sintered filter felt

sintered filter felt

Stainless steel sintered felt

Model Number: lvda-felt

Material : 316-L stainless steel, 316 stainless steel , 304 stainless steel, nickel.

Absolute filter rating : For liquids - 1µm to 80µm, for air and gases - below 0.1 µm is possible.

Porosity %(+/- 5%) : 65-78

Thickness : 0.2-10 mm or customized

Standard size : 500 mm × 1000 mm, 600 mm × 1000 mm, 600 mm × 1200 mm, 1000 mm × 1000 mm, 1000 mm × 1200 mm, 1000 mm × 1480 mm, 1180 mm × 1450 mm, 1180 mm × 1500 mm.

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Product Details

Introduction to Sintered Filter Felt

In the realm of industrial filtration, sintered filter felt stands out as a material of choice for its exceptional properties and diverse applications. Derived from a sintering process that bonds fibers together to create a porous and durable structure, sintered filter felt offers a unique solution to a wide range of filtering challenges.

At its core, sintered filter felt is composed of fibers that are sintered, or fused, together through a heat treatment process. This sintering not only strengthens the material but also creates a porous structure that allows fluids to pass through while trapping particles and impurities. The fibers themselves can be made from various materials, including stainless steel, polypropylene, and other synthetic polymers, depending on the specific application requirements.

One of the key advantages of sintered filter felt is its high porosity. The interconnected pores within the material allow for efficient fluid flow while maintaining excellent filtering capabilities. This porosity can be tailored to meet specific needs, from very fine filtration to coarse filtration, depending on the fiber size, density, and sintering conditions.

Moreover, sintered filter felt exhibits remarkable durability and resilience. The sintered fibers are strongly bonded together, resulting in a material that can withstand high pressures, temperatures, and abrasive environments. This durability ensures that sintered filter felt maintains its filtering performance even under challenging conditions.

The material's chemical resistance is another noteworthy feature. Depending on the fiber material used, sintered filter felt can be resistant to a wide range of chemicals and solvents, making it suitable for use in various industries where exposure to harsh chemicals is common.

Furthermore, sintered filter felt's customizability adds to its versatility. Manufacturers can adjust the porosity, thickness, and material composition of the felt to meet specific filtering requirements. This flexibility allows sintered filter felt to be tailored for use in a wide range of applications, from precision filtering to heavy-duty industrial processes.

In addition to its functional properties, sintered filter felt also offers environmental benefits. Its durable and long-lasting nature reduces the need for frequent replacements, thus minimizing waste and environmental impact. Moreover, sintered filter felt can be recycled or reused, further contributing to sustainability.

However, it's worth noting that sintered filter felt, like any other material, has its limitations. For instance, certain types of sintered filter felt may not be suitable for use in extremely acidic or alkaline environments, as they may be susceptible to corrosion. Additionally, the sintering process itself can be energy-intensive, requiring careful consideration of environmental impact during production.

Sintered filter felt is a highly functional and versatile material that offers excellent filtering capabilities, durability, and chemical resistance. Its unique porous structure and customizability make it an ideal choice for a wide range of industrial applications. As technology continues to evolve, sintered filter felt is likely to play an increasingly important role in meeting the filtering needs of various industries, while also contributing to environmental sustainability.

Application

Polymer filtering.

Filtration of high temperature and corrosive liquid in oil refinery, chemical fields.

Gas, water, printing ink filtering.

Viscose rayon filtering.

Food and beverage purification and filtering.

Filtration of hydraulic and lubricating oil in various equipment.

Dust collection for high temperature gas.

Support for filter media and carrier for catalyst.

Gas diffusion layer (GDL) in proton exchange membrane (PEM)

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