The ULT AG has further developed its extraction and filtration systems for removal of dust and smoke, the ASD 1500 and ASD 2500.
Both systems are based on an ideally configured device and filter concept that provides users with high contaminant filtration rates, simplified filter handling and long filter lives. In addition to cost and time savings, users benefit in reduced compressed air consumption, resulting in lower energy expenses for jet or rotary nozzle dedusting of the applied filter cartridges.
The ASD 1500 and ASD 2500 extraction systems were developed for removal of dry non-flammable dusts. They are ideally suited for utilization in various industries, e.g. for bulk materials or metal processing, generally supporting all grinding, cutting, milling and polishing processes, as well as powder filling procedures.
Both systems benefit from the utilisation of conic filter cartridges, thereby enabling increased filter performance and pressure, and independent pneumatic cleaning due to their design layout. These high quality filter units are dust grade M compliant with DIN EN 60335-2-69:2008e, ensuring high separation efficiency for various particulate matters of more than 99.99 %.
Using appropriate capturing elements, dust particles can be extracted directly at their place of origin. An optional swing check valve protects pipelines against pollution by possible dirt pushback, and consequently, filter cartridges against premature wear.
An additional benefit is the easy disposal of low contaminated dust deposits that are collected directly into a 70 l removable container.
The ASD 1500 and ASD 2500 de-dusters can be flexibly adapted to various process conditions for extraction and filtration of dust and fume. It is possible to select the extraction position, i.e. raw gas intakes can be located on the systems’ right or left sides, which offers variable installation conditions.
Because of their small footprints, the units can be situated in limited spaces and therefore, help to save valuable space on the production floor. This optimised efficiency is characterised by front access to the systems.
Finally, recirculation of clean filtered air to the working area avoids heat loss.
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