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SS Heat Exchanger
SS Heat Exchanger

SS Heat Exchanger

SS Heat Exchanger Specification

  • Max Pressure
  • 10 bar
  • Max. Capacity
  • 5000 L/hr
  • Diameter
  • 400 mm
  • Number of Pipe
  • 24
  • Air Volume
  • 3000 m/h
  • Thickness
  • 3 mm
  • Temperature
  • Upto 180C
  • Condition
  • New
  • Structure
  • Shell and Tube
  • Liquid Flow Rate
  • 2500 L/hr
  • Working Presssure
  • 10 bar
  • Voltage
  • 220 V
  • Power
  • 5 kW
  • Weight
  • 250 kg
  • Dimensions
  • 1500 mm x 400 mm x 400 mm
  • Connection Type
  • Flanged
  • Corrosion Resistance
  • Yes
  • Number of Pipe
  • 48
  • Design Type
  • Horizontal
  • Surface Finish
  • Polished
  • Material
  • Stainless Steel (SS304/SS316)
  • Heat Transfer Area
  • 12 m²
  • Usage/Application
  • Industrial, Chemical, Food Processing
  • Working Pressure
  • 6 bar
  • Mounting Type
  • Floor Mounted
 
 

About SS Heat Exchanger

We are one of the leading manufacturers of SS Heat Exchanger in the market. This is used to exchange heat from cooling to heating and heating to cooling. Best in grade stainless steel and progtailsressive machinery is used in making SS Heat Exchanger as per the industrial set standards and norms.

Product details

Frequency

50- 60 Hz

Material

SS

Usage/Application

Industrial

Voltage

220 - 440 V

Power Source

Electric

Phase

Three Phase




Superior Corrosion Resistance

Engineered from high-grade SS304/SS316 stainless steel, this heat exchanger is built to outperform in environments exposed to harsh chemicals or high temperatures. The polished surface reduces fouling, ensuring both hygiene in food processing and longevity in industrial operations. With its resilient structure, users benefit from extended equipment life and lower maintenance.


Optimized for Industrial Efficiency

Designed as a horizontal, floor-mounted shell and tube system, the heat exchanger offers a heat transfer area of 12 m, catering to process flows of up to 5000 L/hr. Its robust build supports working pressures up to 10 bar and temperatures up to 180C, making it suitable for continuous and demanding operations. The flanged connections allow for easy installation and secure integration into large-scale industrial setups.

FAQs of SS Heat Exchanger:


Q: How should the SS Heat Exchanger be installed for optimal performance?

A: The heat exchanger should be floor-mounted using its horizontal design to achieve maximum efficiency. Ensure secure flanged connections and adequate spacing for airflow and maintenance access during installation.

Q: What is the main advantage of using stainless steel (SS304/SS316) for this heat exchanger?

A: Stainless steel (SS304/SS316) provides superior corrosion resistance, making the heat exchanger suitable for harsh chemical processes, food industries, and applications involving high pressure and temperature while maintaining cleanliness and durability.

Q: When is this heat exchanger most commonly used in industrial applications?

A: This model is ideal for processes requiring reliable temperature control, such as in chemical production, food processing, and other industrial settings where high flow rates and rapid heat transfer are essential.

Q: Where can I use this SS Heat Exchanger in my facility?

A: It is best suited for integration in centralized process lines, near reaction vessels, or points requiring precise heat exchange. The floor-mounted design and moderate dimensions allow for flexible placement in most industrial facilities.

Q: What process does this heat exchanger use to transfer heat efficiently?

A: It utilizes a shell and tube structure with 24 or 48 pipes, maximizing the heat transfer area (12 m) to allow fluids to exchange heat effectively while maintaining safety and operational integrity at up to 180C.

Q: How does the polished surface finish benefit the operation of this heat exchanger?

A: The polished surface reduces deposits and contamination on the exchangers internal surfaces, enhancing hygiene (critical for food and chemical processing) and simplifying cleaning routines, thus ensuring consistent performance.

Q: What are the key benefits of choosing this model for industrial applications?

A: Key advantages include high corrosion resistance, efficient thermal transfer, durable construction, compatibility with high flow rates, and straightforward maintenanceall ensuring reduced downtime and operating costs.

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