Foremost Ball Bearing Rotary Union Rotary Joint Manufacturers
Original price was: $35.00.$32.00Current price is: $32.00.
- Temperature: ≤250℃C
- Pressure: ≤17kg/cm²
- Speed: ≤200 rpm
- Medium: Steam/hot oil
Description
Foremost Ball Bearing Rotary Union: Product Details
The Foremost Ball Bearing Rotary Union is engineered for optimal performance in high-speed rotating applications, delivering reliable fluid transfer while minimizing maintenance needs. This advanced rotary union is ideal for various industrial applications, including CNC machines, hydraulic systems, and other machinery requiring efficient fluid handling.Key Features
High-Quality Construction: Crafted from durable materials such as stainless steel and brass, ensuring resistance to corrosion and wear.
Precision Ball Bearings: Incorporates precision ball bearings that provide smooth rotation and reduce vibration, enhancing the longevity of the equipment.
Versatile Temperature Range: Operates efficiently in temperatures ranging from -20°C to +180°C, making it suitable for diverse environments.
Sealing Technology: Utilizes advanced sealing technology with tungsten carbide seals, ensuring leak-proof operation even under high pressure.
Easy Installation: Designed for straightforward installation with flanged connections that facilitate quick setup and maintenance.The Deublin 157-000-151 Rotary Union is suitable for various applications across multiple industries:
Manufacturing: Used in machinery that requires consistent media flow for cooling or lubrication.
Energy Production: Ideal for steam applications in power plants.
Chemical Processing: Effective in transferring hot oils and other fluids in chemical reactors.
The Deublin 157-000-151 Rotary Union stands out as a robust solution for industries demanding reliability and efficiency in media transfer. With its advanced design features and durable construction, it promises to deliver exceptional performance while minimizing maintenance efforts. Choose the Deublin 157-000-151 for your next project to ensure seamless operations and enhanced productivity.
What are the key features of the Foremost Ball Bearing Rotary Union?
Key features include high-quality construction from durable materials, precision ball bearings for reduced vibration, versatile temperature range (-20°C to +180°C), advanced sealing technology to prevent leaks, and easy installation with flanged connections.
What industries commonly use Foremost Ball Bearing Rotary Unions?
Industries that frequently utilize these rotary unions include plastic, paper, chemical fiber, textile, rubber, and steel industries, particularly in applications involving roll equipment.
How does the ball bearing design benefit the rotary union?
The ball bearing design allows for high-speed operation (up to 3,500 RPM) while minimizing vibration and wear. This results in improved performance and longevity of machinery using the rotary union.
What types of fluids can be transferred using a Foremost Ball Bearing Rotary Union?
These rotary unions can handle various fluids, including water, oil, coolant and steam, making them versatile for different industrial applications.
What is the maintenance requirement for a Foremost Ball Bearing Rotary Union?
Due to its self-lubricating features and robust design, the maintenance requirements are minimal.
Can Foremost Ball Bearing Rotary Unions be customized?
Yes, Foremost offers customization options for their rotary unions to meet specific application requirements, including variations in size, material, and sealing solutions.
What are the advantages of using a Foremost Ball Bearing Rotary Union over other types?
Advantages include extended service life due to high-quality materials, reduced maintenance needs thanks to self-lubricating bearings, and efficient fluid transfer with low pressure drop across the system.
What are common applications for Foremost Ball Bearing Rotary Unions?
Common applications include use in machine tools (like CNC machines), hydraulic systems for fluid transfer under pressure, and cooling systems that manage coolant flow in high-temperature environments.