Low Outgassing Characteristics of Rogers Laminates Approved for Spacecraft Applications

2021-04-06
RT/duroid® composites of PTFE with inorganic fiber filler and TMM® temperature stable hydrocarbon composites, have out-standing resistance to outgassing, according to data compiled by NASA test procedure SP-R-0022A. Reinforced PTFE lami-nates and PTFE composites are thermally stable and have universal outgassing characteristics. Similarly, TMM temperature stable laminates are highly crosslinked hydrocarbons which do not evolve gases or by-products at elevated temperatures. Test data shown in the table (back page) were obtained on specimens etched free of copper foil.
The test procedure2 consists of vacuum heating 100 to 300 mg specimens in a copper enclosure, with exit port at 125°C for 24 hours with a chrome-plated collector maintained at 25°C located 12.7 mm from the exit port. The Total Mass Loss (TML), Collected Volatile Condensable Materials (CVCM) and Water Vapor Recovered (WVR) are expressed as a % of the original speci-men mass. In general, materials exhibiting a TML of less than 1.0% and CVCM less than 0.1% are considered “low outgassing” and suitable for space applications. Note that all Rogers laminate materials listed meet these requirements.

ROGERS

AD1000™AD350A™CLTE™CLTE-AT™CLTE-MW™CLTE-XT™CuClad® 217CuClad 233CuClad 250CuClad 6250CuClad 6700DiClad® 880DiClad 870DiClad 527IM™ -880IM-870IM-300IsoClad® 917IsoClad 933MAGTREX™RO3003™RO3006™RO3010™RO3210™RO4003C™RO4350B™RO4360G2™RO4450F™RO4460G2™RO4730G3™RO4835™RT/duroid® 5870RT/duroid 5880RT/duroid 5880LZRT/duroid 6002RT/duroid 6006RT/duroid 6010.2LMRT/duroid 6202RT/duroid 6202PRRT/duroid 6035HTCTMM® 3TMM 4TMM 10RT/duroid®

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12.17.20

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