Bag filter housings: Definition, Principle, Features and Application

2025-02-28

The industrial filtration system relies on bag filter housings to safely house filter bags that remove contaminants from both liquids and gases. This blog examines the basic structure of bag filter housings, along with their operating mechanism and key features, as well as industrial applications, particularly in the water treatment, chemical, and food processing industries. The article teaches about stainless steel bag filter housings that improve durability and efficiency together with Lvyuan's high-quality solutions. The guide provides professional insights to help you make informed choices about filtration systems and purchasing bag filter housings. Choose Lvyuan for reliable filtration systems built to meet your specific needs.

Stainless steel filter housing with a cylindrical filter, a mesh pre-filter, and a replacement filter bag.

What is a bag filter housing?

Industrial filtration systems use bag filter housings as essential components to hold filter bags that extract contaminants from liquids or gases. The housings create an efficient filtration system through their ability to maintain a safe and sealed space for filter media. The food and beverage, water treatment, and chemical processing industries rely on bag filter housings to achieve product quality goals and protect their equipment systems.

Components of a bag filter housing

A standard bag filter housing system contains four essential elements:
Housing Body: The housing body is typically made of stainless steel or similar strong materials that can withstand both high pressure conditions and corrosive environments.
Lid: Provides easy access for bag replacement and maintenance.
Filter Basket: The filter basket supports the filter bag and distributes the fluid evenly.
Inlet and outlet ports: The housing contains ports that allow fluid to flow smoothly through the inlet and outlet sections.

The combined operation of these components in stainless steel bag filter housings provides a reliable filtration solution, making them the preferred choice for industrial applications.

multi bag filter housing

How does a bag filter housing work?

The basic design of the bag filter housing determines its operational efficiency. Fluid enters the housing through the inlet port at the start of the process. During filtration, the clean fluid moves through the porous material of the filter bag to exit the outlet port, while the contaminants remain trapped inside the bag. The basic operation of this system provides accurate filtration results.

The design configuration of bag filter housing systems determines their operational effectiveness. The selection of a bag filter housing system requires a thorough evaluation of pressure rating in addition to flow rate and bag compatibility. A properly designed housing will maintain low pressure drop, resulting in improved energy efficiency and reduced operating costs. Stainless steel bag filter housings offer maximum durability and corrosion resistance for use in demanding environments.

Key features of bag filter housings

Industrial environments rely on bag filter housings for their durability, versatility, and ease of maintenance. Let's look at these in more detail.

Durability and material quality

Stainless steel bag filter housings offer exceptional strength and corrosion resistance. Stainless steel bag filter housings are suitable for chemical and temperature-intensive applications due to their high resistance to corrosion. Robust construction results in extended service life, reducing the need for replacement.

Versatility and compatibility

The main advantage of bag filter housings is their ability to handle different types of fluids, including water and oils, as well as chemicals and solvents. The units support multiple bag sizes and materials, allowing users to tailor filtration systems to specific needs.

Easy maintenance and operation

The design of bag filter housings focuses on creating systems that are easy for operators to use. Quick-release lids, combined with easy-access baskets, help workers replace filter bags quickly, reducing downtime. This approach makes operations more efficient and reduces maintenance costs.

Bag filter housing applications

The versatility of bag filter housings allows them to be used in a wide range of industries. Here are some key applications:

Industrial applications

mult-bag filter cartridge

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stainless steel bag filter housing
stainless steel bag filter housing
PE Sintered Filter
PE Sintered Filter
basket strainers industrial
basket strainers industrial
sintered metal filter elements
sintered metal filter elements
filter bag housing suppliers
filter bag housing suppliers
high temperature sintered powder metal filter
high temperature sintered powder metal filter
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FAQ
For products
How do I choose the right sintered metal filter for my application?

To select the appropriate sintered metal filter, consider factors such as the type of fluid or gas, desired flow rate, temperature, pressure, and particle size to be filtered. Our technical team can provide guidance based on your specific requirements.

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How about tooling Charge?

Tooling charges only once per first order; all future orders would not be charged again, even for tooling repairs or maintenance.

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How are sintered plastic porous filters manufactured?

Sintered plastic porous filters are manufactured through a process of molding, sintering, and machining. This involves compacting the polymer particles into a desired shape, heating them to a specific temperature to fuse the particles together, and then machining the filter to achieve the desired dimensions and surface finish.

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What applications are sintered metal filters suitable for?

Sintered metal filters find applications in petrochemicals, water treatment, food and beverage, pharmaceuticals, automotive, and various industrial processes requiring precise filtration.

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What applications is sintered wire mesh suitable for?

Sintered wire mesh filter finds applications in various industries, including:

• Filtration of liquids and gases.

• Polymer and chemical processing.

• Pharmaceutical and food processing.

• Aerospace and automotive industries.

• Environmental protection and water treatment.

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