Technologie du vide poussé

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Technique du vide poussé pour une aspiration industrielle ciblée

La technique du vide poussé est utilisée lorsque la poussière, les copeaux, les fumées ou autres impuretés doivent être aspirés directement au niveau des outils, des machines ou de points d’aspiration étroits, avec des débits d’air relativement faibles, mais des dépressions élevées. Contrairement aux systèmes d’aspiration classiques à basse pression, la technique du vide poussé fonctionne avec des diamètres de tuyaux plus faibles et des vitesses d’écoulement plus élevées. Elle convient donc particulièrement à la captation au plus près de la source et aux applications dans lesquelles les matériaux doivent être transportés sur de longues distances par tuyaux flexibles ou conduites.

Dans cette catégorie, vous trouverez des solutions pour les systèmes centraux et décentralisés de vide poussé, les installations de vide poussé, les aspirateurs industriels, les enrouleurs de tuyaux, les éléments d’aspiration ainsi que les accessoires et options de configuration adaptés. Selon l’application, il est possible d’intégrer des postes de travail individuels, plusieurs machines ou des zones de production complètes.

Pour le choix du système, la dépression, le débit d’air requis, les dimensions des tuyaux flexibles et des conduites, le nombre de points d’aspiration utilisés simultanément, le type de poussière et le concept de filtration sont déterminants. En présence de poussières combustibles ou explosibles, l’aptitude ATEX de l’ensemble de l’installation doit également être prise en compte.

Vos avantages

✅ captation ciblée directement au niveau de l’outil et de la machine

✅ vitesses de transport élevées avec de faibles diamètres de conduites

✅ utilisable pour un ou plusieurs points d’aspiration

✅ solutions centralisées et mobiles possibles

✅ combinaison polyvalente avec des systèmes de tuyaux flexibles et des éléments d’aspiration

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High-vacuum extraction: high negative pressures for localized extraction

High-vacuum extraction differs fundamentally from conventional extraction systems that handle large volumes of air. It operates with comparatively small flow rates and high negative pressures. This allows dust, chips, and other particles to be transported at high flow velocities through hoses and pipes with small diameters. This is particularly advantageous when extraction is required directly at the tool, on a machine, or at a small intake opening.

The high-vacuum extraction sector includes central high-vacuum extraction systems, mobile industrial vacuum cleaners, hose reels, pipe and hose systems, various capture elements, and accessories for connection, filtration, and discharge. Depending on the system design, a single workstation or an entire network of multiple extraction points can be served.

When is high-vacuum extraction appropriate?
Typical Applications

✔ Extraction directly at grinding and machining tools

✔ Machine extraction systems with small connection diameters

✔ Centralized supply to multiple workstations

✔ Industrial cleaning via hose and pipe networks

✔ Collection of dust and chips near the source

✔ Applications with longer hose runs and high flow resistance

High Vacuum vs. Low Vacuum
Featurehigh-vacuum extractionConventional low-vacuum extraction system
Negative pressurehighrelatively low
flow raterelatively smallrelatively large
Conductor cross-sectional areasmallerlarger
Typical data entrytool- and point-specificHoods, arms, tables, surface coverage
Typical ApplicationsTools, Machinery, CleaningAir Purification for Larger Coverage Areas
The Correct Interpretation

When sizing a system, it is not sufficient to consider only the maximum vacuum of a suction unit. The decisive factors are the vacuum level and the flow rate available at the most unfavorable actual extraction point in operation. Pressure losses result from hose and pipe lengths, elbows, branches, fittings, filters, and capture elements.

Here’s what you should keep in mind during the planning phase

✔ Number of extraction points in use simultaneously

✔ Required airflow per collection point

✔ Required vacuum pressure at the farthest point

✔ Pipe and hose diameters as well as line lengths

✔ Type, quantity, and properties of the material to be extracted

✔ Filtration technology and intended discharge

✔ Possible system expansions

✔ ATEX requirements for combustible dusts

Pipe Network and Hose System

In high-vacuum systems, the flow velocity in the lines is particularly important. Cross-sections that are too large can reduce the transport velocity, while cross-sections that are too small can significantly increase pressure loss. Therefore, diameters, line lengths, and the number of simultaneous extraction points should be considered together.

Filtration and Discharge

The filtration technology must be suited to the material being extracted and the operating conditions. Fine dust poses different challenges than coarse chips or heavy particles. The type of filter cleaning and the method for emptying the collected material also influence maintenance requirements and system availability.

ATEX and Combustible Dusts

When dealing with combustible dusts, a single ATEX component is not sufficient. The entire application must be evaluated. This includes potential ignition sources, grounding and equipotential bonding, filters, the extraction unit, the piping system, discharge, and the specific operating conditions.

FAQ

What does “high vacuum” mean in the context of an extraction system?
This refers to a system that operates at higher negative pressure and with lower air volumes than typical low-vacuum extraction systems.

Is high vacuum always more powerful than standard extraction?
No. These are different airflow concepts for different tasks. For large-area coverage, high air flow rates are often more important than high negative pressure.

Can a high-vacuum extraction system serve multiple workstations?
Yes, provided that the system and piping network are designed to handle the number of workstations in operation simultaneously.

Why are pipe diameters so important?
They affect both the flow rate and the pressure drop, and thus the performance at the extraction point.

Can high-vacuum extraction be used for combustible dusts?
In principle, only with a comprehensive solution that is suitable and appropriately rated for this purpose. The specific hazard situation must be taken into account.

Planning a High-Vacuum System Correctly

To assist with preliminary selection, please provide information on the material to be extracted, the number of workstations, hose and pipe lengths, connection diameters, and the desired operating mode. This allows the system to be sized much more reliably.

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