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采用摆动槽式运动的输送机工作运行状态的传感器监测

Sensor Monitoring of Conveyor Working Operation with Oscillating Trough Movement.

作者信息

Hrabovský Leopold, Pravda Štěpán, Fries Martin

机构信息

Faculty of Mechanical Engineering, Department of Machine and Industrial Design, VSB-Technical University of Ostrava, 17. listopadu 2172/15, 708 00 Ostrava, Czech Republic.

出版信息

Sensors (Basel). 2025 Apr 14;25(8):2466. doi: 10.3390/s25082466.

Abstract

This paper presents measured vibration magnitudes on the trough surface and on the frame of a laboratory model of a vibrating conveyor, detected by acceleration sensors. The vibration source is a DC asynchronous vibration motor with two discs with unbalanced masses mechanically attached to the end parts of the rotor. The trough of the vibrating conveyor is supported by four rubber springs of two types, which are characterised by considerable spring stiffness. Digital signals were recorded using the DEWESoft SIRIUSi measuring apparatus, which carries information about the magnitude of acting vibrations, which can be remotely transmitted from their place of action via a WI-FI router to the operating station, where they are subjected to a detailed computer-based analysis. From the identification and deeper analysis of the measured signals it is possible to monitor the optimum operating conditions of the vibration equipment, depending on predetermined parameters, namely, the trough inclination angle, the throw angle, the rotor speed of the vibration motor, the spring stiffness and the amount of material on the trough surface. The highest mean magnitude of the effective vibration velocity (4.8 mm·s) in the vertical direction was measured on a model vibrating conveyor, with rubber springs with a stiffness of 54 N·mm, with the unloaded trough without the conveyed material. The lowest mean magnitude of the effective vibration velocity was 1.2 mm·s in the vertical direction with a weight of 5.099 kg of conveyed material on the trough. Suitably designed rubber springs, of optimum stiffness, dampen the vibrations transmitted to the machine frame. From their sizes, it is possible to remotely monitor the working operation of the vibrating conveyor or to obtain information about the failure of one or several used rubber springs.

摘要

本文介绍了通过加速度传感器检测到的振动输送机实验室模型的料槽表面和机架上的振动幅度测量值。振动源是一台直流异步振动电机,其带有两个机械连接到转子端部的不平衡质量盘。振动输送机的料槽由两种类型的四个橡胶弹簧支撑,这些弹簧具有相当大的弹簧刚度。使用DEWESoft SIRIUSi测量设备记录数字信号,该设备承载有关作用振动幅度的信息,这些信息可通过WI-FI路由器从其作用位置远程传输到操作站,在操作站对其进行详细的基于计算机的分析。通过对测量信号的识别和深入分析,可以根据预定参数,即料槽倾斜角度、抛掷角度、振动电机的转子速度、弹簧刚度和料槽表面上的物料量,监测振动设备的最佳运行条件。在一个振动输送机模型上,对于刚度为54 N·mm的橡胶弹簧,在空载且没有输送物料的料槽情况下,测得垂直方向上有效振动速度的最高平均幅度为4.8 mm·s。在料槽上有5.099 kg输送物料重量时,垂直方向上有效振动速度的最低平均幅度为1.2 mm·s。设计合理、刚度最佳的橡胶弹簧可抑制传递到机架的振动。根据它们的尺寸,可以远程监测振动输送机的工作运行情况,或获取有关一个或几个使用的橡胶弹簧故障的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b5a/12031335/4fc46922a0cf/sensors-25-02466-g001.jpg

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