


Dwyer Instruments BBV-1D | Double flanged 3-valve block manifold | 316SS
A wide range of industrial applications, such as petrochemical processing, nuclear power plants, and oil refineries, can make use of the Model BBV-1D Block Manifold. The 316 stainless steel bar stock used to create the Series BBV-1 body is intended to endure numerous opening and closing operations. With two isolation and one equalizing valve, the three-valve block manifold is suitable for managing various substances such as water, oil, chemicals, air, and steam. Hard seats are carved precisely into each valve stem to lower operating torque.

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End connection | Process Connection: No flange: 1/2" female NPT; Flange: DIN 19213 flange; Instrument Connection: No flange: 1/2" female NPT; Flange: DIN 19213 flange; Vent/Test: 1/4" female NPT |
Manufacturer | Dwyer Instruments |
Material | Body, stem, valve assembly: 316 SS; Stem packing: PTFE |
Material | Other: Handle: 304 SS |
Maximum Operating Pressure | 6000 psi (400 bar) |
Maximum operating temperature | 464°F (240°C) |
Type | Double flanged 3-valve block manifold |
- The Series BBV-1 Block Manifold is suitable for a wide range of industrial applications, including oil refineries, nuclear power stations, petrochemical processing, and more, highlighting its versatility and adaptability.
- The body of the Series BBV-1 is forged from 316 stainless steel bar stock, ensuring durability and resistance to corrosion in harsh environments.
- Designed to withstand repeated open and close operations, ensuring long-term reliability and performance in demanding industrial settings.
- Suited to control a variety of fluids including oil, water, toxic fluids, chemicals, air, and steam, offering flexibility and compatibility with different media commonly encountered in industrial processes.
- The 3-valve block manifold consists of two isolate valves and one equalizing valve, providing versatile flow control capabilities and options for system configuration.
- Each valve stem is precision machined with hard seats, reducing operating torque and ensuring smooth operation and precise control over fluid flow.
- The manifold's capabilities make it suitable for a broad range of applications where reliable flow control and durability are essential, ensuring its relevance across various industrial sectors.
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