Biomimicry with Steel Sheets: Designing "DNA" Into Materials Can Create Architecture that Shapes Itself

This article was originally published by Autodesk's Redshift publication as "Haresh Lalvani on Biomimicry and Architecture That Designs Itself."

See How Flexible, Superthin Glass is Produced

Superthin, flexible glass sounds like something out of a fantasy world – but in fact, it’s something many of us already use everyday as screens for our smartphones and watches. In this video from the Science Channel’s How It’s Made, the intricate process for creating this material, produced by glass manufacturer Schott, is revealed. Watch as the components of the glass are carefully measured out and blended before being melted and reformed into ultrathin sheets.

World's First 3D Printed Bridge Opens in Spain

The first 3D printed pedestrian bridge in the world opened to the public on December 14 in Madrid. Led by the Institute of Advanced Architecture of Catalonia (IAAC) in a process that took a year and a half from its conception, the structure crosses a stream in Castilla-La Mancha Park in Alcobendas, Madrid.

Autodesk's Generative Design Pavilion Plays with Properties and Fabrication Processes in Stone and Fabric

At Autodesk's 2016 conference in Las Vegas, a team from Autodesk's BUILD Space led by principal research engineer Andrew Payne collaborated with manufacturer Quarra Stone, engineers Simpson Gumpertz and Heger, and University of Michigan assistant professor Sean Ahlquist to unveil its new Generative Design Pavilion. The project is an exploration of materiality, with stalagmite stone forms that rise up from geometric floor panels to meet fabric that stretches down from a canopy above. The junction of textile and stone aims to emphasize the distinct behaviors of the two materials.

PRODUCE Workshop Debuts Plywood-based "Fabricwood" Pavilion for Herman Miller's Shop-in-Shop

Furniture and design retailer XTRA's new flagship store in Singapore's Marina Square includes a Herman Miller "Shop-in-Shop" that draws inspiration from the furniture it showcases. Encircling the space is a 20-meter arched structure that, from a distance, gives the appearance of tufted fabric pulled taught over a frame. But in fact, this structure is built from a plywood "skin" that designer Pan Yicheng of PRODUCE Workshop has dubbed "fabricwood."

Marc Fornes / THEVERYMANY Uses Intensive Curvature to Create Suspended Self-Supporting Structure

A giant, smooth coral? A cloud-like barnacle? A woman's floral swimming cap?”

Learn How This Portuguese Project Was Inspired by Strong Winds and a Striking Landscape

This article is part of our new series "Material in Focus", where we ask architects to share with us their creative process through the choice of materials that define important parts of the construction of their buildings.

10 Project Details That Show How to Make Stunning Storage Spaces

One of the hallmarks of architectural sensibility is a clean, clutter-free space – "a place for everything and everything in its place." Every project requires some element where things can be neatly stored away, whether it be books, kitchen appliances, or entire furniture pieces. Solutions for these storage needs can range from invisible and out of the way, to stunning, textural centerpieces – either way adding necessary functionality to our most-used spaces.

UNStudio Erects Pearlescent Structure at World's Leading Architectural Trade Fair

Employing the latest in aluminum and metals innovation, Ben van Berkel and UNStudio have erected the ALPOLIC fair stand at BAU 2017, the world’s leading trade fair for architecture, materials and systems. Emphasizing the inherent strength of the ultra-light material, the parametric design utilizes geometric principles to create a self-supporting semi-private stand for gathering and the display of products.

MIT Researchers Develop 3D Graphene Structure 10 Times Stronger Than Steel

Known for its light weight and high strength properties, graphene has been promised to us as the material of the future for quite some time now. But difficulties in translating its 2D strength into 3-dimensional applications have so far held it back from common use. Now, thanks to new research by the Massachusetts Institute of Technology (MIT), that future may now be closer than ever before. In the school’s latest experiment, researchers have discovered how the material could be shaped into to sponge-like form to resist forces 10 times greater than steel.

Below The Extraordinarily Textured Surface of This Unique Polish Concert Hall

This article is part of our new "Material Focus" series, which asks architects to elaborate on the thought process behind their material choices and sheds light on the steps required to get buildings actually built.

Newly Discovered Molecular ‘Glue’ May hold the Key to Strong Wooden Skyscrapers

The key to engineering wood strong enough to support skyscrapers may lie in the interaction between molecules 10,000 times narrower than the width of a human hair.

Hexagons for a Reason: The Innovative Engineering Behind BIG's Honeycomb

BIG are known for unconventional buildings that often raise the question “how were they able to do that?” Such is the case for BIG’s Honeycomb, a luxury eight-story condominium currently under construction in the Bahamas. The project’s hallmark is its hexagonal façade made up of private balconies, each with its own glass-fronted outdoor pool. The façade was also the project’s greatest engineering challenge, with each balcony (including pool water) weighing between 108,000 and 269,000 pounds (48,000-122,000 kilograms) while cantilevering up to 17.5 feet (5.3 meters) from the structure. Tasked with this challenging brief were DeSimone Consulting Engineers, who previously worked with BIG on The Grove. Read on for more detail on the Honeycomb’s innovative engineering.

Video: This Kinetic Green Wall Displays 'Pixel' Plant Art

BAD. Built by Associative Data’s Associative Data Research has collaborated with Green Studios to create Kinetic Green Canvas, a prototype Green-Art Installation for building façades.

MIT Develops Multi-Material Design System Slated to Become “Photoshop of 3D Printing”

Following last year’s introduction of MultiFab, a multi-material 3D printer, researchers at MIT’s Computer Science and Artificial Intelligence Laboratory has pioneered a system for designing multi-material objects. The new interface, Foundry, is meant to be accessible to non-programmers, whereas multi-material 3D printing technology has historically been prohibitive both with respect to cost and user-friendliness.

17 Templates for Common Construction Systems to Help you Materialize Your Projects

Earlier this year, Chilean architects and professors Luis Pablo Barros and Gustavo Sarabia from the Federico Santa María University released a book (in Spanish) titled "Sistemas Constructivos Básicos" (Basic Construction Systems)." The book aims to be a tool to help architects translate their plan diagrams into tangible architectural works, as well as to help students learn the knowledge necessary to build what they plan.

This Concave Roof System Collects Rainwater in Arid Climates

Iran-based BMDesign Studios has unveiled Concave Roof, a double-roof system with steep slopes resembling a bowl for the purpose of rainwater collection in arid climates like Iran, where a lack of water could lead to mass displacement in the future.

The Totora Cube Investigates the Techniques of Incan-Era Craftsmanship

Developed by the architects of the "think-act tank" Archquid, in connection with the indigenous community and other institutions of the parish of San Rafael de la Laguna (Otavalo, Ecuador), this project revolves around the material research of the totora plant, a subspecies of the giant bulrush sedge. The Totora Cube project deepens the understanding of the art and craft with which these fibers have been used since pre-Inca times.