
Marine Driveline Titanium Alloy Couplings
OEM & ODM Services: Available
Weight: Custom
Tolerance:0.004mm
Smooth surface roughness :Ra0.6-3.2
Marine driveline titanium alloy couplings are components used in marine propulsion systems to connect and transmit torque between the engine and the propeller shaft. These couplings are specifically made from titanium alloys to provide exceptional performance and durability in harsh marine environments. Here are some key features and benefits of marine driveline titanium alloy couplings:
Corrosion resistance: Titanium alloys offer excellent corrosion resistance, especially in seawater and other corrosive marine environments. This property ensures the longevity and reliability of the couplings, even in saltwater applications.
Lightweight: Titanium alloys are known for their lightweight properties, making them advantageous for reducing the weight of marine propulsion systems. Lighter couplings contribute to improved fuel efficiency and overall vessel performance.
High strength-to-weight ratio: Titanium alloys used in marine driveline couplings have a high strength-to-weight ratio, similar to or even better than many steel alloys. This allows for the transmission of high torque while keeping the weight of the coupling assembly low.
High fatigue strength: Titanium alloys exhibit excellent fatigue strength, enabling them to withstand cyclic loading and vibrations commonly experienced in marine applications. This property ensures the couplings can endure the rigorous demands of marine propulsion systems over extended periods.
Non-magnetic: Titanium alloys are non-magnetic, which can be advantageous in marine applications where magnetic interference needs to be minimized, such as in sensitive electronic equipment.
Biocompatibility (optional): Some titanium alloys used in marine couplings are biocompatible, making them suitable for certain specialized applications, such as those involving marine research or underwater exploration where human contact may be required.
When selecting marine driveline titanium alloy couplings, factors such as torque capacity, shaft size compatibility, misalignment capabilities, and installation requirements should be considered. It is also important to follow proper installation and maintenance practices to ensure optimal performance and longevity of the couplings in marine propulsion systems.
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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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