REG NASA-LLIS-0903-2000 Lessons Learned High Energy Spectroscopic Imager Test Mishap.pdf
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1、Lessons Learned Entry: 0903Lesson Info:a71 Lesson Number: 0903a71 Lesson Date: 2000-05-10a71 Submitting Organization: JPLa71 Submitted by: Dennis KrossSubject: High Energy Spectroscopic Imager Test Mishap Abstract: HESSI: The structural qualification test, a sine-burst test on a shaker table, subjec
2、ted the HESSI spacecraft to a major overtest condition that resulted in significant structural damage to the spacecraft. Recognize that environmental testing carries inherent risks. Proactively maintain and track the mechanical health of test facilities, and upgrade them as necessary. Employ “canned
3、” tests for trending. Evaluate critical control system response data real-time during vibration testing (but prior to sine-burst). Prior to test, perform a vibration facility validation test for each planned test series that is representative of the actual test conditions. Provide for self-checks. D
4、efine test requirements in the test plan for each test, and ensure test operators have adequate data and training.Description of Driving Event: The High Energy Spectroscopic Imager (HESSI) spacecraft primary mission objective is to explore the basic physics of particle acceleration and explosive ene
5、rgy release in solar flares. The HESSI spacecraft was scheduled for a July, 2000, launch on a Pegasus vehicle as part of the Small Explorer Program (SMEX). On March 21, 2000, the HESSI spacecraft was being subjected to a series of vibration tests at JPL as a part of its flight certification program.
6、 The structural qualification test, a sine-burst test on a shaker table, subjected the spacecraft to a major overtest condition that resulted in significant structural damage to the spacecraft. The incident has been designated as a Class A mishap since the damage exceeded $1 million.A sine-burst tes
7、t is a quasi-static load simulation technique. The shaker table in this incident was well over 40 years of age. The fatigue life characteristics of such shaker tables are unknown.The root cause of the overtest condition was the mechanical binding (“stiction“ or static friction) between the slip tabl
8、e and the granite mass. It resulted from physical contact between a portion of the Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-slip table and the granite mass caused by a mechanical failure in the shakers support structure. The stiction caused th
9、e shaker system to present highly non-linear gain characteristics to the control system making it impossible for the controller to calculate an appropriate forcing function.This particular sine-burst was leading to a higher level qualification test. The resulting overtest level was about 10x that pl
10、anned for this test, but only about 2.5X the final qualification level.Contributing Factors Identified by the Review Board:1. At some facilities, older test equipment may have time-related failure modes unknown to the users.2. Misalignment caused the slip table to exhibit non-linear behavior in that
11、 it would bind at low levels of force input.3. The test personnel did not have existing knowledge that data were available to assess the quality of the transfer function calculated from the self-check prior to initiating the sine-burst test. Post-test review of the transfer function used to generate
12、 the shaker drive signal for the test and examination of the drive voltage indicated that the test setup was not operating as expected and that an overtest could occur.4. A significant contributing factor to the mishap was the lack of a facility validation test using the sine-burst on the shaker tab
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