Lightweight parabolic mirrors for solar concentrators have been fabricated using carbon fiber reinforced polymer (CFRP) and a nanometer scale optical surface smoothing technique. The smoothing technique improved the surface roughness of the CFRP surface from ~3 μm root mean square (RMS) for as-cast to ~5 nm RMS after smoothing. The surfaces were then coated with metal, which retained the sub-wavelength surface roughness, to produce a high-quality specular reflector. The mirrors were tested in an 11x geometrical concentrator configuration and achieved an optical efficiency of 78% under an AM0 solar simulator. With further development, lightweight CFRP mirrors will enable dramatic improvements in the specific power, power per unit mass, achie...
The low areal weight requirements of telescopes in aerospace applications has driven the study on co...
Solar electricity is a promising energy technology for the future, and by using reflectors for conce...
Solar electricity is a promising energy technology for the future, and by using reflectors for conce...
Lightweight parabolic mirrors for solar concentrators have been fabricated using carbon fiber reinfo...
Lightweight parabolic mirrors for solar concentrators have been fabricated using carbon fiber reinfo...
Lightweight parabolic mirrors for solar concentrators have been fabricated using carbon fiber reinfo...
A novel active mirror concept based on carbon fiber reinforced polymer (CFRP) materials is presented...
Abstract As carbon fiber reinforced polymer (CFRP) material has been developed and demonstrated as a...
Within the frame of an R&D project, toughTrough GmbH (TT), Bremen, in a joint initiative with its pa...
In this work, we are aiming to reduce the mass of large precision mirrors for space missions by usin...
Materials for highly reflective surfaces for use in parabolic dish solar concentrators are discussed...
A process for fabricating a precise, diffraction- limited, ultra-lightweight, composite- material (m...
A lightweight solar concentrator of the reflecting parabolic or trough type is realized via a thin r...
A novel active mirror technology based on carbon fiber reinforced polymer (CFRP) substrates and repl...
A novel active mirror technology based on carbon fiber reinforced polymer (CFRP) substrates and repl...
The low areal weight requirements of telescopes in aerospace applications has driven the study on co...
Solar electricity is a promising energy technology for the future, and by using reflectors for conce...
Solar electricity is a promising energy technology for the future, and by using reflectors for conce...
Lightweight parabolic mirrors for solar concentrators have been fabricated using carbon fiber reinfo...
Lightweight parabolic mirrors for solar concentrators have been fabricated using carbon fiber reinfo...
Lightweight parabolic mirrors for solar concentrators have been fabricated using carbon fiber reinfo...
A novel active mirror concept based on carbon fiber reinforced polymer (CFRP) materials is presented...
Abstract As carbon fiber reinforced polymer (CFRP) material has been developed and demonstrated as a...
Within the frame of an R&D project, toughTrough GmbH (TT), Bremen, in a joint initiative with its pa...
In this work, we are aiming to reduce the mass of large precision mirrors for space missions by usin...
Materials for highly reflective surfaces for use in parabolic dish solar concentrators are discussed...
A process for fabricating a precise, diffraction- limited, ultra-lightweight, composite- material (m...
A lightweight solar concentrator of the reflecting parabolic or trough type is realized via a thin r...
A novel active mirror technology based on carbon fiber reinforced polymer (CFRP) substrates and repl...
A novel active mirror technology based on carbon fiber reinforced polymer (CFRP) substrates and repl...
The low areal weight requirements of telescopes in aerospace applications has driven the study on co...
Solar electricity is a promising energy technology for the future, and by using reflectors for conce...
Solar electricity is a promising energy technology for the future, and by using reflectors for conce...