GH3536 High Temperature Tube for Thermal Power Generation Equipment

2025-09-09 High Temperature Tube 12 views Get Latest Price

Our high-temperature alloy tubes, including Nimonic 75, GH3625, Nimonic 80A, and A-286, are engineered for extreme conditions. Perfect for aerospace, industrial furnaces, and chemical processing, these tubes offer excellent oxidation resistance and structural integrity.

GH3536 High Temperature Tube for Thermal Power Generation Equipment

Our GH3536 High Temperature Tube is a rock-solid choice for thermal power generation equipment that faces intense heat and stress. This nickel-chromium-molybdenum alloy, with about 58% nickel, 21% chromium, and 8% molybdenum, plus small amounts of iron and cobalt, is built to handle temperatures up to 1,600°F (871°C) while resisting oxidation, corrosion, and creep. With a tensile strength of around 130,000 psi and excellent fatigue resistance, it’s perfect for boiler tubes, superheater tubing, and turbine components. Whether you’re building or maintaining power plants, GH3536 delivers top-notch durability.

At DLX, we’ve engineered this tube for precision and reliability. Available in outer diameters from 6mm to 50mm, wall thicknesses from 0.5mm to 5mm, and customizable lengths, it’s versatile for power generation projects. Its seamless construction ensures uniformity, and it meets AMS 5536 and ASTM B435 standards, guaranteeing quality for critical high-temperature applications.

For more details, pls directly contact us.

The superalloy market is thriving, driven by power generation, aerospace, and industrial sectors. Materials that can withstand high temperatures, corrosion, and mechanical stress are in high demand as industries aim for efficiency and equipment longevity. Alloys like GH3536 are critical for thermal power generation, where boiler tubes and turbine components face extreme heat and oxidative conditions. Power plants rely on these alloys to ensure reliable operation and reduce downtime in harsh environments.

Trends like energy-efficient designs and advanced manufacturing are shaping the market, requiring materials that balance strength with workability. Stricter environmental regulations and the push for reduced emissions are driving demand for alloys that extend component life and minimize maintenance costs. Challenges like creep, thermal fatigue, and corrosion make high-quality superalloys like GH3536 essential. The market is poised for growth as energy sectors invest in durable materials for next-gen power generation systems.

Item

A-286

Nimonic80A

Nimonic 90

GH1140

GH3625

GH3536

GH4169

C

≤0.08

≤0.1

≤0.13

0.06-0.12

≤0.1

0.05-0.15

≤0.08

Mn

≤2

≤1

≤1

≤0.7

3.14-4.15

--

≤0.35

Fe

rest

≤3

≤1.5

rest

≤0.5

--

rest

P

≤0.04

≤0.02

--

≤0.025

--

--

--

S

≤0.03

≤0.015

≤0.015

≤0.015

--

--

≤0.01

Si

≤1

≤1

≤1

≤0.8

--

--

≤0.35

Cu

--

--

≤0.2

--

--

--

≤0.3

Ni

24-27

rest

--

35-40

rest

rest

50-55

Co

--

≤2

15-21

--

≤1.00

0.5-2.5

≤1.00

Al

≤0.35

1-1.8

1-2

0.2-0.6

≤0.4

≤0.5

0.2-0.8

Ti

1.9-2.35

1.8-2.7

2-3

0.7-1.2

≤0.4

≤0.15

0.7-1.15

Cr

13.5-16

18-21

18-21

20-23

20-23

20.5-23

17-21

Nb

--

--

--

--

--

--

4.75-5.5

Mo

1-1.5

--

--

2-2.5

8-10

8-10

2.8-3.3

B

0.001-0.1

≤0.008

≤0.02

--

--

--

--

V

0.1-0.5

--

--

--

--

--

--

W

--

--

--

1.4-1.8

--

0.2-1

--

Zr

--

≤0.15

≤0.15

--

--

--

--

Pb

--

--

≤0.002

--

--

--

--

Ce

--

--

--

≤0.05

--

--

--

Size Range

Wire

0.5-7.5mm

Rod/Bar

8.0-200mm

Strip

(0.50-2.5)*(5-180)mm

Tube

custom made

Plate custom made

For more details, pls directly contact us.

GH3536 High Temperature Tube is a standout for thermal power generation equipment. It’s used for boiler tubes, superheater tubing, and gas turbine components that handle extreme heat and stress. In industrial furnaces, it’s ideal for radiant tubes and heat exchanger systems exposed to high temperatures. Chemical processing applications include reactors and piping systems facing corrosive gases and heat. It’s also used in oil and gas for high-pressure tubing in demanding environments.

Its ability to resist oxidation and maintain strength at high temperatures makes it perfect for both structural and functional components. The tube’s seamless design and formability ensure precision fabrication, making it a versatile choice for demanding projects, from small fittings to large power plant assemblies.

Parameter

GH3536

Other High-Temperature Alloys

Nickel Content

~58% for heat and corrosion resistance

Often lower or higher, e.g., 50-70%

Tensile Strength

130,000 psi (as treated)

Typically 110,000-140,000 psi

Temperature Resistance

Up to 1,600°F (871°C)

Often limited to 1,200-1,500°F (649-815°C)

Corrosion Resistance

Excellent, resists oxidation and gases

Moderate, less effective in harsh conditions

Weldability

Good for TIG and MIG

Varies, some prone to cracking

Creep Resistance

Outstanding, ideal for power generation

Often lower, less suited for long-term stress

Applications

Power generation, chemical, furnaces

General-purpose, less specialized

Formability

Excellent, seamless for precision

Varies, some less uniform

DLX Company Advantages

At DLX, we’re all about delivering quality you can trust. Our GH3536 High Temperature Tube is crafted with cutting-edge manufacturing to ensure consistency and top performance. We meet AMS 5536 and ASTM B435 standards, focusing on precision and purity to deliver tubes free of defects. Our seamless production process ensures uniformity, making fabrication and welding a breeze for your power generation projects.

We’re more than just a supplier. Our team provides hands-on support, helping you select the right tube dimensions or optimize fabrication and welding settings for your specific needs. We offer customizable lengths and flexible delivery options to fit your project timeline, backed by our high production capacity that ensures fast turnaround without sacrificing quality.

Efficiency and sustainability are at the core of what we do. GH3536’s excellent formability and weldability reduce waste and rework, saving you time and materials. We’ve optimized our supply chain to keep costs competitive while delivering a premium product. With DLX, you’re partnering with a company dedicated to your success, ensuring your power generation components perform in the toughest high-temperature environments.

Why Choose DLX’s GH3536?

Our GH3536 High Temperature Tube is built for thermal power generation equipment, delivering unmatched strength, corrosion resistance, and creep resistance. From boiler tubes to turbine components, it ensures durability in extreme conditions. Its seamless design and formability make it a top choice for precision manufacturing. With DLX, you get a high-quality product backed by a team committed to helping you succeed. Choose GH3536 for power generation components that endure extreme heat, stress, and time.

GH3536 High Temperature Tube for Thermal Power Generation Equipment

GH3536 High Temperature Tube for Thermal Power Generation Equipment

GH3536 High Temperature Tube for Thermal Power Generation Equipment

GH3536 High Temperature Tube for Thermal Power Generation Equipment

About Us:

Our 12,000㎡ factory is equipped with complete capabilities for research, production, testing, and packaging. We strictly adhere to ISO 9001 standards in our production processes, with an annual output of 1,200 tons. This ensures that we meet both quantity and quality demands. Furthermore, all products undergo rigorous simulated environment testing including high temperature, high pressure, and corrosion tests before being dispatched, ensuring they meet customer specifications.For all our clients, we offer timely and multilingual after-sales support and technical consulting, helping you resolve any issues swiftly and efficiently.

GH3536 High Temperature Tube for Thermal Power Generation Equipment

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GH3536 High Temperature Tube for Thermal Power Generation Equipment

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GH3536 High Temperature Tube for Thermal Power Generation Equipment

GH3536 High Temperature Tube for Thermal Power Generation Equipment

FAQs:

  1. Why is GH3536 ideal for power generation equipment?
    Its high tensile strength (130,000 psi) and heat resistance up to 1,600°F (871°C) make it perfect for boiler tubes and turbine parts.

  2. What temperatures can GH3536 handle?
    It performs reliably at temperatures up to 1,600°F (871°C) with excellent creep resistance.

  3. What industries use GH3536?
    Power generation, chemical processing, and industrial furnace sectors rely on it for high-temperature components.

  4. Is GH3536 corrosion-resistant?
    Yes, it resists oxidation and corrosion in high-temperature and harsh environments.

  5. Can GH3536 be welded?
    Yes, it offers good weldability for TIG and MIG processes, ensuring strong joints.

  6. What forms is GH3536 available in?
    It’s available as seamless tubes with outer diameters from 6mm to 50mm, customizable for your project.

  7. How does GH3536 handle stress?
    Its high strength and fatigue resistance make it ideal for components under constant heat and stress.

  8. What standards does GH3536 meet?
    It complies with AMS 5536 and ASTM B435 for quality and performance assurance.

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