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America's Safest Company. We use cookies and other tracking technologies to analyze and improve your user experience. These include: innovative and sustainable housing production, design, and construction; co-living and co-working hybrids; affordable housing and community development financing; institutional and regulatory frameworks; and international housing policy and development. The group establishes a base for building richer interdisciplinary teaching and practice as well as developing cross-disciplinary teams across campus and with institutional, governmental, and organizational partners.
Established in , CEH has recently undertaken an in-depth scan and analysis of faculty in Taubman College and across the University of Michigan to identify existing overlaps and gaps in housing research and creative practice. This work comes at a critical moment, as local, state, and federal governments look to address affordable housing through the lens of social justice and equity. The proposal centers the investigation on Wahnabezee, the largest city island public park in the U.
Wahnabezee, also known as Belle Isle, exists both as a real site and an imagined place, a fluid commons of sorts. Its insular nature has historically enabled narratives of belonging and exceptionalism, registering economic booms and crises and evolving notions of urban modernity, nature, and justice. Attending to the collaborative nature of the project, the formulation of the areas of focus builds on the network of regional partners and mission-driven organizations that are part of the Detroit River Story Lab.
While distinct and grounded in place and time, these two project components build on the premise that addressing the critical societal matters of our time demands new coalitions and modes of knowledge creation centered on the recognition of the diverse expertise and lived experiences of the communities we work with.
However, the process-inherent unsolved challenges posed by extrusion-based additive manufacturing of concrete such as weak interlayer bonding, high shrinkage, the challenge in the integration of reinforcement have inhibited innovation in large-scale structures and draws back the economic and feasible digitization of the concrete industry. To overcome these challenges, this collaborative research proposes Robotic Additive Spraying RAS technique as an alternative to extrusion-based 3d printing.
RAS i s a robotic-controlled manufacturing process that uses compressed air to spray and project material with pressure incrementally and layer by layer to create 3D concrete components.
In RAS, the high kinetic energy at impact produces a robust interlayer bond. The objective of this proposal is to 1 develop a prototypical robotic additive spraying system and framework with two spraying tool heads for fiber and mortar, 2 investigate the buildability through a fundamental understanding of the intertwined mechanisms between chemistry, printed filament layer solidification, 3D printing successive-layering-deposition process, and the interfacial interactions between printed layers that control the bonding mechanism.
Increased profitability by providing better leverage for negotiating liability insurance and Workers' Compensation premiums. Creation of a collaborative and positive relationship with OSHA.
What's New? Program Documents. Program Information.
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