
Vacuum Turbine Wheel Blade
OEM & ODM Services: Available
Weight: Custom
Tolerance:0.004mm
Smooth surface roughness:Ra0.6-3.2
Investment casting, also known as precision or lost-wax casting, is a manufacturing process used to create intricate and complex turbine components through the creation of a wax or plastic pattern that is then coated in a ceramic shell. Once the ceramic shell is hardened, the wax or plastic is melted out, leaving a hollow cavity in the shape of the desired component. Molten metal is then poured into the cavity, filling the mold and taking the shape of the original pattern. Once the metal solidifies, the ceramic shell is broken away to reveal the final cast turbine component.

High Precision
The process offers high dimensional accuracy and repeatability, ensuring consistent quality of cast components.

Smooth Surface Finish
The process offers high dimensional accuracy and repeatability, ensuring consistent quality of cast components.

Smooth Surface Finish
Investment casting produces parts with smooth surface finishes that often require minimal additional machining.

Near-Net Shape
Components can be cast close to their final shape, reducing the amount of material waste and machining required
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China |
U.S. |
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TAD |
Titanium Iodide |
Grade1 |
No. 1 Pure Titanium |
|
TA1 |
Industrial Pure Titanium |
Grade2 |
No.2 Pure Titanium |
|
TA2 |
Industrial Pure Titanium |
Grade3 |
No. 3 Pure Titanium |
|
TA3 |
Industrial Pure Titanium |
Grade4 |
No. 4 Pure Titanium |
|
TA4 |
Ti-3Al |
Grade5 |
Ti-6AI-4V |
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TA5 |
Ti-4A1-0.005B |
Grade6 |
Ti-5AI-2.5V |
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TA6 |
Ti-5AI |
Grade7 |
Ti-0.2Pd |
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TA7 |
Ti-5AI-2.5Sn |
Grade9 |
Ti-3A1-2.5V |
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TA8 |
Ti-5A1-2.5Sn-3Cu-1.5Zr |
Grade10 |
Ti-11.5Mo-4.5Sn- 6Zr |
|
TC1 |
Ti-2AI-1.5Mn |
Grade1 |
Ti-0.2Pd |
|
TC2 |
Ti-3A1-1.5Mn |
Grade2 |
Ti-0.3Mo-0.75Ni |
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TC3 |
Ti-4A1-4V |
A-1 |
Ti-5A1-2.5Sn |
|
TC4 |
Ti-6A1-4V |
A-3 |
Ti-6A1-2Nb-1Ta |
|
TC6 |
Ti-6Al-1.5Cr-2.5Mo-0.5Fe- 0.3Si |
A-4 |
Ti-8A-1Mo-1V |
|
TC7 |
Ti-6A1-0.6Cr-0.4Fe-0.4Si- 0.01B |
AB-1 |
Ti-6A1-4V |
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TC9 |
Ti-6.5A1-3.5Mo-2.5Sn-0.3Si |
AB-3 |
Ti6AI-6V-2Sn |
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TC10 |
Ti-6A1-6V-2Sn-0.5Cu-0.5Fe |
AB-4 |
Ti-6A-2Sn-4Zr-2Mo |
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TC11 |
Ti-6A1-3.5Mo-1.5Zr-0.3Si |
AB-5 |
Ti-3AI-2.5V |
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TB2 |
Ti-5Mo-5V-3Cr-3Al |
B-1 |
Ti-3A1-13V-11Cr |
Products Description
Material: High-temperature alloy turbine discs are usually made of high-temperature alloy materials, such as nickel-based alloys, titanium alloys, etc. These materials have excellent high-temperature strength, heat resistance and corrosion resistance, and can operate stably in high-temperature and high-pressure working environments.
Structure: High-temperature alloy turbine disc usually consists of outer edge, inner edge and blade hole. The outer edge is used to secure the blades, the inner edge is connected to the bearings, and the blade holes are used to install the turbine blades.
Manufacturing process: Precision casting or forging processes are usually used to manufacture high-temperature alloy turbine discs. During the manufacturing process, it is necessary to ensure the geometric and dimensional accuracy of the turbine disk, as well as the uniformity and stability of the internal structure.
Function: The high-temperature alloy turbine disk carries the turbine blades, transmits power through rotation, and converts gas kinetic energy into mechanical energy. They play a critical role in turbines, affecting their efficiency, performance and reliability.
Application: High-temperature alloy turbine discs are widely used in turbines in aerospace, energy, petrochemical, shipbuilding and other fields, such as aerospace engines, gas turbines, turbochargers, etc. They play an important role as rotating components in these fields and ensure the normal operation of the equipment.
In general, high-temperature alloy turbine discs are important components in turbines. They have excellent high-temperature strength, heat resistance and corrosion resistance, and can operate stably in extreme working environments. Their manufacturing requires highly sophisticated processes and equipment to ensure product quality and performance.
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