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The VB-8223-0-5-15 from Schneider Electric is a globe valve body designed for a two-way flow configuration without an actuator. Capable of handling a maximum valve size of 5 inches, this component has a robust flow coefficient of 240 Cv, making it suitable for a variety of applications. Rated at ANSI Class 125, it supports a close-off pressure of 125 psi (856 kPa).
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| Manufacturer | Schneider Electric |
|---|---|
| Product Type | Globe valve body (2-way, no actuator) |
| Product Line | VB Series |
| Part Number | VB-8223-0-5-15 |
| Valve Size | 5 in. |
| Flow Coefficient (Cv) | 240 Cv |
| ANSI Pressure Class | Class 125 |
| Close-Off Pressure | 125 psi (856 kPa) |
| Operating Temperature Range | -7 to 138 °C |
| Body Material | Cast iron |
| Seat Material | Forged brass |
| Seat Ring | EPDM |
| Stem Material | Stainless steel |
| Plug Material | Forged brass |
| Packing | Spring-loaded TFE/EPDM |
| Flow Type | Equal % |
The Schneider Electric VB-8223-0-5-15 is a two-way globe valve body designed for effective fluid control in various systems, excluding an actuator. The valve has a nominal size of 5 inches, which supports significant flow rates. It maintains a flow coefficient (Cv) of 240, characteristic of high-performance applications. Constructed to meet ANSI pressure Class 125 standards, the design caters to environments requiring reliable operation with a close-off pressure capability of 125 psi (856 kPa).
Its operational temperature range stretches from -7 °C to 138 °C, ensuring functionality across diverse conditions. The valve body is made of cast iron, while the seat is crafted from forged brass, ensuring robustness and longevity in service. Further enhancing its durability, the stem is fashioned from stainless steel, imparting resistance to wear and corrosion.
In terms of sealing, the valve features a layered packing system that combines spring-loaded TFE and EPDM materials, ensuring effective sealing under pressure. The seat ring is constructed of EPDM, providing enhanced resilience against fluctuations in pressure and temperature. Together, these materials contribute to the valve's reliable and efficient operation. When it comes to flow, this valve exhibits equal percentage characteristics, aligning with variable duty requirements and facilitating smooth control over fluid dynamics in multiple applications.