The purpose of this research was to validate the structural integrity of the Rigidizable Inflatable Get-Away-Special Experiment (RIGEX) and make appropriate improvements to the design, motivated by static and dynamic analysis results. RIGEX is designed to advance the use of rigidizable inflatable structures in the space environment by providing three sets of on-orbit test data on the structural characteristics of three thermoplastic composite tubes. This thesis discusses the RIGEX structural analysis. The term structural analysis refers to the development of a detailed finite element model and the tests for which the model was used. The finite element model provided an acceptable estimation of RIGEX\u27s natural frequencies, the structural ...
The use of inflatable structures has often been proposed for aerospace and planetary applications. T...
NASA is developing ultra-lightweight structures technology for communication antennas for space miss...
Inflatable structures provide a significant volume savings for future NASA deep space missions. The ...
The Air Force Institute of Technology has developed the Rigidizable Inflatable Get-Away-Special Expe...
Many recent space technology concepts require large space structures such as solar arrays and large ...
As space structures grow in size and complexity, their weight and cost increase considerably. The us...
The purpose of this research is to support the final development of the Rigidizable Inflatable Get-A...
The Rigidizable Inflatable Get-Away-Special Experiment is a Space Shuttle experiment that will study...
The Rigidizable Inflatable Get-Away-Special EXperiment (RIGEX) Space Shuttle experiment was run succ...
Inflatable, rigidizable structures provide a solution to reduce the costs associated with design, fa...
AFIT is in the process of designing a Space Shuttle experiment designated as the Rigidized Inflatabl...
The purpose of this research is to complete the building, testing, verification, and qualification o...
The Hypersonic Inflatable Aerodynamic Decelerator (HIAD) system being developed by the National Aero...
This paper details the results of an initial study to develop a certification plan for human-rated i...
The state of the design art for inflated structures applicable to reentry vehicles is discussed. Inc...
The use of inflatable structures has often been proposed for aerospace and planetary applications. T...
NASA is developing ultra-lightweight structures technology for communication antennas for space miss...
Inflatable structures provide a significant volume savings for future NASA deep space missions. The ...
The Air Force Institute of Technology has developed the Rigidizable Inflatable Get-Away-Special Expe...
Many recent space technology concepts require large space structures such as solar arrays and large ...
As space structures grow in size and complexity, their weight and cost increase considerably. The us...
The purpose of this research is to support the final development of the Rigidizable Inflatable Get-A...
The Rigidizable Inflatable Get-Away-Special Experiment is a Space Shuttle experiment that will study...
The Rigidizable Inflatable Get-Away-Special EXperiment (RIGEX) Space Shuttle experiment was run succ...
Inflatable, rigidizable structures provide a solution to reduce the costs associated with design, fa...
AFIT is in the process of designing a Space Shuttle experiment designated as the Rigidized Inflatabl...
The purpose of this research is to complete the building, testing, verification, and qualification o...
The Hypersonic Inflatable Aerodynamic Decelerator (HIAD) system being developed by the National Aero...
This paper details the results of an initial study to develop a certification plan for human-rated i...
The state of the design art for inflated structures applicable to reentry vehicles is discussed. Inc...
The use of inflatable structures has often been proposed for aerospace and planetary applications. T...
NASA is developing ultra-lightweight structures technology for communication antennas for space miss...
Inflatable structures provide a significant volume savings for future NASA deep space missions. The ...