タイトル | Composite Overwrapped Pressure Vessels (COPV) Stress Rupture Test |
本文(外部サイト) | http://hdl.handle.net/2060/20110011347 |
著者(英) | Greene, Nathanael; Russell, Richard; Flynn, Howard; Forth, Scott; Kezian, Michael; Varanauski, Don; Yoder, Tommy; Woodworth, Warren |
著者所属(英) | NASA Johnson Space Center |
発行日 | 2009-05-04 |
言語 | eng |
内容記述 | One of the major concerns for the aging Space Shuttle fleet is the stress rupture life of composite overwrapped pressure vessels (COPVs). Stress rupture life of a COPV has been defined as the minimum time during which the composite maintains structural integrity considering the combined effects of stress levels and time. To assist in the evaluation of the aging COPVs in the Orbiter fleet an analytical reliability model was developed. The actual data used to construct this model was from testing of COPVs constructed of similar, but not exactly same materials and pressure cycles as used on Orbiter vessels. Since no actual Orbiter COPV stress rupture data exists the Space Shuttle Program decided to run a stress rupture test to compare to model predictions. Due to availability of spares, the testing was unfortunately limited to one 40" vessel. The stress rupture test was performed at maximum operating pressure at an elevated temperature to accelerate aging. The test was performed in two phases. The first phase, 130 F, a moderately accelerated test designed to achieve the midpoint of the model predicted point reliability. The more aggressive second phase, performed at 160 F was designed to determine if the test article will exceed the 95% confidence interval of the model. This paper will discuss the results of this test, it's implications and possible follow-on testing. |
NASA分類 | Structural Mechanics |
レポートNO | KSC-2009-025 |
権利 | Copyright, Distribution as joint owner in the copyright |
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