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Properties and Overview of Nickel Alloy Inconel X750

Overview:

Turbine Blades Nickel Alloy are celebrated for their exceptional strength, corrosion resistance, and thermal stability, making them indispensable in demanding environments. Composed primarily of nickel with varying amounts of elements such as chromium, iron, cobalt, and molybdenum, these alloys are engineered to perform under extreme conditions, including high temperatures and corrosive environments. Their versatility and reliability have made them vital across aerospace, energy, and chemical processing industries.


Production:

The production of nickel alloys begins with the extraction and refining of nickel from ore, followed by blending it with other alloying elements to achieve the desired properties. Advanced melting processes, including vacuum induction melting and electro-slag remelting, are employed to ensure high purity and uniformity in the alloy's composition. The molten material is then cast into ingots or billets, which undergo secondary processes like forging, rolling, or extrusion to create sheets, rods, or tubes. Heat treatments such as annealing or solution treatment refine the microstructure, enhancing mechanical properties and resistance to environmental stressors.


Applications:

Nickel alloys are widely used in applications that demand durability and performance in harsh conditions. In the aerospace industry, they are critical for components like turbine blades, engine casings, and exhaust systems, where their ability to withstand extreme heat and stress ensures safety and efficiency. In the energy sector, nickel alloys are essential for gas turbines, nuclear reactors, and renewable energy systems, where they resist oxidation and maintain stability under fluctuating temperatures. The chemical processing industry relies on these alloys for equipment such as heat exchangers, reactors, and piping systems that handle corrosive substances. Additionally, nickel alloys are used in medical devices, electronics, and marine engineering, where their biocompatibility, conductivity, and resistance to seawater corrosion are highly valued.
As industries evolve, developing advanced nickel alloys continues to address emerging challenges. Innovations in alloy formulation enhance properties like fatigue resistance, machinability, and performance in extreme environments, broadening their application scope. Moreover, nickel alloys are pivotal in sustainability initiatives, particularly in energy-efficient systems and renewable technologies. Their recyclability further contributes to their environmental appeal, as reclaimed nickel alloys can be reused without significantly losing quality.


Summary:

Nickel alloys are a cornerstone of modern engineering, offering unmatched performance in some of the world's most challenging environments. Their unique combination of strength, corrosion resistance, and thermal stability has established them as essential materials across various industries. As advancements in material science and sustainable practices continue, nickel alloys will remain a critical driver of innovation, enabling progress in traditional and cutting-edge applications.



See a comprehensive list of electrical, mechanical, physical and thermal properties for Nickel Alloy Inconel X750 below:



Electrical Properties of Nickel Alloy Inconel X750

Electrical Property (Units) Value
Nickel Alloy Inconel X750 Dielectric Constant at 'Standard Temperature and Pressure' N/A
Nickel Alloy Inconel X750 Electrical Breakdown Voltage at Atmospheric Pressure (kV/mm) N/A
Nickel Alloy Inconel X750 Electrical Conductivity (S/m) 1.00E+06
Nickel Alloy Inconel X750 Electrical Resistivity at Room Temperature (25°C) (Ω·m) 1.00E-06
Nickel Alloy Inconel X750 Magnetic Property Slightly Magnetic
Nickel Alloy Inconel X750 Superconducting Transition Temperature (K) Unknown
Nickel Alloy Inconel X750 Temperature Coefficient of Resistance (°C⁻¹) 0.0009

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Mechanical Properties of Nickel Alloy Inconel X750

Mechanical Property (Units) Value
Nickel Alloy Inconel X750 Compressive Strength (MPa) ~900
Nickel Alloy Inconel X750 Ductile to Brittle Transition Temperature (°C) -100 to -50
Nickel Alloy Inconel X750 Fatigue Limit (MPa) ~280 to 340
Nickel Alloy Inconel X750 Fracture Toughness (MPa·√m) ~180
Nickel Alloy Inconel X750 Hardness Brinell 200 to 230
Nickel Alloy Inconel X750 Hardness Rockwell 30 to 40 HRC
Nickel Alloy Inconel X750 Hardness Vickers 240 to 270
Nickel Alloy Inconel X750 Heat Deflection Temperature (°C) N/A - Not a Polymer
Nickel Alloy Inconel X750 Modulus of Elasticity / Young's Modulus (GPa) 205 to 214
Nickel Alloy Inconel X750 Percent Elongation (%) 15 to 25
Nickel Alloy Inconel X750 Poissons Ratio 0.31
Nickel Alloy Inconel X750 Shear Modulus (GPa) 83
Nickel Alloy Inconel X750 Shear Strength (MPa) 520
Nickel Alloy Inconel X750 Ultimate Tensile Strength (MPa) 890 to 980
Nickel Alloy Inconel X750 Yield Strength (MPa) 400 to 850

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Physical Properties of Nickel Alloy Inconel X750

Physical Property (Units) Value
Nickel Alloy Inconel X750 Boiling Point at Atmospheric Pressure (°C) Unknown
Nickel Alloy Inconel X750 Chemical Composition (Element %) Ni 70.0%, Cr 14.0-17.0%, Fe 5.0-9.0%, Nb 0.70-1.20%, Ti 2.25-2.75%, Al 0.40-1.0%, Mn ≤ 1.0%, Si ≤ 0.50%, C ≤ 0.08%
Nickel Alloy Inconel X750 Cost ($/kg) 35 to 45
Nickel Alloy Inconel X750 Density at 'Standard Temperature and Pressure' (kg/m3) 8280
Nickel Alloy Inconel X750 Glass Transition Temperature at Atmospheric Pressure (°C) N/A - Not a Polymer
Nickel Alloy Inconel X750 Melting Point at Atmospheric Pressure (°C) 1390 to 1430
Nickel Alloy Inconel X750 Polymer Family N/A - Not a Polymer
Nickel Alloy Inconel X750 Refractive Index Unknown
Nickel Alloy Inconel X750 Specific Gravity 8.28
Nickel Alloy Inconel X750 Viscosity at Melting Point (mPa·s) 4 to 7

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Thermal Properties of Nickel Alloy Inconel X750

Thermal Property (Units) Value
Nickel Alloy Inconel X750 Coefficient of Thermal Expansion (µm/m·K) 12.7
Nickel Alloy Inconel X750 Emissivity Coefficient 0.30 to 0.35
Nickel Alloy Inconel X750 Specific Heat Capacity (J/kg·K) 430
Nickel Alloy Inconel X750 Thermal Conductivity (W/m.K) 11.0
Nickel Alloy Inconel X750 Thermal Conductivity (BTU/h·ft·°F) 6.36

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