Accuracy of real time radiography burning rate measurement
by Olaniyi, Bisola, M.S., THE UNIVERSITY OF ALABAMA IN HUNTSVILLE, 2010, 83 pages; 1487680

Abstract:

The design of a solid propellant rocket motor requires the determination of a propellant's burning-rate and its dependency upon environmental parameters. The requirement that the burning-rate be physically measured, establishes the need for methods and equipment to obtain such data. A literature review reveals that no measurement has provided the desired burning rate accuracy. In the current study, flash x-ray modeling and digitized film-density data were employed to predict motor-port area to length ratio. The pre-fired port-areas and base burning rate were within 2.5% and 1.2% of their known values, respectively. To verify the accuracy of the method, a continuous x-ray and a solid propellant rocket motor model (Plexiglas cylinder) were used. The solid propellant motor model was translated laterally through a real-time radiography system at different speeds simulating different burning rates. X-ray images were captured and the burning-rate was then determined. The measured burning rate was within 1.65% of the known values.

 
AdviserMarlow Moser
SchoolTHE UNIVERSITY OF ALABAMA IN HUNTSVILLE
SourceMAI/ 49-03, p. , Jan 2011
Source TypeThesis
SubjectsAerospace engineering; Mechanical engineering
Publication Number1487680
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