Understanding Fiberglass Mesh
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Fiberglass mesh, known for its diverse utilization in the construction and manufacturing sectors, can be easily cut to fit using scissors or a razor knife, catering to your various specifications seamlessly.
It is highly beneficial for external thermal insulation systems, internal wall reinforcement, marble slab support, and roof waterproofing. Additional applications encompass grinding wheel mesh and insect screen production.
Self-adhesive tapes made from this mesh are also popular, particularly in the installation and repair of drywall.
Our alkali-resistant fiberglass mesh is intricately woven using fiberglass woven roving and coated with an alkali-resistant macro molecule latex. This process imbues the mesh with resistance to chemicals and water, enhanced strength, flexibility, and longevity, making it suitable for filtration applications to boost performance and filter lifespan.
Key Features:
Our product variety includes mesh types for all commonplace applications, and we can meet custom specifications accurately and reliably. Whether needed for industrial processes or construction projects, our fiberglass mesh addresses a wide array of requirements.
Common Applications:
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Usage of Plaster Mesh
Plaster mesh is vital for forming the structural layers of plaster and putty. During temperature and humidity fluctuations, and under mechanical stress, plaster mesh provides sturdy protection for the plastered areas. The mesh is highly resistant to wear and can handle substantial loads.
Commonly, plaster mesh is used for both internal and external plastering. It is also effective in producing self-leveling floors, installing thermal and acoustic insulation, waterproofing, and dividing heterogeneous layers. It effectively protects building facades and is ideal for the connection points of window and door frames to walls, and the junctions where walls meet floors or ceilings.
Varieties of Plaster Mesh
Plaster meshes come in several types: Galvanized chicken wire, welded wire mesh, light expanded metal, chain wire mesh, fine woven wire mesh, fiberglass cloth, and plastic netting.
Each type has distinct mechanical and physical properties; therefore, it is essential to choose the appropriate mesh type for specific tasks.
Guide to Choosing the Appropriate Plaster Mesh
A good reinforcing plaster mesh is suitable for reinforcing and restoring both existing plaster and brickwork.
Selecting fiberglass plaster mesh with a mesh size of 5×5mm and a mesh density of 165g/sq.m is generally effective.
Opt for lightweight plaster expanded metal sheets available in rolls for practical applications.
Using fiberglass cloth mesh, which is glass fiber impregnated with alkaline dispersion, guarantees increased tear resistance. This method is effective for quick-drying finishing mixtures and provides high reliability, durability, and longevity.
The surface density is a crucial factor: for external walls, choose a mesh density between 165-300g/sq.m. Heavier mesh is suitable for lower floors due to higher risk of damage. For internal work, a mesh density between 110-160g/sq.m. is sufficient, and very fine mesh is ideal for reinforcing walls before painting or putty applications.
Mesh performance depends not only on material and size but also on the shape of the mesh openings.
Expanded metal with diamond-shaped openings offers optimal grip for plaster layers, making it essential for underfloor heating installations due to its exceptional properties.
Welded wire mesh, created by welding rods perpendicularly, is less commonly used in plaster works but finds its place in producing fences and cages in agriculture.
Metal plaster mesh’s differing thermal expansion coefficient from plaster necessitates flexibility. Galvanized chicken wire with a hexagonal weave, due to its flexibility, attaches more comfortably to curved surfaces compared to rigid meshes like welded wire mesh or expanded metal.
Flexible chicken wire with hexagonal openings made from galvanized wire is highly utilitarian for plastering.
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