
Titanium Alloy Heat Exchangers
OEM & ODM Services: Available
Weight: Custom
Tolerance:0.004mm
Smooth surface roughness:Ra0.6-3.2
Titanium alloy heat exchangers are devices used for transferring heat between two fluids that are at different temperatures. They are constructed using titanium alloys, which offer several advantages in heat exchanger applications:
Corrosion resistance: Titanium alloys have exceptional corrosion resistance, making them suitable for handling corrosive fluids or operating in aggressive environments. This is particularly advantageous in industries such as chemical processing, marine, and offshore where exposure to corrosive media is common.
High thermal conductivity: Titanium alloys have good thermal conductivity, allowing for efficient heat transfer between the hot and cold fluids. This results in improved heat exchange efficiency and reduced energy consumption.
Lightweight and high strength: Titanium alloys have a low density and high strength-to-weight ratio, making them lightweight yet structurally strong. This facilitates the design and installation of heat exchangers and reduces the overall weight of the equipment.
Low fouling and easy maintenance: Titanium alloys have a smooth surface that resists fouling and scaling, reducing the likelihood of deposits accumulating on the heat exchanger surfaces. This leads to improved heat transfer efficiency and easier maintenance.
Wide temperature range: Titanium alloys can withstand a wide range of temperatures, from cryogenic to high temperatures, without significant loss of mechanical properties. This makes them suitable for various heat exchange applications across different industries.
Titanium alloy heat exchangers find applications in industries such as petrochemical, chemical processing, power generation, HVAC (heating, ventilation, and air conditioning), desalination, and aerospace. They are commonly used in applications involving corrosive fluids, high temperatures, or where weight reduction is a priority.
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China |
U.S. |
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TAD |
Titanium Iodide |
Grade1 |
No. 1 Pure Titanium |
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TA1 |
Industrial Pure Titanium |
Grade2 |
No.2 Pure Titanium |
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TA2 |
Industrial Pure Titanium |
Grade3 |
No. 3 Pure Titanium |
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TA3 |
Industrial Pure Titanium |
Grade4 |
No. 4 Pure Titanium |
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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 |
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TC1 |
Ti-2AI-1.5Mn |
Grade1 |
Ti-0.2Pd |
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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 |
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TC4 |
Ti-6A1-4V |
A-3 |
Ti-6A1-2Nb-1Ta |
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TC6 |
Ti-6Al-1.5Cr-2.5Mo-0.5Fe- 0.3Si |
A-4 |
Ti-8A-1Mo-1V |
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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 |
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