Malla Zaranda Expanded Metal

  • group nameExpanded Metal Lath

  • Min Order1 square meter

  • model12x25mm

  • update timeWed, 03 Dec 2014 20:30:26 GMT

Paramtents

  • Application Screen

  • Material galvanized steel

  • Wire Gauge thickness: 0.4mm, 0.8mm

  • Mesh Size sheet size: 27" x 83

  • Hole Shape Hexagonal

  • Surface Treatment Galvanized

  • Technique Perforated

Packging & Delivery

  • Min Order1 square meter

Briefing

Malla Sin Vena Metal Mesh
1 galvanzied wall plaster mesh
2 sheet size: 27" x 83"
31.75, 2.5, and 3.4 pounds per squa

Detailed

Malla Zaranda Expanded MetalMalla Zaranda Expanded MetalMalla Zaranda Expanded MetalMalla Zaranda Expanded Metal

 

Malla Sin Vena Metal Mesh

 

Expanded metal lath/Wall plaster mesh/Electro galvanized diamond metal lath for stucco

 

Expanded Metal Lath

1 galvanzied wall plaster mesh

2 sheet size: 27" x 83"

31.75, 2.5, and 3.4 pounds per square yard
410 piece in one bundle

Packing of expanded metal lath:

10 piece in one bundle

80 bundle in one pallet

Specifications

 

Wall Plaster Mesh, manufactured from prime quality steel sheets that are slit and expanded to form small diamond shaped openings

 Wall plaster mesh, plastering mesh

Material: Low carton steel plate, Aluminum plate, Stainless steel plate, Alum-Platinum plate, Lead plate, Nickel Plate, etc

Main Processes: Punching and Pulling

Finishing: Eletro galvanized, hot dip galvanized, spray printed

Hole Pattern: Diamond mesh

Specifications: mesh thickness: 0.4mm, 0.8mm

                Hole size: 8x16mm, 10x20mm, 12x25mm

Note: the specifications are customized

Superior to traditional templates, such as wooden and steel ones, it has better stress intensity and deformability, which are good to engineering quality, structural safety and cost control. As a permanently dismantling-free template for concrete, it is used in civil-work of large buildings in large quantities, including tunnels, bridges, sewers, breast walls, power plants, docks, storage tanks, high-rises, ocean engineering and irregular surface modeling.