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High Heat Resistant Pre Air Filter 23" x 19" Airflow:1550³/h

Reference Price:US$from $20

Min. Order:1 unit

Short Description:

The High Heat Resistant Pre Air Filter (23" x 19") is designed to handle high temperatures while effectively filtering air with an airflow capacity of 1550³/h.

  • frame: aluminum folding frame
  • filter media: High temperature resistant ultrafine glass fiber filter paper
  • sealing glue: PU two-component polyurethane AB adhesive
  • divider: 120g/㎡ adhesive board paper
  • protective netting: Stainless Steel Square Wire Mesh
  • filtration efficiency: G1 G2 G3 G4
  • Maximum operating temperature: 400℃
  • Maximum operating humidity: 80%
  • accreditation: ANSI Z9.5 ASHRAE 110 ASTM E84 CAN/CSA C22.2 NFPA 45 SEFA 1 UL
  • Applicable area: USA Europe Malaysia Canada Middle East Indonesia
  • customs code: 84213990

Cleanroom

High Heat Resistant Pre Air Filter 23" x 19" Airflow:1550³/h

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Summary

Cleanroom

High Heat Resistant Pre Air Filter 23" x 19" Airflow:1550³/h

Choose your installation & validation options below

Validation

Installation & Validation

Choose your upgrade options

Product Description

The High Heat Resistant Pre Air Filter (23" x 19") is designed to handle high temperatures while effectively filtering air with an airflow capacity of 1550³/h. Ideal for protecting sensitive equipment, it ensures efficient particle removal and enhances system performance in environments exposed to extreme heat..These filters are essential for industries where air quality is crucial, even in extreme heat conditions.

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Applications

These filters are commonly used in the following areas:

  • Power plants

  • Chemical processing

  • Steel and metal production

  • Industrial HVAC systems

Design Features

The key features of the High Heat Resistant Pre Air Filter include:

  • Heat-resistant construction for high-temperature environments.

  • Efficient filtration of dust, dirt, and other particles.

  • Durable and long-lasting performance under harsh conditions.

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Material composition

MediaGlass fiber
FrameAluminum/Galvanized steel/Stainless steel
Efficiency85% at 2.0μm
Max. Humidity100%
Optional aluminum17-96mm
MediaGlass fiber
FrameAluminum/Galvanized steel/Stainless steel
Efficiency85% at 2.0μm
Max. Humidity100%
Optional aluminum17-96mm

OEM:

Customized design is available for the European Union EN779 high heat resistant pre-filter G3.

Product dimensions parameters

OEM: Customized design is available for the European Union EN779 high heat resistant pre-filter G3.

Model NO.Actual Size Air FlowMedia Area VelocityEfficiency
HxWxD (mm)(m³/h)Flow (m²)(m/s)
K43-001594*289*217500.281.21G3
K43-003594*492*2115500.581.22G3
K43-004594*289*4610500.41.7G3
K43-005594*492*4618000.671.71G3
K43-006594*594*4622000.811.73G3
K43-009594*594*6930001.112.36G3
K43-012594*594*8034501.282.72G3
K43-013594*289*9615500.582.51G3
K43-014594*492*9626500.972.52G3
K43-015594*594*9631501.172.48G3
Model NO.Actual Size Air FlowMedia Area VelocityEfficiency
HxWxD (mm)(m³/h)Flow (m²)(m/s)
K43-001594*289*217500.281.21G3
K43-003594*492*2115500.581.22G3
K43-004594*289*4610500.41.7G3
K43-005594*492*4618000.671.71G3
K43-006594*594*4622000.811.73G3
K43-009594*594*6930001.112.36G3
K43-012594*594*8034501.282.72G3
K43-013594*289*9615500.582.51G3
K43-014594*492*9626500.972.52G3
K43-015594*594*9631501.172.48G3

FAQ

1. What are the maintenance needs for High Heat Resistant Pre Air Filters?

High Heat Resistant Pre Air Filters require regular inspection and maintenance to ensure optimal performance. Depending on the environment, the filters should be checked for accumulated dust, dirt, or other contaminants. In some cases, they can be cleaned if they are designed to be reusable; otherwise, they should be replaced according to the manufacturer's recommendations. It’s essential to ensure that the filters maintain their integrity and continue to effectively trap contaminants without compromising airflow.

2. Can High Heat Resistant Pre Air Filters be used in outdoor equipment?

Yes, High Heat Resistant Pre Air Filters can be used in outdoor equipment, provided that the specific conditions of the equipment and environment are considered. Outdoor equipment often faces fluctuating temperatures and environmental contaminants like dust, rain, and pollen. These filters are ideal for use in such situations due to their ability to withstand high heat while protecting sensitive internal components from these contaminants.

3. Can High Heat Resistant Pre Air Filters be customized for specific applications?

Yes, High Heat Resistant Pre Air Filters can be customized for specific applications. Some of the common customizations include:

Size adjustments to fit particular equipment or machinery

Material changes for higher resistance to chemicals or extreme temperatures

Specific filtration ratings depending on the type of contaminants present

These customizations ensure that the filter meets the unique needs of various industrial settings, providing maximum protection and efficiency.

4. What is the airflow capacity of High Heat Resistant Pre Air Filters?

The airflow capacity of High Heat Resistant Pre Air Filters depends on their size, design, and application. Generally, these filters are designed to allow high volumes of air to pass through without sacrificing filtration efficiency. However, the airflow rate must be balanced with the filter’s ability to capture contaminants to maintain system performance. Manufacturers typically provide specifications on the optimal airflow for each filter model.

5. How do High Heat Resistant Pre Air Filters improve system performance?

High Heat Resistant Pre Air Filters enhance system performance by preventing contaminants from entering sensitive equipment. By trapping larger particles before they reach downstream components, these filters maintain the efficiency and longevity of the system. They also prevent clogging and overheating, ensuring that systems operate at their best and reducing the risk of unplanned maintenance.

6. What is the efficiency of High Temperature Primary Filters in industrial use?

High Temperature Primary Filters are designed to be highly efficient in industrial environments, particularly in applications with high temperatures and particulate exposure. These filters typically feature a filtration efficiency between 90% to 95% for large particles. However, the efficiency can vary based on the specific material used, such as fiberglass or metal mesh, and the size of particles being filtered.

7. How are High Heat Resistant Pre Air Filters installed?

High Heat Resistant Pre Air Filters are generally easy to install, with designs that allow for quick replacement or maintenance. Installation typically involves positioning the filter in the air intake area of the system, ensuring it is secured in place and properly aligned with the airflow direction. For most systems, installation follows basic filter-changing protocols and may require tools or special brackets depending on the filter's size and design.

8. Are High Heat Resistant Pre Air Filters suitable for use in high-pressure environments?

Yes, High Heat Resistant Pre Air Filters can be designed for high-pressure environments. When used in such conditions, they must be built to withstand not only high temperatures but also the added mechanical stress from increased air pressure. These filters are typically reinforced with durable materials like metal mesh or specially engineered frames to handle the pressure without compromising their structural integrity or filtration performance.

9. What is the impact of using High Heat Resistant Pre Air Filters in manufacturing?

Using High Heat Resistant Pre Air Filters in manufacturing has several benefits, including:

  • Improved air quality, reducing the risk of contamination in sensitive processes

  • Enhanced system efficiency by preventing particulate buildup on machinery

  • Extended equipment lifespan due to consistent protection from dust and debris

These filters are especially valuable in industries where high temperatures and particulate exposure can lead to frequent equipment failure and maintenance issues.

10. Are High Heat Resistant Pre Air Filters suitable for gas turbines?

Yes, High Heat Resistant Pre Air Filters are commonly used in gas turbines, particularly in applications where high temperatures and airborne particles are prevalent. These filters help ensure that turbines receive clean air, which is essential for their efficiency and longevity. By preventing contaminants from entering the turbine, the filters improve operational reliability and reduce the risk of costly repairs.

11. How do High Heat Resistant Pre Air Filters help reduce energy costs?

High Heat Resistant Pre Air Filters help reduce energy costs by maintaining efficient airflow and reducing the load on secondary filters and systems. By preventing the buildup of dirt and particles that can restrict airflow, these filters ensure that systems operate at peak efficiency. This can result in lower energy consumption as the equipment doesn't have to work harder to maintain the desired performance levels.

12. What types of contaminants can High Heat Resistant Pre Air Filters trap?

High Heat Resistant Pre Air Filters are designed to capture a variety of contaminants, including:

  • Large dust particles

  • Fibers and lint

  • Soot and smoke

  • Metal shavings or chips in industrial settings

These filters are particularly effective in preventing coarse particulate matter from entering sensitive machinery or systems that operate in high-temperature environments.

13. What are the advantages of using High Temperature Primary Filters in industrial systems?

High Temperature Primary Filters offer several advantages in industrial systems, such as:

  • Improved protection against heat and particulate contamination

  • Enhanced system reliability by preventing downtime caused by clogged systems

  • Increased efficiency, as they maintain optimal airflow and reduce system strain

These filters are essential for maintaining operational continuity in environments where heat and dust pose significant risks to equipment and productivity.


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