Close Menu

    Subscribe to Updates

    Get the latest creative news from FooBar about art, design and business.

    What's Hot

    How the Loosdrecht Lakes Became the Netherlands’ Most Fascinating Residential Landscape

    July 31, 2026

    Tashkent’s Modernist Architecture Joins UNESCO World Heritage List

    July 31, 2026

    Architecture Is Growing Up with Gen Z

    July 30, 2026
    Facebook X (Twitter) Instagram
    Facebook X (Twitter) Instagram
    ParametricParametric
    Subscribe
    ParametricParametric
    Home»Architecture News»ETH Zurich’s ‘Unfold Form’ Cuts Concrete and Steel Use by 60%
    Architecture News

    ETH Zurich’s ‘Unfold Form’ Cuts Concrete and Steel Use by 60%

    Yagmur BaydirBy Yagmur BaydirJanuary 17, 2025Updated:January 18, 202508 Mins Read0 Views
    Facebook Twitter Pinterest LinkedIn Tumblr WhatsApp Reddit Email
    Share
    Facebook Twitter LinkedIn Pinterest Email

    An architecture PhD student at ETH Zurich has developed a simple solution for building concrete floors in a more climate-friendly way. Significant amounts of concrete and steel can be saved thanks to a lightweight, robust, and reusable formwork design.

    Unfold Form
    ©Andrei Jipa / ETH Zurich, BRG

    Unfold Form in Brief

    • “Unfold Form” is a lightweight and reusable formwork system for vaulted concrete structures.
    • This type of formwork uses geometry to shape a floor that uses up to 60 percent less concrete and 90 percent less steel than the conventional reinforced concrete floor slab, reducing carbon emissions and material waste.
    • Unfold Form is easy to fabricate, transport, and use, which makes it ideal for regions with limited resources.

    Concrete is the most widely used construction material in the world. Made from cement, water, sand, and gravel, this relatively cheap mixture can be shaped as needed and withstand high forces in compression. Yet it performs poorly under tensile stress, requiring steel reinforcement, and excessive amounts of material are often used. This fuels climate change since producing concrete and steel generates significant carbon emissions.

    Research by ETH Professor Philippe Block’s team has consistently shown that it is possible to achieve structural stability while using less concrete and steel. One of the Block Research Group’s (BRG) innovations is vaulted floor elements made of concrete. Through clever geometry, these floors achieve much thinner sections than their conventional counterparts and do not require any embedded steel reinforcement. This technology is now being commercialized through the ETH-spinoff external pageVAULTED AG.

    Considering sustainability at the first production step

    Vaulted floors need a formwork system – moulds that give the poured concrete its delicate structure. However, these moulds can be bulky and are often made from petroleum-based materials like Styrofoam. Moreover, formwork for non-standard geometry is typically single-use, and its manufacturing process creates substantial waste. “Unfortunately, this cancels out some of the sustainability gains,” explains Lotte Scheder-Bieschin. The doctoral student at the Block’s research group has developed a foldable formwork system that can be reused and requires fewer resources to produce.

    Unfold Form
    ©ETH Zurich, BRG

    Massively reducing concrete and steel use

    Unfold Form consists of thin, flexible plywood strips connected by textile hinges. It can be unfolded like a fan. Four of these compact units can be rapidly assembled within a wooden frame to create a sturdy, zigzag-shaped mold onto which concrete can be poured directly.

    I was looking for a solution that uses strength through geometry, not just for the final structure but also for the formwork itself.

    Lotte Scheder-Bieschin

    After the concrete cures, the formwork can be easily detached from underneath, folded away, and stored for its next use. While the prototype’s system weighs just 24 kilograms, it can support up to a tonne of concrete.

    “I was looking for a solution that would allow me to use strength through geometry, to optimize not only the final structure but also the formwork itself,” says Scheder-Bieschin. “This approach reduces material usage and makes the entire process more environmentally friendly.” The formwork’s distinctive geometric structure allows for reductions of up to 60 percent in concrete and 90 percent in reinforcement steel.

    ©ETH Zurich, BRG

    “The Unfold Form formwork can be produced and assembled without specialized knowledge or high-tech equipment,” notes Scheder-Bieschin. One of her aims was to create a simple and robust system that could be used worldwide, even with limited resources. Currently, formwork for non-standard concrete shapes typically requires digital fabrication. “This creates barriers for sustainable concrete construction in developing countries, where the need for new buildings is especially high,” she says.

    The formwork can be produced cheaply. “The only things needed in addition to the materials are a template for the shape and a stapler,” adds Scheder-Bieschin. The materials for the prototype cost only 650 Swiss francs in total.

    The individual components are light and compact enough to be transported easily. Scheder-Bieschin demonstrated the system’s simplicity by assembling it herself during her pregnancy. “I wanted to ensure my design was simple enough for anyone to build, regardless of their circumstances,” she says.

    ©ETH Zurich, BRG

    Zigzag ridges like seashells

    How does this innovative formwork achieve both lightness and stability? During development, Scheder-Bieschin applied her expertise in bending-active structures – a topic she had worked on during her studies. This technique involves bending elastic materials like thin and long splines or plates of wood, where the resulting deformation creates stability and allows for curved, lightweight structures.

    A key feature of Unfold Form is the zigzag-like arrangement of wooden strips. “This ribbing provides additional stiffness without significantly increasing the overall weight,” explains Scheder-Bieschin. “You can find such articulated structures in nature, like in seashells.”

    The zigzag pattern strengthens both the formwork and the concrete poured onto it: “The concrete incorporates this design into a structural rib pattern, which assists in load transfer.”

    Unfold Form
    ©ETH Zurich, BRG

    Strength through curvature

    The interaction between the individual strips is crucial for the formwork’s stability, Scheder-Bieschin explains: “When you bend a single strip or plate, it becomes very wobbly when loaded, and it’s difficult to control which shape the board will bend into.” However, when you connect two strips along a curved edge, you achieve much higher rigidity. “Under load, the strips deform minimally, and you can control the final shape via the design of these connection curves,” she says. This technique called curved-crease folding (CCF), has been around for some time and draws its inspiration from the art of origami.

    ©ETH Zurich, BRG

    Folding, in general, consistently progresses from larger to smaller sizes, beginning with a flat element that is gradually reduced through the folding process. This makes the folding technique unsuitable for use in construction. “Consider a vaulted concrete floor measuring two by three meters – the starting plate would need to be approximately three by five meters. From a transport perspective, this is, of course, highly impractical,” Scheder-Bieschin points out.

    From paper model to concrete prototype

    Scheder-Bieschin was intrigued by the challenge of adapting this simple but ingenious CCF system for architectural purposes. She experimented with paper models at her desk, eventually devising a system that she calls curved-crease unfolding: “At some point, I started gluing the pieces together differently. And that’s how I found a system that starts out as a stacked shape that can be fanned out – just like a hand fan. And at the same time, the curved shape is achieved.”

    The next challenge was to move from a thin sheet of paper to a structural material of a certain thickness. The doctoral student solved this tricky problem with the help of textile hinges.

    The creation of the prototype in fast motion (Video: L. Scheder-Bieschin, M. Hellrich, A. Jipa / ETH Zurich, BRG)

    She then developed a computer method for the simulation. “The initial prototypes already validated my concept,” she recalls. “Using simple 2D prefabrication, I could create folded, compact panels that unfold easily and have the required rigidity to support concrete.”

    Real-life test in South Africa

    In addition to the final 3-by-1.8-meter prototype, which is located in the Robotic Fabrication Laboratory (RFL) on the Hönggerberg campus, a twin concrete structure also exists in South Africa. It was built using the same formwork. Mark Hellrich, a scientific assistant and contributor to the Unfold Form project, transported the folded formwork to Cape Town using two surfboard bags. Working together with external pagenonCrete, a local firm dedicated to sustainable construction and affordable housing solutions, they cast the second prototype.

    ©ETH Zurich, BRG

    This demonstrated three things at once: The formwork system can be reused without any loss of quality, it is easy to transport, and it works with different types of concrete. NonCrete used its bio-concrete based on shredded invasive vegetation from the area. “This shows that premium-grade concrete isn’t necessary for creating sturdy floors with the new formwork,” Scheder-Bieschin notes.

    She says that the South African partner company was impressed by the results: “The goal is to use this innovative formwork system to construct high-quality, dignified, and sustainable housing in South African townships.”

    ©ETH Zurich, BRG

    Helping people help themselves

    After completing her doctorate in a few months, the researcher will continue developing her technique as a postdoc at ETH Zurich, with plans to bring her product to market. Currently, the 33-year-old is working on the design for a market hall in a Cape Town township using her formwork system. The next step, however, is primarily about helping people help themselves: “We are planning training programs for the locals so they can build the formwork and the buildings on their own.”

    ©ETH Zurich, BRG

    Project Details

    Project Name: Unfold Form
    Type: Architecture / Sustainable Construction
    Location: ETH Zurich, Switzerland (prototype), Cape Town, South Africa (real-life test)
    Client: ETH Zurich, nonCrete (South Africa partner)
    Design Team: Lotte Scheder-Bieschin
    Construction: ETH Zurich, Block Research Group (BRG)
    Photography: Andrei Jipa (ETH Zurich)

    The project description is provided by ETH Zürich.

    Learn with PAACADEMY: Attend workshops at PAACADEMY to learn from the industry’s best experts how to use advanced parametric design tools, AI in design workflows, and computational design in architecture!

    This is what the finished formwork looks like from above. It consists of four individual parts that can be unfolded like a fan. (Photograph: Lotte Scheder-Bieschin / ETH Zurich, BRG)
    architecture parametric architecture sustainability
    Share. Facebook Twitter Pinterest LinkedIn Tumblr Email
    Yagmur Baydir

    Related Posts

    How the Loosdrecht Lakes Became the Netherlands’ Most Fascinating Residential Landscape

    July 31, 2026

    Tashkent’s Modernist Architecture Joins UNESCO World Heritage List

    July 31, 2026

    Architecture Is Growing Up with Gen Z

    July 30, 2026
    Add A Comment
    Leave A Reply Cancel Reply

    Demo
    Top Posts

    FIFA World Cup 2030 Stadium Guide

    July 26, 202612 Views

    Harvard Unveils Shape-Shifting Knitted Fabric with Built-In Sensors

    July 26, 202611 Views

    How the Loosdrecht Lakes Became the Netherlands’ Most Fascinating Residential Landscape

    July 31, 20263 Views

    Why Clearing the Room First Changes Every Renovation Decision You Make

    July 27, 20263 Views
    Don't Miss

    How the Loosdrecht Lakes Became the Netherlands’ Most Fascinating Residential Landscape

    By Isha ChaudharyJuly 31, 2026

    What appears to be an AI-generated landscape has become one of the internet’s latest architectural…

    Tashkent’s Modernist Architecture Joins UNESCO World Heritage List

    July 31, 2026

    Architecture Is Growing Up with Gen Z

    July 30, 2026

    Populous to Shape Frankfurt’s Next Major Sports and Entertainment Arena

    July 30, 2026

    Subscribe to Updates

    Get the latest creative news from SmartMag about art & design.

    Demo

    Recent Posts

    • How the Loosdrecht Lakes Became the Netherlands’ Most Fascinating Residential Landscape
    • Tashkent’s Modernist Architecture Joins UNESCO World Heritage List
    • Architecture Is Growing Up with Gen Z
    • Populous to Shape Frankfurt’s Next Major Sports and Entertainment Arena
    • Chile’s 2026 National Architecture Prize Awarded to Pritzker Laureates Alejandro Aravena and Smiljan Radić

    Recent Comments

    No comments to show.
    About Us
    About Us

    Your source for the lifestyle news. This demo is crafted specifically to exhibit the use of the theme as a lifestyle site. Visit our main page for more demos.

    We're accepting new partnerships right now.

    Email Us: [email protected]
    Contact: +1-320-0123-451

    Our Picks

    How the Loosdrecht Lakes Became the Netherlands’ Most Fascinating Residential Landscape

    July 31, 2026

    Tashkent’s Modernist Architecture Joins UNESCO World Heritage List

    July 31, 2026

    Architecture Is Growing Up with Gen Z

    July 30, 2026
    Most Popular

    FIFA World Cup 2030 Stadium Guide

    July 26, 202612 Views

    Harvard Unveils Shape-Shifting Knitted Fabric with Built-In Sensors

    July 26, 202611 Views

    How the Loosdrecht Lakes Became the Netherlands’ Most Fascinating Residential Landscape

    July 31, 20263 Views

    Archives

    • July 2026
    • June 2026
    • May 2026
    • April 2026
    • March 2026
    • February 2026
    • January 2026
    • December 2025
    • November 2025
    • October 2025
    • September 2025
    • August 2025
    • July 2025
    • June 2025
    • May 2025
    • April 2025
    • March 2025
    • February 2025
    • January 2025
    • December 2024
    • November 2024
    • October 2024
    • September 2024
    • August 2024
    • July 2024
    • June 2024
    • May 2024
    • April 2024
    • March 2024
    • February 2024
    • January 2024
    • December 2023
    • November 2023
    • October 2023
    • September 2023
    • August 2023
    • July 2023
    • June 2023
    • May 2023
    • April 2023
    • March 2023
    • February 2023
    • January 2023
    • December 2022
    • November 2022
    • October 2022
    • September 2022
    • August 2022
    • July 2022
    • June 2022
    • May 2022
    • April 2022
    • March 2022
    • February 2022
    • January 2022
    • December 2021
    • November 2021
    • October 2021
    • September 2021
    • August 2021
    • July 2021
    • June 2021
    • May 2021
    • April 2021
    • March 2021
    • February 2021
    • January 2021
    • December 2020
    • November 2020
    • October 2020
    • September 2020
    • August 2020
    • July 2020
    • June 2020
    • May 2020
    • April 2020
    • March 2020
    • February 2020
    • January 2020
    • November 2019
    • October 2019
    • September 2019
    • August 2019
    • July 2019
    • June 2019
    • May 2019
    • April 2019
    • March 2019
    • February 2019
    • January 2019
    • December 2018
    • November 2018
    • October 2018
    • September 2018
    • August 2018

    Categories

    • 3D Printing
    • Ads
    • Archipreneurs
    • Architects
    • Architecture
    • Architecture & Design
    • Architecture News
    • Articles
    • Artificial Intelligence
    • BIM / AEC
    • Books
    • Case Study
    • CDNext
    • CDNEXT Recordings
    • City Guide
    • Competitions
    • Design
    • Digital Art
    • Digital Members
    • Events
    • Fashion
    • Geography
    • Installation
    • Interior
    • Interviews
    • Jobs
    • landscape
    • Landscape Architecture
    • Landscape Design
    • memorial
    • Metaverse
    • Opinions
    • PA Quotes
    • PA Talks
    • PAACADEMY
    • Pavilion
    • podcasts
    • Products
    • Projects
    • Robotics
    • Space Architecture
    • Studio Recordings
    • Studio Workshops
    • Sustainability
    • Technology
    • Tools
    • Urbanism
    • Videos
    • Workshops
    Facebook X (Twitter) Instagram Pinterest Dribbble
    © 2026 ThemeSphere. Designed by ThemeSphere.

    Type above and press Enter to search. Press Esc to cancel.