Introduction:
Inconel X750 rod is a commonly used high temperature alloy material in the aerospace industry. It is a nickel-based alloy with excellent high-temperature strength, corrosion resistance and oxidation resistance, making it suitable for high temperatures and extreme environments found in aerospace.
In the aerospace industry, Inconel X750 rods are widely used in key components of aerospace engines and aerospace propulsion systems. It is commonly used in the manufacture of high-temperature components such as turbine blades, combustion chambers, nozzles, burners and exhaust systems. Due to its excellent high-temperature strength and oxidation resistance, Inconel X750 rod is able to withstand the requirements of high temperature, high pressure and corrosive media in aerospace engines and aerospace propulsion systems.
Overall, Inconel X750 rod plays an important role in the aerospace industry due to its excellent high-temperature strength, corrosion resistance and oxidation resistance. It is widely used in key components such as aerospace engines, aerospace propulsion systems, structural parts and thermal protection systems to ensure the high-temperature performance, reliability and safety of aerospace vehicles. The wide range of applications and excellent performance of Inconel X750 rods make it one of the indispensable materials in the aerospace industry.
Characteristic:
Advantage:
Application:
Other relevant knowledge points:
Inconel X750 is a nickel-based high-temperature alloy containing alloying elements such as chromium, iron, aluminum and titanium. It has good high temperature strength, corrosion resistance and fatigue resistance.
The aerospace industry has strict requirements on high-temperature performance, corrosion resistance and mechanical properties of materials. Proper material selection can improve aerospace vehicle performance, reliability and safety.
Material selection in the aerospace industry requires consideration of many factors, such as temperature, pressure, chemical environment, etc. Inconel X750 rod is widely used in the aerospace industry due to its special properties and advantages.
Physical property:
Main ingredients: Nickel (Ni), Chromium (Cr), Titanium (Ti)
Chemical composition: Nickel (70-75%), Chromium (14-17%), Titanium (2.25-2.75%), Iron (5-9%), Aluminum (0.7-1.2%)
Density: 8.28 g/cm³
Melting point: 1393-1427°C
Tensile strength: about 1034 MPa
Yield strength: about 827 MPa
Thermal expansion coefficient: 12.6 µm/m·°C (20-100°C)
Parameter:
Item | C | Mn | Fe | P | S | Si | Cu | Ni | Co | Al | Ti | Cr | Nb+Ta | Mo | B |
Inconel X750 | ≤0.08 | ≤1 | 5-9 | -- | ≤0.01 | ≤0.5 | ≤0.5 | ≥70 | ≤1 | 0.4-1 | 2.25-2.75 | 14-17 | 0.7-1.2 | -- | -- |
AMS Number | Alloy | Type | UNS | Cross Ref. Spec | Misc./Shape |
---|---|---|---|---|---|
AMS 5699 wire | Inconel X750 | Nickel | N07750 | Wire | |
AMS 5542 Custom Tube | Inconel X750 | Nickel | N07750 | - | Custom Tube |
AMS 5542 Plate | Inconel X750 | Nickel | N07750 | - | Plate |
AMS 5542 Sheet | Inconel X750 | Nickel | N07750 | - | Sheet |
AMS 5542 Strip | Inconel X750 | Nickel | N07750 | - | Strip |
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Q1: What types of non-destructive testing methods are commonly used to inspect Inconel X750 bars for quality assurance?
A1: Common non-destructive testing methods used for inspecting Inconel X750 bars include ultrasonic testing (UT) and magnetic particle inspection (MPI). These methods allow for the detection of flaws, such as cracks or inclusions, ensuring the integrity and quality of the bars.
Q2: Is material testing performed on Inconel X750 bars to verify their mechanical properties?
A2: Yes, material testing is performed on Inconel X750 bars to verify their mechanical properties. This includes tests such as tensile testing, hardness testing, and impact testing, which provide crucial information about the strength, ductility, and toughness of the bars to ensure they meet the required specifications and standards.