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Fire Rated Glass Transforms Retail Parking Garage with Natural Light and Vision

Fire Rated Glass Transforms Retail Parking Garage with Natural Light and Vision

SAFTI FIRST

Traditional parking garage designs used to have opaque fire rated building materials like concrete, masonry and drywall which made these spaces dark, cold and uninviting. That all changed, thanks to the emergence of new technology, clear, fire resistive glazing tested to ULC/CAN S101 up to 2 hours that are available in large sizes and low-iron glass make-ups with high visible light transmission for superior clarity and color neutrality.
Sponsored
Fire Resistive Blast and Ballistic Glass Walls in High Security Facilities

Fire Resistive Blast and Ballistic Glass Walls in High Security Facilities

SAFTI FIRST

A building’s design is very much influenced by the function it performs and the perceived threats that it may face – whether it’s from natural disasters, accidents or terrorist attacks – with the latter being a foremost concern for federal courthouses, embassies, government facilities and other high profile buildings. Because of these security concerns, trade-offs have been made when it comes to daylighting, energy efficiency and aesthetics to name a few. The good news is that today, high-performance security glazing make-ups are available to meet the level of protection needed while continuing to provide natural light and a feeling of openness.
Sponsored
Enhancing the #TargetRun with Oversized Fire Resistive Butt-Glazed Glass Walls

Enhancing the #TargetRun with Oversized Fire Resistive Butt-Glazed Glass Walls

SAFTI FIRST

Who hasn’t uttered the words or at least heard of a “Target run”? What started out as a marketing campaign to get more foot traffic in their brick and mortar stores has become somewhat of a cultural phenomenon. Aside from being a call-to-action, #TargetRun is a trending hashtag used by shoppers to share their in-store shopping experience on social media.
Sponsored
Position Paper on Oil-Canning: Specifying Wide Flat
Panels in Metal Cladding

Position Paper on Oil-Canning: Specifying Wide Flat Panels in Metal Cladding

Trimet Building Products

What is Oil-Canning? Oil-canning is associated with all thin sheet metal products and occurs in the wide flat portions of the cladding profile. It is seen as a series of standing waves, or regular bumps and hollows alternating along the flat length of the panel. This waviness, when viewed under certain conditions, can be undesirable aesthetically and may not meet with the owner’s expectations. The CSSBI wants to help avoid this situation. The cladding manufacturers are aware of the potential for oil-canning in the cladding profiles and can help minimize the effect. It is important for the proper steps to be taken during manufacturing and installation to produce a quality finished product; therefore, specifiers should insist on product from a reliable, experienced cladding manufacturer, like a CSSBI member company. Quality control, however, cannot end on the shop floor. The building project needs the cooperation and knowledge of everyone involved to enhance the quality of the finished job. Oil-canning is a phenomenon that can be managed if the following factors are considered at the beginning of a project.
Sponsored
Steel: unparalleled fire safety

Steel: unparalleled fire safety

Trimet Building Products

Steel: unparalleled fire safety Life safety, and specifically fire protection, has been a primary concern of the building codes. Steel is a non-combustible material and consequently does not burn, provide an ignition source or add fuel load that would enable a fire to spread or grow into a catastrophic event. Steel does not melt at temperatures typically encountered in a building fire. Its non-combustibility and assembly fire ratings do not degrade over the lifecycle of a building. This provides a reduced fire risk, to workers and occupants, minimizes the impact on municipal fire services, decreases the reliance on sprinklers, and results in less property damage and collateral damage to adjacent buildings if a fire should ever occur. • Steel has a melting point of approximately 1,500ºC (2,700ºF). In a typical fire, such as in an office, residential or retail occupancy, the maximum temperature of a fully developed fire will not likely exceed a range of 800ºC to 900ºC (1,500ºF to 1,650ºF), though it could reach a peak of 1,100ºC (2,000ºF) for a short duration. • Building codes recognize the fact that buildings, designed with non-combustible materials like steel, pose less of a fire risk to the public than combustible systems, which are limited to six storeys in height in Canada and 25.9m (85 ft.) in the US. STEEL IS A NON-COMBUSTIBLE MATERIAL AND CONSEQUENTLY DOES NOT BURN, nor does it provide an ignition source or add fuel load that would enable a fire to spread or grow into a catastrophic event. “Changes in the building codes that allow combustible framing in taller and larger buildings have gone too far and it’s created a perfect storm that can quickly overwhelm the ability of the fire service to respond.” CHIEF STEVE LOHR, HAGERSTOWN (MD) FIRE DEPARTMENT

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