ATEX

(3 produkter)
ATEX-løsninger til eksplosionsfarlige områder

ATEX-produkter anvendes overalt, hvor brændbart støv, gasser eller dampe kan skabe en eksplosiv atmosfære. Inden for udsugnings- og luftteknik omfatter det blandt andet svejserøg, slibestøv, fine partikler og andre industrielle processer, hvor ikke kun den rene udsugningskapacitet, men også hele systemets sikkerhedstekniske egnethed skal vurderes.

I denne kategori finder du komponenter og løsninger til tilsvarende vurderede ATEX-anvendelser. Det kan for eksempel være udsugningsarme, ventilatorer, filterteknik, højvakuumkomponenter eller passende tilbehør. Hvilken udførelse der er egnet, afhænger altid af den konkrete risikovurdering, zoneinddelingen, stofgruppen, temperaturklassen og det planlagte anvendelsessted.

Det er vigtigt at betragte hele systemet: Opsamling, rørledning, filter, ventilator, jording, udtømning og styring skal passe sammen. En enkelt ATEX-komponent gør ikke automatisk et anlæg eksplosionssikret. For at kunne foretage et kvalificeret valg er der derfor behov for tekniske oplysninger om mediet, processen og installationsforholdene.

Dine fordele

✅ Komponenter til tilsvarende vurderede eksplosionsfarlige områder

✅ Valg ud fra faresituationen og anlægskonceptet

✅ Kan kombineres med udsugnings-, filter- og ventilationsteknik

✅ Teknisk systemvurdering i stedet for isolerede enkeltkomponenter

✅ Egnet til industrielle B2B-anvendelser

Vis som

ATEX in Extraction, Filtration, and Ventilation Systems

Explosion protection is always relevant in industrial air technology whenever flammable dusts, gases, or vapors may be present. What matters is not just the individual component, but the evaluation of the entire system, including collection, piping, filters, fans, discharge, grounding, and controls.

✔ Risk assessment and zone classification as a basis

✔ Take into account suitable materials and electrical conductivity

✔ Systematically minimize potential ignition sources

✔ Include grounding and equipotential bonding in the overall concept

Which ATEX components might be relevant?

Depending on the application, extraction arms, fans, filter systems, high-vacuum components, piping, dampers, sensors, and accessories in appropriately suitable designs may be considered. The specific variant required depends on the medium, zone, temperature, process, and installation situation.

CategoryTypical TaskKey Selection Criteria
Data EntryCapture emissions as close to the source as possibleMedium, Geometry, Conductivity
FiltrationParticle separationDust characteristics, discharge, pressure loss
Air ConveyanceProvide flow rate and pressureCharacteristic curve, zone, temperature
Connections & AccessoriesSecurely Connect System ComponentsGrounding, equipotential bonding, material compatibility
Selection and Planning

To ensure a reliable preliminary selection, as specific information as possible is required: which medium is being extracted, what type of area is involved, what volumes are generated, what temperatures occur, and how the system is configured. Pressure drop, flow rate, and operating mode are also relevant fluid dynamics parameters.

Maintenance and Operation

ATEX systems should be inspected regularly for secure connections, grounding, wear, deposits, and changes in operating conditions. Changes to the process or the system may require a reassessment.

FAQ

Does a single ATEX component make the entire system explosion-proof?
No. What matters is the suitability and evaluation of the entire system.

What information is needed to make a selection?
At a minimum: medium, zone classification, temperature, desired flow rate or extraction capacity, and the installation situation.

Is grounding always sufficient?
No. Grounding and equipotential bonding can be important measures, but they do not replace a comprehensive risk assessment.

Selection Guidance

For specific ATEX projects, the risk assessment, zone, medium, and system configuration should be available. Based on this information, the appropriate extraction, filtration, and air technology can be technically and accurately identified.

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