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Acknowledgements | ||
Introduction | ||
Organizing Committee | ||
1 | Monte Carlo Computational Modeling of the Energy Dependence of Atomic Oxygen Undercutting of Protected Polymers | 1 |
2 | Dynamics of Atomic-Oxygen-Induced Degradation of Materials | 15 |
3 | Generalization of the Predictive Model of Erosion of Carbon-Based Materials by Atomic Oxygen | 33 |
4 | Spectroscopic Ellipsometry Characterization of Polymers Modified by Atomic Oxygen and Ultraviolet Radiation | 51 |
5 | Effect of Atomic Oxygen Exposures on the Tribological Properties of Molybdenum Disulfide Lubricants | 73 |
6 | Influence of Shielding Upon the Structure and Properties of Polymer Composite Materials, Exposed on the Surface of the Mir Orbital Complex | 85 |
7 | Cleanliness Support of Vehicle Fairings for Spacecraft | 95 |
8 | In situ XPS Studies of Kapton Exposed to 5 eV Atomic Oxygen | 103 |
9 | A Low Cost, Lightweight Reusable Sensor for Atomic Oxygen Detection | 115 |
10 | Large-Scale ECR-CVD Preparation of Integrated Thin-Film Structures for Space Applications | 125 |
11 | Non-Silicone Inorganic Polymer-Based Coatings for Atomic Oxygen Protection in LEO - Part 2 | 137 |
12 | Research Aspects of Scaling Up the Implantox Technology for Protection of Polymers in Space | 145 |
13 | A Comparison of Space and Ground-Based Facility Environmental Effects for FEP Teflon | 165 |
14 | Evaluation of Low Earth Orbit Environmental Effects on International Space Station Thermal Control Materials | 181 |
15 | Some Aspects of the Degradation of FEP Teflon Material Under the Action of VUV, the Sun and Ground Test VUV Facilities | 197 |
16 | Evaluation of COF MDPS Chromic Acid Anodization in LEO Environment | 211 |
17 | A Database for the Selection of Surfaces and Materials for Space and Ground-based Applications | 229 |
18 | Thermal Control Materials and Coatings Currently Being Developed in France for Use in Low Earth Orbit | 235 |
19 | Modification of Thermal Control Paints by Photosil Technology | 243 |
20 | Simulated Solar Flare X-Ray and Thermal Cycling Durability Evaluation of HST Thermal Control Candidate Replacement Materials | 253 |
21 | Radiation-Induced Effects in SiO[subscript 2] Protective Coatings on Polymeric Spacecraft Materials | 281 |
22 | Influence of Electron and Proton Fluxes on Optical Properties of Protective Enamel | 291 |
23 | Mateoroid Hazard in the LEO Space Environment | 292 |
24 | Characterizing the Annual Meteoroid Streams | 305 |
25 | Oxidation Kinetics of VB Group Metals by Atomic and Molecular Oxygen | 331 |
26 | The New Approach in Developing Methods for Better Protection of Materials and Structures from LEO Space Environment | 339 |
Author Index | 351 | |
Subject Index | 353 |
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Add Protection of Space Materials from the Space Environment, The IMCPSE-4 meeting continued the discussions started in 1992 when this conference series was started. The proceedings of IMCPSE-4 conference contain the latest developments in the area of the effects of the space environment on materials and structures , Protection of Space Materials from the Space Environment to the inventory that you are selling on WonderClubX
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Add Protection of Space Materials from the Space Environment, The IMCPSE-4 meeting continued the discussions started in 1992 when this conference series was started. The proceedings of IMCPSE-4 conference contain the latest developments in the area of the effects of the space environment on materials and structures , Protection of Space Materials from the Space Environment to your collection on WonderClub |