High Cycle Fatigue (HCF) of turbine blades is a major cause of failure in turbochargers. In order to validate changes to blades intended to reduce fatigue failure, accurate measurement of blade dynamics is necessary. Strain gauging has limitations, so an alternative method is investigated. A description of the tip-timing method is given, applied to turbocharger testing. The advantages and disadvantages of laser probes are assessed. Examples of output data and interpretation are presented and compared with computer simulation. It is shown that laser tip-timing technology gives a more complete view of turbine vibration than the alternative measurement system
The Blade Tip-Timing is a well known non-contact measurement technique for the identification of the...
ABSTRACT Turbomachinery blade vibrations of sufficient amplitude cause High Cycle Fatigue, which red...
A turbomachine is a fundamental engineering apparatus meant to transfer energy between a rotor and a...
High Cycle Fatigue (HCF) has been established as the major common failure mode in the US Air Force l...
An important component within the jet engine in terms of vibration and high cycle fatigue (HCF) is ...
The vibration of turbomachinery blades is an important phenomenon to understand, observe and predict...
The vibration of turbomachinery blades is an important phenomenon to understand, observe and predict...
An important component within the jet engine in terms of vibration and high cycle fatigue (HCF) is t...
Abstract: Traditionally, rotor blade vibration response measurements have been made using strain gau...
NoThis paper presents and compares the most important and often used methods to measure turbine blad...
peer reviewedThe experimental determination of the vibration characteristics of rotating engine blad...
The experimental determination of the vibration characteristics of rotating engine blades is very im...
Blade Tip Timing (BTT) is a non-intrusive measurement technique that can be used to estimate the vib...
The Blade Tip-Timing is a well known non-contact measurement technique for the identification of the...
All turbomachinery blades experience vibration under operating conditions. Given that theoretical to...
The Blade Tip-Timing is a well known non-contact measurement technique for the identification of the...
ABSTRACT Turbomachinery blade vibrations of sufficient amplitude cause High Cycle Fatigue, which red...
A turbomachine is a fundamental engineering apparatus meant to transfer energy between a rotor and a...
High Cycle Fatigue (HCF) has been established as the major common failure mode in the US Air Force l...
An important component within the jet engine in terms of vibration and high cycle fatigue (HCF) is ...
The vibration of turbomachinery blades is an important phenomenon to understand, observe and predict...
The vibration of turbomachinery blades is an important phenomenon to understand, observe and predict...
An important component within the jet engine in terms of vibration and high cycle fatigue (HCF) is t...
Abstract: Traditionally, rotor blade vibration response measurements have been made using strain gau...
NoThis paper presents and compares the most important and often used methods to measure turbine blad...
peer reviewedThe experimental determination of the vibration characteristics of rotating engine blad...
The experimental determination of the vibration characteristics of rotating engine blades is very im...
Blade Tip Timing (BTT) is a non-intrusive measurement technique that can be used to estimate the vib...
The Blade Tip-Timing is a well known non-contact measurement technique for the identification of the...
All turbomachinery blades experience vibration under operating conditions. Given that theoretical to...
The Blade Tip-Timing is a well known non-contact measurement technique for the identification of the...
ABSTRACT Turbomachinery blade vibrations of sufficient amplitude cause High Cycle Fatigue, which red...
A turbomachine is a fundamental engineering apparatus meant to transfer energy between a rotor and a...