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Regarding the SP-CRD new type of nozzle-type steam trap, it utilizes the principle of two-phase flow: condensed water is pushed by pressurized steam toward the nozzle (helical molecular sieve), from where it is discharged. As the steam continuously pushes the condensed water forward, a water seal is formed in front of the nozzle due to the phase change principle, thereby preventing steam from entering the pipeline while allowing the condensed water to be discharged continuously from the nozzle. Made from 304 and 316 stainless steel, with a warranty of up to 20 years (in the event of no human-induced damage). It contains no moving parts, so there is no risk of metal fatigue or internal damage. It also effectively saves 10%-15% of steam energy; after installation and use, tests have shown that the savings can reach up to 27% (with meters available at individual points), thereby significantly reducing production costs. Please leave a message if you need detailed information
Thank you for sharing. Thank you for sharing. Thank you for sharing
How to select a steam trap? Steam at 116°C, drainage at 1 t/h.
The pipe diameter, pressure in kilograms, device pressure drop, and back pressure are required to help select the appropriate model for you
How to select a steam trap? Steam temperature: 116°C, drainage rate: 1 t/h. Operating pressure: 0.09 MPa, back pressure: 0
For the new type of drain valve, simply choose nozzle model SP-CRD-DN25-F-19
This post was last edited by rattki@china on 2020-9-14 at 14:38. Thank you for sharing!
Use this... the suggestion is to use it at the equipment side... on the steam main pipeline... there isn’t enough water to be drained away; when it turns into a mixture of vapor and liquid, it will exit together. PS. Pay attention to the drainage volume, as there is only one hole available; if it gets blocked, it will cause problems, and the pipeline will also need to be modified accordingly