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Find similar grantsStructural and Architectural Engineering and Materials (SAEM) is sponsored by NSF. The SAEM program supports fundamental research for advancing knowledge and innovation in structural and architectural engineering and materials.
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Structural and Architectural Engineering and Materials (SAEM) | NSF - U.S. National Science Foundation Structural and Architectural Engineering and Materials (SAEM) Archived funding opportunity This document has been archived.
Important information for proposers and award recipients All proposals must be submitted in accordance with the requirements specified in the funding opportunity and in the Proposal & Award Policies & Procedures Guide (PAPPG) and its supplements . All NSF grants and cooperative agreements are subject to the applicable set of NSF award terms and conditions . NSF has updated its research security policies for NSF funded projects.
The overall goal of the Structural and Architectural Engineering and Materials (SAEM) program is to enable sustainable buildings and other structures that can be continuously occupied and/or operated during the structure’s useful life.
The SAEM program supports fundamental research for advancing knowledge and innovation in structural and architectural engineering and materials that promotes a holistic approach to analysis and design, construction, operation, maintenance, retrofit, and repair of structures.
For buildings, all components including the foundation-structure-envelope (the façade, curtain-wall, windows, and roofing) and interior systems (flooring, ceilings, partitions walls), are of interest to the program. The SAEM program encourages the integration of research with knowledge dissemination and activities that can lead to broader societal benefit for provision of sustainable structures.
Research in new engineering concepts and design paradigms for buildings that have significantly reduced dependence and interdependence on municipal infrastructure through, for example, building components that can aid in minimizing fresh water consumption or can promote self-heating-cooling-ventilating, is encouraged.
In addition, the program targets research in building systems that can be reconfigurable for rapid construction, deconstruction, and disassembly; repurposing; and reliable and resilient.
Research topics of interest for sustainable structures include the following: · Strategies for structures that over their lifecycle are cost-effective and efficiently use resources and energy through incorporating sustainable structural and architectural materials and systems; · Mitigation of material and structural deterioration due to fatigue, chemical interactions, and environmental factors (such as temperature, sunlight, water and moisture); · Advancement in physics-based computational modeling and simulation to aid in the design of multifunctional materials and systems in buildings, and to characterize the performance of sustainable buildings under service environments.
Within this programmatic focus, materials research of interest includes fundamental investigations into new sustainable structural and architectural materials that are multifunctional and integral to lifetime serviceability of the structure, and extend beyond conventional uses of mature or current infrastructure construction materials such as concrete, steel, and masonry.
Examples of research priorities are fundamental studies of biological and bio-inspired materials and systems, materials produced from waste and recycled materials and/or are easily recyclable, materials with low embedded carbon footprints, and smart materials and systems that change properties in responding to ambient environmental changes.
Parametric studies of commonly used construction materials are not appropriate for this or other CMMI programs. Materials research not specifically related to civil infrastructure should be submitted to the Materials Engineering and Processing (MEP) Program in CMMI or the Division of Materials Research in the Mathematical and Physical Sciences (MPS) Directorate.
Research is encouraged that integrates discoveries from other science and engineering fields, such as materials science, building science, mechanics of materials, dynamic systems and control, reliability, risk analysis, architecture, economics and human factors.
The program also supports research in sustainable foundation-structure-envelope-nonstructural systems and materials as described in the following report: National Science and Technology Council, High Performance Buildings; Final Report: Federal R & D Agenda for Net Zero Energy, High-Performance Green Buildings. Building Technology Research and Development (BTRD) Subcommittee, OSTP, U.S. Government, September 2008. http://www.
bfrl. nist. gov/buildingtechnology/documents/FederalRDAgendaforNetZeroEnergyHighPerformanceGreenBuildings.
pdf Sensors or sensing systems used for structural health monitoring and building environments must emphasize decision-making systems; however, research for new sensor and sensing technologies and data collection should be submitted to other programs.
Proposals that focus on the performance and mitigation of structures subjected to natural hazards, such as earthquakes, windstorms (tornadoes and hurricanes), tsunamis, and landslides, should be submitted to the Engineering for Natural Hazards (ENH) Program. Research addressing blast loads and fire effects on materials and building systems and data-enabled science and engineering are not supported by SAEM.
Research on pavement materials, bridge materials and structures, and nuclear power plant and wind energy infrastructure and materials is not supported by this program. Awards made through this program Browse projects funded by this program Map of recent awards made through this program Directorate for Engineering (ENG) Division of Civil, Mechanical and Manufacturing Innovation (ENG/CMMI)
According to the current listing, eligibility includes: Individuals or groups conducting fundamental research in structural and architectural engineering and materials. Research should promote sustainable buildings and structures. Confirm the full requirements in the official notice before applying.
Structural and Architectural Engineering and Materials (SAEM) is funded by NSF. Verify program details on the funder's official page before applying.
Start from the official opportunity page linked in this listing — it carries the sponsor's submission instructions.
Structural and Architectural Engineering and Materials (SAEM) is sponsored by U.S. National Science Foundation (NSF). The SAEM program supports fundamental research for advancing knowledge and innovation in structural and architectural engineering and materials that promotes a holistic approach to analysis and design, construction, operation, maintenance, retrofit, and repair of structures. This includes research in new engineering concepts and design paradigms for buildings with significantly reduced dependence on municipal infrastructure through, for example, building components that can aid in minimizing fresh water consumption or can promote self-heating-cooling-ventilating. For buildings, all components including the foundation-structure-envelope (the façade, curtain-wall, windows, and roofing) are of interest.
Coordination of the European software-defined vehicle platform is sponsored by European Commission — Horizon Europe. Expected Outcome: Proposals are expected to contribute to the following outcomes: Steer a European agenda to catalyse the development of a full software defined and hardware-enabled vehicle AD stack “built in Europe”, from onboard-compute architecture up to software in-vehicle up to the cloud. Establish structured intersectoral linkages between software, AI/data, hardware and deployment actors, ensuring that architectural decisions in the European AD stack are aligned across computing platforms, AI models, validation frameworks and real-world deployment environments. Promote a European R&I roadmap establishing pathways for the accelerated development of a European AI-powered AD stack, notably in close liaison with the relevant ECAVA Working Groups and relevant OSS initiatives. Ensure the engagement of key stakeholders across the Automotive value chain (including relevant OSS initiatives) toward an open-source software autonomous driving stack, including required industrial partners (such as OEMs, suppliers, tool-providers), and innovative R&I stakeholders (RTOs, universities, start-ups. If useful, already existing OSS AD stack initiatives together with the reference stacks (as S-CORE) from the Digital vehicle platform initiative playing an important role. Promote the cross-pollination of a collaborative ecosystem and testing infrastructure for an Open Source (OS) AD SW stack among industry, Member States, road operators and the EU in line with the Chips Act and AI Act. Support coordination of relevant actions on automotive hardware and software in the Chips JU the CCAM, and flagship actions in Member States partnership towards a European AD stack and ensure coherence and complementarity of newly emerging actions. Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Digital, Industry and Space
TCUP lists eight funding tracks and roughly $10.3M a year, but the October 14, 2026 deadline applies to only three of them — CHAI, Pre-TI, and TCUP Partnerships — and each carries a restriction that disqualifies most applicants. Here is the track-by-track math.
Read articleNSF 26-513 makes roughly $100 million available for up to 10 State and Regional AI Infrastructure Hubs at $4M to $12M each over five years. One award per state or multi-state region. One proposal per organization. And NSF is not buying you GPUs — it funds the coordination, the workforce and the faculty training, while the compute has to come from partners you have to already have.
Read articleAs of September 12, NSF had obligated $6.3 billion across 6,200 grants versus $8.1 billion and 8,600 last year. AHRQ has made 61 awards. Judge Allison Burroughs ordered the government to report by September 28 on whether IES will obligate $180 million before it expires. Here is what actually happens to the money on October 1 — and what it means for your FY2027 application.
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