Tag: <span>Automation</span>

Slip on a steep roof leads inventor to build remote inspection robot

By Karen L. Edwards, RT3.

When Mike Slawinski was living in Atlanta, a friend of his asked him to help do some roof inspections. Mike wasn’t a fan of heights but agreed to help. They were in a subdivision that featured multimillion-dollar, large homes with very steep roofs.

“I got up on the front of the house and went over to back side, which was four stories because it was a drop-off lot, and I started sliding down the roof,” Mike explained. “In my mind I got to two feet from the edge and there was a concrete patio down below. In reality, I was probably more like 20 feet from the edge. I scrambled over to a valley and got off that roof, swearing I’d never get on another roof again.”

Being an inventor and innovator, Mike decided to try out some tools and technologies that he might be able to use for completing roof inspections from the ground. Nothing he tried worked so he found a partner to do the coding and created the Roof Rover, a robotic roof inspection device. The first model that they developed was bulky, weighing 25 pounds and wasn’t easy to get on the roof. He waited a few years and as technology improved, he developed the model that is available today.

The new robot weighs six pounds and is equipped with sensors and two cameras – one is very high-resolution inspection camera and another camera is used for driving. “The way you use the robot is typically by just moving the cameras around,” said Mike. “The cameras move and record from up to 60 – 80 feet away, so you just move the cameras and scan the surfaces. If I see anything of interest, I can drive over there and take a closer look.”

The robot is equipped with lasers that can measure within one millimeter or less than the thickness of a penny. It can measure thickness of shingles and even distinguish between a blister and hail dent. An accelerometer measures pitch and roll of the roof and the optical encoders allow for measurements while driving within a fraction of an inch. Edge detection sensors keep it from rolling off the edge of the roof.

“It has a surface temperature gauge on the bottom, and I can tell you that when I was using it in Atlanta, we recorded two temperatures of 250 degree on the roof,” explained Mike.

The Rover uses a 22-foot telescoping pole that raises it to the roof. A platform attaches to the gutter allowing the robot to drive on and off the roof. The rover is operated using a windows tablet and a joystick and a 40-square roof can be inspected in less than 20 minutes.

The robot requires little to no maintenance. The treads will need to be replaced every three to four months and it’s a good idea to keep a second rechargeable battery on hand so they can be swapped out. The Roof Rover includes the Windows tablet and controller and is easy to learn how to use – just watch a 15-minute video and the operator is ready to begin inspecting.

This is an excellent example of introducing technology onto the rooftop that doesn’t replace a worker, it just changes what that worker does and keeps them safer.

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Construction company to use robotics to build renewable energy projects

By Karen L. Edwards

Built Robotics, a company specializing in making robotic construction equipment, announced that it has partnered with construction firm Mortenson to use their earthmoving robotics on renewable projects like wind farms and solar. These types of projects then to be in remote areas that are far from traditional workforce centers, making labor an even bigger challenge than it already is.

According to Built Robotics, their “robotic equipment is able to shoulder some of the load by assisting with basic, repetitive tasks, freeing up human operators to focus on the more specific, complex and critical activities.”

Eric Sellman, Vice President and General Manager of the Civil Group at Mortenson, said in the announcement, “I see Built Robotics as the next generation of construction technology. Consistent with Mortenson’s history of ingenuity and innovation in construction, we are partnering with Built Robotics as they develop and deploy technology that enables autonomous heavy equipment operation. Mortenson and Built Robotics will work together with this technology on select renewable energy projects within our Wind and Solar groups. Our goal is to embrace the change that is happening in our industry to create value for our customers and opportunities for Mortenson and our team members.”

Sellman told Engineering News Record (ENR) that it’s a long-term agreement for the next few years to continue to expand the company’s deployment of autonomous equipment on renewable energy jobs. The company did its first project with Built Robotics in August of 2018, testing the equipment on wind farms in Kansas. Sellman said that the repetitive nature of some of the foundation work on these projects make them a good fit for autonomous equipment. ENR reported that the “machines us GPS tracking to remain within geo-fenced areas, and LIDAR provides collision avoidance and obstacle detection.”

Mortenson employees are excited to be implementing the technology. Molly Morgan, an equipment operator commented, “I’m excited about the potential for Built’s technology. Our top priority is safety — if the robot can work on steep slopes, or near unstable ground, or in challenging or risky situations, then we one-hundred percent should use it. And I’m excited to learn the new skills I’ll need to work with the technology.”

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Construction robotics market expected to reach $226 million by 2025

By Karen L. Edwards.

Construction work has traditionally been a very labor-intensive job. Increasing speed and productivity meant adding additional workers. With the labor shortage, it’s not that simple anymore and the industry is being forced to look for alternative methods. One of those is robotics.

A new report released by market intelligence firm Tractica shows that a growing number of construction companies are incorporating robots to solve the challenges of increasing productivity, efficiency and profits without adding workers. The report forecasts that the growing interest in construction robotics will drive an increase in market revenue from $22.7 million in 2018 to $226 million by 2025.

It is forecast that more than 7,000 construction robots will be in use on sites to handle a variety of construction tasks and demolition work. The biggest use is estimated to be for robot assistants on construction sites, followed by infrastructure robots, structure robots and finishing robots.

Tractica Senior Analyst Glenn Sanders says, “At this early stage in the construction robotics industry, a few companies are offering products for sale or lease. The main categories that are currently available include robots for demolition, bricklaying, drilling, 3D printing, and rebar tying, plus a few exoskeletons and assistant robots for lifting loads.”
Sanders adds that midsize and major construction companies are beginning to adopt these robots to solve issues related to labor shortages, safety, speed, accuracy, and integration with building automation and building information modeling (BIM).

According to Construction Dive, in order to maintain high standards of craftsmanship, some companies are taking a ‘cobot’ approach where they use collaborative robots to work with crews instead of taking their place. The collaborative robots take on tasks that are simpler, redundant and repetitive, freeing up employees to focus on more skilled work.

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Safety is top concern for construction workers regarding automation

By NRCA.

A recent survey shows construction workers are more concerned about safety—rather than job security—regarding increased automation on job sites, according to www.forconstructionpros.com.

In a recent poll of construction workers conducted on behalf of Volvo Construction Equipment, 46% highlighted the increased risk to job-site safety compared with 31% who were concerned about job security. Other worries included loss of sociability (26%) and not knowing who to blame if something goes wrong (17%). However, experts say automation potentially can reduce job-site hazards.

More than half of respondents (54%) believe autonomous machines and artificial intelligence will help boost productivity, and 48% believe advanced technology will increase the speed of daily construction tasks.

Respondents between ages 25 and 44 are more likely to believe autonomous machinery could benefit areas such as productivity, speed, safety, quality and fuel efficiency compared with those age 44 and older.

Nearly half of respondents (48%) believe machine operators are most at risk of losing their jobs; three in five machine operators believe their job could become completely redundant following the rise in computer technology. Other job roles respondents believe would be at risk are engineers (21%), bricklayers (17%) and construction managers (16%). Only one in five construction workers believe no jobs will be affected at all.

From those who responded as part of the wider survey across all industries, 55% say they would rather lose their jobs to a human than a machine. AI could affect workers’ career choices, with 72% of U.S. respondents agreeing in some capacity they would consider choosing a job that will not be affected by autonomous machinery or AI compared with 45% of UK respondents.

Fifty-eight percent of construction workers are confident AI would not do a better job than them.

Source: NRCA

Roofing manufacturer’s robotic arm improved safety and created a more diverse workforce

By David Huval, RoofConnect and RT3 member.

OMG Roofing Products recently hosted the RT3 Live Meetup at its headquarters in Agawam, Massachusetts where RT3 members were treated to hearing from employees Todd Emmonds on the company’s use of robotics and automation in production and Peter Shadwell on their rapid prototyping process in their research and development department.

Sometimes you have to take a leap

RT3 members learned that OMG dedicated massive resources into becoming one of the most innovative manufacturers of roofing products in the industry. They decided to “take a leap of faith” and buy a robotic arm they could study and develop even though they didn’t have any previous experience with robotics.

The company was searching for a way to eliminate the repetitive motion that an employee was subject to by removing six pounds of fasteners from the production line every few seconds and placing them in the packaging. They put massive effort and resources into coding, programming and developing the robotic arm.

After rigorous testing, the robotics were introduced on the production line, creating increased productivity while simultaneously making a safer and healthier environment for their employees.  OMG’s use of automation and robotics created new career opportunities for women and older workers in roles that used to be filled by men, due to the physical nature involved.

3D printing for prototypes

OMG has an innovative and dedicated research and development department that encourages “wild ideas” from all employees. The company uses industry-leading innovation and techniques to develop new products for the industry in-house. Using computer programs like CAD, paired with 3D printers and CNC machines, they can develop and test new products much faster and with less capital investment than ever before.

After prototypes are 3D printed, they are subject to rigorous testing in OMG’s in-house testing lab which simulates all kinds of conditions and stresses that the products could potentially be subject to in the field.

Headquartered in Agawam, Mass., OMG Roofing Products is a leading manufacturer of commercial roofing products including specialty fasteners, insulation adhesives, drains, pipe supports, edge metal systems and innovative productivity tools. The company’s focus is delivering products and services that improve contractor productivity and enhance roof system performance. For additional information please visit OMGRoofing.com.

Learn more about membership in RT3 at www.rt3thinktank.com.

David Huval leads the marketing efforts for RoofConnect.

Study suggests autonomous robots working together are the industry’s next big thing

By Karen L. Edwards.

Collective robotic construction (CRC) specifically concerns embodied, autonomous, multirobot systems that modify a shared environment according to high-level, user-specified goals.

A Science Robotics study published this March states that ‘the increasing need for safe, inexpensive, and sustainable construction, combined with novel technological enablers, has made large-scale construction by robot teams an active research area.’

The study notes that 54% of the human population currently live in cities and that number is expected to grow to 66% by 2050. The researchers feel that collective robotics can help meet the construction demand in the midst of an ongoing labor shortage. CRC could also make construction safer for workers, with the Department of Labor citing that 20% of all worker injuries occur in construction.

The researchers were inspired by the extensive use of collective construction in nature for building nests, protection barriers, traps and mobility scaffolds. Where animal construction relies on reactive behaviors and ‘low-bandwidth communication,’ robots can rely on high-resolution sensors, high-speed communication and GPS to communicate their exact location for completing specific tasks.

Construction materials used in CRC are divided into two categories – discrete and continuous. Discrete materials would be square, rectangular or homogenous bricks, struts and sandbags. Continuous materials would be things like two-component foam, concrete and fibers.

The study says that “challenges pertain to CRC hardware, especially in relation to coordination, communication, and multimodal sensing.” The robots need to be able to adequately communicate and coordinate with nearby robots for success. “As more advanced sensors such as radar, depth cameras, laser imaging and ranging systems, and GPS become cheaper and more readily accessible, they may play a bigger role in the field. ”

The researchers reference two published systems, UAVs and climbing robots,  that can be used to develop a metric that measures constructed volume relative to time, the number of robots used and the volumetric size of each robot. “A flying robot [UAV] has higher energy expenditure and lower payload than a climbing robot but may fly directly between material cache and deposition sites. Reversely, climbing robots can carry more but have to traverse through previous construction.”

The study is the first step in really determining how robotics can make an impact in construction. Further study is needed to develop performance metrics, evaluate the reliability of CRC and it’s ability to adapt to changes in movement, or expected behaviors of the other robots. There also needs to be more research in order to determine where humans fit into the CRC picture to oversee work, make adjustments and corrections when there is an error and in the support and maintenance of the robots.

Read the full study here. 

Ways to Build a Strong Digital Marketing Strategy

By Steve Eastlack, Surefire Local.

Ever wonder why so many businesses struggle with their online marketing? If you think you’re one of those companies implementing tactic after tactic but not quite seeing the results you expected, then you’ve come to the right place. The reason many companies fall short of achieving excellent results from their online marketing is because they lack a clear, smart digital marketing plan. That’s it, plain and simple.

In our recent webinar, ‘LIVE Q&A: Building a Winning Digital Marketing Strategy’, we answered some of the common questions business owners have when it comes to planning and establishing their digital marketing strategy. Below are some of the key takeaways from the webinar:

Learn how to diversify.

Running your business on referrals? Consider this as an accomplishment in itself because it speaks to your brand. However, you don’t want to run your business on a single channel. The solution? You need to diversify. Start by investing in Google Advertising. It is the channel where your ad dollars are best spent on, especially in the first stages of your business growth. It’s the only channel where people are proactively searching for you and the services you provide. Once you start, you’ll find it’s easy to use, easy to learn, and easy to see if it makes sense with regards to your business growth and lead generation.

In addition, don’t forget to invest in a comprehensive, mobile-responsive website. Make use of a content strategy, using blogs, videos and other types of content, to lure leads in and turn them to actual customers.

Identify the platforms that will work for your business.

To know which platforms are best for your business, you need to determine your goals, identify your target locations and know your audience. Some of the platforms you can use depending on your objectives are:

  • Websites
  • Local Search
  • Lead Generation
  • Ratings and Reviews
  • Directory Listings
  • Google Ads/Facebook Advertising
  • Content
  • Social Media
  • Rising Trends and Platforms

Note that not everything might work for your business. Be sure to consult your trusted digital marketing expert to identify the right solutions for your marketing efforts.

Reach out for help.

Contrary to what some people might think, creating a foolproof digital marketing strategy isn’t a simple task. Much like a home improvement project, it requires careful planning, in-depth research and active cooperation with a specialist. Assuming you’ve recently hired an expert to help you with your digital marketing, it pays to know you’ve hired the right team for the job. Here are some of the questions you should ask to your digital marketing partner:

  • How am I doing based on the key metrics we’ve established?
  • How many leads am I getting and how is that progressing?
  • Can you show me the processes you implement to make sure I’m meeting my goals?

By this time, you should already be prepared to build a winning digital marketing strategy for your business. You have the knowledge you need, the assets, and a rough structure in mind.

Source: Surefire Local

Roofing Technology Think Tank Goes to Microsoft HQ

By Jill Bloom, RT3 Member and Publisher, Roofing Contractor.

 

The Roofing Technology Think Tank (RT3) met Monday at the headquarters of Microsoft Corp. to talk tech and how roofing contractors can embrace the exciting opportunities it offers today and in the future.
The day consisted, in part, of a series of “Tech Talks” starting with Ken Kelly, president of Naples, Fla.-based Kelly Roofing, RT3 board member and winner of the Microsoft Modern Small or Medium Business category of the 2015 Visionary Award.

Kelly presented an overview of Microsoft’s Dynamics platform — how it’s changed his business by streamlining operations while growing, and has the potential to do even more. Microsoft Dynamics is a line of enterprise resource planning and customer relationship management software applications.

He used elevators made by Thyssenkrupp by example. Kelly said some of the elevators made by the company are equipped with technology that can run a test, create a service ticket, find a tech with the best credentials for fixing the problem and automatically schedules a service call – all without a human involved until the problem is actually being fixed.

Kelly said, “we can let our minds run wild on how we could use this technology in the roofing world.”
Kelly wasn’t the only one presenting at the RT3 meeting. Others included Scott Dwyer, business development director at Microsoft Power Objects, and Bill Kramer director of product marketing for Microsoft Business Center. They, too, addressed the potential of technology on various industries. At one point, a video demonstrated how a service technician could guide another person on how to perform a repair (in this case on a four-wheeler ATV) with both parties wearing virtual reality goggles.

The day also included a tour of Microsoft’s Internet of Things lab, where attendees of the RT3 event were able to see some of the amazing technology in the works — many aimed at addressing health and health care needs.

In the second part of the day, participants broke off into groups to develop a task list of how to promote RT3 and what members are learning about, along with ways to inform others in the industry about new technology for the industry.

RT3 was formed to act as a conduit for curating knowledge on technologies that can help contractors and the roofing industry overall. Formed in July of 2017, the group has grown from 20 founding members to more than 60 and incorporated as a 501c6 in 2018.

Source: Roofing Contractor

6 Technology Trends in Construction

By Cotney Construction Law.

Industry innovators are using tech to transform the way construction companies perform a variety of tasks from land inspections to creating structures. Look for new technology to move from something seen at trade shows and in magazines to an essential part of cost effectively building structures and keeping workers safe. They may also become an active part of avoiding disputes.

This article discusses a few of the exciting technological developments that are changing construction sites, both now and in the future. It’s worth investing in one or two of these technologies now to stay ahead of your competition.

Drones

With recent changes in FAA policy regarding drones, expect this technology to be plugged into the construction process in a variety of ways. Drones can be used to inspect construction sites to give quick and efficient insight on potential risks prior to the start of a project. It can give you an overhead view of progress on a construction site and spot issues rapidly. Drones are also being used as surveillance on projects, making it easier for contractors to ensure that jobs are correctly and safely being done.

Building Information Modeling (BIM)

Tech-forward construction companies are using BIM tools to create 3D simulated models of the structures that are being produced. By doing this, construction professionals can identify potential design issues before projects break ground.

Project Management Apps

The smartphone is already becoming a mainstay on the construction site. Its use will continue to widen with tools like project management apps and digital blueprints. As we all know, general contractors have to juggle a variety of tasks at once. Now, from their phone, they can manage project schedules, send reports, take pictures of potential issues, and compare project data with financial information. Digital blueprint apps allow multiple people to view documents, compare them with collected data, and make changes quickly. It turns the blueprint into a collaborative tool and saves companies money by avoiding costly changes and the type of disputes that may require a construction attorney.

Smart Helmets

The hard hat is now taking head protection to the next level. Smart helmets are devices that can help users detect hazards around them. This is done through the use of cameras and sensors within the helmet that create a 4D augmented reality.

Automated Robots

Automated robots are being programmed to perform a number of tasks on the construction site, including drilling, bricklaying, and constructing beams. Eventually, these robots will be able to construct structures without people on site. This can greatly reduce the cost of onsite workers and reduce safety concerns.

Driverless Trucks

Another automated technology, driverless trucks are also making construction sites safer by hauling materials independent of a driver. These trucks are controlled remotely using GPS technology. They are more fuel efficient and experience fewer delays than trucks with human drivers. This can make the construction site safer and reduce the type of disputes for which a Sarasota construction attorney is needed.

Note: This first published on Cotney Construction Law’s website and can be viewed here.

Disclaimer: The information contained in this article is for general educational information only. This information does not constitute legal advice, is not intended to constitute legal advice, nor should it be relied upon as legal advice for your specific factual pattern or situation.