RAMIREZ LEDESMA, ANA LAURA
INGENIERÍAS Y DESARROLLO TECNOLÓGICO · Nivel 1
Desde 2024 es Researcher (Full Time) en Hospital General de México
I am a prominent scientist and researcher who focuses my research efforts on addressing national and international problems by carrying out innovative developments that promote better social well-being. Despite my formation being related to the fundamentals of metallurgy and materials...
I am a prominent scientist and researcher who focuses my research efforts on addressing national and international problems by carrying out innovative developments that promote better social well-being. Despite my formation being related to the fundamentals of metallurgy and materials science, I have managed to collaborate and consolidate multidisciplinary research lines in the biomaterials field with high translation potential. This proactive collaboration has been extended to other universities with effectiveness.
My expertise includes a wide range of mechanical testing and microstructural characterization techniques. My deep understanding of process-structure-property relationships enables me to identify the root cause of failure in materials and devices. Also, I can design, fabricate, and process new alloy systems for several industrial sectors (biomaterials, petrochemicals/energy, and aeronautical/aerospace among others).
One of my best-developed competencies is the ability to link academia with private institutions through collaboration agreements that benefit both parties and most importantly: society.
| Nombre | ANA LAURA RAMIREZ LEDESMA |
|---|---|
| Área | INGENIERÍAS Y DESARROLLO TECNOLÓGICO |
| Campo | INGENIERÍAS Y DESARROLLO TECNOLÓGICO |
| Disciplina | TECNOLOGÍA METALÚRGICA |
| Especialidad | SOLIDIFICACION |
| CVU | 369509 |
| Institución | |
|---|---|
| Dependencia | HOSPITAL GENERAL DE MEXICO "DR. EDUARDO LICEAGA" |
| Entidad | CIUDAD DE MEXICO |
| Nivel | 1 |
| Vigencia | Inicio: 01/01/2023 |
| Fin: 31/12/2027 |
Últimas publicaciones Scopus
- 2026
- Designing low-density Co-based superalloys: Mechanical implications of coherent γ′ precipitation versus ordered β strengthening at high temperatures Journal of Alloys and Compounds · Vol. 1080 Article
- Mg and Cu Addition Effect on the As-Cast Hypoperitectic Zn-Ag-Based Bioabsorbable Alloy Metals · Vol. 16 Article
- 2024
- Chill-cast solidification of a peritectic Zn-10 Ag (+ 1.0 Mg) bioabsorbable alloy Materials Today Communications · Vol. 41 Article
- Evaluation of critical temperatures of as-cast Co-based superalloys as a function of alloying elements and their effect on microstructure Materials Today Communications · Vol. 41 Article
- 2023
- Introducing novel bioabsorbable Zn–Ag–Mg alloys intended for cardiovascular applications Materials Today Communications · Vol. 35 Article

