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Surface coating

Generation, conditioning and monitoring of coating aerosols with our technology solutions

Product surfaces are coated to induce defined functional properties (e.g., repulsion of dirt, abrasion resistance) and/or to enhance their appearance. In addition to permanent coatings, temporary coatings are also in demand in certain industries for specific requirements, such as for the protection of products in production, for testing purposes of materials/components/devices (for stress tests, functional tests) or for the delivery of medical drugs.

Today, there are numerous technical processes for the production of coatings. These differ primarily in the type of coating application (e.g., chemical, mechanical, thermal). Depending on the kind of process, aerosols can be the starting point for the application of the layer, or an intermediate product. A wide variety of aerosol technologies are in use for this purpose.

 

 

Aerosols and gaseous reactants (precursor substances) for coating purposes can be generated or provided by, among other things:

Depending on the application, it can become necessary to modify specific properties of the coating aerosol through concrete measures, for example to influence particle separation or to improve the quality and homogeneity of coatings. These measures include, for example:

 

WE GUARANTEE TO GIVE YOUR QUESTIONS MORE THAN SUPERFICIAL ATTENTION.

The quality of aerosol-based coatings also depends fundamentally on the properties of the coating aerosol, so that these often require metrological monitoring. Depending on the application, various aerosol analytical measuring instruments can be used for this purpose:

Complete Topas systems can also be used for specific coating tasks. These include, among others:

  • increasing the separation efficiency of filter elements through defined dust loading (AFC 132, AFC 135, AFC 136) on a laboratory and pilot plant scale
  • stress test of solar modules according to VDI 3956-1 by defined dust loading and under certain climatic conditions (CST 117)
GOOD TO KNOW

Curious application areas for our technologies

The US National Aeronautics and Space Administration (NASA) is conducting studies on the suitability of construction materials for use in space and on the performance of solar collectors. For this purpose, NASA operates the SAG 410 dust generator in combination with lunar dust surrogates.

The focus of cancer research for the treatment of peritoneal cancer is on investigations into the homogeneity and effectiveness of drug deposition of aerosolised chemotherapeutic agents in the abdominal cavity. A study conducted by the Ruhr Universität Bochum and the Technische Universität Dresden used a modified ATM 220 with a highly concentrated chemotherapeutic agent and various tracer substances.

Our technology solution

ATM 210

Atomizer Aerosolgenerator ATM 210 zur Aerosolerzeugung aus Flüssigkeiten für Gegendrücke bis 10 bar, druckluftbetrieben, mittlerer Massestrom

Atomizer Aerosolgenerator ATM 210 Vorderansicht
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ATM 210/H

Atomizer Aerosolgenerator ATM 210/H zur Aerosolerzeugung aus Flüssigkeiten für Gegendrücke bis 10 bar, druckluftbetrieben, hoher Massestrom

Atomizer Aerosolgenerator ATM 210/H , Vorderansicht
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ATM 211

Atomizer Aerosolgenerator ATM 211 zur Aerosolerzeugung aus Flüssigkeiten für Gegendrücke bis 10 bar, druckluftbetrieben, korrosionsbeständig

Atomizer Aerosolgenerator ATM 211, Vorderansicht
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ATM 220

Atomizer Aerosolgenerator ATM 220 zur Aerosolerzeugung aus Flüssigkeiten, druckluftbetrieben, Basismodel mit breitem Arbeitsbereich

Atomizer Aerosolgenerator ATM 220 zur Generierung von Prüf- und Kalibrieraerosolen, Vorderansicht
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ATM 221

Atomizer Aerosolgenerator ATM 221 zur Aerosolerzeugung aus Flüssigkeiten, druckluftbetrieben, Basismodel mit getauchter Düse

Atomizer Aerosolgenerator ATM 221, Vorderseite
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ATM 222

Atomizer Aerosolgenerator ATM 222 zur Aerosolerzeugung aus Flüssigkeiten, druckluftbetrieben, pneumatisch geregelt, fernsteuerbar

Atomizer Aerosolgenerator ATM 222 Vorderansicht
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ATM 230

Atomizer Aerosolgenerator ATM 230 zur Aerosolerzeugung aus Flüssigkeiten, druckluftbetrieben, hoher Massestrom

Atomizer Aerosolgenerator ATM 230, Vorderansicht
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ATM 231

Atomizer Aerosolgenerator ATM 231 zur Aerosolerzeugung aus Flüssigkeiten, druckluftbetrieben, getauchte Düse, hohe Masseströme

Atomizer Aerosolgenerator ATM 231, Vorderansicht
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CST 117/M

Prüfsystem CST 117/M für die Bestaubungsprüfung von Solarzellen-Modulen nach VDI 3956-1

CST 117, Soiling Tester, Vorderansicht
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EAN 581

Elektrostatischer Aerosol Neutralisator EAN 581 zur Erzeugung positiver und/oder negativer Ionen für die Neutralisierung oder unipolaren Aufladung von Aerosolen

Elektrostatischer Aerosol Neutralisator EAN 581 Vorderseite
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PAM 510

Prozess Aerosol Monitor PAM 510 zur Analyse der mittleren Partikelgröße und Partikelkonzentration in monodispersen Aerosolen

Prozess Aerosol Monitor PAM 510 , Vorderansicht
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