flexiblefullpage -
billboard - default
interstitial1 - interstitial
catfish1 - bottom
Currently Reading

Purdue engineers develop intelligent architected materials

Building Materials

Purdue engineers develop intelligent architected materials

Purdue University researchers are testing the new adaptable materials for transportation, structural, and other real-world applications.


By Quinn Purcell, Managing Editor | October 2, 2023
Engineering Fountain Purdue University
Engineering Fountain Purdue University

Purdue University civil engineers have developed innovative materials that can dissipate energy caused by bending, compression, torque, and tensile stresses without sustaining permanent damage. These intelligent architected materials may also possess shape memory properties, making them reusable while enhancing safety and durability.

The research, led by Professor Pablo Zavattieri, believe the new class of adaptable materials offer potential uses in multiple industries, such as earthquake engineering, impact-resistant structures, biomedical devices, sporting goods, building construction, and automotive components. The technology is currently being tested for 3D-printed panels for aircraft runway mats and nonpneumatic tires for military vehicles, providing resistance to punctures and leaks while maintaining performance in various terrains.

Purdue develops intelligent architected materials
 

Purdue University intelligent architected materials
Products made with intelligent architected materials developed at Purdue University have the ability to change from one stable configuration to another stable configuration and back again. Courtesy Purdue University

“These materials are designed for fully recoverable, energy-dissipating structures, akin to what is referred to as architected shape memory materials, or phase transforming cellular materials, known as PXCM,” Zavattieri said. “They can also exhibit intelligent responses to external forces, changes in temperature, and other external stimuli.”

These materials can be created from various substances, such as polymers, rubber, and concrete, as long as they remain within the elastic range. They are designed to deform in controlled and programmable ways, providing enhanced energy absorption and adaptability. For the aircraft runway mats, Zavattieri sees the material aiding in self-healing properties, resulting in a longer life span than a runway made with AM-2 matting. "Another benefit is that debris on the runway will not hamper the runway’s performance with our technology," he says.

The Purdue researchers have demonstrated scalability from macro to micro applications and an improvement over traditional lightweight cellular materials.

Purdue University developed aircraft runway mat
Pablo Zavattieri, the Jerry M. and Lynda T. Engelhardt Professor in Civil Engineering, lifts an aircraft runway mat made with new intelligent architected materials developed at Purdue University. In testing, the mats were capable of withstanding over 5,000 landing and takeoff cycles over a 60-day period while showing no signs of failure. Courtesy Purdue University

“We have produced intelligent architected materials as large as 12 inches, which are ideal for applications like building and bridge construction to absorb and harness energy,” Zavattieri said. “Conversely, we have created materials with unit cells smaller than the thickness of a human hair. This scalability opens up a world of possibilities from macro to micro applications.”

The research has received funding from organizations like General Motors, ITAMCO (Indiana Technology and Manufacturing Companies), the National Science Foundation, and the U.S. Air Force. Additionally, patents have been filed to protect the intellectual property, and industry partners interested in commercializing the materials for the marketplace should contact Dipak Narula, Assistant Director of Business Development and Licensing in Physical Sciences, at dnarula@prf.org about 2018-ZAVA-68252, 2019-ZAVA-68691, 2020-ZAVA-69072 and 2022-ZAVA-69900.

Related Stories

Mass Timber | Aug 30, 2022

Mass timber construction in 2022: From fringe to mainstream

Two Timberlab executives discuss the market for mass timber construction and their company's marketing and manufacturing strategies. Sam Dicke, Business Development Manager, and Erica Spiritos, Director of Preconstruction, Timberlab, speak with BD+C's John Caulfield. 

Sponsored | BD+C University Course | Aug 24, 2022

Solutions for cladding performance and supply issues

This course covers design considerations and cladding assembly choices for creating high-performance building envelopes — a crucial element in healthy, energy-efficient buildings.

Sponsored | | Aug 4, 2022

Brighter vistas: Next-gen tools drive sustainability toward net zero line

New technologies, innovations, and tools are opening doors for building teams interested in better and more socially responsible design. 

Building Materials | Aug 3, 2022

Shawmut CEO Les Hiscoe on coping with a shaky supply chain in construction

BD+C's John Caulfield interviews Les Hiscoe, CEO of Shawmut Design and Construction, about how his firm keeps projects on schedule and budget in the face of shortages, delays, and price volatility.

Building Materials | Jul 20, 2022

LP Building Solutions celebrates 50th anniversary at NYSE ceremony

LP Building Solutions celebrates 50th anniversary at NYSE ceremony.

Building Materials | Jun 20, 2022

Early-stage procurement: The next evolution of the construction supply chain

Austin Commercial’s Jason Earnhardt explains why supply chain issues for the construction industry are not going to go away and how developers and owners can get ahead of project roadblocks.

Sponsored | BD+C University Course | May 10, 2022

Design guide for parapets: Safety, continuity, and the building code

This course covers design considerations for parapets. The modern parapet must provide fire protection, serve as a fall-protective guard, transition and protect the roof/facade interface, conceal rooftop equipment, and contribute to the aesthetic character of the building. 

Sponsored | BD+C University Course | May 10, 2022

Designing smarter places of learning

This course explains the how structural steel building systems are suited to construction of education facilities.

Sponsored | BD+C University Course | May 5, 2022

Designing with architectural insulated metal wall panels

Insulated metal wall panels (IMPs) offer a sleek, modern, and lightweight envelope system that is highly customizable. This continuing education course explores the characteristics of insulated metal wall panels, including how they can offer a six-in-one design solution. Discussions also include design options, installation processes, code compliance, sustainability, and available warranties.

Sponsored | BD+C University Course | May 3, 2022

For glass openings, how big is too big?

Advances in glazing materials and glass building systems offer a seemingly unlimited horizon for not only glass performance, but also for the size and extent of these light, transparent forms. Both for enclosures and for indoor environments, novel products and assemblies allow for more glass and less opaque structure—often in places that previously limited their use.

boombox1 - default
boombox2 -
native1 -

More In Category


Codes and Standards

Updated document details methods of testing fenestration for exterior walls

The Fenestration and Glazing Industry Alliance (FGIA) updated a document serving a recommended practice for determining test methodology for laboratory and field testing of exterior wall systems. The document pertains to products covered by an AAMA standard such as curtain walls, storefronts, window walls, and sloped glazing. AAMA 501-24, Methods of Test for Exterior Walls was last updated in 2015. 



halfpage1 -

Most Popular Content

  1. 2021 Giants 400 Report
  2. Top 150 Architecture Firms for 2019
  3. 13 projects that represent the future of affordable housing
  4. Sagrada Familia completion date pushed back due to coronavirus
  5. Top 160 Architecture Firms 2021