flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

Stanford develops a robot that grows like a vine and carries with it inestimable applications

Building Technology

Stanford develops a robot that grows like a vine and carries with it inestimable applications

For construction, the robot could be used for wiring the ceilings or floors of a building.


By David Malone, Associate Editor | July 28, 2017
Stanford's snaking robot bending around and between two pieces of wood

Courtesy of Stanford

Like a game Snake come to life, a new robot being developed at Stanford grows like a vine and has the ability to weave through tight spaces to provide applications from disaster relief to simplifying construction projects.

The main idea behind the robot is uncomplicated; the “snake” is a tube of soft thin plastic that is folded inside itself. As the material is forced out, either pneumatically or hydraulically, the robot grows longer. According to Stanford, the robot’s design is so useful because the tip moves and results in growth while the body remains stationary, making it incredibly difficult for the robot to become stuck.

“The body can be stuck to the environment or jammed between rocks, but that doesn’t stop the robot because the tip can continue to progress as new material is added to the end,” says Elliot Hawkes, a visiting Assistant Professor from the University of California, Santa Barbara in a Stanford article on the robot.

 

 

As the robot grows, it can pull cables along, which means it could be used in the construction industry to help wire new and renovated buildings by traveling in the walls, floors, or ceilings. The robot can make turns via a control system that differentially inflates the body and a software system bases direction decisions on images received from a camera at the tip, so pipes or other obstacles already located in the wall, ceiling, or floor space become non-issues.

Other applications include scaling the robot up for search and rescue operations, growing vertically to act as an antenna, or being used to deliver materials, such as water, to hard to reach places.

The robot is detailed in a Science Robotics paper published on June 19.

Related Stories

Coronavirus | Jan 20, 2022

Advances and challenges in improving indoor air quality in commercial buildings

Michael Dreidger, CEO of IAQ tech startup Airsset speaks with BD+C's John Caulfield about how building owners and property managers can improve their buildings' air quality.

3D Printing | Jan 12, 2022

Using 3D-printed molds to create unitized window forms

COOKFOX designer Pam Campbell and Gate Precast's Mo Wright discuss the use of 3D-printed molds from Oak Ridge National Lab to create unitized window panels for One South First, a residential-commercial high-rise in Brooklyn, N.Y.

Sponsored | BD+C University Course | Jan 12, 2022

Total steel project performance

This instructor-led video course discusses actual project scenarios where collaborative steel joist and deck design have reduced total-project costs. In an era when incomplete structural drawings are a growing concern for our industry, the course reveals hidden costs and risks that can be avoided.

Architects | Dec 20, 2021

Digital nomads are influencing design

As our spaces continue to adapt to our future needs, we’ll likely see more collaborative, communal zones where people can relax, shop, and work.

Urban Planning | Dec 15, 2021

EV is the bridge to transit’s AV revolution—and now is the time to start building it

Thinking holistically about a technology-enabled customer experience will make transit a mode of choice for more people.

Healthcare Facilities | Dec 15, 2021

MEP design considerations for rural hospitals

Rural hospitals present unique opportunities and challenges for healthcare facility operators. Oftentimes, the infrastructure and building systems have not been updated for years and require significant improvements in order to meet today’s modern medical demands. Additionally, as these smaller, more remote hospitals are acquired by larger regional and national healthcare systems, the first step by new ownership is often to update and rehabilitate the building. But how can this be done thoughtfully, economically, and efficiently in ways that allow the engineering and facility staff to adapt to the changes? And how can the updates accurately reflect the specific needs of rural communities and the afflictions with which these areas most commonly face?

Sponsored | BD+C University Course | Oct 15, 2021

7 game-changing trends in structural engineering

Here are seven key areas where innovation in structural engineering is driving evolution.

Sponsored | Glass and Glazing | Oct 1, 2021

Seizing the Daylight with BIPV Glass

Glass has always been an idea generator. Now, it’s also a clean energy generator.

boombox1
boombox2
native1

More In Category



Engineers

Navigating battery energy storage augmentation

By implementing an augmentation plan upfront, owners can minimize potential delays and unforeseen costs when augmentation needs to occur, according to Burns & McDonnell energy storage technology manager Joshua Crawford.


3D Printing

3D-printed construction milestones take shape in Tennessee and Texas

Two notable 3D-printed projects mark milestones in the new construction technique of “printing” structures with specialized concrete. In Athens, Tennessee, Walmart hired Alquist 3D to build a 20-foot-high store expansion, one of the largest freestanding 3D-printed commercial concrete structures in the U.S. In Marfa, Texas, the world’s first 3D-printed hotel is under construction at an existing hotel and campground site.

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