Højvakuumanlæg

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Højvakuumanlæg til centrale udsugningssystemer med flere arbejdspladser

Højvakuumanlæg udgør den centrale udsugningsenhed til anvendelser, hvor støv, spåner eller andre urenheder opsamles og transporteres gennem rør og slanger med lille tværsnit og højt undertryk. De er særligt velegnede til flere arbejdspladser, maskintilslutninger eller værktøjsudsugninger, som skal tilsluttes et fælles system permanent eller efter behov.

Typiske anvendelsesområder er slibe-, bearbejdnings- og montagearbejdspladser, produktionsmaskiner samt rengøringsopgaver på værksteder og i industrien. Anlægget kan kombineres med faste rørnet, fleksible slanger, slangeoprullere og forskellige udsugningselementer. Det afgørende er, at undertryk og luftmængde er tilstrækkeligt til rådighed ikke kun ved selve anlægget, men også ved de udsugningspunkter, der rent faktisk anvendes.

Ved dimensioneringen skal der tages højde for ledningslængder, tværsnit, antallet af samtidigt anvendte udsugningspunkter, støvmængde, filterbelastning og konceptet for bortledning. Ved brændbart støv eller i eksplosionsfarlige områder er det desuden nødvendigt med en anvendelsesspecifik ATEX-vurdering. Et omhyggeligt dimensioneret anlæg kombinerer effektiv opsamling med økonomisk drift og gode muligheder for udvidelse.

Dine fordele

✅ central forsyning af flere udsugningspunkter mulig

✅ højt undertryk til rør og slanger med lille tværsnit

✅ velegnet til udsugning ved værktøj, maskiner og arbejdspladser

✅ kan kombineres modulært med rørnet, slanger og udsugningselementer

✅ behovsbaseret udvidelse og regulering kan planlægges

Vis som

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High-vacuum extraction systems as central extraction units

Central high-vacuum extraction systems are designed for applications in which multiple machines, tools, or cleaning stations are to be evacuated via a shared piping network. The system generates the required vacuum, while pipes, hoses, and capture elements direct the airflow to the individual consumption points. Due to the high vacuum levels, comparatively small pipe cross-sections can be used.

Typical plant layout

A complete high-vacuum extraction system consists of more than just the suction unit. The system typically includes filtration technology, dust or material discharge, a piping network, branch lines, shut-off valves, hose connections, and suitable capture elements. Depending on the process, automatic dampers or demand-based control may be advisable.

Typical Applications

✔ Centralized on-tool extraction system in production areas

✔ Extraction systems for grinding, milling, or machining equipment

✔ Multiple cleaning connections in the workshop and production area

✔ Supply of hose reels and stationary connection points

✔ Continuous or demand-driven multi-station systems

Design based on the worst-case operating point

What matters is not the system’s theoretical maximum capacity, but rather the performance still available at the most distant or aerodynamically unfavorable workstation. Pressure loss increases as the length of the piping and the number of fittings increase. At the same time, the air velocity must remain sufficiently high to ensure that particles are transported safely.

Design parameterMeaningConsequences of Incorrect Design
Negative pressureOvercoming Resistance OnlineInsufficient suction power at the workplace
flow rateSpecifies collection and transportInsufficient extraction or particle buildup
Conductor cross-sectional areaaffects speed and pressure lossunnecessary losses or insufficient transport speed
SimultaneityNumber of positions filled concurrentlyPerformance Decline with Repeated Use
Filter loadingResistance and Service LifeIncreasing pressure loss and frequent maintenance
Key Selection Criteria

✔ Type and quantity of material to be extracted

✔ Number of connections and simultaneous operation

✔ Longest and most durable pipeline route

✔ Pipe and hose diameters

✔ Filter design and filter cleaning

✔ Dust extraction and discharge

✔ Desired control and automation

✔ Reserve for future expansions

Demand-Based Control

If not all extraction points are in operation at the same time, automatic damper control or speed control may be advisable. This allows the suction capacity to be adjusted to the points that are actually open. However, the control strategy must be designed in such a way that the required flow velocities in the pipe network are maintained.

Maintenance and Filters

Filter condition, discharge, and airtightness directly affect system performance. Increasing filter resistance reduces the available airflow while suction power remains unchanged. Therefore, easy accessibility, proper filter cleaning, and an emptying strategy suited to the amount of dust are important planning factors.

Safety and ATEX

In the presence of combustible dusts or explosive atmospheres, the entire system must be evaluated. In addition to the extraction unit, the piping system, grounding, filters, discharge, potential ignition sources, and operating conditions must be taken into account.

FAQ

How many workstations can a high-vacuum extraction system serve?
This depends on the amount of air required per workstation, the number of simultaneous operations, and the pressure losses in the piping system.

Can additional extraction points be added later?
Often yes, provided that sufficient capacity and pipeline network reserves were included in the original design.

Why is the longest pipeline route important?
This is where the highest pressure losses often occur. This operating point is therefore particularly relevant for sizing.

Does automatic damper control make sense?
While it may be useful for varying applications, it must be planned in conjunction with suction capacity and the required transport speed.

What happens when a filter becomes clogged?
Pressure loss increases, and the available airflow may decrease. Regular inspection and proper cleaning are therefore important.

Consulting for Central High-Vacuum Extraction Systems

For a preliminary technical design, a simple piping diagram, pipe lengths, connection diameters, the number of simultaneous usage points, and information about the material to be extracted are particularly helpful.

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