Timber Structures Worldwide Show Potential Of Wood Construction

Roofs made from wood are one or the rarest roof types to find around these days, as concrete slab and shingles take over, according to Choice Solutions Roofing and Exteriors Co. In Oklahoma City.

Wood is not seen as strong as some other materials when it comes to construction, but in general well-maintained roofs made of wood can have a lifespan that ranges from 30 to 50 years. Having a wooden structure on top of a house has several good qualities, and it can look great. Here are some examples of wooden structures which are not the average roof that will provide an idea of how unique and marvelous structure topped off with wood can become.

The Centre Pompidou Metz has a hexagonal pattern of a load-bearing timber roof structure which is visible at night through its transparent covering membrane. It is interesting to know that the inspiration of the roof comes from a woven Chinese hat. Before this one-of-a-kind structure was created, it was studied from every angle to ensure that it would withhold heavy weather conditions. This woven like structure roof is made out of wooden beams, spaced 2.90 meters apart, forming a hexagon pattern that is 90 meters wide.

The timber used is glue laminated which enables the different lengths of the beams and makes them more resistant. It is without a doubt an astounding structure due to its complex curves and counter curves and therefore it is one of the most challenging and largest structure built up to date.

The mesh can allow the roof to expand 40 meters, made from protective fabric which consists of fiberglass and Teflon, forming a membrane over the wooden structure. This layer helps the inside temperature to stay natural. This building was created for displaying art and the goal behind the innovative structure was to draw tourism to Metz, France.

Read more on this from Woodworking Network: https://www.woodworkingnetwork.com/architectural-products/timber-structures-show-potential-wood-construction?ss=news,news,woodworking_industry_news,news,almanac_market_data,news,canadian_news

The Wooden Skyscrapers That Could Help To Cool The Planet

One building stands out in the old logging town of Prince George, Canada. Encased in a sleek glass facade, the structure towers above most of its neighbors, beckoning from afar with the warm amber glow of Douglas fir. Constructed almost entirely from timber in 2014, the 8-story, 30-meter building is among the tallest modern wooden structures in the world. But it is more than an architectural marvel. As the home of the Wood Innovation and Design Centre at the University of Northern British Columbia (UNBC), it is also an incubator for wooden buildings of the future — and a herald for a movement that could help to tackle global warming.

The building is less like a log cabin and more like a layered cake, constructed from wooden planks glued and pressed together, precision cut by factory lasers and then assembled on site. All told, the university avoided the release of more than 400 tons of carbon dioxide by eschewing energy-intensive concrete and steel, and the building locks up a further 1,100 tons of CO2 that was harvested from the atmosphere by British Columbian trees. In total, that’s enough to offset the emissions from 160 households for a year.

Wooden construction has ancient roots, but only in the past two decades have scientists, engineers and architects begun to recognize its potential to stave off global warming. By substituting concrete and steel with wood from sustainably managed forests, the building industry could curb up to 31% of global carbon emissions, according to research by Chad Oliver, a forest ecologist at Yale University in New Haven, Connecticut. In time, such a shift could help humanity to pull CO2 out of the atmosphere, potentially reversing the course of climate change.

“It’s the plywood miracle,” says Christopher Schwalm, an ecologist at Woods Hole Research Center in Falmouth, Massachusetts. “This is something that could have a significant impact on the riddle that is global environmental change.”

From Nature.com: https://www.nature.com/news/the-wooden-skyscrapers-that-could-help-to-cool-the-planet-1.21992

Timber Innovation Act Advocates For Nationwide Timber Construction In U.S.

A new piece of bipartisan legislation has been tabled by The United States Senate and House of Representatives named the Timber Innovation Act. The bills were put forward to further the development of tall timber buildings in the U.S., thereby supporting the nation’s considerable timber market and the rural manufacturing jobs it entails.

“The United States has an opportunity to bring new, sustainable mass timber technology to our construction industry, and the Timber Innovation Act directs technical assistance and research components already in place,” said Robert Glowinski, President and CEO of the American Wood Council (AWC).

The bills aim to create a focused research and development program to aid in the advancement of tall wooden structures in the United States. Federal grants will be awarded to fund the research undertaken on state, local, university, and private sector levels. This includes the provision of education to architects and builders, in relation to timber construction.

“Mass timber technology is revolutionizing and disrupting the way buildings are being built around the world. Unfortunately, the United States has been trailing other markets in this regard. The Timber Innovation Act will significantly contribute to enhancing our industry’s ability to close the knowledge gap and stimulate private sector investment,” remarked general manager of the Binational Softwood Lumber Council (BSLC), Cees de Jager.

Additionally, the act will introduce educational and technical programs on timber design and applications, in conjunction with the Department of Agriculture and state foresters. Responding to continued job scarcity in the aftermath of the recession, retrofitting buildings in regions of high unemployment will create new positions in rural areas, while also addressing environmental concerns.

From ArchDaily.com: https://www.archdaily.com/866841/new-timber-innovation-act-advocates-for-nationwide-timber-construction-in-the-united-states

Freres Lumber Unveils MPP, Adding Plant In 2017

Freres Lumber Unveils MPP, Adding Plant In 2017

Capitalizing on the current interest in building large-scale wooden buildings and more multi-story wooden structures, longtime Oregon plywood and veneer producer Freres Lumber has introduced the “Mass Plywood Panel” (MPP), a veneer-based engineered wood product that’s been more than a year in development while being tested and refined in conjunction with Oregon State University.

Calling the MPP the “first veneer-based product of this size and scale that’s been proposed to the marketplace,” Freres Lumber Executive Vice President Rob Freres says the MPP development represents the kind of innovative investment required to differentiate the company, add value and stay on the leading edge of product development and new technology.

Freres Lumber is adding an MPP plant near its Lyons, Ore. veneer plant and its Mill City, Ore. plywood plant. The facility is starting with a scarfing line and test press in early 2017, with a building planned for completion by late third quarter and commercial production to begin by late 2017.

“This will allow us to test panels and gain certification,” Freres says, adding he believes MPP will qualify under LVL and CTL standards.

A week after announcing the new product, Freres reps displayed MPP at the North American Wholesale Lumber Assn.’s Trade Market trade show in Las Vegas in late October. In a blog post on Freres Lumber’s web site, plywood sales rep Bob Maeda noted an “overwhelming response” to the product.

He added that Freres officials had “great discussions with many industry experts about product opportunities” that include crane mats, large cross-laminated timber (CLT) -like floor panels, solid wall panels, concrete forming applications, solid structural columns, scaffold planking, long length scarfed panels, furniture applications and more. “We have had a lot to digest and think about, but the opportunities seem to be many, and that is the exciting part,” Maeda posted.

Freres says the MPPs can be produced in dimensions up to 12 ft. wide, 48 ft. long and 12 in. thick. He believes a veneer-based mass building panel is more appropriate than the lumber-based CLT mass panel because defects are more easily removed during veneer production, and early research shows MPPs may reach the same strength values as CLT but using 20%-30% less raw material.

In addition, he says, the veneer layup process gives the MPP more engineering flexibility when it comes to meeting customer needs. MPP’s relative lightness, plus the aesthetic aspects of veneer add to MPP’s competitive benefits, Freres believes.

Moving ahead, Freres says, “We’re going to be testing a lot of different combinations and veneer thicknesses.” He believes MPP will be able to match the properties that engineers, builders and architects are looking for but with less raw material.

“It’s really exciting,” Freres says. “We’re looking at a multitude of different types of products, and it’s really a way to diversify and not be so reliant on standard commodity products.”

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