Recently, ABB announced the launch of the latest version of the world's leading electric propulsion system, the Azipod XL marine electric propulsion system, which is 20% more fuel efficient and more efficient than modern axis propulsion systems.
The efficiency of the new version of the system comes from a unique nozzle system that accelerates water flow into the propeller and increases propulsion. At the same time, the propeller was redesigned to reduce water resistance.
Since its first shipment 25 years ago, the ABB Azipod propulsion system has operated more than 12 million hours, saving more than 700,000 tons of fuel.
As a standard in the marine industry, the Azipod propulsion system is a gearless steering propulsion system that uses an electric drive motor located on the outside of the hull and can be operated in 360 degrees for a variety of ship types.
Peter Terwiesch, President of ABB Process Automation, said, “We continue to strive to bring advanced technology to our customers and the environment. As part of the next level of strategy, Azipod XL represents the biggest leap in electric propulsion systems in recent years. Replacement in the next 25 years After all existing systems, the shipping industry will also save an additional 2.2 million tons of fuel and reduce 7 million tons of carbon dioxide emissions."
It is reported that the Azipod XL concept can be designed as a low-speed high-column tension and also works well at high speeds, so it is suitable for ships such as tugboats and offshore engineering vessels, as well as for ferries and LNG carriers.
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Machining is a term used to describe a variety of material removal processes in which a cutting tool removes unwanted material from a workpiece to produce the desired shape. The workpiece is typically cut from a larger piece of stock, which is available in a variety of standard shapes, such as flat sheets, solid bars, hollow tubes, and shaped beams. Machining can also be performed on an existing part, such as a casting or forging,or sand castings,or die castings,ect.
Parts that are machined from a pre-shaped workpiece are typically cubic or cylindrical in their overall shape, but their individual features may be quite complex. Machining can be used to create a variety of features including holes, slots, pockets, flat surfaces, and even complex surface contours. Also, while machined parts are typically metal, almost all materials can be machined, including metals, plastics, composites, and wood. For these reasons, machining is often considered the most common and versatile of all manufacturing processes.
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