Monel K500 Tube

Monel K500 Tube

Are you in need of Monel K500 tubing for your project? Look no further than UNS N05500 Monel K500 material, a nickel copper alloy that offers high tensile strength, corrosion resistance, and excellent mechanical properties at both high and low temperatures. With a composition of 63% nickel and...
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Description

Are you in need of Monel K500 tubing for your project? Look no further than UNS N05500 Monel K500 material, a nickel copper alloy that offers high tensile strength, corrosion resistance, and excellent mechanical properties at both high and low temperatures. With a composition of 63% nickel and 33% copper, Monel alloy K500 is a popular choice for applications in marine engineering, chemical processing, aerospace, and more. You can rely on quality, durable Monel K500 tubing from trusted suppliers who offer competitive prices and exceptional customer service. Don't settle for anything less than the best - choose Monel K500 for your next project.

 

Monel K500 tube is a precipitation-hardening nickel-copper alloy renowned for its exceptional corrosion resistance, comparable to Monel 400, but with the added advantage of higher strength due to its precipitation-hardening properties. This makes it highly resistant to stress corrosion cracking and erosion-corrosion, ensuring its reliability in challenging environments. Its remarkable combination of strength, toughness, and corrosion resistance lends itself perfectly to withstand extreme conditions, making it an ideal choice for various industrial applications. Monel alloy K500 tubing is commonly utilized in heat exchangers, condensers, evaporators, and other process equipment. Additionally, it finds extensive use in offshore drilling platforms, subsea production equipment, and offshore pipelines and risers. Its versatility and durability make Monel K500 seamless tube a reliable and versatile solution for critical engineering needs.

 

UNS N05500 Nickel Alloy Tube Standard: 

 

  • The ASTM B165 standard outlines the specifications for seamless pipes and tubes made from nickel-copper alloy with the UNS N04400 designation. This standard provides strict guidelines for the manufacturing process to ensure consistency in quality and performance. The seamless pipes and tubes produced in compliance with this standard are known for their excellent corrosion resistance and high durability. By adhering to the specifications outlined in ASTM B165, manufacturers can produce nickel-copper alloy pipes and tubes that meet the requirements of a wide range of industries and applications.
  • The ASTM B163 is a standard specification that pertains to seamless tubes made of nickel and nickel alloys. These tubes are specifically designed for use in condensers and heat exchangers.
    The purpose of this specification is to regulate the manufacture of these tubes, ensuring that they meet certain quality and dimensional requirements. The specification includes information on the chemical composition of the alloys used, as well as guidelines for the heat treatment and testing of the tubes.
    Manufacturers who comply with this specification can be confident that their products will be suitable for use in demanding applications that require high levels of corrosion resistance, heat resistance, and mechanical strength. The seamless construction of these tubes eliminates the potential for leaks, making them a reliable option for critical processes.
    By following the guidelines set forth in ASTM B163, manufacturers can produce tubes that are not only highly functional but also safe to operate. This specification is an important resource for anyone involved in the design, manufacture, or use of condensers and heat exchangers.
  • ASTM B725: Standard Specification for Welded Nickel and Nickel Copper Alloy Pipe
  • The ASTM B829 specification outlines the general requirements for seamless pipes and tubes made from nickel and nickel alloys. It serves as a standard reference for manufacturers and users in the industry. The document provides guidelines for the manufacturing process, dimensions, mechanical properties, and testing methods to ensure quality and consistency of nickel and nickel alloy pipes and tubes. Adhering to these specifications helps maintain industry standards and ensures the reliability and performance of these materials in various applications.
Monel K500 tube supplier

 

Monel K500 Tube Specifications

Specifications

ASTM B165, ASTM B163, ASTM B829, ASTM B725

Dimensions ASTM, ASME, and API
OD 6.35 mm OD upto 254 mm OD
WT 0.6 mm TO 20 mm
Type Seamless / ERW / Welded / Fabricated
Form Round, Hydraulic Etc
Length Single Random, Double Random & Cut Length.
End Plain End, Beveled End, Treaded

 

Part of Monel k500 Tubing Dimensions

NPS Outside Diameter Wall Thickness   Weight Weight
in mm in mm Sched kg/Mtr Lb/ft
1/2″ 0.84 21 0.109 2.769 40 STD 1.268 0.851
      0.147 3.734 80 STD 1.621 1.088
3/4″ 1.05 27 0.113 2.87 40 STD 1.684 1.131
      0.154 3.912 80 STD 2.195 1.474
1″ 1.315 33 0.133 3.378 40 STD 2.501 1.679
      0.179 4.547 80 STD 3.325 2.172
1 1/4″ 1.66 42 0.14 3.556 40 STD 3.385 2.273
      0.191 4.851 80 STD 4.464 2.997
1 1/2″ 1.9 48 0.145 3.683 40 STD 4.048 2.718
      0.2 5.08 80 STD 5.409 3.361
2″ 2.375 60 0.154 3.912 40 STD 5.441 3.653
      0.218 5.537 80 STD 7.48 5.022
2 1/2″ 2.875 73 0.203 5.516 40 STD 8.629 5.793
      0.276 7.01 80 STD 11.411 7.661
3″ 3.5 89 0.216 5.486 40 STD 11.284 7.576
      0.3 7.62 80 STD 15.272 10.253
4″ 4.5 114 0.237 6.02   16.073 10.79
      0.337 8.56   22.318 14.983

 

Monel K500 Tube Mechanical Properties:
Annealed state (typical value):

  • Tensile Strength: 75,000 - 110,000 psi (517 - 758 MPa)
  • Yield Strength (0.2% offset): 40,000 - 75,000 psi (276 - 517 MPa)
  • Elongation: 20 - 35%


Aging (precipitation hardening) conditions (typical):

  • Tensile Strength: 150,000 - 200,000 psi (1034 - 1379 MPa)
  • Yield Strength (0.2% offset): 130,000 - 160,000 psi (896 - 1103 MPa)
  • Elongation: 10 - 25%

 

Monel K500 Heat Treatment Process
1. Annealing (softening):

  • Annealing is usually performed at temperatures between 980°C (1800°F) and 1040°C (1900°F).
  • The purpose of annealing is to relieve stress, increase ductility and improve machinability.
  • After annealing, the alloy is air-cooled or water-quenched to room temperature.


2. Aging (precipitation hardening):

  • The primary strengthening mechanism of Nickel copper alloy k500 is precipitation hardening through aging.
  • After annealing, the alloy is cold-worked to achieve the desired strength and then aged.
  • Aging is usually done at lower temperatures, around 480°C (900°F) for several hours. The exact times and temperatures depend on the desired properties.
  • The aging process precipitates the hardening phase, which increases the strength of the 2.4375 material.

 

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