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JONENG
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 steam trap utilizes the density difference and pressure change between steam and condensate to achieve automatic drainage. When steam enters the valve body, the steam pressure acts on the inverted tank, causing it to rise and close the valve, preventing steam leakage. When condensate or air enters, the inverted tank sinks, the valve opens, and the condensate and gas are discharged from the pipeline. This valve is designed with removable internal components for maintenance without removing the entire valve body, achieving efficient drainage, energy-saving operation, and ensuring long-term stable and safe operation of the steam system.

| 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 |

Constructed from high-quality SS317 stainless steel, providing excellent corrosion resistance and durability in high-temperature and high-pressure steam environments.
Float valve mechanism ensures precise condensate discharge and prevents live steam loss during operation.
Designed for testing and short-term monitoring, allowing accurate evaluation of steam system performance.
Compact and robust structure facilitates easy installation, maintenance, and integration into existing piping systems.
Simple internal design reduces wear, ensures reliable operation, and minimizes maintenance requirements in industrial applications

The stainless steel steam trap is widely used in industries such as chemical, power, petroleum refining, and papermaking. For example, in steam-heated reactors or piping systems, it is used to continuously drain condensate, preventing water hammer and water accumulation, while facilitating online maintenance and improving equipment reliability and energy efficiency.

Working Principles

The steam trap utilizes the density difference and pressure change between steam and condensate to achieve automatic drainage. When steam enters the valve body, the steam pressure acts on the inverted tank, causing it to rise and close the valve, preventing steam leakage. When condensate or air enters, the inverted tank sinks, the valve opens, and the condensate and gas are discharged from the pipeline. This valve is designed with removable internal components for maintenance without removing the entire valve body, achieving efficient drainage, energy-saving operation, and ensuring long-term stable and safe operation of the steam system.
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

Constructed from high-quality SS317 stainless steel, providing excellent corrosion resistance and durability in high-temperature and high-pressure steam environments.
Float valve mechanism ensures precise condensate discharge and prevents live steam loss during operation.
Designed for testing and short-term monitoring, allowing accurate evaluation of steam system performance.
Compact and robust structure facilitates easy installation, maintenance, and integration into existing piping systems.
Simple internal design reduces wear, ensures reliable operation, and minimizes maintenance requirements in industrial applications
Application

The stainless steel steam trap is widely used in industries such as chemical, power, petroleum refining, and papermaking. For example, in steam-heated reactors or piping systems, it is used to continuously drain condensate, preventing water hammer and water accumulation, while facilitating online maintenance and improving equipment reliability and energy efficiency.