Title :
Investigations on Detection Model of Large Scale Rotation Shaft Torsional Vibration in Precision Heavy Machinery
Author_Institution :
Sch. of Mech. & Power Eng., Henan Polytech. Univ., Jiaozuo
Abstract :
For solving on-line extract torsional vibrating parameter detecting and metrical problem of spanless point of complex and precise heavy machinery large scale rotary driving shaft, a new torsional vibration continuous shaft segment mass detecting and analytic model was proposed by using kinetics theory and measuring theory. The new method established the vibrational transmission relationship between the measurable point and the spanless point. New model was verified correctness, feasibility and effectiveness by means of gathering torque signal in the production field and comparing the consistency between measured value and theoretical calculation value of spanless point torque signal. Based on the experimentpsilas result, new model can supply a engineered means for acquiring the vibration detailed information of the point on precise heavy machinery large scale driving shaft which was inconvenience fitted sensor. It also can program composition for implement on-line monitor and fault forecast on rotary shaft and then guarantee the precise heavy complex rotary machine even running.
Keywords :
kinetic theory; machinery; shafts; torque; vibrations; detection model; kinetics theory; large scale rotation shaft torsional vibration; measuring theory; precision heavy machinery; spanless point torque signal; vibrational transmission relationship; Fatigue; Frequency; Kinetic theory; Large-scale systems; Machinery; Production; Robotics and automation; Shafts; Stress; Vibration measurement; Detection and measuring model; Large scale rotation shaft; Precise heavy machinery; Spanless point; Torque; Torsional vibration;
Conference_Titel :
Informatics in Control, Automation and Robotics, 2009. CAR '09. International Asia Conference on
Conference_Location :
Bangkok
Print_ISBN :
978-1-4244-3331-5
DOI :
10.1109/CAR.2009.91