AMS 5713 Nickel Alloy – Composition, Properties and Uses
AMS5713 is a type of alloy steel applied in various industrial sectors. Its unique properties and durability make it a popular choice for different tasks. This blog post will closely examine the composition, physical and mechanical properties, uses, hardness, and heat treatment of AMS5713.
What is AMS 5713?
AMS 5713 (also known as Nickel Rene 41) is a high-strength, low-alloy steel commonly used in the aerospace industry for its outstanding resistance to corrosion and fatigue. This material is renowned for its excellent toughness, making it ideal for demanding applications requiring critical fatigue resistance. With its high strength-to-weight ratio, AMS5713 is a favourite choice among manufacturers who require a lightweight yet robust option for their components and structures. As an expert in this field, I can attest to the exceptional properties of AMS 5713 and the benefits it offers in various industries.
AMS 5713 Composition
AMS 5713 is a low-alloy steel containing elements like Chromium, Nickel, Molybdenum, and Vanadium, among others. The composition of these elements enhances the material’s strength and resistance to corrosion and abrasion, making it suitable for various tasks.
Element | Content % |
---|---|
Nickel, Ni | 52.0 |
Chromium, Cr | 19.0 |
Cobalt, Co | 11.0 |
Molybdenum, Mo | 9.75 |
Titanium, Ti | 3.15 |
Iron, Fe | 3.0 |
Aluminum, Al | 1.60 |
Carbon, C | 0.060 |
Boron, B | 0.007 |
AMS 5713 Physical Properties
AMS 5713 has impressive physical properties, including a density of 7.85 g/cm3 and a melting point of 1420-1465℃. The material’s thermal conductivity is comparatively lower than other metals, making it suitable for high-temperature applications.
Properties | Metric | Imperial |
---|---|---|
Density | 8.25 g/cm³ | 0.298 lb/in³ |
Melting Point | 1345°C | 2450°F |
Modulus of Elasticity | 218 GPa | 31.6 x 103 ksi |
Modulus of Rigidity | 83.4 GPa | 12.1 x 103 ksi |
Coefficient of Expansion | 13.5 µm/m-°C | 7.5 µin/in.-°F |
Electrical Resistivity | 131 µΩ.cm | 51.5 µΩ.in |
Thermal Conductivity | 9.0 W/m-K | 62 Btu-in/ft2hr-°F |
AMS 5713 Mechanical Properties
AMS 5713 has excellent mechanical properties, including high tensile strength, yield strength, and elongation. Its flexibility and toughness make it an ideal material for various industrial applications. Besides, it has a good fatigue strength that enhances its durability.
Properties | Metric | Imperial |
---|---|---|
Hardness, Brinell | 334/td> | 334 |
Hardness, Knoop | 363 | 363 |
Hardness, Rockwell C | 36 | 36 |
Hardness, Vickers | 349 | 349 |
Tensile Strength, Ultimate | 1241 MPa | 180,000 psi |
Tensile Strength, Yield | 793 MPa | 115,000 |
Elongation at Break | 20% | 20% |
Reduction of Area | 25% | 25% |
AMS 5713 Uses
AMS 5713 finds its application in various sectors, including the aerospace and military industry. It is commonly used to manufacture aircraft structural components, landing gears, engine mounts, and other critical parts. In addition, it is ideal for creating parts that need to withstand constant wear and tear, corrosion, and abrasion.
AMS 5713 Hardness
AMS 5713 has a hardness ranging from 306 to 332 HB. The material’s hardness is useful in manufacturing high-strength components with excellent wear resistance.
AMS 5713 Heat treatment
AMS 5713 can undergo different heat treatments to enhance its properties further. The most common heat treatment method is the quench and tempering process, which involves heating the material to a specific temperature and quenching it in a cooling medium, followed by tempering.
Conclusion
In conclusion, AMS 5713 material is a versatile alloy steel that finds its application in various industrial sectors. It has excellent physical and mechanical properties, making it suitable for parts that require high-strength, heat resistance, and durability. Its impressive hardness and the ability to undergo various heat treatment processes make it highly coveted in the manufacturing industry.
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