ALVEO3D P4D-R Filter
ALVEO3D P4D-R Filter
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29.17 € 29.17 €
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ALVEO3D P4D-R Filter

ALVEO3D-FILTER-P4D-R
29.17 € 29.17 €
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Approximate delivery date: Thursday 27 August - Monday 31 August

The HEPA H14 P4D-R filter for FDM 3D printers, developed by Alveo3D, is a benchmark solution for ultrafine particle filtration in 3D printing, achieving an efficiency of 99.995% at the Most Penetrating Particle Size (MPPS of 0.3 μm). This level of performance places the system within the industrial-grade HEPA filtration category, significantly exceeding standard HEPA H13 requirements.

Its application in enclosed FDM 3D printers enables advanced emission control, improving air quality in additive manufacturing environments where reducing airborne particles is a critical factor.

Combined Filtration with Activated Carbon for VOC Control in 3D Printing

The system incorporates granular coconut shell activated carbon (1–3 mm), specifically designed for the adsorption of volatile organic compounds (VOCs) and the removal of odors generated during FDM 3D printing. This combination of HEPA H14 filtration and high-efficiency activated carbon maximizes air purification in technical and professional environments.

The integration of this technology significantly enhances 3D printing safety and improves air quality in workspaces with intensive additive manufacturing operations.

Advanced Filtration Technology with Pleated Structure and Honeycomb Design

The filter features a high-surface-area pleated structure combined with a honeycomb geometry, increasing particle retention capacity without compromising airflow. This architecture is optimized for high-performance FDM 3D printing systems.

The materials used include filter cotton, polypropylene (PP), and polyester (PET), ensuring structural durability and thermal stability. In addition, the filter incorporates a polyurethane (PU) foam gasket that provides an airtight seal, preventing unfiltered air leakage.

HEPA H14 P4D-R filter dimensions

Photo: HEPA H14 P4D-R filter dimensions. Source: ALVEO3D

HEPA H14 Filter Technical Specifications for 3D Printing

The filter has external dimensions of 160 mm x 160 mm x 53 mm, with a frame measuring 150 mm x 150 mm x 50 mm, making it easy to integrate into compact filtration systems for FDM 3D printers.

The total weight is 0.290 kg, optimized to maintain stability without affecting airflow. The filter resistance reaches 120 Pa at maximum airflow, ensuring an ideal balance between filtration efficiency and ventilation performance.

The maximum supported airflow is 55 m³/h, making it suitable for professional 3D printing systems operating continuously. The operating temperature range is 0 °C to 60 °C, ensuring reliability in industrial environments.

HEPA H14 Filter Lifespan and Maintenance in 3D Printing

The estimated service life of the filter is approximately 900 operating hours, allowing efficient maintenance planning for intensive 3D printing applications.

Under heavy-use conditions, filter replacement is recommended every 4 months. For occasional use, the replacement interval can be extended to 8 months, while maintaining optimal HEPA H14 and activated carbon filtration performance.

Advanced Emission Control Solution for FDM 3D Printing

The HEPA H14 and activated carbon filtration technology developed by Alveo3D is positioned as an essential solution for the reduction of ultrafine particles, VOC control, and air quality improvement in professional FDM 3D printing environments.

This advanced filtration system is designed for environments where precision, safety, and efficiency in 3D printing are key factors in maximizing productivity and ensuring process stability in additive manufacturing.

General information

Manufacturer Alveo3D

Filter

Filter lifespan 900 h

Machine properties

Filtering HEPA14 + Activated carbon

Dimensions and weight

Dimensions 160 x 160 x 53 mm
Weight 0.290 Kg

Other

HS Code 8421999099

The correct handling of the HEPA H14 PD4-R filter for 3D printers is essential to ensure maximum efficiency in the filtration of ultrafine particles and volatile organic compounds (VOC). Proper use helps maintain air purification system performance in professional 3D printing environments and extend its service life within optimal operating parameters.

Careful handling of the P4D-R filter

The filter should be handled with extreme caution, avoiding any damage to the white pleated surface of the HEPA 14 filter media. This area is directly responsible for capturing ultrafine particles, and any damage can significantly compromise the efficiency of the filtration system in FDM 3D printers.

Safety when handling used filters

During filter replacement, it is essential to protect hands when handling a particle and VOC saturated filter. It should always be disposed of in the supplied zip bag, ensuring controlled and safe disposal. A saturated filter is not recyclable and must be treated as non-reusable waste within 3D printing maintenance protocols.

Compatibility and correct filter frame installation

Frames smaller than 156 mm x 156 mm are not recommended, as excessive compression may cause deformation of the filter geometry. Incorrect installation can directly affect airflow and reduce the efficiency of the HEPA H14 filtration system in FDM 3D printers.

Factors affecting the service life of the P4D-R filter

The filter lifespan depends on multiple variables related to the 3D printing environment. The most relevant factors include filament type used, melting temperature, concentration of nanoparticles and volatile organic compounds (VOC), as well as ambient humidity. These conditions directly influence media saturation and overall system performance.

ALVEO3D P4D-R filter replacement recommendation

To maintain optimal performance in FDM 3D printing air filtration, filter replacement should follow maintenance cycles based on usage.

In heavy usage scenarios, replacement should be carried out every 4 months, ensuring consistent efficiency in particle and VOC capture. In occasional usage contexts, the replacement cycle can be extended up to 8 months, maintaining adequate HEPA H14 and activated carbon filtration levels.