Plate Heat Exchanger Machine
Price 30000 INR/ Piece
Plate Heat Exchanger Machine Specification
- Max Pressure
- 2.5 MPa
- Number of Pipe
- 4
- Max. Capacity
- 100,000 Kcal/hr
- Temperature
- -10C to 180C
- Diameter
- DN32
- Thickness
- 0.5 mm (Plate Thickness)
- Condition
- New
- Structure
- Frame & Plate Construction
- Liquid Flow Rate
- 2 - 20 m/h
- Working Presssure
- 1.0 MPa
- Voltage
- 380 V
- Power
- 2.2 kW
- Weight
- Approx. 80 kg
- Dimensions
- 1200 mm x 450 mm x 800 mm
- Usage
- Industrial Heat Transfer
- Gasket Material
- EPDM/NBR
- Plate Material
- Corrosion Resistant Stainless Steel
- Material
- Stainless Steel 304/316
- Cleaning Method
- CIP (Clean-In-Place) Compatible
- Heat Exchange Area
- 24 m²
- Application
- HVAC, Food Processing, Dairy, Chemical Industries
- Mounting Type
- Floor Mounted
- Connection Type
- Flanged/Threaded
- Plate Type
- Herringbone Pattern
Plate Heat Exchanger Machine Trade Information
- Minimum Order Quantity
- 1 Piece
- Supply Ability
- 100 Pieces Per Month
- Delivery Time
- 1 Week
About Plate Heat Exchanger Machine
Plate Heat Exchanger Machine
Industrial Plate Heat Exchangers are specialized design well suited to transferring heat between medium- and low-pressure fluids. These exchangers are used for heat exchange between high-pressure fluids or where a more compact product is required.These exchangers are widely used in industry both for cooling and heating large scale industrial processes.Industrial Plate Heat Exchangersin general are designed to transfer electrical waste heat and dissipate it safely away from sensitive electrical components. This looped, easily contained heat transfer process can occur in a variety of different ways, depending on how a specific heat exchanger is designed.
- Max. Flow: 10-36m3/h
- Size: Customized
Superior Heat Transfer Efficiency
Utilizing a herringbone-patterned plate design and precision engineering, the exchanger offers high thermal efficiency and optimal fluid distribution. Stainless steel 304/316 construction enhances corrosion resistance, prolonging lifespan and maintaining consistent performance across a range of demanding industrial applications.
Versatile Industrial Applications
This heat exchanger serves diverse sectors, from HVAC and chemical processing to dairy and food industries. Its ability to withstand high pressures, wide temperature ranges, and its hygienic plate surfaces make it suitable for both utility heating/cooling and direct food contact processes.
User-Friendly Maintenance and Installation
The floor-mounted structure with flanged or threaded connections ensures straightforward installation. CIP (Clean-In-Place) compatibility allows for effective cleaning without disassembly, reducing downtime and optimizing processing efficiency in industrial settings.
FAQs of Plate Heat Exchanger Machine:
Q: How does the herringbone plate pattern enhance heat transfer in this plate heat exchanger machine?
A: The herringbone plate pattern creates high turbulence as fluids pass through the plates, significantly increasing heat transfer rates. This turbulence not only boosts thermal efficiency but also reduces fouling, maintaining performance over time.Q: What materials are used in the construction of this heat exchanger, and why are they important?
A: The heat exchanger is constructed using stainless steel 304/316 for both the plates and frame, providing excellent corrosion resistance and durability. The gaskets are made from EPDM or NBR, ensuring reliable sealing and compatibility with various processing fluids.Q: When should the CIP (Clean-In-Place) system be used for cleaning this machine?
A: CIP should be employed as part of the regular maintenance schedule, especially after processing sticky, fouling, or sensitive products. The frequency will vary by application but typically aligns with production cycles or as dictated by industry hygiene standards.Q: Where can this plate heat exchanger be installed, and what mounting option is available?
A: This model is designed for floor-mounted installation, making it suitable for industrial settings such as HVAC rooms, food processing plants, dairy facilities, and chemical plants. Its robust design supports stable and long-term operation in such environments.Q: What is the typical process for using this machine in an industrial heat transfer application?
A: In operation, two fluids flow through alternating channels created by the stainless steel plates. Heat is transferred efficiently from the hotter to the cooler fluid, using minimal energy input thanks to the precise plate spacing and surface area design.Q: How does this plate heat exchanger benefit industrial operations?
A: It delivers rapid heat exchange, significant energy savings, and easy cleaning, with a compact footprint and robust construction. This reliability and efficiency help reduce operational costs and improve product quality across numerous industrial processes.
Price:
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- 1000+
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