3535 Type 3-Way Globe Control Valve for Heat Transfer Fluid

The primary model is pneumatic, without a positioner. An electro-pneumatic alternative exists, with an integrated or externally attached positioner. Other choices include electric actuators, differing in exerted force. Assessing application needs is crucial. Pneumatic models offer simplicity, while electro-pneumatic options provide precise control. Electric actuators extend force options, meeting diverse operational needs. Explore these configurations to find the best fit.

Key Features

Key feature and benefits of the 3535 Type 3-Way Globe Control Valve for Heat Transfer Fluid
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Key Features

With options including pneumatic, electro-pneumatic, and electric actuator models, users have the flexibility to choose the setup that suits their precise application needs, be it prioritising simplicity, precise control, or different force capacities, all tailored to their requirements for globe control valves.
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Key Features

The electro-pneumatic option provides superior control precision by integrating a positioner within the actuator or attaching one externally. This functionality guarantees accurate flow rate modulation, making it perfect for applications requiring precise regulation, such as in HVAC systems.
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Key Features

In overseeing both low-pressure settings and demanding industrial operations, electric actuator choices cater to a range of force needs, guaranteeing top-notch performance across diverse HVAC applications, all while focusing on globe control valves.

Valve Standards & Stuff

Maximum Pressure Rating: 125 - 150
Temperature Range: -70 to 35°C
Size Range: DN15 - DN80 (1/2" to 3")
End Connection: Flanged
Application Type: Light Industrial
Body Material: Spheroidal Graphite Iron, Carbon Steel, Stainless Steel

FAQs

A control valve regulates the flow of fluid by varying the size of the flow passage as directed by a signal from a controller. This adjustment impacts the rate of flow as well as the process quantities such as pressure, temperature, and fluid level.
The main types of control valves include globe control valves, which offer precise flow control; rotary control valves, known for their versatility and efficiency; and specialty control valves, designed for specific, often challenging applications.
The choice depends on several factors including the nature of the material to be controlled (liquid, gas, or steam), the required flow rate, the pressure drop across the valve, and the specific control characteristics needed. Consulting with a valve specialist is often recommended.
Globe control valves are characterized by a linear motion to throttle flow. They are highly effective for precise control in low to moderate flow rates and are favored for their ability to handle a wide range of operating temperatures and pressures.
Yes, certain rotary control valves are designed to handle slurry applications. Their design minimizes cavitation and erosion, making them suitable for liquids with suspended solids. However, the specific choice of valve depends on the slurry's characteristics.
Specialty control valves are engineered to address unique or challenging conditions not met by standard globe or rotary valves. This includes extreme pressures or temperatures, handling hazardous materials, or precise control demands.
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Material selection is critical for ensuring compatibility with the fluid, resistance to corrosion or erosion, and suitability for the operating temperature and pressure. Incorrect material selection can lead to premature valve failure and operational issues.

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3535 Type 3-Way Globe Control Valve for Heat Transfer Fluid