TurboDrop - Model HiSpeed Standard - Asymmetric High Pressure Double Flat Fan Venturi Nozzle
Asymmetric high pressure double flat fan venturi nozzle made from ceramic (coated with POM).. Asymmetric orientation of the two spray patterns, specially designed for higher application speeds. Compact design. High drift reduction maintaining excellent coverage. Perfect for fungicide, insecticide and post-emergence treatments. Best performance working pressure: 4-8 bar (60-120 psi). Ceramic parts made from strong, high quality pink ceramic. Easy assembling and disassembling, even with gloves, no tools required. Improved coverage of vertical and angular targets.
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Functionality
TurboDrop HiSpeed – the innovative nozzle technology
Using normal standard flat fan nozzles, the force from the driving speed deflects the downward oriented droplets forward to the driving direction of the sprayer. Therefore the droplet trajectory is forward angled and not straight downward. The coverage on the back side of the plant is always poor under this conditions. Higher sprayer speeds will step up this effect.
Traditional double flat fan nozzles with the same forward and backward orientation of the spray pattern may be able to balance this for application speeds up to 7-8 km/h. The TurboDrop® HiSpeed with a high orientation of the backward pattern and a downward orientation of the forward pattern is specially designed for speeds higher than 8 km/h. Influenced by the driving speed, the trajectory of the droplets will be deflected in the way that the backward angle will decrease and the forward will increase. Perfect for a similar forward and backward angle to optimise the coverage of the plants.
General Information on Drift
Drift is one of the main problems in spray technology, responsible for over 1/3 of all misplaced applications, which means that in more than 30 % of the applications farmers are wasting money.
Some basic principles can help to understand the most important factors for higher drift and its relevance for chemical applications.
The drift potential is strongly related to the droplet size of the spray. Bigger droplets can reduce the drift drastically in the same application conditions.
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