Customized Marine Hardware SS316L Shaft For Shipyard
Product Description What is Marine Fixed Blades Propeller A marine fixed-bladed propeller, also known as a fixed pitch propeller, is a type of propeller used in boats and ships that has blades that are fixed in position and cannot be adjusted while the vessel is in operation. The blades are...
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Product Introduction
Product Description
What is Marine Fixed Blades Propeller
A marine fixed-bladed propeller, also known as a fixed pitch propeller, is a type of propeller used in boats and ships that has blades that are fixed in position and cannot be adjusted while the vessel is in operation. The blades are typically made of metal and are attached to a hub that rotates around the propeller shaft in order to generate forward thrust that propels the vessel through the water. Fixed-bladed propellers are commonly used in larger boats and ships, as they are more durable and require less maintenance than variable pitch or controllable pitch propellers. However, they may not be as efficient as other types of propellers in certain operating conditions, such as when the vessel needs to operate at different speeds or in different water conditions.

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Applications |
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Commercial shipping: Used in cargo ships, container ships, oil tankers, and bulk carriers to provide propulsion for long-distance transportation of goods. |
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Passenger transportation: Applied to cruise ships, ferries, and passenger liners to drive the vessels and ensure the safe and efficient travel of passengers. |
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Recreational boating: Installed on yachts, speedboats, and fishing boats to power leisure and sports activities on the water. |
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Key Configurations |
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Blade |
The leaf-like part of the propeller, which is the core component for generating thrust. Usually, there are 3-6 blades, distributed symmetrically. |
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Hub |
The central part connecting all the blades, with a shaft hole inside, used to connect with the ship's stern shaft and transmit power. |
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Blade root |
The part where the blade connects to the hub, which needs to bear large torque and stress, and has high structural strength. |
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Blad tip |
The outermost end of the blade, with the highest linear speed, which has a certain impact on the efficiency and cavitation performance of the propeller. |
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Pressure face |
The working surface of the blade, usually the pressure side, where the water flow is squeezed to generate thrust. |
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Suction face |
The non-working surface of the blade, opposite to the pressure face, where the water flow has lower pressure when passing through. |
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Leading edge |
The edge of the blade facing the water flow, with a thin arc shape, which can reduce water flow impact. |
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Trailing edge |
The edge of the blade opposite to the leading edge, on the side away from the incoming water flow. |
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Hub cap |
A cover installed at the end of the hub, which can reduce water flow resistance and protect the hub connection part. |






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