steam traps are available in balanced pressure type and capsule type, adaptable to different pressure ratings. Specifications cover various connection methods, and materials include SS304 and SS316. They feature quick start-up, good venting, corrosion resistance, energy saving, and stable operation.
The stainless steel steam trap achieves automatic drainage through the combined action of a float and a temperature sensing element. When condensate enters the valve body, the float rises with the liquid level, causing the valve core to open and continuously discharge condensate and air. When steam enters, the float loses buoyancy and falls, closing the valve to prevent steam leakage. Simultaneously, a built-in analyzer monitors temperature and discharge status to determine the steam trap's operating condition. This design balances stable drainage with operational monitoring, making it suitable for steam systems with high reliability requirements.
| Body Material | SS304 / SS316L Stainless Steel |
| Connection Type | Clamp / Threaded / Welded |
| Nominal Size | DN15 – DN50 (1/2" – 2") |
| Design Pressure | PN16 / PN25 / PN40 |
| Working Pressure | 16 – 40 bar |
| Working Temperature | 220 – 400°C |
| Applicable Media | Saturated Steam, Condensate |
| Surface Finish | Ra ≤ 0.8 μm |
| Standards | DIN / SMS / ISO / 3A |
Combines inverted float valve operation with thermal sensing, enabling stable condensate discharge while preventing steam loss under varying load and pressure conditions.
Integrated analyzer function monitors temperature and discharge behavior, helping operators evaluate steam trap performance and detect blockage or leakage early.
Stainless steel body offers excellent corrosion resistance and long service life, suitable for high-temperature, high-humidity, and sanitary steam systems.
Continuous drainage design ensures efficient heat transfer, reducing water hammer risks and improving overall steam system reliability.
Compact and service-friendly structure allows easy installation, inspection, and maintenance without frequent system shutdowns
This steam trap is widely used in industries such as food and beverage, pharmaceuticals, bioengineering, chemicals, electronics, textiles, and energy. For example, it is used for continuous condensate drainage in food sterilization autoclaves and steam jacket equipment; to ensure stable operation of aseptic processes in pharmaceutical clean steam systems; to improve heat transfer efficiency in chemical heat exchangers and reactors; and its analytical functions assist maintenance personnel in condition monitoring and preventative maintenance.
Working Principles
The stainless steel steam trap achieves automatic drainage through the combined action of a float and a temperature sensing element. When condensate enters the valve body, the float rises with the liquid level, causing the valve core to open and continuously discharge condensate and air. When steam enters, the float loses buoyancy and falls, closing the valve to prevent steam leakage. Simultaneously, a built-in analyzer monitors temperature and discharge status to determine the steam trap's operating condition. This design balances stable drainage with operational monitoring, making it suitable for steam systems with high reliability requirements.
Feature and Specification
| Body Material | SS304 / SS316L Stainless Steel |
| Connection Type | Clamp / Threaded / Welded |
| Nominal Size | DN15 – DN50 (1/2" – 2") |
| Design Pressure | PN16 / PN25 / PN40 |
| Working Pressure | 16 – 40 bar |
| Working Temperature | 220 – 400°C |
| Applicable Media | Saturated Steam, Condensate |
| Surface Finish | Ra ≤ 0.8 μm |
| Standards | DIN / SMS / ISO / 3A |
Features
Combines inverted float valve operation with thermal sensing, enabling stable condensate discharge while preventing steam loss under varying load and pressure conditions.
Integrated analyzer function monitors temperature and discharge behavior, helping operators evaluate steam trap performance and detect blockage or leakage early.
Stainless steel body offers excellent corrosion resistance and long service life, suitable for high-temperature, high-humidity, and sanitary steam systems.
Continuous drainage design ensures efficient heat transfer, reducing water hammer risks and improving overall steam system reliability.
Compact and service-friendly structure allows easy installation, inspection, and maintenance without frequent system shutdowns
Application
This steam trap is widely used in industries such as food and beverage, pharmaceuticals, bioengineering, chemicals, electronics, textiles, and energy. For example, it is used for continuous condensate drainage in food sterilization autoclaves and steam jacket equipment; to ensure stable operation of aseptic processes in pharmaceutical clean steam systems; to improve heat transfer efficiency in chemical heat exchangers and reactors; and its analytical functions assist maintenance personnel in condition monitoring and preventative maintenance.
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