Static Eliminator - Air-Blade Ionizer
Static Eliminator - Air-Blade Ionizer combines the superior designed Standard Air-Blade Air Knife or the new X-Stream Air Blade Air Knife with a quality static bar made by Haug North America. Charges can be eliminated quickly, even over large distances and surface area.
Static Eliminator - Air-Blade Ionizer uses a small amount of compressed air for a powerful, and adjustable force with laminar flow to eliminate charges in applications where static bars cannot reach or where high speeds are a factor.
Standard Haug brand static bars can address most applications. For extremely high speeds and charges extra powerful models are available. For washdown applications, even a washable model is available at extra cost.
All Haug static bars come with a patented safety connector and fully shielded cable. The power supplies are repairable and are so well made, we offer a two year warranty on them and one year on the bars.
|
|
|
|
|
|
|
|
|
Compressed air enters at the rear (or end) ports at (A) of the Standard Air Blade (B). (See Standard Air Blade for a description of its operation). Entrained air follows the coanda profile of the air knife and along the front face flowing over the ionizing (static) bar (C) creating a fine sheet of ionized air along the entire length of the Air Blade ionizer at it leaves the air knife at point (D). The amplified air stream maximizes velocity and force and provides a well-defined sheet of ionized laminar flow for reduced energy use in the blow off of statically charged surfaces and to remove static at long distances from the assembly. For highly charged surfaces a stronger static bar is available (Triple X Air Blade ionizers).
Silent X-Stream Air Blade Ionizer- Compressed air enters at the rear (or end) ports at (A) of the X-stream Air Blade (B). (See X-stream Air Blade for a description of its operation). Entrained air follows the specially designed profile of the air knife flowing over the ionizing (static) bar (C) creating a fine sheet of ionized air along the entire length of the Air Blade ionizer at it leaves the air knife at point (D). The amplified air stream maximizes velocity and force and provides a well-defined sheet of ionized laminar flow for reduced energy use in the blow off of statically charged surfaces and to remove static at long distances from the assembly. For highly charged surfaces a stronger static bar is available (Triple X Air Blade ionizers).
Static Eliminator
- Air-Blade Ionizer
Features
|
Features
|
Benefits
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
Static Eliminator - Air-Blade Ionizer Applications
Typical applications replace expensive, high maintenance ionizing blower systems and are particularly advantageous in intermittent applications.
- Automotive
Neutralize and blow off dust from auto bodies to plastic parts prior to painting. - Bottling
Clean bottles of dust prior to labeling. Keeps bottles neutralized which may attract dust prior to filling or packaging. - Food
Neutralize charges in all sorts of plastic packing materials and containers to prevent and/or minimize dirt contamination. - General Manufacturing
When dealing with any plastic parts or materials, static can cause jamming of machinery, dirt contamination, or be a personnel hazard. - Paper
Static charge and buildup in high speed paper production can cause quality problems and effect machine speed. If static bars cannot be mounted close, or if dirt is a problem due to static dirt attraction, our products can often address the problem. - Plastic
As with paper, the same problems can arise often more critical, even at lower speeds. - Printing
Whether it is a flat web or bottle printing, dirt on the surface can effect the final product. Our products can often dramatically improve the quality by removing dirt buildup due to static. - Pharmaceutical
Static buildup especially in packaging can attract unwanted dust both on the product and on the packaging. Our products can address many of these applications. - Textile
Static buildup in the textile industry can be often addressed when placement of the static bars cannot be close to the product.
See more information on:
