Max Tube Fittings is a trusted distributor of Titanium Manifold Valves in Delhi, India, providing rugged and high-capacity flow control systems for mission-critical industrial applications. Engineered with isolation, calibration, and equalization of pressure instruments in mind, these valves are made of high-grade titanium for maximum corrosion resistance and mechanical strength. In 2-way, 3-way, and 5-way designs, Max Tube‘s manifold valves are perfect for controlling flow in a number of lines. Designed for high-pressure application, Max Tube’s manifold valves are used universally in instrumentation systems in chemical, offshore, and aerospace applications, where reliability and accuracy are crucial.
Titanium Manifold Valves are produced with Titanium Grade 2 or Grade 5. Grade 2 is commercially pure titanium with good corrosion resistance and moderate tensile strength (~344 MPa) while Grade 5 has higher strength (~895 MPa) and thermal stability because it contains aluminum and vanadium. Both grades are weldable, lightweight, resistant to stress cracking and erosion. These valves provide superior resistance to seawater, acids, and oxidizing agents. They are mechanically strong and dimensionally stable under pressure and hence can be used in precise instrumentation and flow control in hostile environments.
| VALVE SIZE | 1/8″ TO 1″ |
| THREAD | NPT, BSPP, BSPT |
| CONNECTION | THREADED, FLANGE END |
| TYPE | R TYPE, T TYPE, H TYPE |
| FUNCTION | 2 WAY, 3 WAY, 5 WAY |
| BODY SHAPE | SQUARE, RECTANGLE |
| PRESSURE RATING | 1500 PSI, 3000 PSI, 6000 PSI, 10000 PSI, 15,000 PSI |
| ORIFICE SIZE | 2 MM TO 9.5 MM |
| MEDIA TEMPERATURE | (-120* C TO 500*C ) RANGE AS PER PRESSURE |
| BODY TYPE | BAR STOCK, FORGED |
| HANDLE | BAR T-HANDLE |
| PACKING DETAILS | BOX PACKING, WOODEN PALLET |
| EQUIVALENT BRANDS | SWAGELOK, PARKER, ROSE MOUNT, HAMLET, OLIVER VALVES, HOKE |
| MATERIAL | TITANIUM |
| Grade | Ti | C | Al | H | V | O | Fe | N |
| Ti Grade2 | 99.2 min | 0.1 max | – | 0.015 max | – | 0.25 max | 0.3 max | 0.03 max |
| Ti Grade5 | 90 min | – | 6 min | – | 4 min | 0.2 max | 0.25 max | – |
| Element | Density | Melting Point | Tensile Strength | Yield Strength (0.2%Offset) | Elongation |
| Titanium Gr. 5 | 4.43 g/cm3 | 1632 °C (2970 °F) | Psi – 138000 , MPa – 950 | Psi – 128000 , MPa – 880 | 14 % |
| Titanium Gr. 2 | 4.5 g/cm3 | 1665 °C (3030 °F) | Psi – 49900 , MPa – 344 | Psi – 39900 , MPa – 275 | 20 % |
At Bhavesh Tube Fittings, we are a leading supplier, manufacturer, and exporter of Titanium Manifold Valves in Delhi, India. Our state-of-the-art manufacturing facilities, strategically located in the India, enable us to deliver high-quality solutions that meet your specific requirements. With a comprehensive inventory of Monel materials, we are well-equipped to fulfill your needs efficiently. Our commitment to excellence and customer satisfaction ensures that we consistently maintain a ready stock of Monel Manifold Valves to support your operational demands.
Max Tube Fittings is a leading supplier and stockist of premium Titanium Manifold Valves in Delhi, India. Our products find extensive application across diverse industries, and we are dedicated to delivering outstanding service while ensuring high customer satisfaction. Our specialized finishing techniques distinguish us in the metal industry, enhancing the performance and durability of our valves. We are committed to consistently providing top-quality Monel Manifold Valves while effectively addressing the unique needs of our customers.
Contact us to get a quick quote for your requirement.
Titanium Manifold Valves find their critical use in instrumentation systems, especially in chemical plants, oil & gas platforms, power plants, and marine usage. They regulate numerous flow lines, permitting secure isolation, venting, and calibration of pressure transmitters and gauges. Their corrosion–resistance is high, permitting them to handle chlorides, acids, and high-purity fluids. Offshore and marine systems have harsh saline environments in which they thrive. They are similarly applied in biomedical, aerospace, and nuclear installations because of their strength, reliability, and low reactivity. Their leak-tight construction provides safety and precision in high-pressure and critical control systems.
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