The Nickel Alloy 600 Pipe, also known as Inconel 600 Pipe, is made of UNS N06600 material. It offers excellent corrosion resistance and high strength at elevated temperatures. The Inconel 600 Seamless Pipe is a popular choice due to its seamless construction, which ensures smooth flow and reduces the risk of leaks.
With a composition of 2.4816 Inconel 600, this alloy pipe is highly resistant to oxidation, carburization, and chloride stress corrosion cracking. It is widely used in various industries such as chemical processing, aerospace, and power generation.
If you are looking for reliable Inconel 600 Pipe suppliers, you can trust that this alloy pipe meets ASTM B167 standards. They offer a wide range of sizes and specifications to cater to different project requirements.
When it comes to Inconel 600 Pipe Price, it can vary depending on factors like size, quantity, and additional specifications. It is best to contact a reputable Inconel 600 Pipe Manufacturer to get an accurate quote.
In addition to pipe, you can also find Inconel 600 Tubing, which serves various purposes in different applications. The W.NR. 2.4816 designation refers to the German standard for this alloy material.
In conclusion, the Alloy 600 Pipe, made from Inconel 600 material, is a reliable choice for applications requiring corrosion resistance and high strength at elevated temperatures. Its seamless construction, excellent properties, and availability from trusted suppliers make it a popular option in the industry.
Inconel 600 is an outstanding chromium-nickel alloy that offers superior heat resistance, corrosion resistance, and oxidation resistance. It is engineered to withstand extreme temperatures up to 2000°F and can also perform exceptionally well under cryogenic conditions. Inconel 600 pipe provides exceptional durability and reliability for a variety of industrial applications where high temperature and corrosive substances are present. This alloy has been known to provide outstanding performance in various industries such as aerospace, petrochemical, and nuclear industries. Its remarkable properties have made it one of the most trusted and widely used materials in the market today.Alloy 600 pipeThe UNS N06600 pipe is a type of austenitic alloy that boasts high nickel content and impressive mechanical properties across a wide temperature range. Thanks to this high nickel content, the UNS N06600 alloy is also resistant to reducing environments and chloride stress corrosion cracking. Meanwhile, the alloy's chromium content helps it resist oxidation, even under less than ideal conditions. With its non-magnetic properties and ability to perform well in both hot and cold environments, the UNS N06600 pipe is an excellent choice for a wide range of industrial and commercial applications.
Inconel 600 pipe material standard:
- The ASTM B163 is a standard specification for seamless tubes made of nickel and nickel alloy that are designed for use in condensers and heat exchangers. This specification outlines the requirements for materials, chemical composition, dimensions, tolerances, and mechanical properties.
Seamless tubes made of nickel and nickel alloy are commonly used in a range of industrial settings where superior corrosion resistance and high-temperature strength are required. Examples include chemical processing plants, power generation facilities, and oil refineries.
The ASTM B163 specification provides detailed guidelines for producing seamless tubes of nickel and nickel alloy that meet the requirements of various applications. This includes information on the types of materials that can be used, as well as the processes and methods used to produce the tubes.
This standard also covers the testing and inspection procedures that must be carried out to ensure that the tubes meet the specified requirements. These procedures include chemical analysis, tensile testing, hardness testing, and non-destructive testing.
Overall, the ASTM B163 is an important standard for ensuring that seamless tubes made of nickel and nickel alloy are high-quality, reliable, and suitable for use in demanding industrial applications. It provides a comprehensive framework for the design, production, and testing of these important components.
- The standard specification ASTM B167 covers the seamless pipe and tube of nickel-chromium-iron alloys, including UNS N06600, N06601, N06603, N06690, N06693, N06025, N06045, and N06696. This document outlines the characteristics, properties, and requirements for these specific alloys. The purpose of this specification is to ensure that the seamless pipes and tubes made from these alloys are of high quality, so they can be used in various industrial applications. By adhering to the guidelines provided in ASTM B167, manufacturers can produce pipes and tubes that meet the required standards, ensuring that the end products are reliable and safe.
- ASTM B474 is a widely recognized standard specification for electric fusion welded pipe made of nickel and nickel alloys. It outlines the specific requirements for the manufacturing process, dimensions, mechanical properties, and other critical aspects related to the production of these pipes.
This standard, ASTM B474, serves as a reliable guide for manufacturers, suppliers, and consumers in the nickel and nickel alloy pipe industry. It ensures that the products meet the necessary quality and performance standards.
By adhering to the provisions of this specification, electric fusion welded nickel and nickel alloy pipes can be manufactured with precision and consistency. The standard covers a wide range of pipe sizes, allowing for versatility in applications across various industries, including chemical processing, petrochemical, power generation, and more.
The scope of ASTM B474 includes numerous nickel alloys such as nickel-copper, nickel-chromium-molybdenum, nickel-chromium-iron, and many others. The standard provides guidelines for the chemical composition of these alloys, ensuring that they exhibit the desired corrosion resistance, high temperature strength, and excellent mechanical properties.
Furthermore, ASTM B474 outlines the testing procedures that should be conducted to evaluate the quality of the welded pipes. These tests include tension tests, hydrostatic tests, nondestructive tests, and more. The standard emphasizes the importance of proper inspection and testing to ensure the integrity and reliability of the finished products.
In conclusion, ASTM B474 plays a crucial role in defining the requirements for electric fusion welded nickel and nickel alloy pipes. Its comprehensive guidelines facilitate the production of pipes that meet the necessary specifications, ultimately contributing to the safe and efficient functioning of various industrial systems.

UNS N06600 Pipe Specifications
| Specification | Below is the rearranged content based on the original text information: ASTM B167, ASTM B829, ASTM B775, ASTM B517, ASTM B516, ASTM B163, ASTM B751, and AMS 5580 are industry standards and specifications relevant to the field of materials testing and evaluation. ASTM B167 focuses on nickel-chromium-iron alloys, specifying their composition, mechanical properties, and recommended testing procedures. ASTM B829 covers general requirements for nickel and nickel alloys in the form of seamless pipes and tubes, addressing dimensions, tolerances, and material properties. ASTM B775 provides guidelines for the mechanical and chemical properties of incoloy and nickel alloy welded pipes. ASTM B517 pertains to welded nickel-chromium-iron alloys, outlining the requirements for dimensions, tolerances, and mechanical properties. ASTM B516 deals with the specification for seamless nickel-chromium-iron alloys, determining their composition, mechanical properties, and recommended testing methods. ASTM B163 outlines the requirements for seamless nickel and nickel alloy condenser and heat exchanger tubes, including dimensions, mechanical properties, and recommended practices for testing. ASTM B751 encompasses the specification for general requirements for nickel and nickel alloy welded tube, addressing dimensions, tolerances, and mechanical properties. AMS 5580 specifies the requirements for nickel and nickel alloy seamless tubing, including dimensions, mechanical properties, and recommended testing procedures. These standards are essential in ensuring the quality and performance of materials used in various industries such as aerospace, chemical processing, and power generation. Compliance with these standards is crucial for manufacturing reliable and safe products. |
| Standard | There are many different standards organizations in the world, each with their own set of guidelines and standards to follow. Some of the most commonly recognized ones include ASME, ASTM, AISI, AMS, JIS, EN, SAE, DIN, NF, TOCT, DS, DTD, and GB. All of these organizations are responsible for establishing and enforcing standards in different industries and fields of study. For example, ASME is focused on engineering and mechanical design, while ASTM is focused on materials science and testing. Likewise, AISI sets standards for the steel industry, while JIS is focused on Japanese industrial standards. EN, on the other hand, is a European standardization organization that covers multiple industries and fields. No matter which organization you look at, each one is focused on ensuring that products and processes are of high quality and meet certain criteria and standards. This helps to ensure safety, efficiency, and consistency across different industries and regions. |
| Seamless pipe | OD: 4 - 219mm |
| Wall Thickness: 0.5 to 20mm | |
| Welded Pipe | OD: 5.0 - 1219.2 mm |
| Wall Thickness: 0.5 to 20mm | |
| Wall Thickness | Looking for a reliable supplier of Inconel UNS No 6600 Pipes? Look no further! We offer a wide range of schedule options including SCH 5, SCH 10, SCH 40, SCH 80, SCH 80S, SCH 160, SCH XXS, and SCH XS. Our pipes are manufactured with the highest standards of quality and durability, ensuring maximum performance and longevity. You can trust us to provide you with the best products and customer service in the industry. Don't settle for less - choose our Inconel UNS No 6600 Pipes for your next project. |
| Manufacturing techniques | There are various types of pipes available in the market, each with its unique characteristics. Some of the different types of pipes include seamless, ERW, EFW, welded, fabricated, CDW, LSAW, seam-welded, and redrawn. Seamless pipes are manufactured without any welding seams and are perfect for high-pressure applications due to their ability to handle extreme stress. ERW pipes are manufactured from hot-rolled coils and are ideal for low to medium pressurized applications. EFW pipes, on the other hand, are manufactured using electric fusion welding and are suited for high-pressure and high-temperature applications. Welded pipes are made by welding two pieces of metal together and are typically used in low-pressure applications. Fabricated pipes are custom-made to suit specific requirements and are ideal for complex geometries. CDW pipes are manufactured from cold-rolled coils and are best suited for low-pressure applications. LSAW pipes are used for long-distance pipelines, while seam-welded pipes are best suited for various applications. Lastly, redrawn pipes are manufactured by redrawing previously manufactured pipes to a smaller size and are typically used in the medical industry. No matter the application, there is always a type of pipe that can meet your needs. |
| Pipe Dimensional | ANSI/ ASME B36.10, B36.19, B2.1 |
W.NR. 2.4816 Chemical Composition
| Grade | C≤ | Mn≤ | Si≤ | S≤ | Cu≤ | Fe | Ni | Cr |
| Inconel 600 | 0.15 | 1.0 | 0.5 | 0.015 | 0.5 | 6.0-10.0 | 72.0min | 14.0-17.0 |
Inconel 600 Typical Physical & Mechanical Properties In Annealed Condition
| Inconel 600 | Alloy 600 | 70°F | 200°F | 400°F | 600°F | 800°F | 1000°F |
| Density | lbs/in3 | 0.306 | - | - | - | - | - |
| Thermal Expansion | X10-6/°F | 5.8 | 7.4 | 7.7 | 7.9 | 8.1 | 7.7 |
| Elastic Modulus | 103 ksi | 31.1 | 30.5 | 29.7 | 28.8 | 27.8 | 25.7 |
| Poisson Ratio | - | 0.327 | 0.319 | 0.312 | 0.307 | 0.301 | - |
| Thermal Conductivity | Btu-in/h·ft2 ·°F | 103 | 109 | 121 | 133 | 145 | 139 |
| Specific Heat | Btu/lb·°F | 0.106 | 0.111 | 0.116 | 0.121 | 0.126 | 0.118 |
| Yield Strength | ksi | 35 | 26 | 24 | 23 | 21 | 34 |
| Tensile Strength | ksi | 80 | 75 | 73 | 70 | 69 | 88 |
Key Features of Nickel Alloy 600 Pipe Include:
- Corrosion resistance: Inconel 600 pipe has excellent corrosion resistance to a variety of corrosive media including acids, alkalis, and chlorides, making it suitable for chemical processing applications.
- High-temperature strength: Inconel 600 ERW pipe can still maintain strength and structural integrity at high temperatures, making it ideal for furnace components, heat exchangers, and gas turbine components.
- Oxidation resistance: Inconel 2.4816 will form a protective oxide layer at high temperatures to protect it from oxidation and further enhance its high-temperature capability.
- Machinability: Alloy 600 has good hot workability and cold workability in the annealed state. Hot working should be done above 1600°F (871°C) to ensure adequate ductility, while cold working should be done below 1200°F (649°C).
Inconel 600 Pipeline Applications
- Chemical processing: pipes are used in chemical plants to transport corrosive chemicals and processing fluids.
- Petrochemical industry: Inconel 600 pipe is used in refineries and petrochemical plants to handle hydrocarbons and other irritating chemicals.
- Power generation: steam and gas turbine components, heat exchangers, and boiler tubes for power plants.
- Aerospace and defense: ASTM B167 UNS N06600 seamless pipe can be applied to aircraft exhaust systems and other high-temperature components.
- Nuclear industry: Due to the excellent corrosion resistance and high-temperature resistance of Inconel 600 material, it is used in nuclear reactors.
Inconel 600 Heat Treatment
Inconel 600 is a high-temperature alloy. The heat treatment process includes solution treatment (1093°C), quenching, and precipitation hardening treatment (982°C). Solution treatment eliminates intergranular phases, quenching prevents their regeneration, and precipitation hardening increases hardness and strength.
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