DocumentCode :
2621602
Title :
The effect of current and speed on perimeter erosion in recovered armatures
Author :
Watt, Trevor ; Stefani, Francis
Author_Institution :
Inst. for Adv. Technol., Texas Univ., Austin, TX, USA
fYear :
2005
fDate :
25-28 May 2005
Firstpage :
429
Lastpage :
434
Abstract :
This paper describes a continuation of earlier reported work in which C-armatures were launched and recovered for the purpose of studying melt-wave erosion (MWE) damage on the contact surface of the trailing arms. The purpose of the experiments reported here is to begin linking experimental results to theoretical predictions of the erosion process. Specifically, we sought to test a claim made in many of the 2D analytical models of MWE that the speed of the erosion front should be proportional to velocity and to the square of current. To this end, we performed two series of tests in which velocity and current were varied while controlling other variables. Peak currents ranged from 400-1200 kA, and exit speeds ranged from 100-700 m/s. Results reported include mass and volume of eroded material measured by mechanical profilometry and qualitative observations of the damage. The erosion rates are in reasonable agreement with the scaling relations predicted by 2D theory. The erosion patterns, however, are qualitatively different from 2D predictions.
Keywords :
mass measurement; railguns; volume measurement; wear; 100 to 700 m/s; 2D analytical models; 2D predictions; 400 to 1200 kA; C-armatures; contact surface damage; erosion patterns; mechanical profilometry; melt-wave erosion; perimeter erosion; qualitative observations; recovered armatures; trailing arms; Analytical models; Arm; Joining processes; Mechanical variables control; Paper technology; Performance evaluation; Predictive models; Railguns; Testing; Velocity control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Launch Technology, 2004. 2004 12th Symposium on
Print_ISBN :
0-7803-8290-0
Type :
conf
DOI :
10.1109/ELT.2004.1398118
Filename :
1398118
Link To Document :
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