1.5 HP | 120V 1~
5,500 in²
12 gal
The BL AM is a brushless industrial vacuum for conductive metal dust, combustible metal powder, and additive manufacturing powder recovery. It is built for applications where fine metal powders require a more controlled collection workflow than a standard dry industrial vacuum.
Collected powder is pulled into an inert liquid bath inside the stainless steel container, helping reduce ignition risk during recovery of conductive or reactive metal dust. The system combines H13 antistatic cartridge filtration, a metal mesh spark trap, powder separation filtration, grounding, and a hydrogen safety vent to support safer handling during metal powder cleanup.
The AISI 304 stainless steel collection container includes a front inspection window for liquid-level monitoring, a quick-connect release for tool-free container removal, and a lower drain tap for controlled liquid discharge. Inside the container, filtration and separation stages help capture powder while supporting recovery, disposal, or liquid-management workflows.
The BL AM is a strong fit for metal 3D printing, powder bed fusion cleanup, aluminum powder recovery, titanium powder handling, and machine-side collection of conductive metal dust where liquid inerting, spark control, and venting are required.

The BL AM uses a brushless single-phase motor for conductive metal powder recovery without carbon-brush discharge. The motor head includes protective filtration for the vacuum unit and supports reliable operation in dust-critical additive manufacturing environments.

An H13 antistatic polyester cartridge filter helps capture fine conductive dust while protecting the motor and operator. The cartridge design provides a large filtration surface inside a compact vacuum body.

The AISI 304 stainless steel container collects conductive metal powder into an inert liquid bath. Internal separation stages help manage powder recovery, liquid filtration, and controlled discharge after collection.

The hydrogen safety vent helps release gases that may form inside the collection chamber during reactive metal powder collection, supporting a safer inerting workflow for conductive and combustible metal dust.




