Transportventilatorer

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Transportventilatorer til partikelbelastede luftstrømme

Transportventilatorer anvendes, hvor der ud over luft også transporteres støv, spåner, fibre eller andre partikler gennem et rørsystem. Konstruktionen skal derfor ikke kun levere den nødvendige luftydelse, men også være tilpasset det transporterede materiale og den dermed forbundne mekaniske belastning.

Typiske anvendelser findes i udsugnings-, transport- og støvfjernelsesanlæg, f.eks. ved træ-, plast-, tekstil- eller bearbejdningsprocesser. Afhængigt af partikelstørrelse, bulkvægt og abrasivitet kan der være behov for forskellige løbehjuls- og kabinetkonstruktioner.

Ved valget er volumenstrøm, trykbehov, materialeegenskaber og rørføring afgørende. Desuden skal det tages i betragtning, hvilken transporthastighed der er nødvendig, så partikler ikke aflejres i røret. Ved abrasive, varme eller brændbare medier skal der tages højde for særlige konstruktionsmæssige og sikkerhedstekniske krav.

Dine fordele

✅ Konstrueret til partikelbelastede luftstrømme og materialetransport

✅ Anvendelse i udsugnings- og transportsystemer

✅ Udvælgelse efter partikeltype, volumenstrøm og trykbehov

✅ Forskellige konstruktioner til forskellige medier

✅ Integration i industrielle rør- og støvfjernelsessystemer

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Transport fans for particle-laden airflows

Transport fans are designed for applications in which the airflow may contain dust, chips, or other particles. Particle size, abrasiveness, and material density influence wear, the required transport speed, and the fan’s structural suitability.

Typical Applications

✔ Extraction of chips and particles

✔ Pneumatic conveying in piping systems

✔ Dust collection systems for raw air containing particles

✔ Wood, plastic, and machining processes

✔ Material transport between collection and separation

Conveyor Speed and Wear

The air velocity must be high enough to keep particles in motion and prevent them from depositing in the piping system. At the same time, abrasive or heavy particles increase the mechanical stress on the impeller and housing. The material and design must therefore be suitable for the material being conveyed.

Here’s what you should keep in mind

✔ Particle type and particle size

✔ Abrasiveness and material density

✔ Required transport speed

✔ Flow rate and pressure drop

✔ potential imbalance and wear-related stress

✔ Temperature and Humidity

✔ Explosion protection for combustible dusts

Check pre-separation

In the case of very coarse, heavy, or abrasive particles, a pre-separator can reduce the mechanical load on the fan. Whether the fan is positioned before or after a separation stage depends on the process and the conveying task.


FAQ

Can any centrifugal fan be used as a transport fan?
No. The impeller and housing must be suitable for the respective particle load.

Why is air velocity important?
It must be high enough to ensure that particles are transported and do not settle.

When is a pre-separator useful?
If coarse, heavy, or highly abrasive particles were to place an unnecessary strain on the fan.

When is ATEX relevant?
In the case of combustible dusts or explosive atmospheres, the entire conveying process must be evaluated.

Consulting on Transport Fans

Material being conveyed, particle size, dust volume, piping network, flow rate, and pressure drop are the key selection parameters.

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