Vertical and Horizontal Brush Hygiene Barrier

Product Code:
Stok kodu (SKU): AR-3000-2

360-Degree Sole Cleaning Hygiene Station – Vertical and Horizontal Brush Hygiene Barrier

The Areksan AR-3000-2 is an advanced hygiene barrier engineered for comprehensive footwear decontamination at production facility entry and exit points. Five independently motorized brushes — positioned across both horizontal and vertical axes — clean and disinfect footwear soles and lateral surfaces simultaneously, delivering full-coverage sole decontamination in a single controlled pass. A stepped platform structure at both entry and exit sides extends brush contact duration, maximizing the effectiveness of the two-stage water scrubbing and disinfectant application sequence. The enclosure is fabricated from 304-grade stainless steel.

Full-Coverage Sole Decontamination System with Five-Brush Vertical and Horizontal Configuration

Five-Brush Multi-Axis Cleaning System

The AR-3000-2 deploys five brushes across horizontal and vertical axes, each driven by its own independent geared motor. The horizontal brushes address sole contact surfaces while the vertically positioned brushes extend decontamination coverage to the lateral sides of footwear and boots — surfaces that standard single-plane brush systems do not reach. This multi-axis configuration makes the AR-3000-2 particularly effective in environments where footwear accumulates contamination across multiple surfaces, such as slaughterhouses, fish processing plants, and veterinary facilities. Individual brushes are modular in design and can be removed and reinstalled without specialized tooling, ensuring that maintenance and brush replacement do not create extended downtime.

Two-Stage Brushing and Disinfection Sequence

The AR-3000-2 processes footwear decontamination across two sequential stages within a single pass. In the first stage, all five brushes perform mechanical scrubbing with water, removing visible soil, organic matter, and biological residues from both the sole and lateral footwear surfaces. In the second stage, disinfectant solution is distributed evenly across the brush surfaces and applied to the pre-cleaned footwear, completing the chemical decontamination cycle. Applying disinfectant to a mechanically pre-cleaned surface significantly increases its antimicrobial efficacy compared to single-stage disinfectant-only systems.

Stepped Entry and Exit Platform for Extended Contact

The AR-3000-2 incorporates a stepped platform structure at both the entry and exit sides of the unit. This design controls the pace of personnel movement across the brush surface, extending the duration of footwear-to-brush contact and increasing both mechanical cleaning effectiveness and disinfectant exposure time per pass. The stepped configuration also guides personnel into a defined foot placement zone, ensuring consistent and repeatable decontamination coverage across every entry and exit event regardless of footwear type or walking speed.

Technical Specifications

  • Model No.: AR-3000-2
  • Material: 304-Grade Stainless Steel
  • Brush System: 5 × vertical and horizontal brushes, each with independent geared motor
  • Brush Design: Modular, individually removable
  • Stage 1: Mechanical sole and lateral surface scrubbing with water
  • Stage 2: Disinfectant solution applied evenly across all brush surfaces
  • Platform: Stepped entry and exit structure for extended brush contact duration

Typical Applications

The AR-3000-2 is the primary specification choice for environments where footwear contamination risk extends beyond the sole surface — including slaughterhouses, fish and seafood processing plants, pharmaceutical manufacturing facilities, and veterinary clinics where lateral footwear surfaces are exposed to high-risk biological material. The five-brush multi-axis configuration combined with the two-stage decontamination sequence establishes the AR-3000-2 as the most comprehensive sole cleaning hygiene barrier in the Areksan range, delivering full-coverage footwear decontamination at the facility perimeter and minimizing the risk of microbiological transfer into controlled production zones.

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