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Cross-Laminated Timber Panels and Robotic Assembly in Sustainable Urban Housing

Authors:
Athina Athiana, Mario Santaniello, Evangelia Triantafilla
Cross-Laminated Timber Panels and Robotic Assembly in Sustainable Urban Housing

Project in-detail

Utilizing advanced robotic assembly techniques and cross-laminated timber panels, this innovative housing solution adapts to the changing needs of urban residents while promoting sustainability and community engagement.
5 key facts about this project
01
Utilizes advanced robotic assembly techniques for increased precision and efficiency in construction.
02
Incorporates cross-laminated timber panels for enhanced structural integrity and sustainability.
03
Features charred wooden shingles that promote fire resistance while creating an aesthetically pleasing exterior.
04
Designed with a bent A-frame structure to optimize natural light and space utilization within units.
05
Offers modular flexibility allowing residents to reconfigure living spaces according to evolving needs.
The project focuses on the Restock Modular Adaptive System (ReMAS), an innovative architectural initiative designed to address the pressing issue of affordable housing in urban environments, particularly in London. This project represents a thoughtful response to the complex challenges faced by modern cities, including rising housing costs and evolving demographic needs. By emphasizing adaptability and sustainability, ReMAS redefines how architecture can serve its inhabitants and the surrounding community.

At its core, ReMAS functions as a modular housing solution that can be easily configured to meet diverse living requirements. The project employs a prefabricated system that allows for flexible assembly, enabling users to modify their living spaces as necessary over time. This adaptability is not just a practical response to changing household sizes; it also promotes a sense of individuality among residents, as they can customize their environments to reflect personal needs and preferences.

The important parts of the project include the modular units themselves, designed to be structurally sound while also aesthetically pleasing. These components are created using lightweight and durable materials, which contribute to the overall efficiency of the construction process. The use of monocoque structures minimizes material waste, showcasing a commitment to sustainable building practices. The integration of robotic technology for the assembly and shipping of these units further enhances precision and reduces labor costs.

What sets ReMAS apart are its unique design approaches, which fuse technology with the inherent flexibility of modular architecture. The project utilizes a digital platform empowered by advanced algorithms that guide the assembly process based on various criteria, such as site conditions, user preferences, and economic constraints. This level of integration ensures that each housing unit can be produced and adapted swiftly to changing demands, which is crucial in a vibrant city like London where the housing landscape is continually evolving.

In terms of spatial layout, ReMAS encourages a user-centered experience within the interior design. The well-thought-out use of natural light and organic forms enhances the quality of the living spaces, creating environments that feel open and welcoming. Residents benefit from flexible apartment configurations, allowing for variations that can accommodate anything from single occupants to larger families. Communal spaces such as balconies serve as points of interaction, fostering community engagement among residents while seamlessly integrating with the urban fabric.

The project's deployment scenarios illustrate its ability to adapt to different urban contexts. Whether inserted into infill sites or constructed alongside existing buildings, ReMAS demonstrates a capacity for blending new structures with established neighborhoods, preserving the historical elements of the surroundings while optimizing space.

Overall, the Restock Modular Adaptive System exemplifies modern architectural thinking through its innovative design and practical solutions for housing challenges. It reflects a commitment to sustainability and user-centric design, offering a scalable model that addresses pressing housing needs without compromising quality or community spirit. For those interested in exploring this project further, there is a wealth of information available regarding the architectural plans, architectural sections, and architectural designs that contribute to the overall concept. Understanding these elements can provide deeper insights into the effective architectural ideas that underpin this project.
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MICROHOME
MICROHOME
100,000 € Prize Fund / Kingpsan Edition #10
Kinderspace
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Architecture for Children’s Development #3
Buildner's Unbuilt Award 2025
Buildner's Unbuilt Award 2025
100,000€ Prize / 2025

Design a new small-scale home concept in the 10th edition of MICROHOME — 100,000 € prize + construction

Competition organisers

The 10th edition of the MICROHOME architecture competition invites architects and designers from around the world to explore the possibilities of compact, sustainable living. Hosted by Buildner in collaboration with Kingspan and Hapi Homes, this special edition challenges participants to design an off-grid, modular microhome for a young professional couple, with a maximum floor area of 25 m². Designs should prioritize innovation, efficiency, and real-world feasibility. 

A total prize fund of 100,000 € will be awarded, including three main prizes, the Kingspan Award, and the Hapi Homes Award, which will grant 15,000 € and lead to the construction of the selected design. The final registration deadline is September 25, 2025, and winners will be announced on Decebmer 9, 2025. For full competition details and submission guidelines, visit microhome.info.

Microhome

Design a new small-scale home concept in the 10th edition of MICROHOME — 100,000 € prize + construction

100,000 € PRIZE FUND / KINGPSAN EDITION #10 IDEAS COMPETITION
Prize 100,000 € + Potential realisation
Eligibility Open to all
Early bird registration deadline 22 May 2025
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