The design of an optical housing for laser telecommunication in space is improved by topology optimization. Different mechanical and thermal boundary conditions are considered while minimizing the overall weight of the housing. As a proof-of-concept study, a complex and lightweight housing is made by additive manufacturing with the aluminium silicon alloy AlSi40. Post processing steps include a thermal treatment, cleaning and a mechanical machining process. Final characterization tests include the evaluation of material characteristics by tensile tests, a computed tomography scan and a CMM measurement. The final shock and vibrational test is used to proof the performance of the housing for future space applications
The applications of Additive Manufacturing have significantly increased in many industrial areas, in...
AbstractAdditive Manufacturing (AM) is a manufacturing process through which a 3D component is produ...
This study investigates the application of topological optimization in conjunction with additive ma...
Three case studies utilizing topology optimization and Additive Manufacturing for the development of...
Fraunhofer EMI is currently designing a 12U nanosatellite. The mission is called ERNST (Experimental...
Topology optimization is a powerful tool in lightweight design and has become increasingly popular w...
As one of the most-critical components in space optical cameras, the performance of space mirrors di...
Low product weight in combination with high mechanical properties play a crucial role in reducing op...
Due to its high design freedom and flexibility, Additive Manufacturing is often used as an alternati...
One of the emerging technologies in recent years is additive manufacturing. It promises unprecedente...
Metal mirrors are used for spaceborne optical systems, such as telescopes and spectrometers. In addi...
The applications of Additive Manufacturing have significantly increased in many industrial areas, in...
The applications of Additive Manufacturing have significantly increased in many industrial areas, in...
The applications of Additive Manufacturing have significantly increased in many industrial areas, in...
Optical systems in high precision equipment become increasingly more complex due to the raising numb...
The applications of Additive Manufacturing have significantly increased in many industrial areas, in...
AbstractAdditive Manufacturing (AM) is a manufacturing process through which a 3D component is produ...
This study investigates the application of topological optimization in conjunction with additive ma...
Three case studies utilizing topology optimization and Additive Manufacturing for the development of...
Fraunhofer EMI is currently designing a 12U nanosatellite. The mission is called ERNST (Experimental...
Topology optimization is a powerful tool in lightweight design and has become increasingly popular w...
As one of the most-critical components in space optical cameras, the performance of space mirrors di...
Low product weight in combination with high mechanical properties play a crucial role in reducing op...
Due to its high design freedom and flexibility, Additive Manufacturing is often used as an alternati...
One of the emerging technologies in recent years is additive manufacturing. It promises unprecedente...
Metal mirrors are used for spaceborne optical systems, such as telescopes and spectrometers. In addi...
The applications of Additive Manufacturing have significantly increased in many industrial areas, in...
The applications of Additive Manufacturing have significantly increased in many industrial areas, in...
The applications of Additive Manufacturing have significantly increased in many industrial areas, in...
Optical systems in high precision equipment become increasingly more complex due to the raising numb...
The applications of Additive Manufacturing have significantly increased in many industrial areas, in...
AbstractAdditive Manufacturing (AM) is a manufacturing process through which a 3D component is produ...
This study investigates the application of topological optimization in conjunction with additive ma...