首页|Influence of 3D printed downstream support structures on pressure drop and entrainment of oleophilic and oleophobic oil mist filters

Influence of 3D printed downstream support structures on pressure drop and entrainment of oleophilic and oleophobic oil mist filters

扫码查看
Industrially applied coalescence filters, e.g. oil mist filters, usually consist of several filter layers in combination with a downstream support grid. While in the past the focus of research on coalescence filters has been e.g. on the filter media itself, information on the influence of support structures on pressure drop and entrainment is scarce. Recent studies on the influence of support structures on differential pressure and entrainment showed, that stainless-steel perforated sheets are particularly well suited for this purpose. Based on these findings, innovative 3D printed support structures with novel printed modifications, like conical holes instead of cylindrical holes or additional roofs above each hole, in comparison to the state-of-the-art stainless-steel perforated sheets, were developed and evaluated in this work. Especially for oleophilic filter media, where the oil film in quasi-steady state is build up on the filter rear side and thus, noticeably affected by support structures, the differential pressure was in some cases slightly reduced, whereas entrainment was significantly reduced (up to -75%) by the developed 3D printed support structures. For oleophobic filter media entrainment was mainly affected by the 3D printed support structures and was significantly reduced.

AerosolOil mist filtrationSupport structures3D printingCoalescence filtrationEntrainment

Christian Straube、Guohui Yang、Dominik Voll

展开 >

Karlsruhe Institute of Technology (KIT), Institute of Mechanical Process Engineering and Mechanics, Strasse am Forum 8, 76131 Karlsruhe, Germany

Karlsruhe Institute of Technology (KIT), Institute for Chemical Technology and Polymer Chemistry, Engesser Strasse 18, 76131 Karlsruhe, Germany

2022

Separation and Purification Technology

Separation and Purification Technology

EISCI
ISSN:1383-5866
年,卷(期):2022.290
  • 2
  • 20