Photographs, figures and models
Credits.
Photographs
- Digit.AM printer, inertial sensor and camera views: photographs of the instrumented printer developed during the site owner’s doctoral work at AMVALOR and Arts et Métiers, supplied by the site owner.
- Portrait: supplied by the site owner.
Figures
- DSC thermogram and embedded-probe temperatures: redrawn from the author’s thesis figures (Arts et Métiers, 2024). The curves were digitised from the original plots; the transition temperatures are those printed on the original DSC plot.
- Accuracy of the kinematics-driven models (R²): redrawn from Table 1 of the author’s article in The International Journal of Advanced Manufacturing Technology (2026), doi:10.1007/s00170-026-19039-9.
- Glass-fibre polypropylene strength and strain-rate gain: redrawn from Table 4 of Composite Structures 278 (2021) 114713 and from Section 3.6.2 of Applied Composite Materials 29 (2022) 1959–1979, articles co-authored by the site owner.
Interactive models and the hero scene
The five-axis scene and the four science labs are original code written for this site. They compute simplified physical models in the browser; each lab states its assumptions and cites its sources. The static images shown without JavaScript are frames of the same models. The optimisation lab uses a synthetic response, not measured data.
Type
Newsreader and Roboto are self-hosted under the SIL Open Font License; licence copies are included alongside the font files.
En français
Les photographies de l’imprimante Digit.AM, de son capteur inertiel et des vues de caméras ont été fournies par Mohammad Hossein Nikooharf (AMVALOR, Arts et Métiers). Les courbes de DSC et de température ont été numérisées à partir des figures de sa thèse. Le graphique de précision des modèles reprend le tableau 1 de son article de 2026 (The International Journal of Advanced Manufacturing Technology) ; les graphiques sur le composite reprennent le tableau 4 de Composite Structures (2021) et la section 3.6.2 d’Applied Composite Materials (2022). La scène cinq axes et les quatre laboratoires interactifs sont du code original qui calcule des modèles physiques simplifiés ; le laboratoire d’optimisation utilise une réponse synthétique.