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Remote Recession Measurements of Wire-Seeded PICA Samples in an Arc-Jet Flow

Title: Remote Recession Measurements of Wire-Seeded PICA Samples in an Arc-Jet Flow
Authors: Stackpoole, Margaret; Winter, Michael; Danehy, Paul M.; Splinter, Scott; Butler, Bradley D.
Source: CASI
Publication Year: 2018
Collection: NASA Technical Reports Server (NTRS)
Subject Terms: Spacecraft Design; Testing and Performance
Subject Geographic: Unclassified; Unlimited; Publicly available
Description: Various methods for remote recession sensing of PICA have been developed and several seeding methods have been tested. The most recent method involved seeding the ablator with wires fed to the sample from the backside with a defined amount of PICA left towards the upstream front of the sample. This seed method mimics the installation of in-depth thermocouples as they are frequently used in ground testing and flight. Arc-jet tests were conducted in the NASA Langley HYMETS facility at a heat flux of 320 W/sq.cm. The emission of the post-shock layer was observed in spectral resolution from the side along an optical axis perpendicular to the arc-jet flow and from the front, looking at the sample surface from an upstream position. Various metallic seed materials with different melting points were used. In addition to the emission spectroscopy measurements, the samples were monitored during the tests through pyrometry and videography. The time resolved response of the seeded material is described and compared to earlier tests with different seeding methods. The combination of seed materials was found to be critical for the selection of emission signatures characteristic for the material recession which can be isolated in the final emission spectra.
Document Type: other/unknown material
File Description: application/pdf
Language: unknown
Relation: Document ID: 20180006197; http://hdl.handle.net/2060/20180006197
Availability: http://hdl.handle.net/2060/20180006197
Rights: Copyright, Public use permitted
Accession Number: edsbas.2CB4512
Database: BASE