Loading...
Please wait, while we are loading the content...
Similar Documents
An experimental investigation of silicone-to-metal bond strength in composite space docking system seals
| Content Provider | NASA Technical Reports Server (NTRS) |
|---|---|
| Author | Siamidis, John Larkin, Elizabeth M. G. Gaier, James R. |
| Copyright Year | 2010 |
| Description | The National Aeronautics and Space Administration (NASA) is currently developing a new universal docking mechanism for future space exploration missions called the Low Impact Docking System (LIDS). A candidate LIDS main interface seal design is a composite assembly of silicone elastomer seals vacuum molded into grooves in an electroless nickel plated aluminum retainer. The strength of the silicone-tometal bond is a critical consideration for the new system, especially due to the presence of small areas of disbond created during the molding process. In the work presented herein, seal-to-retainer bonds of subscale seal specimens with different sizes of intentional disbond were destructively tensile tested. Nominal specimens without intentional disbonds were also tested. Tension was applied either uniformly on the entire seal circumference or locally in one short circumferential length. Bond failure due to uniform tension produced a wide scatter of observable failure modes and measured load-displacement behaviors. Although the preferable failure mode for the seal-to-retainer bond is cohesive failure of the elastomer material, the dominant observed failure mode under the uniform loading condition was found to be the less desirable adhesive failure of the bond in question. The uniform tension case results did not show a correlation between disbond size and bond strength. Localized tension was found to produce failure either as immediate tearing of the elastomer material outside the bond region or as complete peel-out of the seal in one piece. The obtained results represent a valuable benchmark for comparison in the future between adhesion loads under various separation conditions and composite seal bond strength. |
| File Size | 2174501 |
| Page Count | 19 |
| File Format | |
| Alternate Webpage(s) | http://archive.org/details/NASA_NTRS_Archive_20100039315 |
| Archival Resource Key | ark:/13960/t7dr7tx6m |
| Language | English |
| Publisher Date | 2010-10-01 |
| Access Restriction | Open |
| Subject Keyword | Composite Materials Cohesion Vulcanizing Failure Modes Elastomers Electroless Deposition Mechanical Properties Grooves Adhesion Photomicrography Tensile Strength Seals Stoppers Nickel Crew Exploration Vehicle Spacecraft Docking Bonding Silicones Loads Forces Ntrs Nasa Technical Reports ServerĀ (ntrs) Nasa Technical Reports Server Aerodynamics Aircraft Aerospace Engineering Aerospace Aeronautic Space Science |
| Content Type | Text |
| Resource Type | Technical Report |