Complex optical devices including aspherical focusing mirrors, solar concentrator arrays, and immersion lenses were 3D printed using commercial technology and experimentally demonstrated by evaluating surface roughness and shape. The as-printed surfaces had surface roughness on the order of tens of microns. To improve this unacceptable surface quality for creating optics, a polymer smoothing technique was developed. Atomic force microscopy and optical profilometry showed that the smoothing technique reduced the surface roughness to a few nanometers, consistent with the requirements of high-quality optics, while tests of optical functionality demonstrated that the overall shapes were maintained so that near theoretically predicted operation ...
3D printers are becoming increasingly common in homes and libraries across the country. With it come...
We have demonstrated some facile ways to fabricate the large area polymer surfaces with varying roug...
The added capabilities of Additive Manufacturing (AM) while processing metallic components have revo...
The presented paper deals with the issue of smoothing parts produced using FFF 3D printing technolog...
The surface quality of optical lenses is highly required in imaging functions. Normally, ultra-preci...
International audience3D printing, also called additive manufacturing, offers a new vision for optic...
A simple and efficient process for fabricating customized aspheric lenses is reported, in which a st...
In this work, we present the results of using a commercially available SLA printer for the fabricati...
We present an analysis of the shape, surface quality, and imaging capabilities of custom three-dimen...
Surface roughness is gaining increasing recognition in the processing design methods of additive man...
An approach to rapidly produce high quality polymer surface topographies from numerically generated ...
Superpolished optical flats with high spatial frequency roughness below 0.1 nm have been commerciall...
Tremendous optical elements have been designed for more functionalities. However, the complex optica...
3D printing of optics has gained significant attention in optical industry, but most of the research...
Additive manufacturing (AM) is a set of processes that build a three-dimensional part by additively ...
3D printers are becoming increasingly common in homes and libraries across the country. With it come...
We have demonstrated some facile ways to fabricate the large area polymer surfaces with varying roug...
The added capabilities of Additive Manufacturing (AM) while processing metallic components have revo...
The presented paper deals with the issue of smoothing parts produced using FFF 3D printing technolog...
The surface quality of optical lenses is highly required in imaging functions. Normally, ultra-preci...
International audience3D printing, also called additive manufacturing, offers a new vision for optic...
A simple and efficient process for fabricating customized aspheric lenses is reported, in which a st...
In this work, we present the results of using a commercially available SLA printer for the fabricati...
We present an analysis of the shape, surface quality, and imaging capabilities of custom three-dimen...
Surface roughness is gaining increasing recognition in the processing design methods of additive man...
An approach to rapidly produce high quality polymer surface topographies from numerically generated ...
Superpolished optical flats with high spatial frequency roughness below 0.1 nm have been commerciall...
Tremendous optical elements have been designed for more functionalities. However, the complex optica...
3D printing of optics has gained significant attention in optical industry, but most of the research...
Additive manufacturing (AM) is a set of processes that build a three-dimensional part by additively ...
3D printers are becoming increasingly common in homes and libraries across the country. With it come...
We have demonstrated some facile ways to fabricate the large area polymer surfaces with varying roug...
The added capabilities of Additive Manufacturing (AM) while processing metallic components have revo...