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High Temperature Threaded Q Type Rotary Union For Steam

Original price was: $15.00.Current price is: $13.00.

  • Product name:Q type rotating joint for steam
  • Material:iron
  • Pipe Clamp Size:32\40150
  • Max.Speed:100RPM
  • Max.Pressure:1.8MPa
  • Max. Temperature:220°C
  • Applicable Medium:Hot Oil, Steam
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Description

High Temperature Threaded Q Type Rotary Union For Steam

Introducing the Q Type Rotary Union, a cutting-edge solution designed for seamless fluid transfer in rotating applications. Engineered with precision and reliability in mind, this rotary union is perfect for industries ranging from manufacturing to robotics, where the need for continuous rotation and fluid flow is critical. conditions.

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Key Features

High Temperature Resistance: The Qs-G High Temperature Steam Oil Rotary Joint Threaded Joint Assembly Rotary Union designed to withstand extreme temperatures of up to 220°C. Making it suitable for high-pressure steam applications.
Customization Support: This product offers customization options, including OEM, ODM, and OBMs, allowing users to tailor the product to their specific requirements.
Durable Construction: Made from high-quality iron, this rotary joint built to last, ensuring reliable performance and minimal maintenance.
Wide Applicability: With the ability to handle saturated steam, superheated steam and superheated water, this rotary joint is versatile and can used in various industrial settings.

The Q Type Rotary Union is suitable for a wide range of applications including:

Manufacturing Equipment: For hydraulic presses and machining centers where fluid transfer is essential.
Robotic Systems: Enabling continuous rotation in robotic arms while maintaining fluid supply.
Cooling Systems: Used in cooling jackets for machinery that require constant fluid circulation.

Why Choose Q Type Rotary Union?

Investing in the Q Type Rotary Union means choosing reliability and innovation. Our product stands out due to its advanced engineering, robust construction, and versatility across various applications. With our commitment to quality and customer satisfaction, you can trust that the Q Type Rotary Union will meet your operational needs effectively.

FAQ

What industries use Q Type Rotary Unions?
Q Type Rotary Unions are widely utilized across various industries. Including paper, packaging, chemicals, rubber, plastics, textiles, printing and dyeing, glass, starch, petroleum, pharmaceuticals and food processing. Their versatility makes them essential in any application requiring fluid transfer in rotating systems.
How do Q Type Rotary Unions differ from other rotary unions?
The Q Type Rotary Union specifically designed for steam applications and offers unique sealing capabilities that enhance performance in high-temperature environments. Unlike other rotary unions that may cater to different media (like air or oil). The Q Type is optimized for steam and hot fluids.
What materials are used in the construction of Q Type Rotary Unions?
These rotary unions typically constructed from durable materials such as cast iron, gray iron, ductile iron and 45# steel. which provide strength and resistance to high temperatures and pressures.
Can Q Type Rotary Unions customized for specific applications?
Yes, manufacturers often offer customization options for Q Type Rotary Unions to meet specific operational requirements such as size, pressure ratings, and connection types.
What are the benefits of using Q Type Rotary Unions in manufacturing?
The main benefits include enhanced efficiency due to reliable fluid transfer, reduced maintenance costs from durable construction, and improved safety by minimizing leak risks. These factors contribute to smoother operations in manufacturing processes.
How does a Q Type Rotary Union improve production efficiency?
By providing a reliable means of transferring steam or hot fluids without leaks or interruptions. Q Type Rotary Unions help maintain consistent pressure and flow rates in production lines. This reliability leads to reduced downtime and increased overall productivity.