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More than 1,000 NYC building facades pose a threat to pedestrians

Scaffolding is seen around buildings all over the city, with some even staying in place for decades. But thousands of them, according to a New York Times analysis, are not there for construction but because the buildings’s facades pose a danger to pedestrians.To get more news about facades architecture, you can visit boegger.net official website.

According to the Times’s analysis, around 1,400 buildings (whose addresses are all listed in the Times’s website) across the five boroughs, are covered in scaffolding due to structural issues, including materials that could fall to the ground. A lot of them stay in place for years because some landlords routinely ignore violations and fines.

For instance, in 2001, the city issued a warning to a Bronx apartment building with a crumbling facade, saying that the playground outside the building’s day care center should close. But the facade’s issues persist today, while the landlord has ignored 19 violations and fines. Though the playground is still off-limits, the building’s structural issues persist, and in 2011, the city installed a scaffolding that still surrounds the structure to protect pedestrians.

Now, according to the Times, the Department of Buildings is looking to press criminal charges against owners of buildings with sheds in place for more than three years.

Wire Mesh Serves As a Dramatic Focal Feature in New Office Tower

As the first new high-rise office building erected in San Antonio, TX, in 30 years, the recently opened Frost Tower offers more than 460,000 sq. ft. of Class A+ office and retail space. The expansive ground-level lobby welcomes employees and guests with dramatic design elements, including fabricated-metal feature walls creatively adorned with architectural woven-wire mesh provided by Banker Wire, Mukwonago, WI. G&H Contracting, Salem, VA, used the wire mesh to fabricate the feature walls.To get more news about stainless steel architectural mesh, you can visit mesh-fabrics official website.
As a versatile material, architectural wire mesh comes in thousands of patterns. For this particular application, the design concept, developed by Pelli Clarke Pelli Architects, called for a stunning wall covering to provide visual interest with a glowing effect. Therefore, the design team selected Banker Wire’s M22-80 woven-wire mesh pattern, which offers the ability to mix metal alloys to bring out a new dimension of texture and color characteristics.

For Frost Tower, Banker Wire provided a mesh combining stainless steel for the vertical wires and brass for the horizontal wires. To enhance the visual effect, custom mirror panels spanning 28 ft. high were placed several inches behind the wire mesh.

Architectural mesh Eiffel 20100 in the Puskás Aréna

Codina has been involved in the construction of the new Puskás Aréna stadium in Budapest with the production and installation of approximately 20,000m2 of stainless steel achitectural wire mesh. The mesh model chosen for the project has been Eiffel 20100.To get more news about stainless steel architectural mesh, you can visit mesh-fabrics official website.
Codina has manufactured the entire Eiffel 20100 architectural wire mesh of the Puskás Aréna project within six months. Its application has consisted of 229 panels 4m wide and 29m long and weighing almost 100kg each.
The construction of the Puskás Arena stadium began in 2017 and ended in 2019, opening on November 15, 2019 with the football match between the national teams of Hungary and Uruguay.
The stadium has a capacity for 67,889 people for sporting events, with seating for all locations. For other events such as concerts, the stadium capacity reaches 80,000 people.The architect and project designer has been György Skardelli. The idea of ​​the design for the new stadium was to preserve the distinctive character of the original building, the old Puskás stadium, adapting it to the creation of a modern equipment: both according to the most advanced techniques and, especially, to the strict requirements of FIFA. The main purpose was not to completely erase the image of the old stadium in the Budapest landscape.
This is why the project was inspired by the oval shape of the old stadium and its decorated towers,faithfully maintained as main architectural features. The architectural structure of the entrance to the stadium has also been maintained: it’s the only original building that has not been modified, keeping the old brick walls.
The construction of the new Puskás Aréna Stadium puts together the architectural values ​​of the old stadium along with the implementation of the most modern techniques. And Codina has been involved with the manufacture and installation of its architectural meshes providing a perfect integration with the environment and a strong visual impact.

The stainless steel architectural mesh ensures the quality of the project

The stainless steel architectural mesh ensures the quality of the project. Under the strict quality control of the factory, it is manufactured by fully automatic and intelligent production line.To get more news about stainless steel architectural mesh, you can visit mesh-fabrics official website.
Speed up the construction progress and make the construction more convenient by using the construction mesh. Grid scale, steel bar standard and quality are all under severe control. After treatment, the constructed mesh has excellent anti-corrosion and anti-oxidation characteristics.
The anti-seismic and anti cracking function of trekking reinforced concrete structure is composed of longitudinal reinforcement and transverse reinforcement. Therefore, it has good bonding and anchoring property with concrete, and the load can be evenly distributed. According to the practical test, the welding steel mesh can reduce more than 75% of the cracks compared with manual binding. In 1976, a wire mesh factory in Guangdong Province first used the new technology of electrolytic pickling, high-pressure scouring and electricity blocking monotony in China to successfully produce the wire drawing line continuously, which changed the wire drawing process from intermittent production to continuous production, thus reducing the labor intensity and reducing the metal consumption. The stainless steel architectural mesh can be used for reinforcement, protection and heat preservation of construction, petroleum, chemical industry, breeding, garden protection, food processing, etc. Moreover, the steel mesh does not need to be processed after being transported to the construction site, so it is not lost. The mesh has high rigidity, good elasticity, uniform and accurate spacing and high strength of welding points.

Stainless Steel Architectural Mesh

Stainless Steel Architectural Woven Mesh is often specified for architectural applications, both internally and externally(also named facades mesh). Most commonly Grade 304 is specified, however Grade 316 is also used.To get more news about stainless steel architectural mesh, you can visit mesh-fabrics official website.
Stainless Steel Architectural Mesh applications include external mesh facades, ceilings, solar shading, mesh balustrades, decorative screens, partitions and wall cladding.
Stainless woven wire mesh is a sustainable material which offers superior economic and environmental benefits as well as high strength to weight ratio, ease of fabrication and excellent aesthetic appeal.
Material: stainless steel type 304, 304L, 316, 316L
A unique metal fabric system from Cambridge Architectural divides space and provides a one-of-a-kind ceiling design inside the new Cultural Arts Center on Montgomery College’s Takoma Park, MD, campus.

Designed by Washington, DC-based architecture firm SmithGroup, the state-of-the-art theater uses sleek mesh panels for wall cladding as well as space dividers, and for the first time ever as a completely flat mesh tension ceiling system extending over 50 feet in length.

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