云协同 3D打印 流速测量 云测量

2024

工业计量
冶金自动化研究设计院 中国计量协会

工业计量

影响因子:0.256
ISSN:1002-1183
年,卷(期):2024.34(1)
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