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CARBON STEEL ERW APH TUBES, ASTM A178

CARBON STEEL ERW APH TUBES, ASTM A178
CARBON STEEL ERW APH TUBES, ASTM A178
CARBON STEEL ERW APH TUBES, ASTM A178

CARBON STEEL ERW APH TUBES, ASTM A178 Specification

  • Corrosion Resistant
  • Yes
  • Application
  • Industrial
  • Material
  • Carbon Steel
  • Section Shape
  • Round
  • Standard
  • ASTM A178
  • Technique
  • Hot Rolled
  • Surface Treatment
  • Color Coated
  • Size
  • 16.0 To 101.6 mm OD
 

CARBON STEEL ERW APH TUBES, ASTM A178 Trade Information

  • Minimum Order Quantity
  • 100 Number
  • Supply Ability
  • 5000 Per Month
  • Delivery Time
  • 4 Week
  • Main Export Market(s)
  • Asia, Australia, Central America, North America, South America, Eastern Europe, Western Europe, Middle East, Africa
  • Main Domestic Market
  • All India
 

About CARBON STEEL ERW APH TUBES, ASTM A178

1. CARBON STEEL ERW APH TUBES, ASTM A178 are mainly demanded to install in heaters of boilers. These are manufactured by our experts using supreme quality raw material with the help of modern machine adhering to set industrial standards and norms These are appreciated for their attributes such as long lasting finish, abrasion resistance, resistance to corrosion and precise dimensions. These are completely accessible in numerous sizes with finish. Besides, clients can avail these Carbon Steel ERW Air Pre Heater Tube from us at nominal prices.

Specification

Unit Pipe Length

Customized

Size

16.0 To 101.6 mm OD

Material

BS 6323 PART-V 1,2,3/1NKM CS APH TUBES

Usage/Application

AIR PRE HEATER TUBES

Brand

PUSHPAK

Color

Black

Surface Finish

Color Coated

Tube Diameter

16.0 To 101.6 mm OD

Tube Material

BS 6323 PART V CS APH TUBES

Power Source

AIR PRE HEATER TUBES

Hollow Sections

Rectangular, Square, Circular

Technical Details



Precision Engineered Tubes for Maximum Heat Efficiency

CARBON STEEL ERW APH TUBES, ASTM A178, are meticulously engineered to offer superior heat transfer and robust performance in industrial settings. Their high heat efficiency makes them ideal for power plants, boilers, and air pre-heaters, helping to enhance overall system productivity. The use of quality carbon steel and stainless steel materials ensures durability even under demanding conditions.


Reliable Sourcing from a Trusted Indian Supplier

As a leading exporter, manufacturer, and supplier in India, we prioritize strict adherence to ASTM A178 standards, providing customers with top-tier ERW APH tubes that pass rigorous quality checks. Our expertise ensures timely delivery and tailored solutions for industrial requirements across global markets.

FAQ's of CARBON STEEL ERW APH TUBES, ASTM A178:


Q: How are CARBON STEEL ERW APH TUBES manufactured?

A: These tubes are produced using the Electric Resistance Welding (ERW) technique, followed by hot rolling to achieve desired mechanical properties and dimensions in compliance with ASTM A178 standards.

Q: What are the main benefits of using ASTM A178 ERW APH tubes in industrial applications?

A: The primary benefits include high heat efficiency, excellent durability, and compatibility with demanding industrial environments. Their robust construction supports improved thermal performance and long service life.

Q: Where are these tubes commonly used within industrial settings?

A: They are widely utilized in air pre-heaters, boilers, power plants, and heat exchangers where efficient heat transfer and resistance to high temperatures are critical.

Q: When should you choose carbon steel or stainless steel material for these tubes?

A: Carbon steel is ideal for most high-heat applications, while stainless steel variants should be selected for environments involving higher corrosion risk or specific chemical exposures.

Q: What is the process for sourcing CARBON STEEL ERW APH TUBES from your company?

A: Clients can contact us directly with their specifications, after which we provide consultation, custom manufacturing if needed, and prompt delivery, ensuring compliance with international quality norms.

Q: How do these tubes contribute to improved heat efficiency?

A: Their design optimizes surface area for thermal conductivity and heat transfer, enabling machinery to maximize energy use while minimizing heat loss during operation.

Technical Details 

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