It is reported that the State Administration of Quality Supervision, Inspection and Quarantine and the National Standardization Administration have recently approved 79 national standards, including the three-part national standard "satellite navigation ship supervision information system" jointly developed by Dalian Maritime University and Chongqing Municipal Maritime Safety Administration (ie: GB/ T 26782.1-2011 satellite navigation ship supervision information system Part 1 - "system composition and function definition"; GB/T 26782.2-2011 satellite navigation ship supervision information system part 2 - "system information exchange agreement"; GB/T 26782.3—2011 Part 3 of the Satellite Navigation Vessel Supervision Information System – “Technical Requirements for Shipborne Terminals” was officially approved and officially implemented on December 1, 2011.
For many years, China's system of using satellite navigation for ship supervision (commonly known as "ship-based GPS") has no national standards, so it is impossible to formulate ship inspection specifications, so that the application of the system is limited. The core of this national standard is the interconnection of systems and provides technical standards for the interconnection and information sharing of the system with other ship safety information systems such as AIS systems. This national standard applies to the design, construction, production, testing and acceptance of ship surveillance information systems and their shipborne terminal equipment using satellite navigation technology and wireless communication methods.

Nickel Alloy Powder

Nickel-based Laser Cladding Powder is a type of powder material used in laser cladding processes. Laser cladding is a technique that involves using a high-energy laser beam to melt and fuse a powdered material onto a substrate, creating a protective or functional coating.

Nickel-based laser cladding powders typically consist of nickel as the main component, along with other alloying elements such as chromium, molybdenum, and tungsten. These alloying elements help to improve the mechanical properties, corrosion resistance, and wear resistance of the resulting coating.

Nickel-based laser cladding powders are commonly used in various industries, including aerospace, automotive, and oil and gas. They are often chosen for their excellent corrosion resistance, high-temperature strength, and ability to withstand harsh environments.

The laser cladding process using nickel-based powders can be used to repair damaged or worn-out parts, enhance the surface properties of components, or create new parts with specific properties. The laser beam melts the powder material, which is then rapidly solidified to form a dense and metallurgically bonded coating.

Overall, nickel-based laser cladding powders offer a versatile and effective solution for improving the performance and lifespan of components in various industries.

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