Innovative technology for continuous fatigue crack condition monitoring of bridges: long-term electrochemical fatigue sensor (LTEFS)

2016 ◽  
Vol 58 (7) ◽  
pp. 351-359 ◽  
Author(s):  
M Miceli ◽  
M A Moshier ◽  
L Nelson ◽  
R Brinkerhoff
2016 ◽  
Author(s):  
Monty A. Moshier ◽  
Levi Nelson ◽  
Ryan Brinkerhoff ◽  
Marybeth Miceli

Author(s):  
Philip Varney ◽  
Itzhak Green

The goal of this work is to establish a condition monitoring regimen capable of diagnosing the depth and location of a transverse fatigue crack in a rotordynamic system. The success of an on-line crack diagnosis regimen hinges on the accuracy of the crack model used. The model should account for the depth of the crack and the localization of the crack along the shaft. Negating the influence of crack location on system response ignores a crucial component of real cracks. Two gaping crack models are presented; the first simulates a finite-width manufactured notch, while the second models an open fatigue crack. An overhung rotordynamic system is modeled, imitating an available rotordynamic test rig. Four degree-of-freedom equations of motion for both crack models are presented and discussed, along with corresponding transfer matrix techniques. Free and forced response analyses are performed, with emphasis placed on results applicable to condition monitoring. It is demonstrated that two identifiers are necessary to diagnose the crack parameters: the 2X resonance frequency and the magnitude of the 2X component of the rotor angular response at resonance. First, a contour plot of the 2X resonant shaft speed versus crack depth and location is generated. The magnitude of the 2X component of the rotor’s angular response along the desired contour is obtained, narrowing the possible pairs of crack location/depth to either one or two possibilities. Practical aspects of the diagnosis procedure are then discussed.


2015 ◽  
Vol 5 (1) ◽  
Author(s):  
Pavlo Maruschak ◽  
Sergey Panin ◽  
Iryna Danyliuk ◽  
Lyubomyr Poberezhnyi ◽  
Taras Pyrig ◽  
...  

AbstractThe study has established the main regularities of a fatigue failure of offshore gas steel pipes installed using S-lay and J-lay methods.We have numerically analyzed the influence of preliminary deformation on the fatigue life of 09Mn2Si steel at different amplitudes of cyclic loading. The results have revealed the regularities of formation and development of a fatigue crack in 17Mn1Si steel after 40 years of underground operation. The quantitative analysis describes the regularities of occurrence and growth of fatigue cracks in the presence of a stress concentration.


2011 ◽  
pp. 380-403 ◽  
Author(s):  
Alessandra Agostini ◽  
Valeria Giannella ◽  
Antonietta Grasso ◽  
Dave Snowdon ◽  
Michael Koch

The aim of the Campiello1 research project (Esprit Long Term Research #25572) is to promote and sustain the meeting of inhabitants and tourists in historical cities of art and culture. This overall objective is undertaken in two main steps: reinforcing the community bounds via collective participation in both creating community knowledge and optimizing access to it. Once the local community’s sense of belonging has been reinforced, sharing its knowledge with outside people will become more natural. In this paper first we present the various technological aspects, as well as where and how innovative technology can help local communities. Then we present the context of experimentation, future plans and current achievements in one of the two project settings: Venice.


2009 ◽  
Vol 147-149 ◽  
pp. 308-313
Author(s):  
Vytautas Barzdaitis ◽  
Vytautas Žemaitis ◽  
Rimantas Didžiokas ◽  
Pranas Mažeika

This paper deals with condition monitoring and vibration diagnostics of vertical sulphuric acid pumps running in continuous long term operation mode. The task of experimental testing and theoretical modeling – to increase reliability and efficiency of vertical pumps through elimination of rotor lateral vibration. On the basis of experimental testing results analysis the dynamic model was designed and simulated. The reason of high vibration of the pump rotor is the rotor technological bow and cavitation phenomenon that take place in the pump.


2017 ◽  
Vol 185 ◽  
pp. 160-174 ◽  
Author(s):  
Grzegorz Lesiuk ◽  
Mieczysław Szata ◽  
José A.F.O. Correia ◽  
A.M.P. De Jesus ◽  
Filippo Berto

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