Instituto de Materiales Avanzados para la Manufactura Sostenible
At Tec de Monterrey, state of the art knowledge and research about advanced materials and manufacturing models are the best way to resolve the enormous challenges that have resulted from the current development model.
We want to contribute to a carbon-neutral economy through the discovery, development, and creation of advanced materials to achieve sustainable manufacturing.
At IAMSM, our purpose is to forge cutting-edge scientific and technological knowledge, offering insightful analyses, innovative ideas, and solutions that propel a sustainable production model.
Through interdisciplinary collaboration, we generate advanced materials, pioneering manufacturing processes, and technology-based businesses while advocating for supportive public policies.

Our vision extends beyond innovation; we envision a future where sustainable manufacturing is not just a practice but a global standard. We strive to be the catalysts for a paradigm shift in the industry, leading towards a harmonious coexistence between technological progress and ecological preservation.
2022
Creation of the Institute and first International Conference
2023
Additive Manufacturing Core Lab Inauguration
Strategic Partners: Southwest, MIT, NTU, Alberta
2024
10 Professors Top 500 LATAM
2030
LATAM Top Institute for research and collaboration
A través de la transformación, el IAMSM dirige su enfoque hacia seis áreas interdisciplinarias, cada una representa un concepto de innovación en busca de la manufactura sostenible.
Las áreas de impacto sirven como la brújula que guía nuestra búsqueda de un cambio transformador.

Revolutionizing creation through precision and efficiency in 3D printing.

Smart Materials
Intelligent materials adapting, pushing boundaries in functionality & design.

Sustainable Plastics
Reshaping materials with eco-friendly alternatives for a sustainable future.

Biowaste Management
Transforming waste into valuable resources, embracing circular economy principles.

CO2 Products and Capture
Harnessing CO2 for positive environmental impact, beyond mere mitigation.

Digital Technologies
Harmonizing tech and sustainability for accelerated eco-friendly manufacturing solutions.

Liderazgo en el Instituto
Nuestro Instituto opera en la vanguardia de la ciencia de materiales, impulsando la innovación en nueve áreas clave de investigación, desde materiales ligeros e inteligentes pioneros hasta procesos de manufactura innovadora y tecnologías habilitadoras. Estamos comprometidos con la investigación colaborativa, nuestro enfoque garantiza una integración perfecta entre unidades, fomentando la sinergia interdisciplinaria para soluciones transformadoras.
ADVANCED MATERIALS
- Lightweight Materials
- Smart Materials
- Biopolymers
MANUFACTURING PROCESSES FOR ADVANCED MATERIALS
- High-Performance Manufacturing
- Sensing and Smart Manufacturing
ADVANCED MATERIALS ENABLING TECHNOLOGIES
- For Rapid Material Discovery and Development
- For Process Optimization and Redesign
STRATEGIC PROJECTS
- CO2 Capture, Utilization, and Mitigation
- Bioprocesses
Colaboraciones Industriales
Desde gigantes de la industria hasta innovadores disruptores, nuestra red colaborativa es un testimonio de la dedicación compartida al progreso transformador y la búsqueda colectiva de un futuro más sostenible.
Colaboraciones académicas
Nuestras alianzas estratégicas abarcan instituciones académicas líderes, tanto a nivel nacional como internacional. Juntos, impulsamos la innovación y avanzamos en prácticas de manufactura sostenible a través de asociaciones de investigación colaborativa para enfrentar los desafíos más urgentes que enfrenta nuestro mundo hoy.
Learn about the technological challenges and support policies necessary to strengthen the productive chains required by nearshoring investments in Mexico.
Download the report here (spanish version)
Integrated Measuring and Data Analysis Framework for Sustainable Manufacturing >
Chemical treatment for rubber waste to recycle by degradation and obtain sustainable products >
Multivariable milling tool design based on Machine Learning techniques >
Clustering Cardiopulmonary Exercise Tests Results for Personalized E-bike Training >
Implementation of a Robotic Arm for Manufacturing Analysis Using Image Acquisition and Processing for Tracking Moving Objects >
Tailored Industrial Solar Solutions: Enhancing Safety and Efficiency through Generative AI >
Synthesisand Therapeutic Applications of Mesoporous Silica Nanoparticles >
Enhancing Agricultural Efficiency with AtmosTrace >
Innovative Development of Sustainable Carbon Fiber Composites >
Sustainable ABS filament development for 3D printing by Fused Deposition Modeling (FDM) >
