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Pneumatic Titanium Ball Valves Gr1 and Gr2 8-Inch Class 150 DN 15-250 for Fluid Flow
Product Introduction:
The Pneumatic Three-Way Flanged Ball Valve is designed to manage fluid flow through three distinct ports with precision and efficiency. This valve combines pneumatic actuation with a flanged connection for secure installation and quick operation. Key features include:
Ideal for use in industrial processes requiring precise control, the Pneumatic Three-Way Flanged Ball Valve is essential in automated systems and applications needing flow management across multiple pathways. Its design supports efficient operation and reliable performance in diverse settings.
Main Features of Ball Valves:
Minimal Fluid Resistance: The resistance coefficient is equivalent to that of a pipe segment of the same length.
Simple Structure, Compact Size, Lightweight: Ball valves are designed for ease, being both compact and lightweight.
Reliable Sealing: Ball valves commonly use plastic materials for sealing surfaces, offering excellent sealing performance and suitability for vacuum systems.
Ease of Operation: A 90° rotation is all that is needed to fully open or close the valve, allowing for efficient remote control.
Convenient Maintenance: The straightforward design and removable sealing rings facilitate easy disassembly and replacement.
Isolation of Sealing Surfaces: When fully open or closed, the ball and valve seat sealing surfaces are isolated from the medium, preventing erosion during passage.
150# | 300# | 600# | 900# | 1500# | 2500# | |||
NPS (inch) | Long Pattern | Short Pattern | Long Pattern | Short Pattern | Long Pattern | Long Pattern | Long Pattern | Long Pattern |
1/2 | 108 | 108 | 140 | 140 | 165 | |||
3/4 | 117 | 117 | 152 | 152 | 190 | 254 | ||
1 | 127 | 127 | 165 | 165 | 216 | 279 | ||
1.1/4 | 140 | 140 | 178 | 178 | 229 | 305 | ||
1.1/2 | 165 | 165 | 190 | 190 | 241 | 368 | 368 | 451 |
2 | 178 | 178 | 216 | 216 | 292 | 419 | 419 | 508 |
2.1/2 | 190 | 190 | 241 | 241 | 330 | 381 | 470 | 578 |
3 | 203 | 203 | 282 | 282 | 356 | 457 | 546 | 673 |
4 | 229 | 229 | 305 | 305 | 432 | |||
5 | | | | | | 610 | 705 | 914 |
6 | 394 | 267 | 403 | 403 | 559 | 737 | 832 | 1022 |
8 | 457 | 292 | 502 | 419 | 660 | 838 | 991 | 1270 |
10 | 533 | 330 | 568 | 457 | 787 | 965 | 1130 | 1422 |
12 | 610 | 356 | 648 | 502 | 838 | 1029 | 1257 | |
14 | 686 | 381 | 762 | 572 | 889 | 1130 | 1384 | |
16 | 762 | 406 | 838 | 610 | 991 | 1219 | | |
18 | 864 | | 914 | 660 | 1092 | 1321 | | |
20 | 914 | | 991 | 711 | 1194 | | | |
22 | | | 1092 | | 1295 | 1549 | | |
24 | 1067 | | 1143 | 813 | 1397 | | | |
Applications of Three-Way Titanium Ball Valves:
Three-way titanium ball valves are utilized across various industrial sectors due to their distinctive advantages:
Chemical Industry: Titanium's superior corrosion resistance makes these valves ideal for handling corrosive substances like acids, alkalis, and oxides in chemical processes.
Aerospace Field: Their lightweight and high-strength properties make them essential for hydraulic and fuel systems in aerospace applications, meeting stringent aircraft requirements.
Food and Pharmaceutical Industries: The non-toxic nature and contamination resistance of titanium make these valves suitable for fluid control in food processing and pharmaceutical sectors.
Petroleum and Natural Gas Industry: They are crucial for managing fluid flow and pressure in the extraction, transportation, and processing of petroleum and natural gas, ensuring system safety and reliability.
Marine Engineering: Their resistance to seawater corrosion makes them well-suited for marine applications, including subsea pipelines and offshore platforms.
Common Connection Methods for Titanium Ball Valves:
Flange Connection: Ideal for medium to high-pressure systems, this method uses flanges and bolts to join the valve and pipeline, offering robust sealing, reliability, and ease of disassembly for maintenance.
Socket Connection: This involves inserting the pipe into the valve's socket end and securing it by welding or bonding, suitable for small-diameter systems, offering good sealing and mechanical strength.
Threaded Connection: Best suited for small-diameter, low-pressure systems, threaded connections (e.g., NPT, BSP) are simple and easy to use but are not recommended for frequent disassembly.
Welded Connection: Available as butt-welded or socket-welded, this method is used for high-temperature, high-pressure, and corrosive media systems. It provides a permanent, leak-proof connection and is ideal for applications requiring maximum sealing and stability.